11Feb 2023
Reactivity of renal and mesenteric resistance vessels to angiotensin II is mediated by NOXA1/NOX1 and superoxide signaling

Reactivity of renal and mesenteric resistance vessels to angiotensin II is mediated by NOXA1/NOX1 and superoxide signaling

The study focuses on the role of NOXA1/NOX1 in regulating vascular and renal function in mice and its potential contribution to the development of hypertension. The results show that the renal blood flow is less sensitive to Angiotensin II stimulation in mice lacking the NOXA1 gene, directly affecting resistance arterioles. This is supported by the presence of NOXA1/NOX1 protein in the renal vessels and its regulation by Angiotensin II. The response of the renal vessels to other stimuli, such as the thromboxane mimetic U46619, is not affected by the absence of NOXA1. On the other hand, the contraction of mesenteric arteries in response to phenylephrine and Angiotensin II is reduced, suggesting the involvement of nitric oxide-dependent mechanisms. The study also found that the NOX1/NOXA1/reactive oxygen species pathway plays a role in acute vasoconstriction induced by Angiotensin II in the renal and mesenteric vascular beds and may contribute to hypertension.

  • #nephrology

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