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Published on: May 3, 2021
Mitochondrial uncoupling as a target in the treatment of obesity
Sheila Costford1, Adrienne Gowing, Mary-Ellen Harper
1Department of Biochemistry Microbiology and Immunology, Faculty of Medicine, University of Ottawa, 451 Smyth Road, Ottawa, Ontario, Canada K1H 8M5.
Purpose Of Review:
Obesity is associated with many health problems and its prevalence is rapidly increasing worldwide. Very few pharmaceutical compounds are available for obesity treatment. Strategies for the development of compounds can be targeted to the outcomes of reduced dietary energy intake and/or increased energy expenditure/thermogenesis. In this review, we focus on recent discoveries that advance our understanding of mitochondrial uncoupling as a target for the treatment of obesity. There are various mechanisms whereby uncoupling can occur and for the purpose of this review, we elaborate upon the uncoupling that can occur (1) through the original uncoupling protein, UCP1, in brown adipocytes, or in 'converted' white adipose tissue, and (2) in skeletal muscle.
Recent Findings:
Studies have identified a number of novel receptors and regulatory proteins involved in the emergence of brown adipocytes in white adipose tissue. Molecular and pharmacologic approaches in knockout and transgenic mice have demonstrated their relevance to obesity treatment. Recent research into uncoupling mechanisms in skeletal muscle indicates that uncoupling can occur through basal and inducible processes.
Summary:
Uncoupling is a naturally occurring phenomenon whose underlying mechanisms require substantial further study for the development of antiobesity therapies.
Insights
Mitochondrial uncoupling, involving UCP1 in brown fat and skeletal muscle, shows promise for obesity treatment. Further research into these natural mechanisms is crucial for developing new anti-obesity therapies.
Area of Science:
- Biochemistry
- Metabolism
- Obesity Research
Background:
- Obesity is a global health concern with limited pharmaceutical treatments.
- Strategies focus on reducing energy intake or increasing energy expenditure.
- Mitochondrial uncoupling is an emerging therapeutic target for obesity.
Purpose of the Study:
- To review recent discoveries in mitochondrial uncoupling for obesity treatment.
- To explore uncoupling mechanisms in brown adipose tissue and skeletal muscle.
- To highlight novel targets for anti-obesity drug development.
Main Methods:
- Review of recent scientific literature on mitochondrial uncoupling.
- Analysis of studies on UCP1 in brown adipocytes and 'converted' white adipose tissue.
- Examination of uncoupling mechanisms in skeletal muscle.
Main Results:
- Novel receptors and regulatory proteins influencing brown adipocyte development identified.
- Molecular and pharmacologic studies in mice confirm relevance to obesity.
- Skeletal muscle uncoupling occurs via basal and inducible processes.
Conclusions:
- Mitochondrial uncoupling is a natural process with therapeutic potential for obesity.
- Further investigation of uncoupling mechanisms is essential for developing effective anti-obesity therapies.
- Targeting mitochondrial uncoupling offers a promising avenue for future obesity treatments.
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