Key result
Thermogenic fat biogenesis and activation offer promising potential to improve systemic energy expenditure and ameliorate obesity, though their function declines with age and obesity.
Why the study?
Obese and aged individuals cannot develop beige adipocytes in response to thermogenic fat-inducers, creating a clinical hurdle to their therapeutic promise.
Understanding the developmental and molecular mechanisms of thermogenic fat cells may provide new therapeutic strategies to combat obesity and improve metabolic health.
Thermogenic fat activation faces barriers in obesity and aging; leaves open targeted mechanistic studies before clinical translation.
The ability to generate thermogenic fat could be a targeted therapy to thwart obesity and improve metabolic health. Brown and beige adipocytes are two types of thermogenic fat cells that regulate energy balance. Both adipocytes share common morphological, biochemical, and thermogenic properties. Yet, recent evidence suggests unique features exist between brown and beige adipocytes, such as their cellular origin and thermogenic regulatory processes. Beige adipocytes also appear highly plastic, responding to environmental stimuli and interconverting between beige and white adipocyte states. Additionally, beige adipocytes appear to be metabolically heterogenic and have substrate specificity. Nevertheless, obese and aged individuals cannot develop beige adipocytes in response to thermogenic fat-inducers, creating a key clinical hurdle to their therapeutic promise. Thus, elucidating the underlying developmental, molecular, and functional mechanisms that govern thermogenic fat cells will improve our understanding of systemic energy regulation and strive for new targeted therapies to generate thermogenic fat. This review will examine the recent advances in thermogenic fat biogenesis, molecular regulation, and the potential mechanisms for their failure.
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Xue et al. (2023) conducted a review in Obesity and metabolic diseases. Thermogenic adipose tissue (brown and beige fat) was evaluated. Thermogenic fat biogenesis and activation offer promising potential to improve systemic energy expenditure and ameliorate obesity, though their function declines with age and obesity.
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