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June 1, 2002Arteriosclerosis Thrombosis and Vascular Biology73 citationsOpen Access

Respiratory Uncoupling Lowers Blood Pressure Through a Leptin-Dependent Mechanism in Genetically Obese Mice

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CBCarlos Bernal‐MizrachiSWSherry WengBLBing Li

Key Result

Skeletal muscle respiratory uncoupling reversed insulin resistance and lowered blood pressure in genetically obese mice without affecting thermoregulation.

Structured PICO

Does transgenic expression of uncoupling protein 1 (UCP1) in skeletal muscle reduce blood pressure and insulin resistance in genetically obese mice?

P
Population
Genetically obese lethal yellow (A(y)/a) mice
I
Intervention
Transgenic expression of uncoupling protein 1 (UCP1) in skeletal muscle (UCP-A(y)/a mice)
C
Comparator
Nontransgenic lethal yellow (A(y)/a) littermates
O
Outcome
Blood pressure and insulin resistancesurrogate

Skeletal muscle respiratory uncoupling reverses insulin resistance and lowers blood pressure in genetic obesity through a leptin-dependent mechanism.

Abstract

Insulin resistance is commonly associated with hypertension, a condition that causes vascular disease in people with obesity and type 2 diabetes. The mechanisms linking hypertension and insulin resistance are poorly understood. To determine whether respiratory uncoupling can prevent insulin resistance-related hypertension, we crossed transgenic mice expressing uncoupling protein 1 (UCP1) in skeletal muscle with lethal yellow (A(y)/a) mice, genetically obese animals known to have elevated blood pressure. Despite increased food intake, UCP-A(y)/a mice weighed less than their A(y)/a littermates. The metabolic rate was higher in UCP-A(y)/a mice than in A(y)/a mice and did not impair their ability to alter oxygen consumption in response to temperature changes, an adaptation involving sympathetic nervous system activity. Compared with their nontransgenic littermates, UCP-A(y)/a mice had lower fasting insulin, glucose, triglyceride, and cholesterol levels and were more insulin sensitive. Blood pressure, serum leptin, and urinary catecholamine levels were also lower in uncoupled mice. Independent of sympathetic nervous system activity, low-dose peripheral leptin infusion increased blood pressure in UCP-A(y)/a mice but not in their A(y)/a littermates. These data indicate that skeletal muscle respiratory uncoupling reverses insulin resistance and lowers blood pressure in genetic obesity without affecting thermoregulation. The data also suggest that uncoupling could decrease the risk of atherosclerosis in type 2 diabetes.

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Cite This Study

Bernal‐Mizrachi et al. (2002) studied Obesity and insulin resistance-related hypertension. Skeletal muscle respiratory uncoupling (UCP1 expression) vs. Nontransgenic A(y)/a littermates was evaluated on Blood pressure and insulin resistance. Skeletal muscle respiratory uncoupling reversed insulin resistance and lowered blood pressure in genetically obese mice without affecting thermoregulation.

synapsesocial.com/papers/6a169d20f3be5e880d6b4c60https://doi.org/10.1161/01.atv.0000019404.65403.71
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