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En Face Detection of Nitric Oxide and Superoxide in Endothelial Layer of Intact Arteries
Published on: February 25, 2016
Adaptative nitric oxide overproduction in perivascular adipose tissue during early diet-induced obesity
Marta Gil-Ortega1, Paula Stucchi, Rocío Guzmán-Ruiz
1Departamento de Ciencias Farmacéuticas y de la Alimentación, Facultad de Farmacia, Ceu-Universidad San Pablo, Madrid, Spain.
Insights
Perivascular adipose tissue (PVAT) increases nitric oxide (NO) production during early diet-induced obesity (DIO) to maintain blood vessel function. This adaptive NO overproduction in PVAT helps preserve vascular tone despite high-fat diet challenges.
Area of Science:
- Physiology
- Obesity Research
- Vascular Biology
Background:
- Perivascular adipose tissue (PVAT) regulates vascular tone through paracrine signaling.
- Diet-induced obesity (DIO) can impair vascular function.
- Adaptive mechanisms in PVAT may preserve vascular health during early DIO.
Purpose of the Study:
- To investigate adaptive changes in PVAT during the initial stages of DIO.
- To determine if PVAT contributes to preserving vascular function in DIO.
- To explore the role of nitric oxide (NO) in PVAT-mediated vascular regulation during DIO.
Main Methods:
- Mice were fed either a low-fat (LF) or high-fat (HF) diet for 8 weeks.
- Vascular function was assessed in perfused mesenteric beds (MB) and isolated mesenteric arteries.
- Nitric oxide (NO) bioavailability in PVAT was measured using DAF2-DA staining.
Main Results:
- HF diet improved relaxant responses in the whole MB but not in PVAT-denuded arteries.
- Enhanced vascular relaxation in HF mice was not linked to endothelial NO release or guanylyl cyclase activity.
- Mesenteric PVAT from HF mice exhibited increased NO bioavailability, correlating with leptin levels.
Conclusions:
- Adaptive NO overproduction occurs in PVAT during early DIO.
- This PVAT-derived NO may serve to preserve vascular function.
- Leptin signaling appears to influence NO production in PVAT.
Abstract:
Perivascular adipose tissue (PVAT) plays a paracrine role in regulating vascular tone. We hypothesize that PVAT undergoes adaptative mechanisms during initial steps of diet-induced obesity (DIO) which contribute to preserve vascular function. Four-week-old male C57BL/6J mice were assigned either to a control [low-fat (LF); 10% kcal from fat] or to a high-fat diet (HF; 45% kcal from fat). After 8 wk of dietary treatment vascular function was analyzed in the whole perfused mesenteric bed (MB) and in isolated mesenteric arteries cleaned of PVAT. Relaxant responses to acetylcholine (10(-9)-10(-4) m) and sodium nitroprusside (10(-12)-10(-5) m) were significantly ameliorated in the whole MB from HF animals. However, there was no difference between HF and LF groups in isolated mesenteric arteries devoid of PVAT. The enhancement of relaxant responses detected in HF mice was not attributable to an increased release of nitric oxide (NO) from the endothelium nor to an increased sensitivity and/or activity of muscular guanilylcyclase. Mesenteric PVAT of HF animals showed an increased bioavailability of NO, detected by 4,5-diaminofluorescein diacetate (DAF2-DA) staining, which positively correlated with plasma leptin levels. DAF-2DA staining was absent in PVAT from ob/ob mice but was detected in these animals after 4-wk leptin replacement. The main finding in this study is that adaptative NO overproduction occurs in PVAT during early DIO which might be aimed at preserving vascular function.
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