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The roles of adenosine and related substances in exercise hyperaemia

机译:腺苷及相关物质在运动性充血中的作用

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摘要

The role of adenosine in exercise hyperaemia has been controversial. Accumulating evidence now demonstrates that adenosine is released into the venous efflux of exercising muscle and that adenosine is responsible for 20–40% of the maintained phase of the muscle vasodilatation that accompanies submaximal and maximal contractions. This adenosine is mainly generated from AMP that is released from the skeletal muscle fibres and dephosphorylated by ecto 5′nucleotidase bound to the sarcolemma. During exercise, the concentration of ecto 5′nucleotidase may be increased by translocation from the cytosol, while release of AMP and affinity of ecto 5′nucleotidase for AMP are increased by acidosis. The adenosine so formed, acts on extraluminal A2A receptors on the vascular smooth muscle. In addition, ATP is released from red blood cells into the plasma during exercise, in association with the unloading of O2 from haemoglobin, while ATP and adenosine may be released from endothelium as a consequence of local hypoxia. It is unlikely that this intraluminal ATP, or adenosine, contributes significantly to exercise hyperaemia, for muscle vasodilatation induced by intraluminal ATP or adenosine is strongly nitric oxide dependent, while vasodilatation induced by adenosine in hypoxia is mediated by A1 receptors. Neither is a recognized feature of exercise hyperaemia.
机译:腺苷在运动性充血中的作用一直存在争议。现在越来越多的证据表明,腺苷被释放到运动肌肉的静脉外流中,腺苷在伴随最大和最大收缩的肌肉血管扩张维持阶段中占20-40%。该腺苷主要由从骨骼肌纤维释放的AMP产生,并被结合至肌膜的ecto 5'核苷酸酶去磷酸化。在运动过程中,胞外5'核苷酸酶的浓度可通过从细胞质中转移而增加,而AMP的释放和胞外5'核苷酸酶对AMP的亲和力可通过酸中毒而增加。如此形成的腺苷作用于血管平滑肌上的腔外A2A受体。另外,在运动过程中,ATP与血红蛋白中的O2释放有关,从红细胞释放到血浆中,而ATP和腺苷可能由于局部缺氧而从内皮中释放出来。这种管腔内ATP或腺苷不太可能显着促进运动性充血,因为管腔内ATP或腺苷引起的肌肉血管舒张作用强烈依赖于一氧化氮,而在低氧条件下腺苷引起的血管舒张作用则由A1受体介导。运动性充血的公认特征也不是。

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    Marshall, Janice M;

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  • 年度 2007
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  • 正文语种 en
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