GEOFFREY HARRIS PRIZE LECTURE 2018: Novel pathways regulating neuroendocrine function, energy homeostasis and metabolism in humans
Лекционная премия Джеффри Харриса 2018: Новые пути регуляции нейроэндокринной функции, гомеостаза энергии и метаболизма у людей
2018-11-21
SCID: 54.1/sb9scqt6
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adipose tissue endocrine functionenergy homeostasisleptinneuroendocrine regulationreward and neurobehavioral systems in eating behavior
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Abstract (AI)
The discovery of leptin, an adipocyte-secreted hormone, set the stage for unraveling the mechanisms dictating energy homeostasis, revealing adipose tissue as an endocrine system that regulates appetite and body weight. Fluctuating leptin levels provide molecular signals to the brain regarding available energy reserves modulating energy homeostasis and neuroendocrine response in states of leptin deficiency and to a lesser extent in hyperleptinemic states. While leptin replacement therapy fails to provide substantial benefit in common obesity, it is an effective treatment for congenital leptin deficiency and states of acquired leptin deficiency such as lipodystrophy. Current evidence suggests that regulation of eating behavior in humans is not limited to homeostatic mechanisms and that the reward, attention, memory and emotion systems are involved, participating in a complex central nervous system network. It is critical to study these systems for the treatment of typical obesity. Although progress has been made, further studies are required to unravel the physiology, pathophysiology and neurobehavioral mechanisms underlying potential treatments for weight-related problems in humans.
Key Findings
1
Fluctuating leptin levels modulate energy homeostasis and neuroendocrine function notably in leptin deficiency and to a lesser extent in hyperleptinemic states.
2
Further studies are needed to elucidate physiology, pathophysiology, and neurobehavioral mechanisms to develop effective weight-related treatments in humans.
3
Human eating behavior regulation involves non-homeostatic systems—reward, attention, memory, and emotion—forming a complex CNS network relevant to obesity treatment.
4
Leptin replacement therapy is ineffective for common obesity but is an effective treatment for congenital leptin deficiency and acquired leptin deficiency such as lipodystrophy.
5
Leptin, secreted by adipose tissue, signals available energy reserves to the brain and regulates appetite, body weight, and neuroendocrine responses.
Research Object
Leptin signaling and related neuroendocrine systems regulating energy homeostasis in humans
Research Subject
Mechanisms and pathways by which leptin and central nervous system networks (homeostatic, reward, attention, memory, emotion systems) regulate appetite, body weight, neuroendocrine responses and metabolism, including effects in leptin deficiency and obesity
Publication Details
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2018-11-21
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