-
1
-
-
84905679771
-
The breadth of FGF21's metabolic actions are governed by FGFR1 in adipose tissue
-
A.C. Adams, C. Yang, T. Coskun, C.C. Cheng, R.E. Gimeno, Y. Luo, and A. Kharitonenkov The breadth of FGF21's metabolic actions are governed by FGFR1 in adipose tissue Mol Metab 2 2012 31 37
-
(2012)
Mol Metab
, vol.2
, pp. 31-37
-
-
Adams, A.C.1
Yang, C.2
Coskun, T.3
Cheng, C.C.4
Gimeno, R.E.5
Luo, Y.6
Kharitonenkov, A.7
-
2
-
-
0023767089
-
Effects of corticotropin-releasing factor on food intake and brown adipose tissue thermogenesis in rats
-
K. Arase, D.A. York, H. Shimizu, N. Shargill, and G.A. Bray Effects of corticotropin-releasing factor on food intake and brown adipose tissue thermogenesis in rats Am. J. Physiol. 255 1988 E255 E259
-
(1988)
Am. J. Physiol.
, vol.255
, pp. 255-E259
-
-
Arase, K.1
York, D.A.2
Shimizu, H.3
Shargill, N.4
Bray, G.A.5
-
3
-
-
41049094208
-
High-throughput real-time quantitative reverse transcription PCR
-
Chapter
-
A.L. Bookout, C.L. Cummins, D.J. Mangelsdorf, J.M. Pesola, and M.F. Kramer High-throughput real-time quantitative reverse transcription PCR Curr. Protoc. Mol. Biol. Chapter 15 2006 8
-
(2006)
Curr. Protoc. Mol. Biol.
, vol.15
, pp. 8
-
-
Bookout, A.L.1
Cummins, C.L.2
Mangelsdorf, D.J.3
Pesola, J.M.4
Kramer, M.F.5
-
4
-
-
84883778996
-
FGF21 regulates metabolism and circadian behavior by acting on the nervous system
-
A.L. Bookout, M.H. de Groot, B.M. Owen, S. Lee, L. Gautron, H.L. Lawrence, X. Ding, J.K. Elmquist, J.S. Takahashi, D.J. Mangelsdorf, and S.A. Kliewer FGF21 regulates metabolism and circadian behavior by acting on the nervous system Nat. Med. 19 2013 1147 1152
-
(2013)
Nat. Med.
, vol.19
, pp. 1147-1152
-
-
Bookout, A.L.1
De Groot, M.H.2
Owen, B.M.3
Lee, S.4
Gautron, L.5
Lawrence, H.L.6
Ding, X.7
Elmquist, J.K.8
Takahashi, J.S.9
Mangelsdorf, D.J.10
Kliewer, S.A.11
-
5
-
-
0347989317
-
Brown adipose tissue: Function and physiological significance
-
B. Cannon, and J. Nedergaard Brown adipose tissue: function and physiological significance Physiol. Rev. 84 2004 277 359
-
(2004)
Physiol. Rev.
, vol.84
, pp. 277-359
-
-
Cannon, B.1
Nedergaard, J.2
-
6
-
-
33747451335
-
Corticotropin releasing factor increases in brown adipose tissue thermogenesis and heart rate through dorsomedial hypothalamus and medullary raphe pallidus
-
M. Cerri, and S.F. Morrison Corticotropin releasing factor increases in brown adipose tissue thermogenesis and heart rate through dorsomedial hypothalamus and medullary raphe pallidus Neuroscience 140 2006 711 721
-
(2006)
Neuroscience
, vol.140
, pp. 711-721
-
-
Cerri, M.1
Morrison, S.F.2
-
7
-
-
0035569847
-
Role of corticotrophin-releasing factor in effects of leptin on sympathetic nerve activity and arterial pressure
-
M.L. Correia, D.A. Morgan, J.L. Mitchell, W.I. Sivitz, A.L. Mark, and W.G. Haynes Role of corticotrophin-releasing factor in effects of leptin on sympathetic nerve activity and arterial pressure Hypertension 38 2001 384 388
-
(2001)
Hypertension
, vol.38
, pp. 384-388
-
-
Correia, M.L.1
Morgan, D.A.2
Mitchell, J.L.3
Sivitz, W.I.4
Mark, A.L.5
Haynes, W.G.6
-
8
-
-
57349098220
-
Fibroblast growth factor 21 corrects obesity in mice
-
T. Coskun, H.A. Bina, M.A. Schneider, J.D. Dunbar, C.C. Hu, Y. Chen, D.E. Moller, and A. Kharitonenkov Fibroblast growth factor 21 corrects obesity in mice Endocrinology 149 2008 6018 6027
-
(2008)
Endocrinology
, vol.149
, pp. 6018-6027
-
-
Coskun, T.1
Bina, H.A.2
Schneider, M.A.3
Dunbar, J.D.4
Hu, C.C.5
Chen, Y.6
Moller, D.E.7
Kharitonenkov, A.8
-
9
-
-
84865741904
-
βklotho is required for fibroblast growth factor 21 effects on growth and metabolism
-
X. Ding, J. Boney-Montoya, B.M. Owen, A.L. Bookout, K.C. Coate, D.J. Mangelsdorf, and S.A. Kliewer βKlotho is required for fibroblast growth factor 21 effects on growth and metabolism Cell Metab. 16 2012 387 393
-
(2012)
Cell Metab.
, vol.16
, pp. 387-393
-
-
Ding, X.1
Boney-Montoya, J.2
Owen, B.M.3
Bookout, A.L.4
Coate, K.C.5
Mangelsdorf, D.J.6
Kliewer, S.A.7
-
10
-
-
84893849860
-
Interplay between FGF21 and insulin action in the liver regulates metabolism
-
B. Emanuelli, S.G. Vienberg, G. Smyth, C. Cheng, K.I. Stanford, M. Arumugam, M.D. Michael, A.C. Adams, A. Kharitonenkov, and C.R. Kahn Interplay between FGF21 and insulin action in the liver regulates metabolism J. Clin. Invest. 124 2014 515 527
-
(2014)
J. Clin. Invest.
, vol.124
, pp. 515-527
-
-
Emanuelli, B.1
Vienberg, S.G.2
Smyth, G.3
Cheng, C.4
Stanford, K.I.5
Arumugam, M.6
Michael, M.D.7
Adams, A.C.8
Kharitonenkov, A.9
Kahn, C.R.10
-
11
-
-
84863012022
-
FGF21 regulates PGC-1α and browning of white adipose tissues in adaptive thermogenesis
-
F.M. Fisher, S. Kleiner, N. Douris, E.C. Fox, R.J. Mepani, F. Verdeguer, J. Wu, A. Kharitonenkov, J.S. Flier, E. Maratos-Flier, and B.M. Spiegelman FGF21 regulates PGC-1α and browning of white adipose tissues in adaptive thermogenesis Genes Dev. 26 2012 271 281
-
(2012)
Genes Dev.
, vol.26
, pp. 271-281
-
-
Fisher, F.M.1
Kleiner, S.2
Douris, N.3
Fox, E.C.4
Mepani, R.J.5
Verdeguer, F.6
Wu, J.7
Kharitonenkov, A.8
Flier, J.S.9
Maratos-Flier, E.10
Spiegelman, B.M.11
-
12
-
-
0030582447
-
Induction of uncoupling protein in brown adipose tissue. Synergy between norepinephrine and pioglitazone, an insulin-sensitizing agent
-
L.A. Foellmi-Adams, B.M. Wyse, D. Herron, J. Nedergaard, and R.F. Kletzien Induction of uncoupling protein in brown adipose tissue. Synergy between norepinephrine and pioglitazone, an insulin-sensitizing agent Biochem. Pharmacol. 52 1996 693 701
-
(1996)
Biochem. Pharmacol.
, vol.52
, pp. 693-701
-
-
Foellmi-Adams, L.A.1
Wyse, B.M.2
Herron, D.3
Nedergaard, J.4
Kletzien, R.F.5
-
13
-
-
77957376253
-
Research resource: Comprehensive expression atlas of the fibroblast growth factor system in adult mouse
-
K. Fon Tacer, A.L. Bookout, X. Ding, H. Kurosu, G.B. John, L. Wang, R. Goetz, M. Mohammadi, M. Kuro-o, D.J. Mangelsdorf, and S.A. Kliewer Research resource: Comprehensive expression atlas of the fibroblast growth factor system in adult mouse Mol. Endocrinol. 24 2010 2050 2064
-
(2010)
Mol. Endocrinol.
, vol.24
, pp. 2050-2064
-
-
Fon Tacer, K.1
Bookout, A.L.2
Ding, X.3
Kurosu, H.4
John, G.B.5
Wang, L.6
Goetz, R.7
Mohammadi, M.8
Kuro-O, M.9
Mangelsdorf, D.J.10
Kliewer, S.A.11
-
14
-
-
84883481988
-
The effects of LY2405319, an FGF21 analog, in obese human subjects with type 2 diabetes
-
G. Gaich, J.Y. Chien, H. Fu, L.C. Glass, M.A. Deeg, W.L. Holland, A. Kharitonenkov, T. Bumol, H.K. Schilske, and D.E. Moller The effects of LY2405319, an FGF21 analog, in obese human subjects with type 2 diabetes Cell Metab. 18 2013 333 340
-
(2013)
Cell Metab.
, vol.18
, pp. 333-340
-
-
Gaich, G.1
Chien, J.Y.2
Fu, H.3
Glass, L.C.4
Deeg, M.A.5
Holland, W.L.6
Kharitonenkov, A.7
Bumol, T.8
Schilske, H.K.9
Moller, D.E.10
-
15
-
-
79954701326
-
Ablation of the leptin receptor in the hypothalamic arcuate nucleus abrogates leptin-induced sympathetic activation
-
S.M. Harlan, D.A. Morgan, K. Agassandian, D.F. Guo, M.D. Cassell, C.D. Sigmund, A.L. Mark, and K. Rahmouni Ablation of the leptin receptor in the hypothalamic arcuate nucleus abrogates leptin-induced sympathetic activation Circ. Res. 108 2011 808 812
-
(2011)
Circ. Res.
, vol.108
, pp. 808-812
-
-
Harlan, S.M.1
Morgan, D.A.2
Agassandian, K.3
Guo, D.F.4
Cassell, M.D.5
Sigmund, C.D.6
Mark, A.L.7
Rahmouni, K.8
-
16
-
-
84877272187
-
An FGF21-adiponectin-ceramide axis controls energy expenditure and insulin action in mice
-
W.L. Holland, A.C. Adams, J.T. Brozinick, H.H. Bui, Y. Miyauchi, C.M. Kusminski, S.M. Bauer, M. Wade, E. Singhal, and C.C. Cheng An FGF21-adiponectin-ceramide axis controls energy expenditure and insulin action in mice Cell Metab. 17 2013 790 797
-
(2013)
Cell Metab.
, vol.17
, pp. 790-797
-
-
Holland, W.L.1
Adams, A.C.2
Brozinick, J.T.3
Bui, H.H.4
Miyauchi, Y.5
Kusminski, C.M.6
Bauer, S.M.7
Wade, M.8
Singhal, E.9
Cheng, C.C.10
-
17
-
-
77249099832
-
Hepatic FGF21 expression is induced at birth via PPARalpha in response to milk intake and contributes to thermogenic activation of neonatal brown fat
-
E. Hondares, M. Rosell, F.J. Gonzalez, M. Giralt, R. Iglesias, and F. Villarroya Hepatic FGF21 expression is induced at birth via PPARalpha in response to milk intake and contributes to thermogenic activation of neonatal brown fat Cell Metab. 11 2010 206 212
-
(2010)
Cell Metab.
, vol.11
, pp. 206-212
-
-
Hondares, E.1
Rosell, M.2
Gonzalez, F.J.3
Giralt, M.4
Iglesias, R.5
Villarroya, F.6
-
18
-
-
36148970418
-
The fasting polypeptide FGF21 can enter brain from blood
-
H. Hsuchou, W. Pan, and A.J. Kastin The fasting polypeptide FGF21 can enter brain from blood Peptides 28 2007 2382 2386
-
(2007)
Peptides
, vol.28
, pp. 2382-2386
-
-
Hsuchou, H.1
Pan, W.2
Kastin, A.J.3
-
19
-
-
45649085226
-
Inhibition of growth hormone signaling by the fasting-induced hormone FGF21
-
T. Inagaki, V.Y. Lin, R. Goetz, M. Mohammadi, D.J. Mangelsdorf, and S.A. Kliewer Inhibition of growth hormone signaling by the fasting-induced hormone FGF21 Cell Metab. 8 2008 77 83
-
(2008)
Cell Metab.
, vol.8
, pp. 77-83
-
-
Inagaki, T.1
Lin, V.Y.2
Goetz, R.3
Mohammadi, M.4
Mangelsdorf, D.J.5
Kliewer, S.A.6
-
20
-
-
77957359701
-
Vasopressin and the output of the hypothalamic biological clock
-
A. Kalsbeek, E. Fliers, M.A. Hofman, D.F. Swaab, and R.M. Buijs Vasopressin and the output of the hypothalamic biological clock J. Neuroendocrinol. 22 2010 362 372
-
(2010)
J. Neuroendocrinol.
, vol.22
, pp. 362-372
-
-
Kalsbeek, A.1
Fliers, E.2
Hofman, M.A.3
Swaab, D.F.4
Buijs, R.M.5
-
21
-
-
20444435873
-
FGF-21 as a novel metabolic regulator
-
A. Kharitonenkov, T.L. Shiyanova, A. Koester, A.M. Ford, R. Micanovic, E.J. Galbreath, G.E. Sandusky, L.J. Hammond, J.S. Moyers, and R.A. Owens FGF-21 as a novel metabolic regulator J. Clin. Invest. 115 2005 1627 1635
-
(2005)
J. Clin. Invest.
, vol.115
, pp. 1627-1635
-
-
Kharitonenkov, A.1
Shiyanova, T.L.2
Koester, A.3
Ford, A.M.4
Micanovic, R.5
Galbreath, E.J.6
Sandusky, G.E.7
Hammond, L.J.8
Moyers, J.S.9
Owens, R.A.10
-
22
-
-
33846418834
-
The metabolic state of diabetic monkeys is regulated by fibroblast growth factor-21
-
A. Kharitonenkov, V.J. Wroblewski, A. Koester, Y.F. Chen, C.K. Clutinger, X.T. Tigno, B.C. Hansen, A.B. Shanafelt, and G.J. Etgen The metabolic state of diabetic monkeys is regulated by fibroblast growth factor-21 Endocrinology 148 2007 774 781
-
(2007)
Endocrinology
, vol.148
, pp. 774-781
-
-
Kharitonenkov, A.1
Wroblewski, V.J.2
Koester, A.3
Chen, Y.F.4
Clutinger, C.K.5
Tigno, X.T.6
Hansen, B.C.7
Shanafelt, A.B.8
Etgen, G.J.9
-
23
-
-
42049120475
-
FGFR2-amplified gastric cancer cell lines require FGFR2 and Erbb3 signaling for growth and survival
-
K. Kunii, L. Davis, J. Gorenstein, H. Hatch, M. Yashiro, A. Di Bacco, C. Elbi, and B. Lutterbach FGFR2-amplified gastric cancer cell lines require FGFR2 and Erbb3 signaling for growth and survival Cancer Res. 68 2008 2340 2348
-
(2008)
Cancer Res.
, vol.68
, pp. 2340-2348
-
-
Kunii, K.1
Davis, L.2
Gorenstein, J.3
Hatch, H.4
Yashiro, M.5
Di Bacco, A.6
Elbi, C.7
Lutterbach, B.8
-
24
-
-
0023222119
-
Activation of brown fat thermogenesis in response to central injection of corticotropin releasing hormone in the rat
-
R.A. LeFeuvre, N.J. Rothwell, and M.J. Stock Activation of brown fat thermogenesis in response to central injection of corticotropin releasing hormone in the rat Neuropharmacology 26 1987 1217 1221
-
(1987)
Neuropharmacology
, vol.26
, pp. 1217-1221
-
-
Lefeuvre, R.A.1
Rothwell, N.J.2
Stock, M.J.3
-
25
-
-
84877260638
-
Adiponectin mediates the metabolic effects of FGF21 on glucose homeostasis and insulin sensitivity in mice
-
Z. Lin, H. Tian, K.S. Lam, S. Lin, R.C. Hoo, M. Konishi, N. Itoh, Y. Wang, S.R. Bornstein, A. Xu, and X. Li Adiponectin mediates the metabolic effects of FGF21 on glucose homeostasis and insulin sensitivity in mice Cell Metab. 17 2013 779 789
-
(2013)
Cell Metab.
, vol.17
, pp. 779-789
-
-
Lin, Z.1
Tian, H.2
Lam, K.S.3
Lin, S.4
Hoo, R.C.5
Konishi, M.6
Itoh, N.7
Wang, Y.8
Bornstein, S.R.9
Xu, A.10
Li, X.11
-
26
-
-
84868013714
-
Direct control of brown adipose tissue thermogenesis by central nervous system glucagon-like peptide-1 receptor signaling
-
S.H. Lockie, K.M. Heppner, N. Chaudhary, J.R. Chabenne, D.A. Morgan, C. Veyrat-Durebex, G. Ananthakrishnan, F. Rohner-Jeanrenaud, D.J. Drucker, and R. DiMarchi Direct control of brown adipose tissue thermogenesis by central nervous system glucagon-like peptide-1 receptor signaling Diabetes 61 2012 2753 2762
-
(2012)
Diabetes
, vol.61
, pp. 2753-2762
-
-
Lockie, S.H.1
Heppner, K.M.2
Chaudhary, N.3
Chabenne, J.R.4
Morgan, D.A.5
Veyrat-Durebex, C.6
Ananthakrishnan, G.7
Rohner-Jeanrenaud, F.8
Drucker, D.J.9
Dimarchi, R.10
-
27
-
-
0032531929
-
Crystal structure of an angiogenesis inhibitor bound to the FGF receptor tyrosine kinase domain
-
M. Mohammadi, S. Froum, J.M. Hamby, M.C. Schroeder, R.L. Panek, G.H. Lu, A.V. Eliseenkova, D. Green, J. Schlessinger, and S.R. Hubbard Crystal structure of an angiogenesis inhibitor bound to the FGF receptor tyrosine kinase domain EMBO J. 17 1998 5896 5904
-
(1998)
EMBO J.
, vol.17
, pp. 5896-5904
-
-
Mohammadi, M.1
Froum, S.2
Hamby, J.M.3
Schroeder, M.C.4
Panek, R.L.5
Lu, G.H.6
Eliseenkova, A.V.7
Green, D.8
Schlessinger, J.9
Hubbard, S.R.10
-
28
-
-
77955854156
-
Differential effects of insulin on sympathetic nerve activity in agouti obese mice
-
D.A. Morgan, and K. Rahmouni Differential effects of insulin on sympathetic nerve activity in agouti obese mice J. Hypertens. 28 2010 1913 1919
-
(2010)
J. Hypertens.
, vol.28
, pp. 1913-1919
-
-
Morgan, D.A.1
Rahmouni, K.2
-
29
-
-
84887447664
-
FGF19 action in the brain induces insulin-independent glucose lowering
-
G.J. Morton, M.E. Matsen, D.P. Bracy, T.H. Meek, H.T. Nguyen, D. Stefanovski, R.N. Bergman, D.H. Wasserman, and M.W. Schwartz FGF19 action in the brain induces insulin-independent glucose lowering J. Clin. Invest. 123 2013 4799 4808
-
(2013)
J. Clin. Invest.
, vol.123
, pp. 4799-4808
-
-
Morton, G.J.1
Matsen, M.E.2
Bracy, D.P.3
Meek, T.H.4
Nguyen, H.T.5
Stefanovski, D.6
Bergman, R.N.7
Wasserman, D.H.8
Schwartz, M.W.9
-
30
-
-
23044470775
-
PPARgamma in the control of brown adipocyte differentiation
-
J. Nedergaard, N. Petrovic, E.M. Lindgren, A. Jacobsson, and B. Cannon PPARgamma in the control of brown adipocyte differentiation Biochim. Biophys. Acta 1740 2005 293 304
-
(2005)
Biochim. Biophys. Acta
, vol.1740
, pp. 293-304
-
-
Nedergaard, J.1
Petrovic, N.2
Lindgren, E.M.3
Jacobsson, A.4
Cannon, B.5
-
31
-
-
84883763046
-
FGF21 contributes to neuroendocrine control of female reproduction
-
B.M. Owen, A.L. Bookout, X. Ding, V.Y. Lin, S.D. Atkin, L. Gautron, S.A. Kliewer, and D.J. Mangelsdorf FGF21 contributes to neuroendocrine control of female reproduction Nat. Med. 19 2013 1153 1156
-
(2013)
Nat. Med.
, vol.19
, pp. 1153-1156
-
-
Owen, B.M.1
Bookout, A.L.2
Ding, X.3
Lin, V.Y.4
Atkin, S.D.5
Gautron, L.6
Kliewer, S.A.7
Mangelsdorf, D.J.8
-
32
-
-
84857185764
-
Endocrine fibroblast growth factors 15/19 and 21: From feast to famine
-
M.J. Potthoff, S.A. Kliewer, and D.J. Mangelsdorf Endocrine fibroblast growth factors 15/19 and 21: from feast to famine Genes Dev. 26 2012 312 324
-
(2012)
Genes Dev.
, vol.26
, pp. 312-324
-
-
Potthoff, M.J.1
Kliewer, S.A.2
Mangelsdorf, D.J.3
-
33
-
-
0022597406
-
Stress-induced inhibition of reproductive functions: Role of endogenous corticotropin-releasing factor
-
C. Rivier, J. Rivier, and W. Vale Stress-induced inhibition of reproductive functions: role of endogenous corticotropin-releasing factor Science 231 1986 607 609
-
(1986)
Science
, vol.231
, pp. 607-609
-
-
Rivier, C.1
Rivier, J.2
Vale, W.3
-
34
-
-
77954277205
-
Fibroblast growth factor 21 action in the brain increases energy expenditure and insulin sensitivity in obese rats
-
D.A. Sarruf, J.P. Thaler, G.J. Morton, J. German, J.D. Fischer, K. Ogimoto, and M.W. Schwartz Fibroblast growth factor 21 action in the brain increases energy expenditure and insulin sensitivity in obese rats Diabetes 59 2010 1817 1824
-
(2010)
Diabetes
, vol.59
, pp. 1817-1824
-
-
Sarruf, D.A.1
Thaler, J.P.2
Morton, G.J.3
German, J.4
Fischer, J.D.5
Ogimoto, K.6
Schwartz, M.W.7
-
35
-
-
3843083938
-
Peroxisome proliferator-activated receptor gamma agonism increases the capacity for sympathetically mediated thermogenesis in lean and ob/ob mice
-
H. Sell, J.P. Berger, P. Samson, G. Castriota, J. Lalonde, Y. Deshaies, and D. Richard Peroxisome proliferator-activated receptor gamma agonism increases the capacity for sympathetically mediated thermogenesis in lean and ob/ob mice Endocrinology 145 2004 3925 3934
-
(2004)
Endocrinology
, vol.145
, pp. 3925-3934
-
-
Sell, H.1
Berger, J.P.2
Samson, P.3
Castriota, G.4
Lalonde, J.5
Deshaies, Y.6
Richard, D.7
-
36
-
-
80755168936
-
Fibroblast growth factor 21 (FGF21) in human cerebrospinal fluid: Relationship with plasma FGF21 and body adiposity
-
B.K. Tan, M. Hallschmid, R. Adya, W. Kern, H. Lehnert, and H.S. Randeva Fibroblast growth factor 21 (FGF21) in human cerebrospinal fluid: relationship with plasma FGF21 and body adiposity Diabetes 60 2011 2758 2762
-
(2011)
Diabetes
, vol.60
, pp. 2758-2762
-
-
Tan, B.K.1
Hallschmid, M.2
Adya, R.3
Kern, W.4
Lehnert, H.5
Randeva, H.S.6
-
37
-
-
0023372902
-
Ciglitazone is not itself thermogenic but increases the potential for thermogenesis in lean mice
-
P.L. Thurlby, S. Wilson, and J.R. Arch Ciglitazone is not itself thermogenic but increases the potential for thermogenesis in lean mice Biosci. Rep. 7 1987 573 577
-
(1987)
Biosci. Rep.
, vol.7
, pp. 573-577
-
-
Thurlby, P.L.1
Wilson, S.2
Arch, J.R.3
-
38
-
-
84863637593
-
FGF21 promotes metabolic homeostasis via white adipose and leptin in mice
-
M.M. Véniant, C. Hale, J. Helmering, M.M. Chen, S. Stanislaus, J. Busby, S. Vonderfecht, J. Xu, and D.J. Lloyd FGF21 promotes metabolic homeostasis via white adipose and leptin in mice PLoS ONE 7 2012 e40164
-
(2012)
PLoS ONE
, vol.7
, pp. 40164
-
-
Véniant, M.M.1
Hale, C.2
Helmering, J.3
Chen, M.M.4
Stanislaus, S.5
Busby, J.6
Vonderfecht, S.7
Xu, J.8
Lloyd, D.J.9
-
39
-
-
84865442538
-
Long-acting FGF21 has enhanced efficacy in diet-induced obese mice and in obese rhesus monkeys
-
M.M. Véniant, R. Komorowski, P. Chen, S. Stanislaus, K. Winters, T. Hager, L. Zhou, R. Wada, R. Hecht, and J. Xu Long-acting FGF21 has enhanced efficacy in diet-induced obese mice and in obese rhesus monkeys Endocrinology 153 2012 4192 4203
-
(2012)
Endocrinology
, vol.153
, pp. 4192-4203
-
-
Véniant, M.M.1
Komorowski, R.2
Chen, P.3
Stanislaus, S.4
Winters, K.5
Hager, T.6
Zhou, L.7
Wada, R.8
Hecht, R.9
Xu, J.10
-
40
-
-
84860850964
-
BMP8B increases brown adipose tissue thermogenesis through both central and peripheral actions
-
A.J. Whittle, S. Carobbio, L. Martins, M. Slawik, E. Hondares, M.J. Vázquez, D. Morgan, R.I. Csikasz, R. Gallego, and S. Rodriguez-Cuenca BMP8B increases brown adipose tissue thermogenesis through both central and peripheral actions Cell 149 2012 871 885
-
(2012)
Cell
, vol.149
, pp. 871-885
-
-
Whittle, A.J.1
Carobbio, S.2
Martins, L.3
Slawik, M.4
Hondares, E.5
Vázquez, M.J.6
Morgan, D.7
Csikasz, R.I.8
Gallego, R.9
Rodriguez-Cuenca, S.10
-
41
-
-
83655165300
-
Amelioration of type 2 diabetes by antibody-mediated activation of fibroblast growth factor receptor 1
-
A.L. Wu, G. Kolumam, S. Stawicki, Y. Chen, J. Li, J. Zavala-Solorio, K. Phamluong, B. Feng, L. Li, and S. Marsters Amelioration of type 2 diabetes by antibody-mediated activation of fibroblast growth factor receptor 1 Sci. Transl. Med. 3 2011 ra126
-
(2011)
Sci. Transl. Med.
, vol.3
, pp. 126
-
-
Wu, A.L.1
Kolumam, G.2
Stawicki, S.3
Chen, Y.4
Li, J.5
Zavala-Solorio, J.6
Phamluong, K.7
Feng, B.8
Li, L.9
Marsters, S.10
-
42
-
-
61649127208
-
Fibroblast growth factor 21 reverses hepatic steatosis, increases energy expenditure, and improves insulin sensitivity in diet-induced obese mice
-
J. Xu, D.J. Lloyd, C. Hale, S. Stanislaus, M. Chen, G. Sivits, S. Vonderfecht, R. Hecht, Y.S. Li, and R.A. Lindberg Fibroblast growth factor 21 reverses hepatic steatosis, increases energy expenditure, and improves insulin sensitivity in diet-induced obese mice Diabetes 58 2009 250 259
-
(2009)
Diabetes
, vol.58
, pp. 250-259
-
-
Xu, J.1
Lloyd, D.J.2
Hale, C.3
Stanislaus, S.4
Chen, M.5
Sivits, G.6
Vonderfecht, S.7
Hecht, R.8
Li, Y.S.9
Lindberg, R.A.10
-
43
-
-
70350455732
-
Acute glucose-lowering and insulin-sensitizing action of FGF21 in insulin-resistant mouse models - Association with liver and adipose tissue effects
-
J. Xu, S. Stanislaus, N. Chinookoswong, Y.Y. Lau, T. Hager, J. Patel, H. Ge, J. Weiszmann, S.C. Lu, and M. Graham Acute glucose-lowering and insulin-sensitizing action of FGF21 in insulin-resistant mouse models - association with liver and adipose tissue effects Am. J. Physiol. Endocrinol. Metab. 297 2009 E1105 E1114
-
(2009)
Am. J. Physiol. Endocrinol. Metab.
, vol.297
, pp. 1105-E1114
-
-
Xu, J.1
Stanislaus, S.2
Chinookoswong, N.3
Lau, Y.Y.4
Hager, T.5
Patel, J.6
Ge, H.7
Weiszmann, J.8
Lu, S.C.9
Graham, M.10
-
44
-
-
84860548049
-
Liver LXRα expression is crucial for whole body cholesterol homeostasis and reverse cholesterol transport in mice
-
Y. Zhang, S.R. Breevoort, J. Angdisen, M. Fu, D.R. Schmidt, S.R. Holmstrom, S.A. Kliewer, D.J. Mangelsdorf, and I.G. Schulman Liver LXRα expression is crucial for whole body cholesterol homeostasis and reverse cholesterol transport in mice J. Clin. Invest. 122 2012 1688 1699
-
(2012)
J. Clin. Invest.
, vol.122
, pp. 1688-1699
-
-
Zhang, Y.1
Breevoort, S.R.2
Angdisen, J.3
Fu, M.4
Schmidt, D.R.5
Holmstrom, S.R.6
Kliewer, S.A.7
Mangelsdorf, D.J.8
Schulman, I.G.9
|