-
1
-
-
0023878325
-
A low dose of recombinant interleukin 1 protects granulocytopenic mice from lethal gram-negative infection
-
van der Meer, J. W., Barza, M., Wolff, S. M., and Dinarello, C. A. (1988) A low dose of recombinant interleukin 1 protects granulocytopenic mice from lethal gram-negative infection. Proc. Natl. Acad. Sci. U.S.A. 85, 1620 –1623
-
(1988)
Proc. Natl. Acad. Sci. U.S.A.
, vol.85
, pp. 1620-1623
-
-
Van Der Meer, J.W.1
Barza, M.2
Wolff, S.M.3
Dinarello, C.A.4
-
2
-
-
0028984948
-
Mice deficient in il-1-converting enzyme are defective in production of mature il-1 and resistant to endotoxic shock
-
Li, P., Allen, H., Banerjee, S., Franklin, S., Herzog, L., Johnston, C., McDowell, J., Paskind, M., Rodman, L., and Salfeld, J. (1995) Mice deficient in IL-1-converting enzyme are defective in production of mature IL-1 and resistant to endotoxic shock. Cell 80, 401– 411
-
(1995)
Cell
, vol.80
, pp. 401-411
-
-
Li, P.1
Allen, H.2
Banerjee, S.3
Franklin, S.4
Herzog, L.5
Johnston, C.6
McDowell, J.7
Paskind, M.8
Rodman, L.9
Salfeld, J.10
-
3
-
-
0029979369
-
Biologic basis for interleukin-1 in disease
-
Dinarello, C. A. (1996) Biologic basis for interleukin-1 in disease. Blood 87, 2095–2147
-
(1996)
Blood
, vol.87
, pp. 2095-2147
-
-
Dinarello, C.A.1
-
4
-
-
58449083290
-
Pyroptosis: Host cell death and inflammation
-
Bergsbaken, T., Fink, S. L., and Cookson, B. T. (2009) Pyroptosis: host cell death and inflammation. Nat. Rev. Microbiol. 7, 99 –109
-
(2009)
Nat. Rev. Microbiol.
, vol.7
, pp. 99-109
-
-
Bergsbaken, T.1
Fink, S.L.2
Cookson, B.T.3
-
5
-
-
34047179487
-
Caspase-1-dependent processing of pro-interleukin-1 is cytosolic and precedes cell death
-
Brough, D., and Rothwell, N. J. (2007) Caspase-1-dependent processing of pro-interleukin-1 is cytosolic and precedes cell death. J. Cell Sci. 120, 772–781
-
(2007)
J. Cell Sci.
, vol.120
, pp. 772-781
-
-
Brough, D.1
Rothwell, N.J.2
-
6
-
-
79952137696
-
Uric acid is a danger signal of increasing risk for osteoarthritis through inflammasome activation
-
Denoble, A. E., Huffman, K. M., Stabler, T. V., Kelly, S. J., Hershfield, M. S., McDaniel, G. E., Coleman, R. E., and Kraus, V. B. (2011) Uric acid is a danger signal of increasing risk for osteoarthritis through inflammasome activation. Proc. Natl. Acad. Sci. U.S.A. 108, 2088 –2093
-
(2011)
Proc. Natl. Acad. Sci. U.S.A.
, vol.108
, pp. 2088-2093
-
-
Denoble, A.E.1
Huffman, K.M.2
Stabler, T.V.3
Kelly, S.J.4
Hershfield, M.S.5
McDaniel, G.E.6
Coleman, R.E.7
Kraus, V.B.8
-
7
-
-
84947249538
-
Amyloid fibrils are the molecular trigger of inflammation in parkinson’s disease
-
Gustot, A., Gallea, J. I., Sarroukh, R., Celej, M. S., Ruysschaert, J. M., and Raussens, V. (2015) Amyloid fibrils are the molecular trigger of inflammation in Parkinson’s disease. Biochem. J. 471, 323–333
-
(2015)
Biochem. J.
, vol.471
, pp. 323-333
-
-
Gustot, A.1
Gallea, J.I.2
Sarroukh, R.3
Celej, M.S.4
Ruysschaert, J.M.5
Raussens, V.6
-
8
-
-
84873087532
-
Nlrp3 is activated in alzheimer’s disease and contributes to pathology in app/ps1 mice
-
Heneka, M. T., Kummer, M. P., Stutz, A., Delekate, A., Schwartz, S., Vieira-Saecker, A., Griep, A., Axt, D., Remus, A., Tzeng, T. C., Gelpi, E., Halle, A., Korte, M., Latz, E., and Golenbock, D. T. (2013) NLRP3 is activated in Alzheimer’s disease and contributes to pathology in APP/PS1 mice. Nature 493, 674 – 678
-
(2013)
Nature
, vol.493
, pp. 674-678
-
-
Heneka, M.T.1
Kummer, M.P.2
Stutz, A.3
Delekate, A.4
Schwartz, S.5
Vieira-Saecker, A.6
Griep, A.7
Axt, D.8
Remus, A.9
Tzeng, T.C.10
Gelpi, E.11
Halle, A.12
Korte, M.13
Latz, E.14
Golenbock, D.T.15
-
9
-
-
84872018875
-
Upregulated nlrp3 inflammasome activation in patients with type 2 diabetes
-
Lee, H. M., Kim, J. J., Kim, H. J., Shong, M., Ku, B. J., and Jo, E. K. (2013) Upregulated NLRP3 inflammasome activation in patients with type 2 diabetes. Diabetes 62, 194 –204
-
(2013)
Diabetes
, vol.62
, pp. 194-204
-
-
Lee, H.M.1
Kim, J.J.2
Kim, H.J.3
Shong, M.4
Ku, B.J.5
Jo, E.K.6
-
10
-
-
84908164212
-
Free fatty acids as modulators of the nlrp3 inflammasome in obesity/type 2 diabetes
-
Legrand-Poels, S., Esser, N., L’homme, L., Scheen, A., Paquot, N., and Piette, J. (2014) Free fatty acids as modulators of the NLRP3 inflammasome in obesity/type 2 diabetes. Biochem. Pharmacol. 92, 131–141
-
(2014)
Biochem. Pharmacol.
, vol.92
, pp. 131-141
-
-
Legrand-Poels, S.1
Esser, N.2
L’homme, L.3
Scheen, A.4
Paquot, N.5
Piette, J.6
-
11
-
-
32944468985
-
Gout-associated uric acid crystals activate the nalp3 inflammasome
-
Martinon, F., Pétrilli, V., Mayor, A., Tardivel, A., and Tschopp, J. (2006) Gout-associated uric acid crystals activate the NALP3 inflammasome. Nature 440, 237–241
-
(2006)
Nature
, vol.440
, pp. 237-241
-
-
Martinon, F.1
Pétrilli, V.2
Mayor, A.3
Tardivel, A.4
Tschopp, J.5
-
12
-
-
84877282973
-
Polymorphisms in the nlrp3 gene and risk of primary gouty arthritis
-
Meng, D. M., Zhou, Y. J., Wang, L., Ren, W., Cui, L. L., Han, L., Qu, Z. H., Li, C. G., and Zhao, J. J. (2013) Polymorphisms in the NLRP3 gene and risk of primary gouty arthritis. Mol. Med. Rep. 7, 1761–1766
-
(2013)
Mol. Med. Rep.
, vol.7
, pp. 1761-1766
-
-
Meng, D.M.1
Zhou, Y.J.2
Wang, L.3
Ren, W.4
Cui, L.L.5
Han, L.6
Qu, Z.H.7
Li, C.G.8
Zhao, J.J.9
-
13
-
-
79751512463
-
The nlrp3 inflammasome instigates obesity-induced inflammation and insulin resistance
-
Vandanmagsar, B., Youm, Y. H., Ravussin, A., Galgani, J. E., Stadler, K., Mynatt, R. L., Ravussin, E., Stephens, J. M., and Dixit, V. D. (2011) The NLRP3 inflammasome instigates obesity-induced inflammation and insulin resistance. Nat. Med. 17, 179 –188
-
(2011)
Nat. Med.
, vol.17
, pp. 179-188
-
-
Vandanmagsar, B.1
Youm, Y.H.2
Ravussin, A.3
Galgani, J.E.4
Stadler, K.5
Mynatt, R.L.6
Ravussin, E.7
Stephens, J.M.8
Dixit, V.D.9
-
14
-
-
84899425498
-
Toll-like receptors and nlrp3 as central regulators of pancreatic islet inflammation in type 2 diabetes
-
Westwell-Roper, C., Nackiewicz, D., Dan, M., and Ehses, J. A. (2014) Toll-like receptors and NLRP3 as central regulators of pancreatic islet inflammation in type 2 diabetes. Immunol. Cell Biol. 92, 314 –323
-
(2014)
Immunol. Cell Biol.
, vol.92
, pp. 314-323
-
-
Westwell-Roper, C.1
Nackiewicz, D.2
Dan, M.3
Ehses, J.A.4
-
15
-
-
32944470765
-
Cryopyrin activates the inflammasome in response to toxins and Atp
-
Mariathasan, S., Weiss, D. S., Newton, K., McBride, J., O’Rourke, K., Roose-Girma, M., Lee, W. P., Weinrauch, Y., Monack, D. M., and Dixit, V. M. (2006) Cryopyrin activates the inflammasome in response to toxins and ATP. Nature 440, 228 –232
-
(2006)
Nature
, vol.440
, pp. 228-232
-
-
Mariathasan, S.1
Weiss, D.S.2
Newton, K.3
McBride, J.4
O’Rourke, K.5
Roose-Girma, M.6
Lee, W.P.7
Weinrauch, Y.8
Monack, D.M.9
Dixit, V.M.10
-
16
-
-
34249941913
-
Cryopyrin/nalp3 binds atp/ datp, is an atpase, and requires atp binding to mediate inflammatory signaling
-
Duncan, J. A., Bergstralh, D. T., Wang, Y., Willingham, S. B., Ye, Z., Zimmermann, A. G., and Ting, J. P. (2007) Cryopyrin/NALP3 binds ATP/ dATP, is an ATPase, and requires ATP binding to mediate inflammatory signaling. Proc. Natl. Acad. Sci. U.S.A. 104, 8041– 8046
-
(2007)
Proc. Natl. Acad. Sci. U.S.A.
, vol.104
, pp. 8041-8046
-
-
Duncan, J.A.1
Bergstralh, D.T.2
Wang, Y.3
Willingham, S.B.4
Ye, Z.5
Zimmermann, A.G.6
Ting, J.P.7
-
17
-
-
77956958947
-
Activation of the nlrp3 inflammasome by islet amyloid polypeptide provides a mechanism for enhanced il-1 in type 2 diabetes
-
Masters, S. L., Dunne, A., Subramanian, S. L., Hull, R. L., Tannahill, G. M., Sharp, F. A., Becker, C., Franchi, L., Yoshihara, E., Chen, Z., Mullooly, N., Mielke, L. A., Harris, J., Coll, R. C., Mills, K. H., et al. (2010) Activation of the NLRP3 inflammasome by islet amyloid polypeptide provides a mechanism for enhanced IL-1 in type 2 diabetes. Nat. Immunol. 11, 897–904
-
(2010)
Nat. Immunol.
, vol.11
, pp. 897-904
-
-
Masters, S.L.1
Dunne, A.2
Subramanian, S.L.3
Hull, R.L.4
Tannahill, G.M.5
Sharp, F.A.6
Becker, C.7
Franchi, L.8
Yoshihara, E.9
Chen, Z.10
Mullooly, N.11
Mielke, L.A.12
Harris, J.13
Coll, R.C.14
Mills, K.H.15
-
18
-
-
84873700748
-
Silica induces nlrp3 inflammasome activation in human lung epithelial cells
-
Peeters, P. M., Perkins, T. N., Wouters, E. F., Mossman, B. T., and Reynaert, N. L. (2013) Silica induces NLRP3 inflammasome activation in human lung epithelial cells. Part. Fibre Toxicol. 10, 3
-
(2013)
Part. Fibre Toxicol.
, vol.10
, pp. 3
-
-
Peeters, P.M.1
Perkins, T.N.2
Wouters, E.F.3
Mossman, B.T.4
Reynaert, N.L.5
-
19
-
-
57149123424
-
Amyloid- oligomers set fire to inflammasomes and induce alzheimer’s pathology
-
Salminen, A., Ojala, J., Suuronen, T., Kaarniranta, K., and Kauppinen, A. (2008) Amyloid- oligomers set fire to inflammasomes and induce Alzheimer’s pathology. J. Cell. Mol. Med. 12, 2255–2262
-
(2008)
J. Cell. Mol. Med.
, vol.12
, pp. 2255-2262
-
-
Salminen, A.1
Ojala, J.2
Suuronen, T.3
Kaarniranta, K.4
Kauppinen, A.5
-
20
-
-
84879596906
-
K+ efflux is the common trigger of NLRP3 inflammasome activation by bacterial toxins and particulate matter
-
Muñoz-Planillo, R., Kuffa, P., Martínez-Colón, G., Smith, B. L., Rajendiran, T. M., and Núñez, G. (2013) K+ efflux is the common trigger of NLRP3 inflammasome activation by bacterial toxins and particulate matter. Immunity 38, 1142–1153
-
(2013)
Immunity
, vol.38
, pp. 1142-1153
-
-
Muñoz-Planillo, R.1
Kuffa, P.2
Martínez-Colón, G.3
Smith, B.L.4
Rajendiran, T.M.5
Núñez, G.6
-
21
-
-
34548027736
-
Activation of the nalp3 inflammasome is triggered by low intracellular potassium concentration
-
Pétrilli, V., Papin, S., Dostert, C., Mayor, A., Martinon, F., and Tschopp, J. (2007) Activation of the NALP3 inflammasome is triggered by low intracellular potassium concentration. Cell Death Differ 14, 1583–1589
-
(2007)
Cell Death Differ
, vol.14
, pp. 1583-1589
-
-
Pétrilli, V.1
Papin, S.2
Dostert, C.3
Mayor, A.4
Martinon, F.5
Tschopp, J.6
-
22
-
-
0029923974
-
Human monocyte interleukin-1 posttranslational processing. Evidence of a volume-regulated response
-
Perregaux, D. G., Laliberte, R. E., and Gabel, C. A. (1996) Human monocyte interleukin-1 posttranslational processing. Evidence of a volume-regulated response. J. Biol. Chem. 271, 29830 –29838
-
(1996)
J. Biol. Chem.
, vol.271
, pp. 29830-29838
-
-
Perregaux, D.G.1
Laliberte, R.E.2
Gabel, C.A.3
-
23
-
-
84866512376
-
Cell volume regulation modulates nlrp3 inflammasome activation
-
Compan, V., Baroja-Mazo, A., López-Castejón, G., Gomez, A. I., Martínez, C. M., Angosto, D., Montero, M. T., Herranz, A. S., Bazán, E., Reimers, D., Mulero, V., and Pelegrín, P. (2012) Cell volume regulation modulates NLRP3 inflammasome activation. Immunity 37, 487–500
-
(2012)
Immunity
, vol.37
, pp. 487-500
-
-
Compan, V.1
Baroja-Mazo, A.2
López-Castejón, G.3
Gomez, A.I.4
Martínez, C.M.5
Angosto, D.6
Montero, M.T.7
Herranz, A.S.8
Bazán, E.9
Reimers, D.10
Mulero, V.11
Pelegrín, P.12
-
24
-
-
84982107211
-
Fenamate nsaids inhibit the nlrp3 inflammasome and protect against alzheimer’s disease in rodent models
-
Daniels, M. J., Rivers-Auty, J., Schilling, T., Spencer, N. G., Watremez, W., Fasolino, V., Booth, S. J., White, C. S., Baldwin, A. G., Freeman, S., Wong, R., Latta, C., Yu, S., Jackson, J., Fischer, N., Koziel, V., Pillot, T., et al. (2016) Fenamate NSAIDs inhibit the NLRP3 inflammasome and protect against Alzheimer’s disease in rodent models. Nat. Commun. 7, 12504
-
(2016)
Nat. Commun.
, vol.7
, pp. 12504
-
-
Daniels, M.J.1
Rivers-Auty, J.2
Schilling, T.3
Spencer, N.G.4
Watremez, W.5
Fasolino, V.6
Booth, S.J.7
White, C.S.8
Baldwin, A.G.9
Freeman, S.10
Wong, R.11
Latta, C.12
Yu, S.13
Jackson, J.14
Fischer, N.15
Koziel, V.16
Pillot, T.17
-
25
-
-
14844354847
-
Atp binding cassette transporter abc1 is required for the release of interleukin-1 by p2x7-stimulated and lipopolysaccharide-primed mouse schwann cells
-
Marty, V., Médina, C., Combe, C., Parnet, P., and Amédée, T. (2005) ATP binding cassette transporter ABC1 is required for the release of interleukin-1 by P2X7-stimulated and lipopolysaccharide-primed mouse Schwann cells. Glia 49, 511–519
-
(2005)
Glia
, vol.49
, pp. 511-519
-
-
Marty, V.1
Médina, C.2
Combe, C.3
Parnet, P.4
Amédée, T.5
-
26
-
-
10744228816
-
The intracellular chloride ion channel protein clic1 undergoes a redox-controlled structural transition
-
Littler, D. R., Harrop, S. J., Fairlie, W. D., Brown, L. J., Pankhurst, G. J., Pankhurst, S., DeMaere, M. Z., Campbell, T. J., Bauskin, A. R., Tonini, R., Mazzanti, M., Breit, S. N., and Curmi, P. M. (2004) The intracellular chloride ion channel protein CLIC1 undergoes a redox-controlled structural transition. J. Biol. Chem. 279, 9298 –9305
-
(2004)
J. Biol. Chem.
, vol.279
, pp. 9298-9305
-
-
Littler, D.R.1
Harrop, S.J.2
Fairlie, W.D.3
Brown, L.J.4
Pankhurst, G.J.5
Pankhurst, S.6
Demaere, M.Z.7
Campbell, T.J.8
Bauskin, A.R.9
Tonini, R.10
Mazzanti, M.11
Breit, S.N.12
Curmi, P.M.13
-
27
-
-
33646145085
-
Redox regulation of clic1 by cysteine residues associated with the putative channel pore
-
Singh, H., and Ashley, R. H. (2006) Redox regulation of CLIC1 by cysteine residues associated with the putative channel pore. Biophys. J. 90, 1628 –1638
-
(2006)
Biophys. J.
, vol.90
, pp. 1628-1638
-
-
Singh, H.1
Ashley, R.H.2
-
28
-
-
84919764597
-
Glutamate 85 and glutamate 228 contribute to the ph-response of the soluble form of chloride intracellular channel 1
-
Cross, M., Fernandes, M., Dirr, H., and Fanucchi, S. (2015) Glutamate 85 and glutamate 228 contribute to the pH-response of the soluble form of chloride intracellular channel 1. Mol. Cell. Biochem. 398, 83–93
-
(2015)
Mol. Cell. Biochem.
, vol.398
, pp. 83-93
-
-
Cross, M.1
Fernandes, M.2
Dirr, H.3
Fanucchi, S.4
-
29
-
-
84892595147
-
A lys-trp cation-pi interaction mediates the dimerization and function of the chloride intracellular channel protein 1 transmembrane domain
-
Peter, B., Polyansky, A. A., Fanucchi, S., and Dirr, H. W. (2014) A Lys-Trp cation-pi interaction mediates the dimerization and function of the chloride intracellular channel protein 1 transmembrane domain. Biochemistry 53, 57– 67
-
(2014)
Biochemistry
, vol.53
, pp. 57-67
-
-
Peter, B.1
Polyansky, A.A.2
Fanucchi, S.3
Dirr, H.W.4
-
30
-
-
84873440628
-
Intracellular chloride channel protein clic1 regulates macrophage function through modulation of phagosomal acidification
-
Jiang, L., Salao, K., Li, H., Rybicka, J. M., Yates, R. M., Luo, X. W., Shi, X. X., Kuffner, T., Tsai, V. W., Husaini, Y., Wu, L., Brown, D. A., Grewal, T., Brown, L. J., Curmi, P. M., and Breit, S. N. (2012) Intracellular chloride channel protein CLIC1 regulates macrophage function through modulation of phagosomal acidification. J. Cell Sci. 125, 5479 –54888
-
(2012)
J. Cell Sci.
, vol.125
, pp. 5479-54888
-
-
Jiang, L.1
Salao, K.2
Li, H.3
Rybicka, J.M.4
Yates, R.M.5
Luo, X.W.6
Shi, X.X.7
Kuffner, T.8
Tsai, V.W.9
Husaini, Y.10
Wu, L.11
Brown, D.A.12
Grewal, T.13
Brown, L.J.14
Curmi, P.M.15
Breit, S.N.16
-
31
-
-
24144465889
-
Molecular determinants of crosstalk between nuclear receptors and toll-like receptors
-
Ogawa, S., Lozach, J., Benner, C., Pascual, G., Tangirala, R. K., Westin, S., Hoffmann, A., Subramaniam, S., David, M., Rosenfeld, M. G., and Glass, C. K. (2005) Molecular determinants of crosstalk between nuclear receptors and toll-like receptors. Cell 122, 707–721
-
(2005)
Cell
, vol.122
, pp. 707-721
-
-
Ogawa, S.1
Lozach, J.2
Benner, C.3
Pascual, G.4
Tangirala, R.K.5
Westin, S.6
Hoffmann, A.7
Subramaniam, S.8
David, M.9
Rosenfeld, M.G.10
Glass, C.K.11
-
32
-
-
79955144570
-
Role of clic4 in the host innate responses to bacterial lipopolysaccharide
-
He, G., Ma, Y., Chou, S. Y., Li, H., Yang, C., Chuang, J. Z., Sung, C. H., and Ding, A. (2011) Role of CLIC4 in the host innate responses to bacterial lipopolysaccharide. Eur. J. Immunol. 41, 1221–1230
-
(2011)
Eur. J. Immunol.
, vol.41
, pp. 1221-1230
-
-
He, G.1
Ma, Y.2
Chou, S.Y.3
Li, H.4
Yang, C.5
Chuang, J.Z.6
Sung, C.H.7
Ding, A.8
-
33
-
-
84859949720
-
Inducible nos-induced chloride intracellular channel 4 (clic4) nuclear translocation regulates macrophage deactivation
-
Malik, M., Jividen, K., Padmakumar, V. C., Cataisson, C., Li, L., Lee, J., Howard, O. M., and Yuspa, S. H. (2012) Inducible NOS-induced chloride intracellular channel 4 (CLIC4) nuclear translocation regulates macrophage deactivation. Proc. Natl. Acad. Sci. U.S.A. 109, 6130 – 6135
-
(2012)
Proc. Natl. Acad. Sci. U.S.A.
, vol.109
, pp. 6130-6135
-
-
Malik, M.1
Jividen, K.2
Padmakumar, V.C.3
Cataisson, C.4
Li, L.5
Lee, J.6
Howard, O.M.7
Yuspa, S.H.8
-
34
-
-
84924415042
-
A small-molecule inhibitor of the nlrp3 inflammasome for the treatment of inflammatory diseases
-
Coll, R. C., Robertson, A. A., Chae, J. J., Higgins, S. C., Muñoz-Planillo, R., Inserra, M. C., Vetter, I., Dungan, L. S., Monks, B. G., Stutz, A., Croker, D. E., Butler, M. S., Haneklaus, M., Sutton, C. E., Núñez, G., et al. (2015) A small-molecule inhibitor of the NLRP3 inflammasome for the treatment of inflammatory diseases. Nat. Med. 21, 248 –255
-
(2015)
Nat. Med.
, vol.21
, pp. 248-255
-
-
Coll, R.C.1
Robertson, A.A.2
Chae, J.J.3
Higgins, S.C.4
Muñoz-Planillo, R.5
Inserra, M.C.6
Vetter, I.7
Dungan, L.S.8
Monks, B.G.9
Stutz, A.10
Croker, D.E.11
Butler, M.S.12
Haneklaus, M.13
Sutton, C.E.14
Núñez, G.15
-
35
-
-
0037930829
-
Glutathione s-transferase omega 1–1 is a target of cytokine release inhibitory drugs and may be responsible for their effect on interleukin-1 posttranslational processing
-
Laliberte, R. E., Perregaux, D. G., Hoth, L. R., Rosner, P. J., Jordan, C. K., Peese, K. M., Eggler, J. F., Dombroski, M. A., Geoghegan, K. F., and Gabel, C. A. (2003) Glutathione S-transferase omega 1–1 is a target of cytokine release inhibitory drugs and may be responsible for their effect on interleukin-1 posttranslational processing. J. Biol. Chem. 278, 16567–16578
-
(2003)
J. Biol. Chem.
, vol.278
, pp. 16567-16578
-
-
Laliberte, R.E.1
Perregaux, D.G.2
Hoth, L.R.3
Rosner, P.J.4
Jordan, C.K.5
Peese, K.M.6
Eggler, J.F.7
Dombroski, M.A.8
Geoghegan, K.F.9
Gabel, C.A.10
-
36
-
-
0028175838
-
Interleukin-1 maturation and release in response to atp and nigericin: Evidence that potassium depletion mediated by these agents is a necessary and common feature of their activity
-
Perregaux, D., and Gabel, C. A. (1994) Interleukin-1 maturation and release in response to ATP and nigericin: evidence that potassium depletion mediated by these agents is a necessary and common feature of their activity. J. Biol. Chem. 269, 15195–15203
-
(1994)
J. Biol. Chem.
, vol.269
, pp. 15195-15203
-
-
Perregaux, D.1
Gabel, C.A.2
-
37
-
-
28244480768
-
Inhibitory effects of chloride on the activation of caspase-1, il-1 secretion, and cytolysis by the p2x7 receptor
-
Verhoef, P. A., Kertesy, S. B., Lundberg, K., Kahlenberg, J. M., and Dubyak, G. R. (2005) Inhibitory effects of chloride on the activation of caspase-1, IL-1 secretion, and cytolysis by the P2X7 receptor. J. Immunol. 175, 7623–7634
-
(2005)
J. Immunol.
, vol.175
, pp. 7623-7634
-
-
Verhoef, P.A.1
Kertesy, S.B.2
Lundberg, K.3
Kahlenberg, J.M.4
Dubyak, G.R.5
-
38
-
-
84929145248
-
Macrophages monitor tissue osmolarity and induce inflammatory response through nlrp3 and nlrc4 inflammasome activation
-
Ip, W. K., and Medzhitov, R. (2015) Macrophages monitor tissue osmolarity and induce inflammatory response through NLRP3 and NLRC4 inflammasome activation. Nat. Commun. 6, 6931
-
(2015)
Nat. Commun.
, vol.6
, pp. 6931
-
-
Ip, W.K.1
Medzhitov, R.2
-
39
-
-
77952672060
-
Chloride intracellular channel 1 (clic1): Sensor and effector during oxidative stress
-
Averaimo, S., Milton, R. H., Duchen, M. R., and Mazzanti, M. (2010) Chloride intracellular channel 1 (CLIC1): sensor and effector during oxidative stress. FEBS Lett. 584, 2076 –2084
-
(2010)
FEBS Lett.
, vol.584
, pp. 2076-2084
-
-
Averaimo, S.1
Milton, R.H.2
Duchen, M.R.3
Mazzanti, M.4
-
40
-
-
84880499903
-
Asc speck formation as a readout for inflammasome activation
-
Stutz, A., Horvath, G. L., Monks, B. G., and Latz, E. (2013) ASC speck formation as a readout for inflammasome activation. Methods Mol. Biol. 1040, 91–101
-
(2013)
Methods Mol. Biol.
, vol.1040
, pp. 91-101
-
-
Stutz, A.1
Horvath, G.L.2
Monks, B.G.3
Latz, E.4
-
41
-
-
0036087412
-
Clic1 inserts from the aqueous phase into phospholipid membranes, where it functions as an anion channel
-
Tulk, B. M., Kapadia, S., and Edwards, J. C. (2002) CLIC1 inserts from the aqueous phase into phospholipid membranes, where it functions as an anion channel. Am. J. Physiol. Cell Physiol. 282, C1103–C1112
-
(2002)
Am. J. Physiol. Cell Physiol.
, vol.282
, pp. C1103-C1112
-
-
Tulk, B.M.1
Kapadia, S.2
Edwards, J.C.3
-
42
-
-
0037135574
-
Recombinant clic1 (ncc27) assembles in lipid bilayers via a ph-dependent two-state process to form chloride ion channels with identical characteristics to those observed in chinese hamster ovary cells expressing Clic1
-
Warton, K., Tonini, R., Fairlie, W. D., Matthews, J. M., Valenzuela, S. M., Qiu, M. R., Wu, W. M., Pankhurst, S., Bauskin, A. R., Harrop, S. J., Campbell, T. J., Curmi, P. M., Breit, S. N., and Mazzanti, M. (2002) Recombinant CLIC1 (NCC27) assembles in lipid bilayers via a pH-dependent two-state process to form chloride ion channels with identical characteristics to those observed in Chinese hamster ovary cells expressing CLIC1. J. Biol. Chem. 277, 26003–26011
-
(2002)
J. Biol. Chem.
, vol.277
, pp. 26003-26011
-
-
Warton, K.1
Tonini, R.2
Fairlie, W.D.3
Matthews, J.M.4
Valenzuela, S.M.5
Qiu, M.R.6
Wu, W.M.7
Pankhurst, S.8
Bauskin, A.R.9
Harrop, S.J.10
Campbell, T.J.11
Curmi, P.M.12
Breit, S.N.13
Mazzanti, M.14
-
43
-
-
84870508924
-
The calcium-sensing receptor regulates the nlrp3 inflammasome through ca2+ and camp
-
Lee, G. S., Subramanian, N., Kim, A. I., Aksentijevich, I., Goldbach-Mansky, R., Sacks, D. B., Germain, R. N., Kastner, D. L, and Chae, J. J. (2012) The calcium-sensing receptor regulates the NLRP3 inflammasome through Ca2+ and cAMP. Nature 492, 123–127
-
(2012)
Nature
, vol.492
, pp. 123-127
-
-
Lee, G.S.1
Subramanian, N.2
Kim, A.I.3
Aksentijevich, I.4
Goldbach-Mansky, R.5
Sacks, D.B.6
Germain, R.N.7
Kastner, D.L.8
Chae, J.J.9
-
44
-
-
0028066895
-
Tenidap modulates cytoplasmic ph and inhibits anion transport in vitro. Ii. Inhibition of il-1 production from atp-treated monocytes and macrophages
-
Laliberte, R., Perregaux, D., Svensson, L., Pazoles, C. J., and Gabel, C. A. (1994) Tenidap modulates cytoplasmic pH and inhibits anion transport in vitro. II. Inhibition of IL-1 production from ATP-treated monocytes and macrophages. J. Immunol. 153, 2168 –2179
-
(1994)
J. Immunol.
, vol.153
, pp. 2168-2179
-
-
Laliberte, R.1
Perregaux, D.2
Svensson, L.3
Pazoles, C.J.4
Gabel, C.A.5
-
45
-
-
74049131619
-
Hypertonic saline in patients with poor-grade subarachnoid hemorrhage improves cerebral blood flow, brain tissue oxygen, and pH
-
Al-Rawi, P. G., Tseng, M. Y., Richards, H. K., Nortje, J., Timofeev, I., Matta, B. F., Hutchinson, P. J., and Kirkpatrick, P. J. (2010) Hypertonic saline in patients with poor-grade subarachnoid hemorrhage improves cerebral blood flow, brain tissue oxygen, and pH. Stroke 41, 122–128
-
(2010)
Stroke
, vol.41
, pp. 122-128
-
-
Al-Rawi, P.G.1
Tseng, M.Y.2
Richards, H.K.3
Nortje, J.4
Timofeev, I.5
Matta, B.F.6
Hutchinson, P.J.7
Kirkpatrick, P.J.8
-
46
-
-
85014905623
-
Hypertonic saline attenuates expression of notch signaling and proinflammatory mediators in activated microglia in experimentally induced cerebral ischemia and hypoxic bv-2 microglia
-
Zeng, W. X., Han, Y. L., Zhu, G. F., Huang, L. Q., Deng, Y. Y., Wang, Q. S., Jiang, W. Q., Wen, M. Y., Han, Q. P., Xie, D., and Zeng, H. K. (2017) Hypertonic saline attenuates expression of Notch signaling and proinflammatory mediators in activated microglia in experimentally induced cerebral ischemia and hypoxic BV-2 microglia. BMC Neurosci. 18, 32
-
(2017)
BMC Neurosci
, vol.18
, pp. 32
-
-
Zeng, W.X.1
Han, Y.L.2
Zhu, G.F.3
Huang, L.Q.4
Deng, Y.Y.5
Wang, Q.S.6
Jiang, W.Q.7
Wen, M.Y.8
Han, Q.P.9
Xie, D.10
Zeng, H.K.11
-
47
-
-
84946481643
-
Hypertonic saline (nacl 7.5%) reduces lps-induced acute lung injury in rats
-
Petroni, R. C., Biselli, P. J., de Lima, T. M., Theobaldo, M. C., Caldini, E. T., Pimentel, R. N., Barbeiro, H. V., Kubo, S. A., Velasco, I. T., Soriano, F. G. (2015) Hypertonic saline (NaCl 7.5%) reduces LPS-induced acute lung injury in rats. Inflammation 38, 2026 –2035
-
(2015)
Inflammation
, vol.38
, pp. 2026-2035
-
-
Petroni, R.C.1
Biselli, P.J.2
De Lima, T.M.3
Theobaldo, M.C.4
Caldini, E.T.5
Pimentel, R.N.6
Barbeiro, H.V.7
Kubo, S.A.8
Velasco, I.T.9
Soriano, F.G.10
-
48
-
-
0032403593
-
Immunomodulatory effects of hypertonic resuscitation on the development of lung inflammation following hemorrhagic shock
-
Rizoli, S. B., Kapus, A., Fan, J., Li, Y. H., Marshall, J. C., and Rotstein, O. D. (1998) Immunomodulatory effects of hypertonic resuscitation on the development of lung inflammation following hemorrhagic shock. J. Immunol. 161, 6288 – 6296
-
(1998)
J. Immunol.
, vol.161
, pp. 6288-6296
-
-
Rizoli, S.B.1
Kapus, A.2
Fan, J.3
Li, Y.H.4
Marshall, J.C.5
Rotstein, O.D.6
-
49
-
-
84893717442
-
The cardio-protective effect of hypertonic saline is associated with inhibitory effect on macrophage migration inhibitory factor in sepsis
-
Wang, Y. L., Lam, K. K., Cheng, P. Y., Kung, C. W., Chen, S. Y., Chao, C. C., Hwang, H. R., Chung, M. T., and Lee, Y. M. (2013) The cardio-protective effect of hypertonic saline is associated with inhibitory effect on macrophage migration inhibitory factor in sepsis. Biomed. Res. Int. 2013, 201614
-
(2013)
Biomed. Res. Int.
, vol.2013
, pp. 201614
-
-
Wang, Y.L.1
Lam, K.K.2
Cheng, P.Y.3
Kung, C.W.4
Chen, S.Y.5
Chao, C.C.6
Hwang, H.R.7
Chung, M.T.8
Lee, Y.M.9
-
50
-
-
77954927270
-
S-nitrosy-lation regulates nuclear translocation of chloride intracellular channel protein Clic4
-
Malik, M., Shukla, A., Amin, P., Niedelman, W., Lee, J., Jividen, K., Phang, J. M., Ding, J., Suh, K. S., Curmi, P. M., and Yuspa, S. H. (2010) S-Nitrosy-lation regulates nuclear translocation of chloride intracellular channel protein CLIC4. J. Biol. Chem. 285, 23818 –23828
-
(2010)
J. Biol. Chem.
, vol.285
, pp. 23818-23828
-
-
Malik, M.1
Shukla, A.2
Amin, P.3
Niedelman, W.4
Lee, J.5
Jividen, K.6
Phang, J.M.7
Ding, J.8
Suh, K.S.9
Curmi, P.M.10
Yuspa, S.H.11
-
51
-
-
84873710963
-
Nitric oxide suppresses nlrp3 inflammasome activation and protects against lps-induced septic shock
-
Mao, K., Chen, S., Chen, M., Ma, Y., Wang, Y., Huang, B., He, Z., Zeng, Y., Hu, Y., Sun, S., Li, J., Wu, X., Wang, X., Strober, W., et al. (2013) Nitric oxide suppresses NLRP3 inflammasome activation and protects against LPS-induced septic shock. Cell Res, 23, 201–212
-
(2013)
Cell Res
, vol.23
, pp. 201-212
-
-
Mao, K.1
Chen, S.2
Chen, M.3
Ma, Y.4
Wang, Y.5
Huang, B.6
He, Z.7
Zeng, Y.8
Hu, Y.9
Sun, S.10
Li, J.11
Wu, X.12
Wang, X.13
Strober, W.14
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