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Hypoxia as a Double-Edged Sword to Combat Obesity and Comorbidities

期刊

CELLS
卷 11, 期 23, 页码 -

出版社

MDPI
DOI: 10.3390/cells11233735

关键词

adipose tissue; hypoxic; obesity; PO2; O-2

资金

  1. National Natural Science Foundation of China [31971097, 32271226]
  2. Shanghai Science and Technology Innovation Action Plan Social Development Science and Technology Reach Project [22dz1204600]
  3. National Key R&D Program of China [2020YFA0803800]
  4. Shanghai Municipal Science and Technology Committee of Shanghai outstanding academic leaders plan [21XD1403200]
  5. Construction Project of High-Level Local Universities in Shanghai, China

向作者/读者索取更多资源

The global epidemic of obesity is closely related to multiple comorbidities. Endogenous hypoxia may worsen dysfunction in adipose tissue, while moderate hypoxic exercise can help reduce weight and metabolic risks, potentially serving as an effective treatment for obesity.
The global epidemic of obesity is tightly associated with numerous comorbidities, such as type II diabetes, cardiovascular diseases and the metabolic syndrome. Among the key features of obesity, some studies have suggested the abnormal expansion of adipose-tissue-induced local endogenous hypoxic, while other studies indicated endogenous hyperoxia as the opposite trend. Endogenous hypoxic aggravates dysfunction in adipose tissue and stimulates secretion of inflammatory molecules, which contribute to obesity. In contrast, hypoxic exposure combined with training effectively generate exogenous hypoxic to reduce body weight and downregulate metabolic risks. The (patho)physiological effects in adipose tissue are distinct from those of endogenous hypoxic. We critically assess the latest advances on the molecular mediators of endogenous hypoxic that regulate the dysfunction in adipose tissue. Subsequently we propose potential therapeutic targets in adipose tissues and the small molecules that may reverse the detrimental effect of local endogenous hypoxic. More importantly, we discuss alterations of metabolic pathways in adipose tissue and the metabolic benefits brought by hypoxic exercise. In terms of therapeutic intervention, numerous approaches have been developed to treat obesity, nevertheless durability and safety remain the major concern. Thus, a combination of the therapies that suppress endogenous hypoxic with exercise plans that augment exogenous hypoxic may accelerate the development of more effective and durable medications to treat obesity and comorbidities.

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