Key result
Chronic low-grade inflammation links excessive adipose tissue development to obesity-associated pathologies like type 2 diabetes and cardiovascular diseases through altered adipokine signaling.
This review highlights the emerging role of perivascular adipose tissue and its secreted adipokines in regulating microvascular function and contributing to vascular dysfunction in obesity and type 2 diabetes.
Perivascular adipokines may drive vascular dysfunction in obesity and diabetes; leaves open targeted interventions pending prospective trials.
In recent years, the general concept has emerged that chronic low-grade inflammation is the condition linking excessive development of adipose tissue and obesity-associated pathologies such as type 2 diabetes and cardiovascular diseases. Obesity and type 2 diabetes are characterized by a diminished production of protective factors such as adiponectin and increased detrimental adipocytokines such as leptin, resistin, interleukin-6 (IL-6), tumor necrosis factor-alpha (TNFα), and monocyte chemoattractant protein-1 (MCP-1) by adipose tissue. Moreover, the evidence that the growth of the fat mass is associated with an accumulation of adipose tissue macrophages and T-lymphocytes has raised the hypothesis that the development of an inflammatory process within the growing fat mass is a primary event involved in the genesis of systemic metabolic and vascular alterations. This crosstalk of adipocyte, macrophage, lymphocyte, endothelial cells, and vascular smooth muscle cells contribute to the production of various cytokines, chemokines, and hormone-like factors, which actively participate in the regulation of vascular function by an endocrine and/or paracrine pattern. Thus, the signaling from perivascular adipose to the blood vessels is emerging as a potential therapeutic target for obesity and diabetes-associated vascular dysfunction.
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Zhang et al. (2009) conducted a review in Obesity and Type 2 Diabetes. Adipose tissue-derived adipokines was evaluated. Chronic low-grade inflammation links excessive adipose tissue development to obesity-associated pathologies like type 2 diabetes and cardiovascular diseases through altered adipokine signaling.
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