Tissue-specific activation of insulin signaling as a potential target for obesity-related metabolic disorders
Тканеспецифическая активация инсулиновой сигнализации как потенциальная мишень при метаболических нарушениях, связанных с ожирением
2024-08-05
SCID: 54.1/mm44e32n
Discuss with AI
adipose tissue insulin sensitivityhealthy adipose tissue expansionhepatic insulin signalingobesity-related insulin resistancetissue-specific insulin signaling
Figures from the paper
Abstract (AI)
The incidence of obesity is rapidly increasing worldwide. Obesity-associated insulin resistance has long been established as a significant risk factor for obesity-related disorders such as type 2 diabetes and atherosclerosis. Insulin plays a key role in systemic glucose metabolism, with the liver, skeletal muscle, and adipose tissue as the major acting tissues. Insulin receptors and the downstream insulin signaling-related molecules are expressed in various tissues, including vascular endothelial cells, vascular smooth muscle cells, and monocytes/macrophages. In obesity, decreased insulin action is considered a driver for associated disorders. However, whether insulin action has a positive or negative effect on obesity-related disorders depends on the tissue in which it acts. While an enhancement of insulin signaling in the liver increases hepatic fat accumulation and exacerbates dyslipidemia, enhancement of insulin signaling in adipose tissue protects against obesity-related dysfunction of various organs by increasing the capacity for fat accumulation in the adipose tissue and inhibiting ectopic fat accumulation. Thus, this "healthy adipose tissue expansion" by enhancing insulin sensitivity in adipose tissue, but not in the liver, may be an effective therapeutic strategy for obesity-related disorders. To effectively address obesity-related metabolic disorders, the mechanisms of insulin resistance in various tissues of obese patients must be understood and drugs that enhance insulin action must be developed. In this article, we review the potential of interventions that enhance insulin signaling as a therapeutic strategy for obesity-related disorders, focusing on the molecular mechanisms of insulin action in each tissue.
Key Findings
1
Enhancing insulin signaling in adipose tissue increases adipose fat storage capacity and prevents ectopic fat accumulation, protecting organs from obesity-related dysfunction.
2
Enhancing insulin signaling in the liver increases hepatic fat accumulation and worsens dyslipidemia.
3
Insulin action has tissue-specific effects on obesity-related disorders: beneficial in adipose tissue but harmful in the liver.
4
Therapeutic strategies should target tissue-specific enhancement of insulin sensitivity, promoting adipose-specific insulin action while avoiding liver insulin hyperactivation.
5
Understanding mechanisms of insulin resistance across tissues and developing drugs that enhance insulin action in a tissue-selective manner are necessary to treat obesity-related metabolic disorders.
Research Object
Tissue-specific insulin signaling in metabolic tissues (liver, skeletal muscle, adipose tissue, vascular endothelial and smooth muscle cells, and monocytes/macrophages)
Research Subject
Effects and therapeutic potential of enhancing or modulating insulin signaling in specific tissues on obesity-related metabolic disorders (e.g., hepatic steatosis, dyslipidemia, ectopic fat accumulation, systemic insulin resistance)
Publication Details
Publication Date
2024-08-05
Journal
Publisher
ISSN
Cited by
20
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest