Implications for the Identity of Endothelium-Derived Relaxing Factor Generated By Acetylcholine
نویسندگان
چکیده
We studied the mechanism of the vasodilator effect of H2O2 on cerebral arterioles and its effect on endothelium-dependent responses to acetylcholine. Topical application of H2O2 (0.1-1 fiM) on the brain surface of anesthetized cats equipped with cranial windows induced dosedependent arteriolar dilation, which was markedly inhibited by topical deferoxamine, showing that it was probably mediated by generation of hydroxyl radical. Higher concentrations of H2O2 (3 fiM) also induced dilation, which was unaffected by deferoxamine, indicating the participation of other mechanisms. After topical application of H2O2, endothelium-dependent responses to acetylcholine were eliminated or converted to vasoconstriction, and in bioassay experiments, acetylcholine-mediated endothelium-derived relaxing factor (EDRF) was absent Superoxide dismutase plus catalase restored the appearance of transferable EDRF after 1 ftM H2O2 but not after 3 fiM H2O2. Application of H2O2 in the assay window eliminated the responses to nitroprusside and nitric oxide but did not affect responses to adenosine, to EDRF from the donor window, or responses to S-nitroso-L-cysteine. The inhibiting effect of H2O2 on the response to nitroprusside was partially eliminated after topical application of Nacetyl-L-cysteine. The results show that H2O2 inhibits the vasodilator action of nitroprusside and nitric oxide probably because it oxidizes thiols in vascular smooth muscle and prevents the formation of a nitrosothiol. EDRF from acetylcholine and S-nitroso-L-cysteine still produce dilation in the presence of the blockade induced by H2O2. The findings suggest strongly that the EDRF from acetylcholine in cerebral vessels is a nitrosothiol like S-nitroso-L-cysteine. (Hypertension 1990;16:162-169)
منابع مشابه
Effect of Aqueous Garlic (Allium sativum L.) Extract on Acetylcholine and Isosorbide-Induced Relaxation of Isolated Aorta in Rat
The hypotensive effect of garlic has been well-documented in human subjects and animals. Since endothelial activity regulates vascular reactivity in physiological and pathophysiological conditions, the aim of the present study was to investigate the effect of garlic on endothelium-dependent and independent relaxation of rat aorta for elucidation of mechanism of the garlic anti-hypertensive effe...
متن کاملEndothelium-Derived Relaxing Factor From Acetylcholine
Background and Purpose: We investigated the chemical identity of the endothelium-derived relaxing factor generated by acetylcholine in cerebral microvessels by studying the effects and mechanism of action of inhibitors of nitric oxide synthesis from arginine on the vasodilation and endothelium-derived relaxing factor production induced by topical application of acetylcholine in cerebral arterio...
متن کاملEndothelium-derived relaxing factors. A perspective from in vivo data.
We review below published studies of endothelium-dependent vasodilation in vivo. Endothelium-dependent vasodilation has been demonstrated in conduit arteries in vivo and in the cerebral, coronary, mesenteric, and femoral vascular beds as well as in the microcirculation of the brain and the microcirculation of cremaster muscle. The available evidence, although not complete, strongly suggests tha...
متن کاملA Perspective From In Vivo Data
We review below published studies of endothelium-dependent vasodilation in vivo. Endothelium-dependent vasodilation has been demonstrated in conduit arteries in vivo and in the cerebral, coronary, mesenteric, and femoral vascular beds as well as in the microcirculation of the brain and the microcirculation of cremaster muscle. The available evidence, although not complete, strongly suggests tha...
متن کاملEndothelium-derived relaxing factor in brain blood vessels is not nitric oxide.
BACKGROUND The endothelium-derived relaxing factor that mediates the actions of acetylcholine is now most frequently identified as nitric oxide. Nitric oxide is believed to have numerous important regulating actions in neurons, blood vessels, and several other biological systems. SUMMARY OF REVIEW The literature concerning tissue other than cerebral blood vessels supports the conclusion that ...
متن کاملThe Possible Involvement of Nitric Oxide/Endothelium Derived Relaxing Factor in Atropine-Induced Vasorelaxation
Atropine has been used to block cholinergic neurotransmission in basic research. Large doses of atropine cause vasodilation of the blood vessels in the skin. This effect is apparently unconnected with the antimuscarinic activity of atropine and seems to be due to a direct action on the blood vessels. It has been suggested that atropine blocks muscarinic receptors at low doses and it induces th...
متن کامل