Scientific article
OA Policy
English

Deletion of endothelial arginase 1 does not improve vasomotor function in diabetic mice

Published inPhysiological Reports, vol. 6, no. 11, e13717
Publication date2018
Abstract

Endothelial arginase 1 was ablated to assess whether this prevents hyperglycemia-induced endothelial dysfunction by improving arginine availability for nitric oxide production. Endothelial Arg1-deficient mice (Arg1-KOTie2 ) were generated by crossing Arg1fl/fl (controls) with Tie2Cretg/- mice and analyzed by immunohistochemistry, measurements of hemodynamics, and wire myography. Ablation was confirmed by immunohistochemistry. Mean arterial blood pressure was similar in conscious male control and Arg1-KOTie2 mice. Depletion of circulating arginine by intravenous infusion of arginase 1 or inhibition of nitric oxide synthase activity with L-NG -nitro-arginine methyl ester increased mean arterial pressure similarly in control (9 ± 2 and 34 ± 2 mmHg, respectively) and Arg1-KOTie2 mice (11 ± 3 and 38 ± 4 mmHg, respectively). Vasomotor responses were studied in isolated saphenous arteries of 12- and 34-week-old Arg1-KOTie2 and control animals by wire myography. Diabetes was induced in 10-week-old control and Arg1-KOTie2 mice with streptozotocin, and vasomotor responses were studied 10 weeks later. Optimal arterial diameter, contractile responses to phenylephrine, and relaxing responses to acetylcholine and sodium nitroprusside were similar in normoglycemic control and Arg1-KOTie2 mice. The relaxing response to acetylcholine was dependent on the availability of extracellular l-arginine. In the diabetic mice, arterial relaxation responses to endothelium-dependent hyperpolarization and to exogenous nitric oxide were impaired. The data show that endothelial ablation of arginase 1 in mice does not markedly modify smooth muscle and endothelial functions of a resistance artery under normo- and hyperglycemic conditions.

Citation (ISO format)
CHENNUPATI, Ramesh et al. Deletion of endothelial arginase 1 does not improve vasomotor function in diabetic mice. In: Physiological Reports, 2018, vol. 6, n° 11, p. e13717. doi: 10.14814/phy2.13717
Main files (1)
Article (Published version)
Identifiers
Journal ISSN2051-817X
415views
243downloads

Technical informations

Creation03/08/2018 17:33:00
First validation03/08/2018 17:33:00
Update02/04/2025 07:05:08
Status update02/04/2025 07:05:08
Last indexation02/04/2025 07:11:51
All rights reserved by Archive ouverte UNIGE and the University of GenevaunigeBlack