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Stretch-induced contraction of rabbit isolated pulmonary artery and the involvement of endothelium-derived thromboxane A2

机译:牵张诱导的兔离体肺动脉收缩和内皮源性血栓烷A2的参与

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class="enumerated" style="list-style-type:decimal">The mechanism of stretch-induced contraction of the intrapulmonary artery of rabbit was studied with special regard to the endothelium-dependence and production of prostanoids.Isolated intrapulmonary artery of rabbits in ring form produced contraction when stretched slowly up to 180% of its initial muscle length (=100%) at a rate of 0.44 mm s−1, with a stimulus period of 5 min.The stretch-induced contraction was attenuated by the mechanical removal of the endothelium, inhibitors of cyclo-oxygenase such as aspirin and indomethacin, [1S-[1α,2α(Z),3α,4α]]-7-[3-[[2-[(phenylamino) carbonyl] hydrazino]methyl]-7-oxabicyclo[2.2.1]hept-2-yl]-5-heptenoic acid (SQ 29,548), which is a thromboxane A2/prostaglandin H2 receptor antagonist, or by ozagrel, an inhibitor of thromboxane A2 synthase.Biochemical assay indicated that the production of thromboxane B2, a stable metabolite of thromboxane A2, was increased 17 times in response to stretch only when the endothelium was intact. The production of thromboxane B2 was also inhibited by aspirin or ozagrel.The production of 6-keto prostaglandin F1α, a stable metabolite of prostacyclin, was also increased in response to stretch in the preparation with intact endothelium. However, ozagrel showed no apparent effect on the production of 6-keto prostaglandin F1α.These results suggest that a mechanical stimulus like stretch can act on endothelial cells of rabbit pulmonary artery to cause contraction by activation of arachidonic acid metabolism via the cyclo-oxygenase pathway and subsequent release of thromboxane A2 and/or an increase in the ratio of thromboxane A2/prostacyclin.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 研究了兔肺内动脉牵张引起的收缩机制,并特别考虑了内皮素的依赖性和类前列腺素的产生。 家兔离体成环状的肺内动脉缓慢拉伸直至产生收缩。初始肌肉长度的180%(= 100%)的速率为0.44 mm s -1 ,刺激周期为5 min。 拉伸引起的收缩为由于内皮的机械去除而减弱,环氧化酶的抑制剂,例如阿司匹林和消炎痛,[1S- [1α,2α(Z),3α,4α]]-7- [3-[[2-[(苯氨基)羰基]肼基]甲基] -7-氧杂双环[2.2.1]庚-2-基] -5-庚烯酸(SQ 29,548),它是一种血栓烷A2 /前列腺素H2受体拮抗剂,或由ozagrel(一种血栓烷的抑制剂)制成A2合酶。 生化分析表明仅在内皮完整的情况下,血栓素B2(血栓素A2的稳定代谢产物)的产量才响应拉伸而增加了17倍。阿司匹林或奥扎格雷也抑制了血栓烷B2的产生。 在完整的内皮制剂中,6-酮基前列腺素F1α(一种稳定的前列环素代谢产物)的产生也响应于拉伸而增加。但是,奥扎格雷对6-酮基前列腺素F1α的产生没有明显影响。 这些结果表明,机械拉伸等拉伸刺激作用于兔肺动脉内皮细胞,可通过花生四烯酸的活化引起收缩。通过环加氧酶途径进行代谢并随后释放血栓烷A2和/或增加血栓烷A2 /前列环素的比例。

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