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October 28, 2010Clinical Science53 citationsOpen Access

Dysfunction of human subcutaneous fat arterioles in obesity alone or obesity associated with Type 2 diabetes

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AGAdriana GeorgescuDPDoina PopovMNMiruna Nemecz

Key Result

Obesity alone or with Type 2 diabetes altered human subcutaneous fat arterioles, diminishing eNOS expression, NO production, and insulin-induced vasodilatation compared with lean subjects.

Study Design

Type

Observational

Structured PICO

Does obesity alone or with Type 2 diabetes alter the structure, vascular reactivity, and insulin signaling of human subcutaneous fat arterioles compared to lean subjects?

P
Population
Human subjects undergoing surgery, categorized as lean, obese, or obese with Type 2 diabetes, providing periumbilical subcutaneous adipose tissue explants.
E
Exposure
Obesity alone or obesity associated with Type 2 diabetes
C
Comparator
Lean subjects
O
Outcome
Structure, vascular reactivity, response to insulin, and expression of insulin signaling proteins (eNOS, IRS-1, IRS-2, PI3K, Akt) in isolated human subcutaneous fat arteriolessurrogate

Obesity, especially when combined with Type 2 diabetes, impairs vascular reactivity and insulin signaling in human subcutaneous arterioles, highlighting microvascular dysfunction in metabolic disease.

Abstract

The aim of the present study was to examine the effects of obesity alone and obesity associated with Type 2 diabetes on the structure, vascular reactivity and response to insulin of isolated human subcutaneous fat arterioles; these effects were correlated with the expression of insulin signalling proteins. Periumbilical subcutaneous adipose tissue was explanted during surgery, small arterioles (internal diameter 220 ± 40 μm) were dissected out and investigated by electron microscopy, myography and immunoblotting. Compared with the subcutaneous arterioles of lean subjects, obesity activated the endothelium, enhanced the accumulation of collagen within vascular wall and increased the sensitivity of adrenergic response; obesity also diminished eNOS (endothelial NO synthase) protein expression, NO production, and endothelium-dependent and insulin-induced vasodilatation, as well as the protein expression of both IRS (insulin receptor substrates)-1 and IRS-2 and of the downstream molecules in the insulin signalling pathway, such as PI3K (phosphoinositide 3-kinase), phospho-Akt and Akt. When obesity was associated with Type 2 diabetes, these changes were significantly augmented. In conclusion, obesity alone or obesity associated with Type 2 diabetes alters human periumbilical adipose tissue arterioles in terms of structure, function and biochemsitry, including diminished eNOS expression and reduced levels of IRS-1, IRS-2, PI3K and Akt in the insulin signalling pathway.

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Cite This Study

Georgescu et al. (2010) conducted an observational in Obesity and Type 2 diabetes. Obesity alone or obesity associated with Type 2 diabetes vs. Lean subjects was evaluated on Structure, vascular reactivity and response to insulin of isolated human subcutaneous fat arterioles. Obesity alone or with Type 2 diabetes altered human subcutaneous fat arterioles, diminishing eNOS expression, NO production, and insulin-induced vasodilatation compared with lean subjects.

synapsesocial.com/papers/6a7dc345968fa26fcacb4fe6https://doi.org/10.1042/cs20100355
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