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This version published online on October 29, 2009
Endocrinology, doi:10.1210/en.2009-0546
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Submitted on May 13, 2009
Accepted on September 29, 2009

Mechanisms of Amylin/Leptin Synergy in Rodent Models

Victoria F. Turek, James L. Trevaskis, Barry E. Levin, Ambrose A. Dunn-Meynell, Boman Irani, Guibao Gu, Carrie Wittmer, Peter S. Griffin, Calvin Vu, David G. Parkes, and Jonathan D. Roth*

Amylin Pharmaceuticals (V.F.T., J.L.T., G.G., C.W., P.S.G., C.V., D.G.P., J.D.R.), San Diego, California 92121; Neurology Service (B.E.L., A.A.D.-M., B.I.), Veterans Affairs Medical Center, East Orange, New Jersey 07018; and Department of Neurology and Neurosciences (B.E.L., A.A.D.-M., B.I.), New Jersey Medical School, Newark, New Jersey 07103

* To whom correspondence should be addressed. E-mail: jonathan.roth{at}amylin.com.

The present studies aimed to identify mechanisms contributing to amylin/leptin synergy in reducing body weight and adiposity. We reasoned that if amylin/leptin harnessed complementary neuronal pathways, then in the leptin-sensitive state, amylin should augment leptin signaling/binding and that in the absence of endogenous amylin, leptin signaling should be diminished. Amylin (50 μg/kg, ip) amplified low-dose leptin-stimulated (15 μg/kg, ip) phosphorylated signal transducer and activator of transcription-3 signaling within the arcuate nucleus (ARC) in lean rats. Amylin (50 μg/kg · d) or leptin (125 μg/kg · d) infusion to lean rats decreased 28-d food intake (14 and 10%, respectively), body weight (amylin by 4.3%, leptin by 4.9%), and epididymal fat (amylin by 19%, leptin by 37%). Amylin/leptin co-infusion additively decreased food intake (by 26%) and reduced body weight (by 15%) and epididymal fat (by 78%; all P < 0.05 vs. all groups) in a greater than mathematically additive manner, consistent with synergy. Amylin increased leptin binding within the ventromedial hypothalamus (VMN) by 35% and dorsomedial hypothalamus by 47% (both P < 0.05 vs. vehicle). Amylin/leptin similarly increased leptin binding in the VMN by 40% and ARC by 70% (P < 0.05 vs. vehicle). In amylin-deficient mice, hypothalamic leptin receptor mRNA expression was reduced by 50%, leptin-stimulated phosphorylated signal transducer and activator of transcription-3 within ARC and VMN was reduced by 40%, and responsiveness to leptin's (1 mg/kg · d for 28 d) weight-reducing effects was attenuated (all P < 0.05 vs. wild-type controls). We suggest that amylin/leptin's marked weight- and fat-reducing effects are due to activation of intrinsic synergistic neuronal signaling pathways and further point to the integrated neurohormonal therapeutic potential of amylin/leptin agonism in obesity.







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