-
1
-
-
0024642547
-
Molecular characterization of the Drosophila trp locus: a putative integral membrane protein required for phototransduction
-
2516726,; PMID:
-
Montell C, Rubin G. Molecular characterization of the Drosophila trp locus: a putative integral membrane protein required for phototransduction. Neuron 1989; 2:1313-23; PMID:2516726; http://dx.doi.org/10.1016/0896-6273(89)90069-X
-
(1989)
Neuron
, vol.2
, pp. 1313-1323
-
-
Montell, C.1
Rubin, G.2
-
2
-
-
33646842722
-
Structure-function relationship of the TRP channel superfamily
-
16634147,; PMID
-
Owsianik G, D'hoedt D, Voets T, Nilius B. Structure-function relationship of the TRP channel superfamily. Rev Physiol Biochem Pharmacol 2006; 156:61-90; PMID:16634147
-
(2006)
Rev Physiol Biochem Pharmacol
, vol.156
, pp. 61-90
-
-
Owsianik, G.1
D'hoedt, D.2
Voets, T.3
Nilius, B.4
-
3
-
-
84906327252
-
Peripheral thermosensation in mammals
-
25053448,; PMID
-
Vriens J, Nilius, B, Voets T. Peripheral thermosensation in mammals. Nat Rev Neuroscience 2014; 15:573-89; PMID:25053448
-
(2014)
Nat Rev Neuroscience
, vol.15
, pp. 573-589
-
-
Vriens, J.1
Nilius, B.2
Voets, T.3
-
4
-
-
0030777012
-
The capsaicin receptor: a heat-activated ion channel in the pain pathway
-
9349813,; PMID:
-
Caterina M, Schumacher MA, Tominaga M, Rosen TA, Levine JD, Julius D. The capsaicin receptor: a heat-activated ion channel in the pain pathway. Nature 1997; 389:816-24; PMID:9349813; http://dx.doi.org/10.1038/39807
-
(1997)
Nature
, vol.389
, pp. 816-824
-
-
Caterina, M.1
Schumacher, M.A.2
Tominaga, M.3
Rosen, T.A.4
Levine, J.D.5
Julius, D.6
-
5
-
-
0033119629
-
A capsaicin-receptor homologue with a high threshold for noxious heat
-
10201375,; PMID:
-
Caterina M, Rosen T, Tominaga M, Brake A, Julius D. A capsaicin-receptor homologue with a high threshold for noxious heat. Nature 1999; 398:436-41; PMID:10201375; http://dx.doi.org/10.1038/18906
-
(1999)
Nature
, vol.398
, pp. 436-441
-
-
Caterina, M.1
Rosen, T.2
Tominaga, M.3
Brake, A.4
Julius, D.5
-
6
-
-
0036703646
-
Heat-evoked activation of the ion channel, TRPV4
-
12151520,; PMID
-
Güler A, Lee H, Iida T, Shimizu I, Tominaga M, Caterina M. Heat-evoked activation of the ion channel, TRPV4. J Neurosci 2002; 22:6408-14; PMID:12151520
-
(2002)
J Neurosci
, vol.22
, pp. 6408-6414
-
-
Güler, A.1
Lee, H.2
Iida, T.3
Shimizu, I.4
Tominaga, M.5
Caterina, M.6
-
7
-
-
0037077041
-
A heat-sensitive TRP channel expressed in keratinocytes
-
12016205, et al.,; PMID:
-
Peier A, Reeve AJ, Andersson DA, Moqrich A, Earley TJ, Hergarden AC, Story GM, Colley S, Hogenesch JB, McIntyre P, et al. A heat-sensitive TRP channel expressed in keratinocytes. Science 2002; 296:2046-9; PMID:12016205; http://dx.doi.org/10.1126/science.1073140
-
(2002)
Science
, vol.296
, pp. 2046-2049
-
-
Peier, A.1
Reeve, A.J.2
Andersson, D.A.3
Moqrich, A.4
Earley, T.J.5
Hergarden, A.C.6
Story, G.M.7
Colley, S.8
Hogenesch, J.B.9
McIntyre, P.10
-
8
-
-
84926679050
-
Beyond modularisation: the need of a socio-neuro-constructionist model of autism
-
24154760,; PMID:
-
López B. Beyond modularisation: the need of a socio-neuro-constructionist model of autism. J Autism Dev Disord 2015; 45:31-41; PMID:24154760; http://dx.doi.org/10.1007/s10803-013-1966-9
-
(2015)
J Autism Dev Disord
, vol.45
, pp. 31-41
-
-
López, B.1
-
9
-
-
18444408683
-
TRPV3 is a temperature-sensitive vanilloid receptor-like protein
-
12077606, et al.,; PMID:
-
Smith G, Gunthorpe MJ, Kelsell RE, Hayes PD, Reilly P, Facer P, Wright JE, Jerman JC, Walhin JP, Ooi L, et al. TRPV3 is a temperature-sensitive vanilloid receptor-like protein. Nature 2002; 418:186-90; PMID:12077606; http://dx.doi.org/10.1038/nature00894
-
(2002)
Nature
, vol.418
, pp. 186-190
-
-
Smith, G.1
Gunthorpe, M.J.2
Kelsell, R.E.3
Hayes, P.D.4
Reilly, P.5
Facer, P.6
Wright, J.E.7
Jerman, J.C.8
Walhin, J.P.9
Ooi, L.10
-
10
-
-
0037062915
-
TRPV3 is a calcium-permeable temperature-sensitive cation channel
-
12077604, et al.,; PMID:
-
Xu H, Ramsey IS, Kotecha SA, Moran MM, Chong JA, Lawson D, Ge P, Lilly J, Silos-Santiago I, Xie Y, et al. TRPV3 is a calcium-permeable temperature-sensitive cation channel. Nature 2002; 418:181-6; PMID:12077604; http://dx.doi.org/10.1038/nature00882
-
(2002)
Nature
, vol.418
, pp. 181-186
-
-
Xu, H.1
Ramsey, I.S.2
Kotecha, S.A.3
Moran, M.M.4
Chong, J.A.5
Lawson, D.6
Ge, P.7
Lilly, J.8
Silos-Santiago, I.9
Xie, Y.10
-
11
-
-
30744463490
-
Heat activation of TRPM5 underlies thermal sensitivity of sweet taste
-
16355226,; PMID
-
Talavera K, Yasumatsu K, Voets T, Droogmans G, Shigemura N, Ninomiya Y, Margolskee RF, Nilius B. Heat activation of TRPM5 underlies thermal sensitivity of sweet taste. Nature 2005; 438:1022-5; PMID:16355226
-
(2005)
Nature
, vol.438
, pp. 1022-1025
-
-
Talavera, K.1
Yasumatsu, K.2
Voets, T.3
Droogmans, G.4
Shigemura, N.5
Ninomiya, Y.6
Margolskee, R.F.7
Nilius, B.8
-
12
-
-
33646543034
-
TRPM2 activation by cyclic ADP-ribose at body temperature is involved in insulin secretion
-
16601673,; PMID:
-
Togashi K, Hara Y, Tominaga T, Higashi T, Konishi Y, Mori Y, Tominaga M. TRPM2 activation by cyclic ADP-ribose at body temperature is involved in insulin secretion. EMBO J 2006; 25:1804-15; PMID:16601673; http://dx.doi.org/10.1038/sj.emboj.7601083
-
(2006)
EMBO J
, vol.25
, pp. 1804-1815
-
-
Togashi, K.1
Hara, Y.2
Tominaga, T.3
Higashi, T.4
Konishi, Y.5
Mori, Y.6
Tominaga, M.7
-
13
-
-
79955667133
-
TRPM3 is a nociceptor channel involved in the detection of noxious heat
-
21555074, et al.,; PMID:
-
Vriens J, Owsianik G, Hofmann T, Philipp SE, Stab J, Chen X, Benoit M, Xue F, Janssens A, Kerselaers S, et al. TRPM3 is a nociceptor channel involved in the detection of noxious heat. Neuron 2011; 70:482-94; PMID:21555074; http://dx.doi.org/10.1016/j.neuron.2011.02.051
-
(2011)
Neuron
, vol.70
, pp. 482-494
-
-
Vriens, J.1
Owsianik, G.2
Hofmann, T.3
Philipp, S.E.4
Stab, J.5
Chen, X.6
Benoit, M.7
Xue, F.8
Janssens, A.9
Kerselaers, S.10
-
14
-
-
0037034931
-
Identification of a cold receptor reveals a general role for TRP channels in thermosensation
-
11882888,; PMID:
-
McKemy D, Neuhausser W, Julius D. Identification of a cold receptor reveals a general role for TRP channels in thermosensation. Nature 2002; 416:52-8; PMID:11882888; http://dx.doi.org/10.1038/nature719
-
(2002)
Nature
, vol.416
, pp. 52-58
-
-
McKemy, D.1
Neuhausser, W.2
Julius, D.3
-
15
-
-
18344386202
-
A TRP channel that senses cold stimuli and menthol
-
11893340, et al.,; PMID:
-
Peier A, Moqrich A, Hergarden AC, Reeve AJ, Andersson DA, Story GM, Earley TJ, Dragoni I, McIntyre P, Bevan S, et al. A TRP channel that senses cold stimuli and menthol. Cell 2002; 108:705-15; PMID:11893340; http://dx.doi.org/10.1016/S0092-8674(02)00652-9
-
(2002)
Cell
, vol.108
, pp. 705-715
-
-
Peier, A.1
Moqrich, A.2
Hergarden, A.C.3
Reeve, A.J.4
Andersson, D.A.5
Story, G.M.6
Earley, T.J.7
Dragoni, I.8
McIntyre, P.9
Bevan, S.10
-
16
-
-
70349845440
-
Cellular and molecular mechanisms of pain
-
19837031,; PMID:
-
Basbaum A, Bautista D, Scherrer G, Julius D. Cellular and molecular mechanisms of pain. Cell 2009; 139:267-84; PMID:19837031; http://dx.doi.org/10.1016/j.cell.2009.09.028
-
(2009)
Cell
, vol.139
, pp. 267-284
-
-
Basbaum, A.1
Bautista, D.2
Scherrer, G.3
Julius, D.4
-
17
-
-
34447542435
-
The menthol receptor TRPM8 is the principal detector of environmental cold
-
17538622,; PMID:
-
Bautista D, Siemens J, Glazer JM, Tsuruda PR, Basbaum AI, Stucky CL, Jordt SE, Julius D. The menthol receptor TRPM8 is the principal detector of environmental cold. Nature 2007; 448:204-8; PMID:17538622; http://dx.doi.org/10.1038/nature05910
-
(2007)
Nature
, vol.448
, pp. 204-208
-
-
Bautista, D.1
Siemens, J.2
Glazer, J.M.3
Tsuruda, P.R.4
Basbaum, A.I.5
Stucky, C.L.6
Jordt, S.E.7
Julius, D.8
-
18
-
-
34247472646
-
Attenuated cold sensitivity in TRPM8 null mice
-
17481392,; PMID:
-
Colburn R, Lubin ML, Stone DJ, Jr, Wang Y, Lawrence D, D'Andrea MR, Brandt MR, Liu Y, Flores CM, Qin N. Attenuated cold sensitivity in TRPM8 null mice. Neuron 2007; 54:379-86; PMID:17481392; http://dx.doi.org/10.1016/j.neuron.2007.04.017
-
(2007)
Neuron
, vol.54
, pp. 379-386
-
-
Colburn, R.1
Lubin, M.L.2
Stone, D.J.3
Wang, Y.4
Lawrence, D.5
D'Andrea, M.R.6
Brandt, M.R.7
Liu, Y.8
Flores, C.M.9
Qin, N.10
-
19
-
-
34247487011
-
TRPM8 is required for cold sensation in mice
-
17481391,; PMID:
-
Dhaka A, Murray AN, Mathur J, Earley TJ, Petrus MJ, Patapoutian A. TRPM8 is required for cold sensation in mice. Neuron 2007; 54:371-8; PMID:17481391; http://dx.doi.org/10.1016/j.neuron.2007.02.024
-
(2007)
Neuron
, vol.54
, pp. 371-378
-
-
Dhaka, A.1
Murray, A.N.2
Mathur, J.3
Earley, T.J.4
Petrus, M.J.5
Patapoutian, A.6
-
20
-
-
84908565498
-
A somatosensory circuit for cooling perception in mice
-
25262494,; PMID:
-
Milenkovic N, Zhao WJ, Walcher J, Albert T, Siemens J, Lewin GR, Poulet JF. A somatosensory circuit for cooling perception in mice. Nat Neurosci 2014; 17(11):1560-6; PMID:25262494; http://dx.doi.org/10.1038/nn.3828
-
(2014)
Nat Neurosci
, vol.17
, Issue.11
, pp. 1560-1566
-
-
Milenkovic, N.1
Zhao, W.J.2
Walcher, J.3
Albert, T.4
Siemens, J.5
Lewin, G.R.6
Poulet, J.F.7
-
21
-
-
78650026896
-
Ocular surface wetness is regulated by TRPM8-dependent cold thermoreceptors of the cornea
-
21076394,; PMID:
-
Parra A, Madrid R, Echevarria D, del Olmo S, Morenilla-Palao C, Acosta MC, Gallar J, Dhaka A, Viana F, Belmonte C. Ocular surface wetness is regulated by TRPM8-dependent cold thermoreceptors of the cornea. Nat Med 2010; 16:1396-9; PMID:21076394; http://dx.doi.org/10.1038/nm.2264
-
(2010)
Nat Med
, vol.16
, pp. 1396-1399
-
-
Parra, A.1
Madrid, R.2
Echevarria, D.3
del Olmo, S.4
Morenilla-Palao, C.5
Acosta, M.C.6
Gallar, J.7
Dhaka, A.8
Viana, F.9
Belmonte, C.10
-
22
-
-
84922523207
-
Ion channel profile of TRPM8 cold receptors reveals a role of TASK-3 potassium channels in thermosensation
-
25199828,; PMID:
-
Morenilla-Palao C, Luis E, Fernández-Peña C, Quintero E, Weaver JL, Bayliss DA, Viana F. Ion channel profile of TRPM8 cold receptors reveals a role of TASK-3 potassium channels in thermosensation. Cell reports 2014; 8:1571-82; PMID:25199828; http://dx.doi.org/10.1016/j.celrep.2014.08.003
-
(2014)
Cell reports
, vol.8
, pp. 1571-1582
-
-
Morenilla-Palao, C.1
Luis, E.2
Fernández-Peña, C.3
Quintero, E.4
Weaver, J.L.5
Bayliss, D.A.6
Viana, F.7
-
23
-
-
63849187804
-
Variable threshold of trigeminal cold-thermosensitive neurons is determined by a balance between TRPM8 and Kv1 potassium channels
-
19279249,; PMID:
-
Madrid R, Peña E, Donovan-Rodriguez T, Belmonte C, Viana F. Variable threshold of trigeminal cold-thermosensitive neurons is determined by a balance between TRPM8 and Kv1 potassium channels. J Neurosci 2009; 29:3120-31; PMID:19279249; http://dx.doi.org/10.1523/JNEUROSCI.4778-08.2009
-
(2009)
J Neurosci
, vol.29
, pp. 3120-3131
-
-
Madrid, R.1
Peña, E.2
Donovan-Rodriguez, T.3
Belmonte, C.4
Viana, F.5
-
24
-
-
84885445206
-
Amplified cold transduction in native nociceptors by M-channel inhibition
-
24133266, et al.,; PMID:
-
Vetter I, Hein A, Sattler S, Hessler S, Touska F, Bressan E, Parra A, Hager U, Leffler A, Boukalova S, et al. Amplified cold transduction in native nociceptors by M-channel inhibition. J Neurosci 2013; 33:16627-41; PMID:24133266; http://dx.doi.org/10.1523/JNEUROSCI.1473-13.2013
-
(2013)
J Neurosci
, vol.33
, pp. 16627-16641
-
-
Vetter, I.1
Hein, A.2
Sattler, S.3
Hessler, S.4
Touska, F.5
Bressan, E.6
Parra, A.7
Hager, U.8
Leffler, A.9
Boukalova, S.10
-
25
-
-
81055141456
-
Transient receptor potential cation channel, subfamily C, member 5 (TRPC5) is a cold-transducer in the peripheral nervous system
-
22025699,; PMID:
-
Zimmermann K, Lennerz JK, Hein A, Link AS, Kaczmarek JS, Delling M, Uysal S, Pfeifer JD, Riccio A, Clapham DE. Transient receptor potential cation channel, subfamily C, member 5 (TRPC5) is a cold-transducer in the peripheral nervous system. Proc Natl Acad Sci U S A 2011; 108:18114-9; PMID:22025699; http://dx.doi.org/10.1073/pnas.1115387108
-
(2011)
Proc Natl Acad Sci U S A
, vol.108
, pp. 18114-18119
-
-
Zimmermann, K.1
Lennerz, J.K.2
Hein, A.3
Link, A.S.4
Kaczmarek, J.S.5
Delling, M.6
Uysal, S.7
Pfeifer, J.D.8
Riccio, A.9
Clapham, D.E.10
-
26
-
-
0034646740
-
Impaired nociception and pain sensation in mice lacking the capsaicin receptor
-
10764638,; PMID:
-
Caterina M, Leffler A, Malmberg AB, Martin WJ, Trafton J, Petersen-Zeitz KR, Koltzenburg M, Basbaum AI, Julius D. Impaired nociception and pain sensation in mice lacking the capsaicin receptor. Science 2000; 288, 306-13; PMID:10764638; http://dx.doi.org/10.1126/science.288.5464.306
-
(2000)
Science
, vol.288
, pp. 306-313
-
-
Caterina, M.1
Leffler, A.2
Malmberg, A.B.3
Martin, W.J.4
Trafton, J.5
Petersen-Zeitz, K.R.6
Koltzenburg, M.7
Basbaum, A.I.8
Julius, D.9
-
27
-
-
79954584227
-
Oral and cutaneous thermosensory profile of selective TRPV1 inhibition by ABT-102 in a randomized healthy volunteer trial
-
21377273,; PMID:
-
Rowbotham M, Nothaft W, Duan WR, Wang Y, Faltynek C, McGaraughty S, Chu KL, Svensson P. Oral and cutaneous thermosensory profile of selective TRPV1 inhibition by ABT-102 in a randomized healthy volunteer trial. Pain 2011; 152:1192-200; PMID:21377273; http://dx.doi.org/10.1016/j.pain.2011.01.051
-
(2011)
Pain
, vol.152
, pp. 1192-1200
-
-
Rowbotham, M.1
Nothaft, W.2
Duan, W.R.3
Wang, Y.4
Faltynek, C.5
McGaraughty, S.6
Chu, K.L.7
Svensson, P.8
-
28
-
-
84865336959
-
Targeting TRPV1 for pain relief: limits, losers and laurels
-
22780443,; PMID:
-
Szallasi A, Sheta M. Targeting TRPV1 for pain relief: limits, losers and laurels. Expert Opin Investig Drugs 2012; 21:1351-69; PMID:22780443; http://dx.doi.org/10.1517/13543784.2012.704021
-
(2012)
Expert Opin Investig Drugs
, vol.21
, pp. 1351-1369
-
-
Szallasi, A.1
Sheta, M.2
-
29
-
-
0034636441
-
Vanilloid receptor-1 is essential for inflammatory thermal hyperalgesia
-
10821274, et al.,; PMID:
-
Davis J, Gray J, Gunthorpe MJ, Hatcher JP, Davey PT, Overend P, Harries MH, Latcham J, Clapham C, Atkinson K, et al. Vanilloid receptor-1 is essential for inflammatory thermal hyperalgesia. Nature 2000; 405:183-7; PMID:10821274; http://dx.doi.org/10.1038/35012076
-
(2000)
Nature
, vol.405
, pp. 183-187
-
-
Davis, J.1
Gray, J.2
Gunthorpe, M.J.3
Hatcher, J.P.4
Davey, P.T.5
Overend, P.6
Harries, M.H.7
Latcham, J.8
Clapham, C.9
Atkinson, K.10
-
30
-
-
79961153567
-
Ganglion-specific splicing of TRPV1 underlies infrared sensation in vampire bats
-
21814281,; PMID:
-
Gracheva E, Cordero-Morales JF, González-Carcacía JA, Ingolia NT, Manno C, Aranguren CI, Weissman JS, Julius D. Ganglion-specific splicing of TRPV1 underlies infrared sensation in vampire bats. Nature 2011; 476:88-91; PMID:21814281; http://dx.doi.org/10.1038/nature10245
-
(2011)
Nature
, vol.476
, pp. 88-91
-
-
Gracheva, E.1
Cordero-Morales, J.F.2
González-Carcacía, J.A.3
Ingolia, N.T.4
Manno, C.5
Aranguren, C.I.6
Weissman, J.S.7
Julius, D.8
-
31
-
-
33747235382
-
Inflammatory pain: the cellular basis of heat hyperalgesia
-
18615146,; PMID:
-
Huang J, Zhang X, McNaughton, P. Inflammatory pain: the cellular basis of heat hyperalgesia. Curr Neuropharmacol 2006; 4:197-206; PMID:18615146; http://dx.doi.org/10.2174/157015906778019554
-
(2006)
Curr Neuropharmacol
, vol.4
, pp. 197-206
-
-
Huang, J.1
Zhang, X.2
McNaughton, P.3
-
32
-
-
0032169804
-
The cloned capsaicin receptor integrates multiple pain-producing stimuli
-
9768840,; PMID:
-
Tominaga M, Caterina MJ, Malmberg AB, Rosen TA, Gilbert H, Skinner K, Raumann BE, Basbaum AI, Julius D. The cloned capsaicin receptor integrates multiple pain-producing stimuli. Neuron 1998; 21:531-43; PMID:9768840; http://dx.doi.org/10.1016/S0896-6273(00)80564-4
-
(1998)
Neuron
, vol.21
, pp. 531-543
-
-
Tominaga, M.1
Caterina, M.J.2
Malmberg, A.B.3
Rosen, T.A.4
Gilbert, H.5
Skinner, K.6
Raumann, B.E.7
Basbaum, A.I.8
Julius, D.9
-
33
-
-
41749117999
-
Pharmacological blockade of the vanilloid receptor TRPV1 elicits marked hyperthermia in humans
-
18337008, et al.,; PMID:
-
Gavva N, Treanor JJ, Garami A, Fang L, Surapaneni S, Akrami A, Alvarez F, Bak A, Darling M, Gore A, et al. Pharmacological blockade of the vanilloid receptor TRPV1 elicits marked hyperthermia in humans. Pain 2008; 136:202-10; PMID:18337008; http://dx.doi.org/10.1016/j.pain.2008.01.024
-
(2008)
Pain
, vol.136
, pp. 202-210
-
-
Gavva, N.1
Treanor, J.J.2
Garami, A.3
Fang, L.4
Surapaneni, S.5
Akrami, A.6
Alvarez, F.7
Bak, A.8
Darling, M.9
Gore, A.10
-
34
-
-
63649126112
-
Therapeutic potential of vanilloid receptor TRPV1 agonists and antagonists as analgesics: recent advances and setbacks
-
19150372,; PMID:
-
Wong G, Gavva N. Therapeutic potential of vanilloid receptor TRPV1 agonists and antagonists as analgesics: recent advances and setbacks. Brain Res Rev 2009; 60:267-77; PMID:19150372; http://dx.doi.org/10.1016/j.brainresrev.2008.12.006
-
(2009)
Brain Res Rev
, vol.60
, pp. 267-277
-
-
Wong, G.1
Gavva, N.2
-
35
-
-
84922708295
-
GABA blocks pathological but not acute TRPV1 pain signals
-
25679765, et al.,; PMID:
-
Hanack C, Moroni M, Lima WC, Wende H, Kirchner M, Adelfinger L, Schrenk-Siemens K, Tappe-Theodor A, Wetzel C, Kuich PH, et al. GABA blocks pathological but not acute TRPV1 pain signals. Cell 2015; 160:759-70; PMID:25679765; http://dx.doi.org/10.1016/j.cell.2015.01.022
-
(2015)
Cell
, vol.160
, pp. 759-770
-
-
Hanack, C.1
Moroni, M.2
Lima, W.C.3
Wende, H.4
Kirchner, M.5
Adelfinger, L.6
Schrenk-Siemens, K.7
Tappe-Theodor, A.8
Wetzel, C.9
Kuich, P.H.10
-
36
-
-
84862896642
-
The calcium-activated chloride channel anoctamin 1 acts as a heat sensor in nociceptive neurons
-
22634729, et al.,; PMID:
-
Cho H, Yang YD, Lee J, Lee B, Kim T, Jang Y, Back SK, Na HS, Harfe BD, Wang F, et al. The calcium-activated chloride channel anoctamin 1 acts as a heat sensor in nociceptive neurons. Nat Neurosci 2012; 15:1015-21; PMID:22634729; http://dx.doi.org/10.1038/nn.3111
-
(2012)
Nat Neurosci
, vol.15
, pp. 1015-1021
-
-
Cho, H.1
Yang, Y.D.2
Lee, J.3
Lee, B.4
Kim, T.5
Jang, Y.6
Back, S.K.7
Na, H.S.8
Harfe, B.D.9
Wang, F.10
-
37
-
-
84892763451
-
Anoctamin 1 contributes to inflammatory and nerve-injury induced hypersensitivity
-
24450308,; PMID:
-
Lee B, Cho H, Jung J, Yang YD, Yang DJ, Oh U. Anoctamin 1 contributes to inflammatory and nerve-injury induced hypersensitivity. Mol Pain 2014; 10:5; PMID:24450308; http://dx.doi.org/10.1186/1744-8069-10-5
-
(2014)
Mol Pain
, vol.10
, pp. 5
-
-
Lee, B.1
Cho, H.2
Jung, J.3
Yang, Y.D.4
Yang, D.J.5
Oh, U.6
-
38
-
-
13944255381
-
Altered thermal selection behavior in mice lacking transient receptor potential vanilloid 4
-
15689568,; PMID:
-
Lee H, Iida T, Mizuno A, Suzuki M, Caterina M. Altered thermal selection behavior in mice lacking transient receptor potential vanilloid 4. J Neurosci 2005 25:1304-10; PMID:15689568; http://dx.doi.org/10.1523/JNEUROSCI.4745.04.2005
-
(2005)
J Neurosci
, vol.25
, pp. 1304-1310
-
-
Lee, H.1
Iida, T.2
Mizuno, A.3
Suzuki, M.4
Caterina, M.5
-
39
-
-
14644392188
-
Impaired thermosensation in mice lacking TRPV3, a heat and camphor sensor in the skin
-
15746429,; PMID:
-
Moqrich A, Hwang SW, Earley TJ, Petrus MJ, Murray AN, Spencer KS, Andahazy M, Story GM, Patapoutian A. Impaired thermosensation in mice lacking TRPV3, a heat and camphor sensor in the skin. Science 2005; 307:1468-72; PMID:15746429; http://dx.doi.org/10.1126/science.1108609
-
(2005)
Science
, vol.307
, pp. 1468-1472
-
-
Moqrich, A.1
Hwang, S.W.2
Earley, T.J.3
Petrus, M.J.4
Murray, A.N.5
Spencer, K.S.6
Andahazy, M.7
Story, G.M.8
Patapoutian, A.9
-
40
-
-
79955973368
-
TRPV3 and TRPV4 ion channels are not major contributors to mouse heat sensation
-
21586160,; PMID:
-
Huang S, Li X, Yu Y, Wang J, Caterina M. TRPV3 and TRPV4 ion channels are not major contributors to mouse heat sensation. Mol Pain 2011; 7:37; PMID:21586160; http://dx.doi.org/10.1186/1744-8069-7-37
-
(2011)
Mol Pain
, vol.7
, pp. 37
-
-
Huang, S.1
Li, X.2
Yu, Y.3
Wang, J.4
Caterina, M.5
-
41
-
-
84880308811
-
TRPV3 regulates nitric oxide synthase-independent nitric oxide synthesis in the skin
-
21712817,; PMID:
-
Miyamoto T, Petrus M, Dubin A, Patapoutian A. TRPV3 regulates nitric oxide synthase-independent nitric oxide synthesis in the skin. Nat Commun 2011; 2:369; PMID:21712817; http://dx.doi.org/10.1038/ncomms1371
-
(2011)
Nat Commun
, vol.2
, pp. 369
-
-
Miyamoto, T.1
Petrus, M.2
Dubin, A.3
Patapoutian, A.4
-
42
-
-
80051556902
-
TRP vanilloid 2 knock-out mice are susceptible to perinatal lethality but display normal thermal and mechanical nociception
-
21832173,; PMID:
-
Park U, Vastani N, Guan Y, Raja SN, Koltzenburg M, Caterina MJ. TRP vanilloid 2 knock-out mice are susceptible to perinatal lethality but display normal thermal and mechanical nociception. J Neurosci 2011; 31:11425-36; PMID:21832173; http://dx.doi.org/10.1523/JNEUROSCI.1384-09.2011
-
(2011)
J Neurosci
, vol.31
, pp. 11425-11436
-
-
Park, U.1
Vastani, N.2
Guan, Y.3
Raja, S.N.4
Koltzenburg, M.5
Caterina, M.J.6
-
43
-
-
33646061333
-
TRPA1 contributes to cold, mechanical, and chemical nociception but is not essential for hair-cell transduction
-
16630838,; PMID:
-
Kwan K, Allchorne AJ, Vollrath MA, Christensen AP, Zhang DS, Woolf CJ, Corey DP. TRPA1 contributes to cold, mechanical, and chemical nociception but is not essential for hair-cell transduction. Neuron 2006; 50:277-89; PMID:16630838; http://dx.doi.org/10.1016/j.neuron.2006.03.042
-
(2006)
Neuron
, vol.50
, pp. 277-289
-
-
Kwan, K.1
Allchorne, A.J.2
Vollrath, M.A.3
Christensen, A.P.4
Zhang, D.S.5
Woolf, C.J.6
Corey, D.P.7
-
44
-
-
59049096524
-
TRPA1 acts as a cold sensor in vitro and in vivo
-
19144922,; PMID:
-
Karashima Y, Talavera K, Everaerts W, Janssens A, Kwan KY, Vennekens R, Nilius B, Voets T. TRPA1 acts as a cold sensor in vitro and in vivo. Proc Natl Acad Sci U S A 2009; 106:1273-8; PMID:19144922; http://dx.doi.org/10.1073/pnas.0808487106
-
(2009)
Proc Natl Acad Sci U S A
, vol.106
, pp. 1273-1278
-
-
Karashima, Y.1
Talavera, K.2
Everaerts, W.3
Janssens, A.4
Kwan, K.Y.5
Vennekens, R.6
Nilius, B.7
Voets, T.8
-
45
-
-
33646045075
-
TRPA1 mediates the inflammatory actions of environmental irritants and proalgesic agents
-
16564016,; PMID:
-
Bautista D, Jordt SE, Nikai T, Tsuruda PR, Read AJ, Poblete J, Yamoah EN, Basbaum AI, Julius D. TRPA1 mediates the inflammatory actions of environmental irritants and proalgesic agents. Cell 2006; 124:1269-82; PMID:16564016; http://dx.doi.org/10.1016/j.cell.2006.02.023
-
(2006)
Cell
, vol.124
, pp. 1269-1282
-
-
Bautista, D.1
Jordt, S.E.2
Nikai, T.3
Tsuruda, P.R.4
Read, A.J.5
Poblete, J.6
Yamoah, E.N.7
Basbaum, A.I.8
Julius, D.9
-
46
-
-
77955304238
-
TRPM8, but not TRPA1, is required for neural and behavioral responses to acute noxious cold temperatures and cold-mimetics in vivo
-
20542379,; PMID:
-
Knowlton W, Bifolck-Fisher A, Bautista D, McKemy D. TRPM8, but not TRPA1, is required for neural and behavioral responses to acute noxious cold temperatures and cold-mimetics in vivo. Pain 2010; 150:340-50; PMID:20542379; http://dx.doi.org/10.1016/j.pain.2010.05.021
-
(2010)
Pain
, vol.150
, pp. 340-350
-
-
Knowlton, W.1
Bifolck-Fisher, A.2
Bautista, D.3
McKemy, D.4
-
47
-
-
84872016342
-
Residues in the pore region of Drosophila TRPA1 dictate sensitivity to thermal stimuli
-
http://dx.org/
-
Wang H, Schupp M, Zurborg S, Heppenstall P. Residues in the pore region of Drosophila TRPA1 dictate sensitivity to thermal stimuli. J Physiol 2012; 591:185-201; http://dx.doi.org/10.1113/jphysiol.2012.242842
-
(2012)
J Physiol
, vol.591
, pp. 185-201
-
-
Wang, H.1
Schupp, M.2
Zurborg, S.3
Heppenstall, P.4
-
48
-
-
13844250536
-
The Drosophila ortholog of vertebrate TRPA1 regulates thermotaxis
-
15681611,; PMID:
-
Rosenzweig M, Brennan KM, Tayler TD, Phelps PO, Patapoutian A, Garrity PA. The Drosophila ortholog of vertebrate TRPA1 regulates thermotaxis. Genes Dev 2005; 19:419-24; PMID:15681611; http://dx.doi.org/10.1101/gad.1278205
-
(2005)
Genes Dev
, vol.19
, pp. 419-424
-
-
Rosenzweig, M.1
Brennan, K.M.2
Tayler, T.D.3
Phelps, P.O.4
Patapoutian, A.5
Garrity, P.A.6
-
49
-
-
0037804066
-
Opposite thermosensor in fruitfly and mouse
-
12815418,; PMID:
-
Viswanath V, Story GM, Peier AM, Petrus MJ, Lee VM, Hwang SW, Patapoutian A, Jegla T. Opposite thermosensor in fruitfly and mouse. Nature 2003; 423:822-3; PMID:12815418; http://dx.doi.org/10.1038/423822a
-
(2003)
Nature
, vol.423
, pp. 822-823
-
-
Viswanath, V.1
Story, G.M.2
Peier, A.M.3
Petrus, M.J.4
Lee, V.M.5
Hwang, S.W.6
Patapoutian, A.7
Jegla, T.8
-
50
-
-
77951114632
-
Molecular basis of infrared detection by snakes
-
20228791,; PMID:
-
Gracheva E, Ingolia NT, Kelly YM, Cordero-Morales JF, Hollopeter G, Chesler AT, Sánchez EE, Perez JC, Weissman JS, Julius D. Molecular basis of infrared detection by snakes. Nature 2010; 464:1006-11; PMID:20228791; http://dx.doi.org/10.1038/nature08943
-
(2010)
Nature
, vol.464
, pp. 1006-1011
-
-
Gracheva, E.1
Ingolia, N.T.2
Kelly, Y.M.3
Cordero-Morales, J.F.4
Hollopeter, G.5
Chesler, A.T.6
Sánchez, E.E.7
Perez, J.C.8
Weissman, J.S.9
Julius, D.10
-
51
-
-
84936952969
-
The molecular and cellular basis of thermosensation in mammals
-
25622298,; PMID:
-
Palkar R, Lippoldt E, McKemy D. The molecular and cellular basis of thermosensation in mammals. Curr Opin Neurobiol 2015; 34C:14-19; PMID:25622298; http://dx.doi.org/10.1016/j.conb.2015.01.010
-
(2015)
Curr Opin Neurobiol
, vol.34C
, pp. 14-19
-
-
Palkar, R.1
Lippoldt, E.2
McKemy, D.3
-
52
-
-
84856269228
-
The thermo-TRP ion channel family: properties and therapeutic implications
-
21797839,; PMID:
-
Vay L, Gu C, McNaughton P. The thermo-TRP ion channel family: properties and therapeutic implications. Br J Pharmacol 2012; 165:787-801; PMID:21797839; http://dx.doi.org/10.1111/j.1476-5381.2011.01601.x
-
(2012)
Br J Pharmacol
, vol.165
, pp. 787-801
-
-
Vay, L.1
Gu, C.2
McNaughton, P.3
-
53
-
-
65649147153
-
The mechano-activated K+ channels TRAAK and TREK-1 control both warm and cold perception
-
19279663, et al.,; PMID:
-
Noël J, Zimmermann K, Busserolles J, Deval E, Alloui A, Diochot S, Guy N, Borsotto M, Reeh P, Eschalier A, et al. The mechano-activated K+ channels TRAAK and TREK-1 control both warm and cold perception. EMBO J 2009; 28:1308-18; PMID:19279663; http://dx.doi.org/10.1038/emboj.2009.57
-
(2009)
EMBO J
, vol.28
, pp. 1308-1318
-
-
Noël, J.1
Zimmermann, K.2
Busserolles, J.3
Deval, E.4
Alloui, A.5
Diochot, S.6
Guy, N.7
Borsotto, M.8
Reeh, P.9
Eschalier, A.10
-
54
-
-
84922416805
-
Role of the TREK2 potassium channel in cold and warm thermosensation and in pain perception
-
25239074, et al.,; PMID:
-
Pereira V, Busserolles J, Christin M, Devilliers M, Poupon L, Legha W, Alloui A, Aissouni Y, Bourinet E, Lesage F, et al. Role of the TREK2 potassium channel in cold and warm thermosensation and in pain perception. Pain 2014; 155:2534-44; PMID:25239074; http://dx.doi.org/10.1016/j.pain.2014.09.013
-
(2014)
Pain
, vol.155
, pp. 2534-2544
-
-
Pereira, V.1
Busserolles, J.2
Christin, M.3
Devilliers, M.4
Poupon, L.5
Legha, W.6
Alloui, A.7
Aissouni, Y.8
Bourinet, E.9
Lesage, F.10
-
55
-
-
85027919657
-
Temperature-dependent STIM1 activation induces Ca2+ influx and modulates gene expression
-
21499266,; PMID:
-
Xiao B, Coste B, Mathur J, Patapoutian A. Temperature-dependent STIM1 activation induces Ca2+ influx and modulates gene expression. Nat Chem Biol 2011; 7:351-8; PMID:21499266; http://dx.doi.org/10.1038/nchembio.558
-
(2011)
Nat Chem Biol
, vol.7
, pp. 351-358
-
-
Xiao, B.1
Coste, B.2
Mathur, J.3
Patapoutian, A.4
-
56
-
-
0036675597
-
How do you feel? Interoception: the sense of the physiological condition of the body
-
12154366,; PMID:
-
Craig A. How do you feel? Interoception: the sense of the physiological condition of the body. Nat Rev Neurosci 2002; 3:655-66; PMID:12154366; http://dx.doi.org/10.1038/nrn894
-
(2002)
Nat Rev Neurosci
, vol.3
, pp. 655-666
-
-
Craig, A.1
-
57
-
-
79955026978
-
Central neural pathways for thermoregulation
-
21196160,; PMID:
-
Morrison SF, Nakamura K. Central neural pathways for thermoregulation. Front Biosci (Landmark Ed) 2011; 16:74-104; PMID:21196160; http://dx.doi.org/10.2741/3677
-
(2011)
Front Biosci (Landmark Ed)
, vol.16
, pp. 74-104
-
-
Morrison, S.F.1
Nakamura, K.2
-
58
-
-
84893474696
-
Skin temperature: its role in thermoregulation
-
24716231,; PMID:
-
Romanovsky AA. Skin temperature: its role in thermoregulation. Acta Physiol 2014; 210(3):498-507; PMID:24716231; http://dx.doi.org/10.1111/apha.12231
-
(2014)
Acta Physiol
, vol.210
, Issue.3
, pp. 498-507
-
-
Romanovsky, A.A.1
-
59
-
-
79551509771
-
Thermoregulatory phenotype of the Trpv1 knockout mouse: thermoeffector dysbalance with hyperkinesis
-
21289181,; PMID:
-
Garami A, Pakai E, Oliveira DL, Steiner AA, Wanner SP, Almeida MC, Lesnikov VA, Gavva NR, Romanovsky AA. Thermoregulatory phenotype of the Trpv1 knockout mouse: thermoeffector dysbalance with hyperkinesis. J Neurosci 2011; 31:1721-33; PMID:21289181; http://dx.doi.org/10.1523/JNEUROSCI.4671-10.2011
-
(2011)
J Neurosci
, vol.31
, pp. 1721-1733
-
-
Garami, A.1
Pakai, E.2
Oliveira, D.L.3
Steiner, A.A.4
Wanner, S.P.5
Almeida, M.C.6
Lesnikov, V.A.7
Gavva, N.R.8
Romanovsky, A.A.9
-
60
-
-
79955732207
-
Trpv1 reporter mice reveal highly restricted brain distribution and functional expression in arteriolar smooth muscle cells
-
21451044, et al.,; PMID:
-
Cavanaugh D, Chesler AT, Jackson AC, Sigal YM, Yamanaka H, Grant R, O'Donnell D, Nicoll RA, Shah NM, Julius D, et al. Trpv1 reporter mice reveal highly restricted brain distribution and functional expression in arteriolar smooth muscle cells. J Neurosci 2011; 31:5067-77; PMID:21451044; http://dx.doi.org/10.1523/JNEUROSCI.6451-10.2011
-
(2011)
J Neurosci
, vol.31
, pp. 5067-5077
-
-
Cavanaugh, D.1
Chesler, A.T.2
Jackson, A.C.3
Sigal, Y.M.4
Yamanaka, H.5
Grant, R.6
O'Donnell, D.7
Nicoll, R.A.8
Shah, N.M.9
Julius, D.10
-
61
-
-
34247168128
-
Activation of transient receptor potential vanilloid type-1 channel prevents adipogenesis and obesity
-
17347480, et al.,; PMID:
-
Zhang LL, Yan Liu D, Ma LQ, Luo ZD, Cao TB, Zhong J, Yan ZC, Wang LJ, Zhao ZG, Zhu SJ, et al. Activation of transient receptor potential vanilloid type-1 channel prevents adipogenesis and obesity. Circ Res 2007; 100:1063-70; PMID:17347480; http://dx.doi.org/10.1161/01.RES.0000262653.84850.8b
-
(2007)
Circ Res
, vol.100
, pp. 1063-1070
-
-
Zhang, L.L.1
Yan Liu, D.2
Ma, L.Q.3
Luo, Z.D.4
Cao, T.B.5
Zhong, J.6
Yan, Z.C.7
Wang, L.J.8
Zhao, Z.G.9
Zhu, S.J.10
-
62
-
-
84893070298
-
Vanilloid receptor-1 (TRPV1) expression and function in the vasculature of the rat
-
24217926, et al.,; PMID:
-
Tóth A, Czikora A, Pásztor ET, Dienes B, Bai P, Csernoch L, Rutkai I, Csató V, Mányiné IS, Pórszász R, et al. Vanilloid receptor-1 (TRPV1) expression and function in the vasculature of the rat. J Histochem Cytochem 2014; 62:129-44; PMID:24217926; http://dx.doi.org/10.1369/0022155413513589
-
(2014)
J Histochem Cytochem
, vol.62
, pp. 129-144
-
-
Tóth, A.1
Czikora, A.2
Pásztor, E.T.3
Dienes, B.4
Bai, P.5
Csernoch, L.6
Rutkai, I.7
Csató, V.8
Mányiné, I.S.9
Pórszász, R.10
-
63
-
-
84864377753
-
Transient receptor potential vanilloid 1 activation enhances gut glucagon-like peptide-1 secretion and improves glucose homeostasis
-
22664955,; PMID:
-
Wang P, Yan Z, Zhong J, Chen J, Ni Y, Li L, Ma L, Zhao Z, Liu D, Zhu Z. Transient receptor potential vanilloid 1 activation enhances gut glucagon-like peptide-1 secretion and improves glucose homeostasis. Diabetes 2012; 61:2155-65; PMID:22664955; http://dx.doi.org/10.2337/db11-1503
-
(2012)
Diabetes
, vol.61
, pp. 2155-2165
-
-
Wang, P.1
Yan, Z.2
Zhong, J.3
Chen, J.4
Ni, Y.5
Li, L.6
Ma, L.7
Zhao, Z.8
Liu, D.9
Zhu, Z.10
-
64
-
-
84901291766
-
TRPV1 pain receptors regulate longevity and metabolism by neuropeptide signaling
-
24855942,; PMID:
-
Riera CE, Huising MO, Follett P, Leblanc M, Halloran J, Van Andel R, de Magalhaes Filho CD, Merkwirth C, Dillin A. TRPV1 pain receptors regulate longevity and metabolism by neuropeptide signaling. Cell 2014; 157:1023-36; PMID:24855942; http://dx.doi.org/10.1016/j.cell.2014.03.051
-
(2014)
Cell
, vol.157
, pp. 1023-1036
-
-
Riera, C.E.1
Huising, M.O.2
Follett, P.3
Leblanc, M.4
Halloran, J.5
Van Andel, R.6
de Magalhaes Filho, C.D.7
Merkwirth, C.8
Dillin, A.9
-
65
-
-
33846149200
-
Transient receptor potential ion channels as participants in thermosensation and thermoregulation
-
16973931,; PMID:
-
Caterina M. Transient receptor potential ion channels as participants in thermosensation and thermoregulation. Am J Physiol Regul Integr Comp Physiol 2007; 292:R64-76; PMID:16973931; http://dx.doi.org/10.1152/ajpregu.00446.2006
-
(2007)
Am J Physiol Regul Integr Comp Physiol
, vol.292
, pp. R64-R76
-
-
Caterina, M.1
-
66
-
-
0014746672
-
Irreversible impairment of thermoregulation induced by capsaicin and similar pungent substances in rats and guinea-pigs
-
5498502,; PMID:
-
Jancsó-Gábor A, Szolcsányi J, Jancsó N. Irreversible impairment of thermoregulation induced by capsaicin and similar pungent substances in rats and guinea-pigs. J Physiol 1970; 206:495-507; PMID:5498502; http://dx.doi.org/10.1113/jphysiol.1970.sp009027
-
(1970)
J Physiol
, vol.206
, pp. 495-507
-
-
Jancsó-Gábor, A.1
Szolcsányi, J.2
Jancsó, N.3
-
67
-
-
1642368112
-
Daily body temperature rhythm and heat tolerance in TRPV1 knockout and capsaicin pretreated mice
-
15016100,; PMID:
-
Szelényi Z, Hummel Z, Szolcsányi J, Davis J. Daily body temperature rhythm and heat tolerance in TRPV1 knockout and capsaicin pretreated mice. Eur J Neurosci 2004; 19:1421-4; PMID:15016100; http://dx.doi.org/10.1111/j.1460-9568.2004.03221.x
-
(2004)
Eur J Neurosci
, vol.19
, pp. 1421-1424
-
-
Szelényi, Z.1
Hummel, Z.2
Szolcsányi, J.3
Davis, J.4
-
68
-
-
34047118624
-
The vanilloid receptor TRPV1 is tonically activated in vivo and involved in body temperature regulation
-
17392452, et al.,; PMID:
-
Gavva N, Bannon AW, Surapaneni S, Hovland DN, Jr, Lehto SG, Gore A, Juan T, Deng H, Han B, Klionsky L, et al. The vanilloid receptor TRPV1 is tonically activated in vivo and involved in body temperature regulation. J Neurosci 2007; 27:3366-74; PMID:17392452; http://dx.doi.org/10.1523/JNEUROSCI.4833-06.2007
-
(2007)
J Neurosci
, vol.27
, pp. 3366-3374
-
-
Gavva, N.1
Bannon, A.W.2
Surapaneni, S.3
Hovland, D.N.4
Lehto, S.G.5
Gore, A.6
Juan, T.7
Deng, H.8
Han, B.9
Klionsky, L.10
-
69
-
-
34447504896
-
Nonthermal activation of transient receptor potential vanilloid-1 channels in abdominal viscera tonically inhibits autonomic cold-defense effectors
-
17626206, et al.,; PMID:
-
Steiner A, Turek VF, Almeida MC, Burmeister JJ, Oliveira DL, Roberts JL, Bannon AW, Norman MH, Louis JC, Treanor JJ, et al. Nonthermal activation of transient receptor potential vanilloid-1 channels in abdominal viscera tonically inhibits autonomic cold-defense effectors. J Neurosci 2007; 27:7459-68; PMID:17626206; http://dx.doi.org/10.1523/JNEUROSCI.1483-07.2007
-
(2007)
J Neurosci
, vol.27
, pp. 7459-7468
-
-
Steiner, A.1
Turek, V.F.2
Almeida, M.C.3
Burmeister, J.J.4
Oliveira, D.L.5
Roberts, J.L.6
Bannon, A.W.7
Norman, M.H.8
Louis, J.C.9
Treanor, J.J.10
-
70
-
-
64149130373
-
Antagonism of TRPV1 receptors indirectly modulates activity of thermoregulatory neurons in the medial preoptic area of rats
-
PMID:19236852
-
McGaraughty S, Segreti J, Fryer R, Brown B. Antagonism of TRPV1 receptors indirectly modulates activity of thermoregulatory neurons in the medial preoptic area of rats. Brain Res 2009; 1268:58-67; PMID:19236852.
-
(2009)
Brain Res
, vol.1268
, pp. 58-67
-
-
McGaraughty, S.1
Segreti, J.2
Fryer, R.3
Brown, B.4
-
71
-
-
75349108628
-
Contributions of different modes of TRPV1 activation to TRPV1 antagonist-induced hyperthermia
-
20107070,; PMID:
-
Garami A, Shimansky YP, Pakai E, Oliveira DL, Gavva NR, Romanovsky AA. Contributions of different modes of TRPV1 activation to TRPV1 antagonist-induced hyperthermia. J Neurosci 2010; 30:1435-40; PMID:20107070; http://dx.doi.org/10.1523/JNEUROSCI.5150-09.2010
-
(2010)
J Neurosci
, vol.30
, pp. 1435-1440
-
-
Garami, A.1
Shimansky, Y.P.2
Pakai, E.3
Oliveira, D.L.4
Gavva, N.R.5
Romanovsky, A.A.6
-
72
-
-
14844309685
-
Attenuated fever response in mice lacking TRPV1
-
15763167,; PMID:
-
Iida T, Shimizu I, Nealen ML, Campbell A, Caterina M. Attenuated fever response in mice lacking TRPV1. Neurosci Lett 2005; 378:28-33; PMID:15763167; http://dx.doi.org/10.1016/j.neulet.2004.12.007
-
(2005)
Neurosci Lett
, vol.378
, pp. 28-33
-
-
Iida, T.1
Shimizu, I.2
Nealen, M.L.3
Campbell, A.4
Caterina, M.5
-
73
-
-
36048982077
-
Application of menthol to the skin of whole trunk in mice induces autonomic and behavioral heat-gain responses
-
17761510,; PMID:
-
Tajino K, Matsumura K, Kosada K, Shibakusa T, Inoue K, Fushiki T, Hosokawa H, Kobayashi S. Application of menthol to the skin of whole trunk in mice induces autonomic and behavioral heat-gain responses. Am J Physiol Regul Integr Comp Physiol 2007; 293:R2128-35; PMID:17761510; http://dx.doi.org/10.1152/ajpregu.00377.2007
-
(2007)
Am J Physiol Regul Integr Comp Physiol
, vol.293
, pp. R2128-R2135
-
-
Tajino, K.1
Matsumura, K.2
Kosada, K.3
Shibakusa, T.4
Inoue, K.5
Fushiki, T.6
Hosokawa, H.7
Kobayashi, S.8
-
74
-
-
84863012756
-
Pharmacological blockade of the cold receptor TRPM8 attenuates autonomic and behavioral cold defenses and decreases deep body temperature
-
22323721, et al.,; PMID:
-
Almeida MC, Hew-Butler T, Soriano RN, Rao S, Wang W, Wang J, Tamayo N, Oliveira DL, Nucci TB, Aryal P, et al. Pharmacological blockade of the cold receptor TRPM8 attenuates autonomic and behavioral cold defenses and decreases deep body temperature. J Neurosci 2012; 32:2086-99; PMID:22323721; http://dx.doi.org/10.1523/JNEUROSCI.5606-11.2012
-
(2012)
J Neurosci
, vol.32
, pp. 2086-2099
-
-
Almeida, M.C.1
Hew-Butler, T.2
Soriano, R.N.3
Rao, S.4
Wang, W.5
Wang, J.6
Tamayo, N.7
Oliveira, D.L.8
Nucci, T.B.9
Aryal, P.10
-
75
-
-
66949114379
-
Transient receptor potential melastatin 8 channel involvement in the regulation of vascular tone
-
19363131,; PMID:
-
Johnson CD, Melanaphy D, Purse A, Stokesberry SA, Dickson P, Zholos AV. Transient receptor potential melastatin 8 channel involvement in the regulation of vascular tone. Am J Physiol Heart Circ Physiol 2009; 296:H1868-77; PMID:19363131; http://dx.doi.org/10.1152/ajpheart.01112.2008
-
(2009)
Am J Physiol Heart Circ Physiol
, vol.296
, pp. H1868-H1877
-
-
Johnson, C.D.1
Melanaphy, D.2
Purse, A.3
Stokesberry, S.A.4
Dickson, P.5
Zholos, A.V.6
-
76
-
-
84879589551
-
Enhanced insulin clearance in mice lacking TRPM8 channels
-
23651844,; PMID:
-
McCoy DD, Zhou L, Nguyen AK, Watts AG, Donovan CM, McKemy DD. Enhanced insulin clearance in mice lacking TRPM8 channels. Am J Physiol Endocrinol Metab 2013; 305:E78-88; PMID:23651844; http://dx.doi.org/10.1152/ajpendo.00542.2012
-
(2013)
Am J Physiol Endocrinol Metab
, vol.305
, pp. E78-E88
-
-
McCoy, D.D.1
Zhou, L.2
Nguyen, A.K.3
Watts, A.G.4
Donovan, C.M.5
McKemy, D.D.6
-
77
-
-
79958822085
-
Intragastric administration of allyl isothiocyanate increases carbohydrate oxidation via TRPV1 but not TRPA1 in mice
-
21430076,; PMID:
-
Mori N, Kawabata F, Matsumura S, Hosokawa H, Kobayashi S, Inoue K, Fushiki T. Intragastric administration of allyl isothiocyanate increases carbohydrate oxidation via TRPV1 but not TRPA1 in mice. Am J Physiol Regul Integr Comp Physiol 2011; 300:R1494-505; PMID:21430076; http://dx.doi.org/10.1152/ajpregu.00645.2009
-
(2011)
Am J Physiol Regul Integr Comp Physiol
, vol.300
, pp. R1494-R1505
-
-
Mori, N.1
Kawabata, F.2
Matsumura, S.3
Hosokawa, H.4
Kobayashi, S.5
Inoue, K.6
Fushiki, T.7
-
78
-
-
79954576919
-
Selective blockade of TRPA1 channel attenuates pathological pain without altering noxious cold sensation or body temperature regulation
-
21402443, et al.,; PMID:
-
Chen J, Joshi SK, DiDomenico S, Perner RJ, Mikusa JP, Gauvin DM, Segreti JA, Han P, Zhang XF, Niforatos W, et al. Selective blockade of TRPA1 channel attenuates pathological pain without altering noxious cold sensation or body temperature regulation. Pain 2011; 152:1165-72; PMID:21402443; http://dx.doi.org/10.1016/j.pain.2011.01.049
-
(2011)
Pain
, vol.152
, pp. 1165-1172
-
-
Chen, J.1
Joshi, S.K.2
DiDomenico, S.3
Perner, R.J.4
Mikusa, J.P.5
Gauvin, D.M.6
Segreti, J.A.7
Han, P.8
Zhang, X.F.9
Niforatos, W.10
-
79
-
-
84897853020
-
Transient receptor potential channel ankyrin-1 is not a cold sensor for autonomic thermoregulation in rodents
-
24671991, et al.,; PMID:
-
Oliveira C, Garami A, Lehto SG, Pakai E, Tekus V, Pohoczky K, Youngblood BD, Wang W, Kort ME, Kym PR, et al. Transient receptor potential channel ankyrin-1 is not a cold sensor for autonomic thermoregulation in rodents. J Neurosci 2014; 34:4445-52; PMID:24671991; http://dx.doi.org/10.1523/JNEUROSCI.5387-13.2014
-
(2014)
J Neurosci
, vol.34
, pp. 4445-4452
-
-
Oliveira, C.1
Garami, A.2
Lehto, S.G.3
Pakai, E.4
Tekus, V.5
Pohoczky, K.6
Youngblood, B.D.7
Wang, W.8
Kort, M.E.9
Kym, P.R.10
-
80
-
-
67049154139
-
Intragastric administration of TRPV1, TRPV3, TRPM8, and TRPA1 agonists modulates autonomic thermoregulation in different manners in mice
-
19420725,; PMID:
-
Masamoto Y, Kawabata F, Fushiki T. Intragastric administration of TRPV1, TRPV3, TRPM8, and TRPA1 agonists modulates autonomic thermoregulation in different manners in mice. Biosci Biotechnol Biochem 2009; 73:1021-7; PMID:19420725; http://dx.doi.org/10.1271/bbb.80796
-
(2009)
Biosci Biotechnol Biochem
, vol.73
, pp. 1021-1027
-
-
Masamoto, Y.1
Kawabata, F.2
Fushiki, T.3
-
81
-
-
34249730751
-
Transient receptor potential ion channels control thermoregulatory behaviour in reptiles
-
17356692,; PMID:
-
Seebacher F, Murray SA. Transient receptor potential ion channels control thermoregulatory behaviour in reptiles. PLoS One 2007; 2:e281; PMID:17356692; http://dx.doi.org/10.1371/journal.pone.0000281
-
(2007)
PLoS One
, vol.2
-
-
Seebacher, F.1
Murray, S.A.2
-
82
-
-
70349659983
-
The transient receptor potential vanilloid-1 channel in thermoregulation: a thermosensor it is not
-
19749171,; PMID:
-
Romanovsky A, Almeida MC, Garami A, Steiner AA, Norman MH, Morrison SF, Nakamura K, Burmeister JJ, Nucci TB. The transient receptor potential vanilloid-1 channel in thermoregulation: a thermosensor it is not. Pharmacol Rev 2009; 61:228-61; PMID:19749171; http://dx.doi.org/10.1124/pr.109.001263
-
(2009)
Pharmacol Rev
, vol.61
, pp. 228-261
-
-
Romanovsky, A.1
Almeida, M.C.2
Garami, A.3
Steiner, A.A.4
Norman, M.H.5
Morrison, S.F.6
Nakamura, K.7
Burmeister, J.J.8
Nucci, T.B.9
-
83
-
-
80155201442
-
Central circuitries for body temperature regulation and fever
-
21900642,; PMID:
-
Nakamura K. Central circuitries for body temperature regulation and fever. Am J Physiol Regul Integr Comp Physiol 2011; 301:R1207-28; PMID:21900642; http://dx.doi.org/10.1152/ajpregu.00109.2011
-
(2011)
Am J Physiol Regul Integr Comp Physiol
, vol.301
, pp. R1207-R1228
-
-
Nakamura, K.1
-
84
-
-
46149086585
-
Central control of thermogenesis in mammals
-
18469069,; PMID:
-
Morrison SF, Nakamura K, Madden CJ. Central control of thermogenesis in mammals. Exp Physiol 2008; 93:773-97; PMID:18469069; http://dx.doi.org/10.1113/expphysiol.2007.041848
-
(2008)
Exp Physiol
, vol.93
, pp. 773-797
-
-
Morrison, S.F.1
Nakamura, K.2
Madden, C.J.3
-
85
-
-
0034456038
-
Role of the preoptic-anterior hypothalamus in thermoregulation and fever
-
11113018,; PMID:
-
Boulant J. Role of the preoptic-anterior hypothalamus in thermoregulation and fever. Clin Infect Dis 2000; 5:S157-61; PMID:11113018; http://dx.doi.org/10.1086/317521
-
(2000)
Clin Infect Dis
, vol.5
, pp. S157-S161
-
-
Boulant, J.1
-
86
-
-
0020211823
-
Effect of synaptic blockade on thermosensitive neurons in hypothalamic tissue slices
-
7137377,; PMID
-
Kelso S, Boulant J. Effect of synaptic blockade on thermosensitive neurons in hypothalamic tissue slices. Am J Physiol 1982; 243:R480-90; PMID:7137377
-
(1982)
Am J Physiol
, vol.243
, pp. R480-R490
-
-
Kelso, S.1
Boulant, J.2
-
87
-
-
0028849269
-
Temperature effects on membrane potential and input resistance in rat hypothalamic neurones
-
8568679,; 488:,; PMID:
-
Griffin J, Boulant J. Temperature effects on membrane potential and input resistance in rat hypothalamic neurones. J Physiol 1995; 488:407-18; PMID:8568679; http://dx.doi.org/10.1113/jphysiol.1995.sp020975
-
(1995)
J Physiol
, pp. 407-418
-
-
Griffin, J.1
Boulant, J.2
-
88
-
-
17444363039
-
Temperature effects on neuronal membrane potentials and inward currents in rat hypothalamic tissue slices
-
15695248,; PMID:
-
Zhao Y, Boulant J. Temperature effects on neuronal membrane potentials and inward currents in rat hypothalamic tissue slices. J Physiol 2005; 564:245-57; PMID:15695248; http://dx.doi.org/10.1113/jphysiol.2004.075473
-
(2005)
J Physiol
, vol.564
, pp. 245-257
-
-
Zhao, Y.1
Boulant, J.2
-
89
-
-
84866881735
-
ATP-sensitive potassium channels mediate the thermosensory response of orexin neurons
-
22802589,; PMID:
-
Parsons M, Belanger-Willoughby N, Linehan V, Hirasawa M. ATP-sensitive potassium channels mediate the thermosensory response of orexin neurons. J Physiol 2012; 590:4707-15; PMID:22802589; http://dx.doi.org/10.1113/jphysiol.2012.236497
-
(2012)
J Physiol
, vol.590
, pp. 4707-4715
-
-
Parsons, M.1
Belanger-Willoughby, N.2
Linehan, V.3
Hirasawa, M.4
-
90
-
-
0035371189
-
Properties and modulation of mammalian 2P domain K+ channels
-
11356506,; PMID:
-
Patel A, Honoré E. Properties and modulation of mammalian 2P domain K+ channels. Trends Neurosci 2001; 24:339-46; PMID:11356506; http://dx.doi.org/10.1016/S0166-2236(00)01810-5
-
(2001)
Trends Neurosci
, vol.24
, pp. 339-346
-
-
Patel, A.1
Honoré, E.2
-
91
-
-
85027939025
-
Heat shock factor 1 regulates the expression of the TRPV1 gene in the rat preoptic-anterior hypothalamus area during lipopolysaccharide-induced fever
-
22427437,; PMID:
-
Fan-xin M, Li-mei S, Bei S, Xin Q, Yu Y, Yu C. Heat shock factor 1 regulates the expression of the TRPV1 gene in the rat preoptic-anterior hypothalamus area during lipopolysaccharide-induced fever. Exp Physiol 2012; 97:730-40; PMID:22427437; http://dx.doi.org/10.1113/expphysiol.2011.064204
-
(2012)
Exp Physiol
, vol.97
, pp. 730-740
-
-
Fan-xin, M.1
Li-mei, S.2
Bei, S.3
Xin, Q.4
Yu, Y.5
Yu, C.6
-
92
-
-
84876481764
-
Astrocytic TRPV1 ion channels detect blood-borne signals in the sensory circumventricular organs of adult mouse brains
-
23468425,; PMID:
-
Mannari T, Morita S, Furube E, Tominaga M, Miyata S. Astrocytic TRPV1 ion channels detect blood-borne signals in the sensory circumventricular organs of adult mouse brains. Glia 2013; 61:957-71; PMID:23468425; http://dx.doi.org/10.1002/glia.22488
-
(2013)
Glia
, vol.61
, pp. 957-971
-
-
Mannari, T.1
Morita, S.2
Furube, E.3
Tominaga, M.4
Miyata, S.5
-
93
-
-
78649997366
-
Osmotic and thermal control of magnocellular neurosecretory neurons-role of an N-terminal variant of trpv1
-
21143657,; PMID:
-
Sudbury J, Ciura S, Sharif-Naeini R, Bourque C. Osmotic and thermal control of magnocellular neurosecretory neurons-role of an N-terminal variant of trpv1. Eur J Neurosci 2010; 32:2022-30; PMID:21143657; http://dx.doi.org/10.1111/j.1460-9568.2010.07512.x
-
(2010)
Eur J Neurosci
, vol.32
, pp. 2022-2030
-
-
Sudbury, J.1
Ciura, S.2
Sharif-Naeini, R.3
Bourque, C.4
-
94
-
-
84886901532
-
Dynamic and permissive roles of TRPV1 and TRPV4 channels for thermosensation in mouse supraoptic magnocellular neurosecretory neurons
-
24155319,; PMID:
-
Sudbury J, Bourque C. Dynamic and permissive roles of TRPV1 and TRPV4 channels for thermosensation in mouse supraoptic magnocellular neurosecretory neurons. J Neurosci 2013; 33:17160-5; PMID:24155319; http://dx.doi.org/10.1523/JNEUROSCI.1048-13.2013
-
(2013)
J Neurosci
, vol.33
, pp. 17160-17165
-
-
Sudbury, J.1
Bourque, C.2
-
95
-
-
29444456617
-
An N-terminal variant of Trpv1 channel is required for osmosensory transduction
-
16327782,; PMID:
-
Naeini R, Witty M-F, Séguéla P, Bourque C. An N-terminal variant of Trpv1 channel is required for osmosensory transduction. Nat Neurosci 2006; 9:93-98; PMID:16327782; http://dx.doi.org/10.1038/nn1614
-
(2006)
Nat Neurosci
, vol.9
, pp. 93-98
-
-
Naeini, R.1
Witty, M.-F.2
Séguéla, P.3
Bourque, C.4
-
96
-
-
84907597459
-
Unique interweaved microtubule scaffold mediates osmosensory transduction via physical interaction with TRPV1
-
25123313,; PMID:
-
Prager-Khoutorsky M, Khoutorsky A, Bourque CW. Unique interweaved microtubule scaffold mediates osmosensory transduction via physical interaction with TRPV1. Neuron 2014; 83:866-78; PMID:25123313; http://dx.doi.org/10.1016/j.neuron.2014.07.023
-
(2014)
Neuron
, vol.83
, pp. 866-878
-
-
Prager-Khoutorsky, M.1
Khoutorsky, A.2
Bourque, C.W.3
-
97
-
-
42149163068
-
TRPV1 gene required for thermosensory transduction and anticipatory secretion from vasopressin neurons during hyperthermia
-
18439403,; PMID:
-
Sharif-Naeini R, Ciura S, Bourque CW. TRPV1 gene required for thermosensory transduction and anticipatory secretion from vasopressin neurons during hyperthermia. Neuron 2008; 58:179-85; PMID:18439403; http://dx.doi.org/10.1016/j.neuron.2008.02.013
-
(2008)
Neuron
, vol.58
, pp. 179-185
-
-
Sharif-Naeini, R.1
Ciura, S.2
Bourque, C.W.3
-
98
-
-
33748440416
-
Ionic channels and conductance-based models for hypothalamic neuronal thermosensitivity
-
16690776,; PMID:
-
Wechselberger M, Wright C, Bishop G, Boulant, J. Ionic channels and conductance-based models for hypothalamic neuronal thermosensitivity. Am J Physiol Regul Integr Comp Physiol 2006; 291:R518-29; PMID:16690776; http://dx.doi.org/10.1152/ajpregu.00039.2006
-
(2006)
Am J Physiol Regul Integr Comp Physiol
, vol.291
, pp. R518-R529
-
-
Wechselberger, M.1
Wright, C.2
Bishop, G.3
Boulant, J.4
-
99
-
-
84873834310
-
Thyroid hormone is required for hypothalamic neurons regulating cardiovascular functions
-
23257356, et al.,; PMID:
-
Mittag J, Lyons DJ, Sällström J, Vujovic M, Dudazy-Gralla S, Warner A, Wallis K, Alkemade A, Nordström K, Monyer H, et al. Thyroid hormone is required for hypothalamic neurons regulating cardiovascular functions. J Clin Invest 2013; 123:509-16; PMID:23257356; http://dx.doi.org/10.1172/JCI65252
-
(2013)
J Clin Invest
, vol.123
, pp. 509-516
-
-
Mittag, J.1
Lyons, D.J.2
Sällström, J.3
Vujovic, M.4
Dudazy-Gralla, S.5
Warner, A.6
Wallis, K.7
Alkemade, A.8
Nordström, K.9
Monyer, H.10
-
100
-
-
84903819684
-
Expression of genes for temperature-sensitive TRP channels in the rat hypothalamus in normal conditions and on adaptation to cold
-
http://dx.org/
-
Voronova I, Tuzhikova A, Kozyreva T. Expression of genes for temperature-sensitive TRP channels in the rat hypothalamus in normal conditions and on adaptation to cold. Neurosci Behav Physiol 2014; 44:565-70; http://dx.doi.org/10.1007/s11055-014-9952-z
-
(2014)
Neurosci Behav Physiol
, vol.44
, pp. 565-570
-
-
Voronova, I.1
Tuzhikova, A.2
Kozyreva, T.3
-
101
-
-
84883523158
-
Neuronal inputs and outputs of aging and longevity
-
23653632,; PMID:
-
Alcedo J, Flatt T, Pasyukova E. Neuronal inputs and outputs of aging and longevity. Front Genet 2013; 4:71; PMID:23653632; http://dx.doi.org/10.3389/fgene.2013.00071
-
(2013)
Front Genet
, vol.4
, pp. 71
-
-
Alcedo, J.1
Flatt, T.2
Pasyukova, E.3
-
102
-
-
84876934628
-
Vanilloid receptors-do they have a role in whole body metabolism? Evidence from TRPV1
-
23332888,; PMID:
-
Zsombok A. Vanilloid receptors-do they have a role in whole body metabolism? Evidence from TRPV1. J Diabetes Complications 2013; 27:287-92; PMID:23332888; http://dx.doi.org/10.1016/j.jdiacomp.2012.11.006
-
(2013)
J Diabetes Complications
, vol.27
, pp. 287-292
-
-
Zsombok, A.1
-
103
-
-
84872857675
-
Capsinoids and related food ingredients activating brown fat thermogenesis and reducing body fat in humans
-
23298960,; PMID:
-
Saito M, Yoneshiro T. Capsinoids and related food ingredients activating brown fat thermogenesis and reducing body fat in humans. Curr Opin Lipidol 2013; 24:71-7; PMID:23298960; http://dx.doi.org/10.1097/MOL.0b013e32835a4f40
-
(2013)
Curr Opin Lipidol
, vol.24
, pp. 71-77
-
-
Saito, M.1
Yoneshiro, T.2
-
104
-
-
84862283308
-
Capsaicinoids and capsinoids. A potential role for weight management? A systematic review of the evidence
-
22634197,; PMID:
-
Whiting S, Derbyshire E, Tiwari B. Capsaicinoids and capsinoids. A potential role for weight management? A systematic review of the evidence. Appetite 2012; 59:341-8; PMID:22634197; http://dx.doi.org/10.1016/j.appet.2012.05.015
-
(2012)
Appetite
, vol.59
, pp. 341-348
-
-
Whiting, S.1
Derbyshire, E.2
Tiwari, B.3
-
105
-
-
44749085444
-
TRPV1-null mice are protected from diet-induced obesity
-
18503767,; PMID:
-
Motter A, Ahern G. TRPV1-null mice are protected from diet-induced obesity. FEBS Lett 2008; 582:2257-62; PMID:18503767; http://dx.doi.org/10.1016/j.febslet.2008.05.021
-
(2008)
FEBS Lett
, vol.582
, pp. 2257-2262
-
-
Motter, A.1
Ahern, G.2
-
106
-
-
84905224561
-
Capsaicin-induced transcriptional changes in hypothalamus and alterations in gut microbial count in high fat diet fed mice
-
a24917046, et al.,; PMID:
-
Baboota R, Murtaz a N, Jagtap S, Singh DP, Karmase A, Kaur J, Bhutani KK, Boparai RK, Premkumar LS, Kondepudi KK, et al. Capsaicin-induced transcriptional changes in hypothalamus and alterations in gut microbial count in high fat diet fed mice. J Nutr Biochem 2014; 25:893-902; PMID:24917046; http://dx.doi.org/10.1016/j.jnutbio.2014.04.004
-
(2014)
J Nutr Biochem
, vol.25
, pp. 893-902
-
-
Baboota, R.1
Murtaz, N.2
Jagtap, S.3
Singh, D.P.4
Karmase, A.5
Kaur, J.6
Bhutani, K.K.7
Boparai, R.K.8
Premkumar, L.S.9
Kondepudi, K.K.10
-
107
-
-
84856084105
-
Aging reverses the role of the transient receptor potential vanilloid-1 channel in systemic inflammation from anti-inflammatory to proinflammatory
-
i22214765,; PMID:
-
Wanner S, Garami A, Paka i E, Oliveira DL, Gavva NR, Coimbra CC, Romanovsky AA. Aging reverses the role of the transient receptor potential vanilloid-1 channel in systemic inflammation from anti-inflammatory to proinflammatory. Cell Cycle 2012; 11:343-9; PMID:22214765; http://dx.doi.org/10.4161/cc.11.2.18772
-
(2012)
Cell Cycle
, vol.11
, pp. 343-349
-
-
Wanner, S.1
Garami, A.2
Paka, E.3
Oliveira, D.L.4
Gavva, N.R.5
Coimbra, C.C.6
Romanovsky, A.A.7
-
108
-
-
80052610907
-
Topical capsaicin for pain management: therapeutic potential and mechanisms of action of the new high-concentration capsaicin 8% patch
-
21852280,; PMID:
-
Anand P, Bley K. Topical capsaicin for pain management: therapeutic potential and mechanisms of action of the new high-concentration capsaicin 8% patch. Br J Anaesth 2011; 107:490-502; PMID:21852280; http://dx.doi.org/10.1093/bja/aer260
-
(2011)
Br J Anaesth
, vol.107
, pp. 490-502
-
-
Anand, P.1
Bley, K.2
-
109
-
-
84892727489
-
Capsaicinoids in the treatment of neuropathic pain: a review
-
24409200,; PMID:
-
Peppin JF, Pappagallo M. Capsaicinoids in the treatment of neuropathic pain: a review. Ther Adv Neurol Disord 2014; 7:22-32; PMID:24409200; http://dx.doi.org/10.1177/1756285613501576
-
(2014)
Ther Adv Neurol Disord
, vol.7
, pp. 22-32
-
-
Peppin, J.F.1
Pappagallo, M.2
-
110
-
-
84891896777
-
Human white adipocytes express the cold receptor TRPM8 which activation induces UCP1 expression, mitochondrial activation and heat production
-
24342393, et al.,; PMID:
-
Rossato M, Granzotto M, Macchi V, Porzionato A, Petrelli L, Calcagno A, Vencato J, De Stefani D, Silvestrin V, Rizzuto R, et al. Human white adipocytes express the cold receptor TRPM8 which activation induces UCP1 expression, mitochondrial activation and heat production. Mol Cell Endocrinol 2014; 383:137-46; PMID:24342393; http://dx.doi.org/10.1016/j.mce.2013.12.005
-
(2014)
Mol Cell Endocrinol
, vol.383
, pp. 137-146
-
-
Rossato, M.1
Granzotto, M.2
Macchi, V.3
Porzionato, A.4
Petrelli, L.5
Calcagno, A.6
Vencato, J.7
De Stefani, D.8
Silvestrin, V.9
Rizzuto, R.10
-
111
-
-
84860176201
-
Activation of the cold-sensing TRPM8 channel triggers UCP1-dependent thermogenesis and prevents obesity
-
22241835, et al.,; PMID:
-
Ma S, Yu H, Zhao Z, Luo Z, Chen J, Ni Y, Jin R, Ma L, Wang P, Zhu Z, et al. Activation of the cold-sensing TRPM8 channel triggers UCP1-dependent thermogenesis and prevents obesity. J Mol Cell Biol 2012; 4:88-96; PMID:22241835; http://dx.doi.org/10.1093/jmcb/mjs001
-
(2012)
J Mol Cell Biol
, vol.4
, pp. 88-96
-
-
Ma, S.1
Yu, H.2
Zhao, Z.3
Luo, Z.4
Chen, J.5
Ni, Y.6
Jin, R.7
Ma, L.8
Wang, P.9
Zhu, Z.10
-
112
-
-
84859613211
-
TRPV4 deficiency increases skeletal muscle metabolic capacity and resistance against diet-induced obesity
-
22207724,; PMID
-
Kusudo T, Wang Z, Mizuno A, Suzuki M, Yamashita H. TRPV4 deficiency increases skeletal muscle metabolic capacity and resistance against diet-induced obesity. J Appl Physiol (1985) 2012; 112:1223-32; PMID:22207724
-
(2012)
J Appl Physiol (1985)
, vol.112
, pp. 1223-1232
-
-
Kusudo, T.1
Wang, Z.2
Mizuno, A.3
Suzuki, M.4
Yamashita, H.5
-
113
-
-
84869101137
-
TRPV4 is a regulator of adipose oxidative metabolism, inflammation, and energy homeostasis
-
m23021218, et al.,; PMID:
-
Ye L, Kleiner S, Wu J, Sah R, Gupta RK, Banks AS, Cohen P, Khandekar MJ, Boströ m P, Mepani RJ, et al. TRPV4 is a regulator of adipose oxidative metabolism, inflammation, and energy homeostasis. Cell 2012; 151:96-110; PMID:23021218; http://dx.doi.org/10.1016/j.cell.2012.08.034
-
(2012)
Cell
, vol.151
, pp. 96-110
-
-
Ye, L.1
Kleiner, S.2
Wu, J.3
Sah, R.4
Gupta, R.K.5
Banks, A.S.6
Cohen, P.7
Khandekar, M.J.8
Boströ, P.9
Mepani, R.J.10
-
114
-
-
84859475876
-
TRPM2 Ca2+ channel regulates energy balance and glucose metabolism
-
22275755, et al.,; PMID
-
Zhang Z, Zhang W, Jung DY, Ko HJ, Lee Y, Friedline RH, Lee E, Jun J, Ma Z, Kim F, et al. TRPM2 Ca2+ channel regulates energy balance and glucose metabolism. Am J Physiol Endocrinol Metab 2012; 302:E807-16; PMID:22275755
-
(2012)
Am J Physiol Endocrinol Metab
, vol.302
, pp. E807-E816
-
-
Zhang, Z.1
Zhang, W.2
Jung, D.Y.3
Ko, H.J.4
Lee, Y.5
Friedline, R.H.6
Lee, E.7
Jun, J.8
Ma, Z.9
Kim, F.10
-
115
-
-
78751510028
-
Lack of TRPM2 impaired insulin secretion and glucose metabolisms in mice
-
20921208,; PMID:
-
Uchida K, Dezaki K, Damdindorj B, Inada H, Shiuchi T, Mori Y, Yada T, Minokoshi Y, Tominaga M. Lack of TRPM2 impaired insulin secretion and glucose metabolisms in mice. Diabetes 2011; 60:119-26; PMID:20921208; http://dx.doi.org/10.2337/db10-0276
-
(2011)
Diabetes
, vol.60
, pp. 119-126
-
-
Uchida, K.1
Dezaki, K.2
Damdindorj, B.3
Inada, H.4
Shiuchi, T.5
Mori, Y.6
Yada, T.7
Minokoshi, Y.8
Tominaga, M.9
-
116
-
-
84919941343
-
TRPM2 mediates the lysophosphatidic acid-induced neurite retraction in the developing brain
-
24413888, et al.,; PMID:
-
Jang Y, Lee MH, Lee J, Jung J, Lee SH, Yang DJ, Kim BW, Son H, Lee B, Chang S, et al. TRPM2 mediates the lysophosphatidic acid-induced neurite retraction in the developing brain. Pflügers Arch 2014; 466:1987-98; PMID:24413888; http://dx.doi.org/10.1007/s00424-013-1436-4
-
(2014)
Pflügers Arch
, vol.466
, pp. 1987-1998
-
-
Jang, Y.1
Lee, M.H.2
Lee, J.3
Jung, J.4
Lee, S.H.5
Yang, D.J.6
Kim, B.W.7
Son, H.8
Lee, B.9
Chang, S.10
-
117
-
-
84923301658
-
The key role of transient receptor potential melastatin-2 channels in amyloid-β-induced neurovascular dysfunction
-
r25351853,; PMID:
-
Park L, Wang G, Moore J, Girouard H, Zhou P, Anrathe r J, Iadecola C. The key role of transient receptor potential melastatin-2 channels in amyloid-β-induced neurovascular dysfunction. Nat Commun 2014; 5:5318; PMID:25351853; http://dx.doi.org/10.1038/ncomms6318
-
(2014)
Nat Commun
, vol.5
, pp. 5318
-
-
Park, L.1
Wang, G.2
Moore, J.3
Girouard, H.4
Zhou, P.5
Anrathe, J.6
Iadecola, C.7
-
118
-
-
84937510947
-
Ca2+ entry via Trpm2 is essential for cardiac myocyte bioenergetics maintenance
-
25576627, et al.,; PMID:
-
Hoffman N, Miller BA, Wang J, Elrod JW, Rajan S, Gao E, Song J, Zhang XQ, Hirschler-Laszkiewicz I, Shanmughapriya S, et al. Ca2+ entry via Trpm2 is essential for cardiac myocyte bioenergetics maintenance. Am J Physiol Heart Circ Physiol 2015; 308:H637-50; PMID:25576627; http://dx.doi.org/10.1152/ajpheart.00720.2014
-
(2015)
Am J Physiol Heart Circ Physiol
, vol.308
, pp. H637-H650
-
-
Hoffman, N.1
Miller, B.A.2
Wang, J.3
Elrod, J.W.4
Rajan, S.5
Gao, E.6
Song, J.7
Zhang, X.Q.8
Hirschler-Laszkiewicz, I.9
Shanmughapriya, S.10
-
119
-
-
84908635178
-
TRPM2 mediates ischemic kidney injury and oxidant stress through RAC1
-
25295536,; PMID:
-
Gao G, Wang W, Tadagavadi RK, Briley NE, Love MI, Miller BA, Reeves WB. TRPM2 mediates ischemic kidney injury and oxidant stress through RAC1. J Clin Invest 2014; 124:4989-5001; PMID:25295536; http://dx.doi.org/10.1172/JCI76042
-
(2014)
J Clin Invest
, vol.124
, pp. 4989-5001
-
-
Gao, G.1
Wang, W.2
Tadagavadi, R.K.3
Briley, N.E.4
Love, M.I.5
Miller, B.A.6
Reeves, W.B.7
-
120
-
-
84876731925
-
L. The TRPM2 ion channel, an oxidative stress and metabolic sensor regulating innate immunity and inflammation
-
22975787,; PMID:
-
Knowles H, Li Y, Perraud A-L. L. The TRPM2 ion channel, an oxidative stress and metabolic sensor regulating innate immunity and inflammation. Immunol Res 2013; 55:241-8; PMID:22975787; http://dx.doi.org/10.1007/s12026-012-8373-8
-
(2013)
Immunol Res
, vol.55
, pp. 241-248
-
-
Knowles, H.1
Li, Y.2
Perraud, A.-L.3
-
121
-
-
34548825160
-
Repeated administration of vanilloid receptor TRPV1 antagonists attenuates hyperthermia elicited by TRPV1 blockade
-
17652633, et al.,; PMID:
-
Gavva N, Bannon AW, Hovland DN, Jr, Lehto SG, Klionsky L, Surapaneni S, Immke DC, Henley C, Arik L, Bak A, et al. Repeated administration of vanilloid receptor TRPV1 antagonists attenuates hyperthermia elicited by TRPV1 blockade. J Pharmacol Exp Thera 2007; 323:128-37; PMID:17652633; http://dx.doi.org/10.1124/jpet.107.125674
-
(2007)
J Pharmacol Exp Thera
, vol.323
, pp. 128-137
-
-
Gavva, N.1
Bannon, A.W.2
Hovland, D.N.3
Lehto, S.G.4
Klionsky, L.5
Surapaneni, S.6
Immke, D.C.7
Henley, C.8
Arik, L.9
Bak, A.10
|