4.5 Review

Role of Hypothalamic Reactive Astrocytes in Diet-Induced Obesity

期刊

MOLECULES AND CELLS
卷 45, 期 2, 页码 65-75

出版社

KOREAN SOC MOLECULAR & CELLULAR BIOLOGY
DOI: 10.14348/molcells.2022.2044

关键词

gliotransmitter; high-fat diet; hypothalamus; obesity; reactive astrocytes

资金

  1. Institute for Basic Science (IBS), Center for Cognition and Sociality [IBS-R001-D2]
  2. NRF of Korea [2017H1A2A1042357]

向作者/读者索取更多资源

Recent research has found that reactive astrocytes in the hypothalamus play a significant role in diet-induced obesity, as they release the major inhibitory transmitter GABA to directly influence nearby neurons involved in energy expenditure. These findings shed light on the interaction between reactive astrocytes and neighboring neurons, providing new potential therapeutic targets for obesity.
Hypothalamus is a brain region that controls food intake and energy expenditure while sensing signals that convey information about energy status. Within the hypothalamus, molecularly and functionally distinct neurons work in concert under physiological conditions. However, under pathological conditions such as in diet-induced obesity (DIO) model, these neurons show dysfunctional firing patterns and distorted regulation by neurotransmitters and neurohormones. Concurrently, resident glial cells including astrocytes dramatically transform into reactive states. In particular, it has been reported that reactive astrogliosis is observed in the hypothalamus, along with various neuroinflammatory signals. However, how the reactive astrocytes control and modulate DIO by influencing neighboring neurons is not well understood. Recently, new lines of evidence have emerged indicating that these reactive astrocytes directly contribute to the pathology of obesity by synthesizing and tonically releasing the major inhibitory transmitter GABA. The released GABA strongly inhibits the neighboring neurons that control energy expenditure. These surprising findings shed light on the interplay between reactive astrocytes and neighboring neurons in the hypothalamus. This review summarizes recent discoveries related to the functions of hypothalamic reactive astrocytes in obesity and raises new potential therapeutic targets against obesity.

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