Adipokines and the peripheral and neural control of energy balance

RS Ahima, MA Lazar - Molecular endocrinology, 2008 - academic.oup.com
Molecular endocrinology, 2008academic.oup.com
Adipokines are secreted by adipose tissue and control various physiological systems. Low
leptin levels during fasting stimulate feeding, reduce energy expenditure, and modulate
neuroendocrine and immune function to conserve energy stores. On the other hand, rising
leptin levels in the overfed state prevent weight gain by inhibiting food intake and increasing
energy expenditure. These actions are mediated by neuronal circuits in the hypothalamus
and brainstem. Leptin also controls glucose and lipid metabolism by targeting enzymes such …
Abstract
Adipokines are secreted by adipose tissue and control various physiological systems. Low leptin levels during fasting stimulate feeding, reduce energy expenditure, and modulate neuroendocrine and immune function to conserve energy stores. On the other hand, rising leptin levels in the overfed state prevent weight gain by inhibiting food intake and increasing energy expenditure. These actions are mediated by neuronal circuits in the hypothalamus and brainstem. Leptin also controls glucose and lipid metabolism by targeting enzymes such as AMP-activated protein kinase and stearoyl-coenzyme A desaturase-1 in liver and muscle. Likewise, adiponectin and resistin control energy balance and insulin sensitivity via central and peripheral targets. As highlighted in this review, there are distinct as well as common signaling pathways for adipokines. Understanding adipokine signaling in the brain and other organs will provide insights into the pathogenesis and treatment of obesity, diabetes and various metabolic disorders.
Oxford University Press