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首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Inhibition of human and rabbit arterial smooth muscle cell migration mediated by the kinin B1 receptor: role of receptor density and released mediators.
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Inhibition of human and rabbit arterial smooth muscle cell migration mediated by the kinin B1 receptor: role of receptor density and released mediators.

机译:激肽B1受体介导的人和兔动脉平滑肌细胞迁移的抑制:受体密度和释放的介质的作用。

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摘要

Bradykinin (BK)-related peptides are suspected to negatively influence diverse functions in vascular smooth muscle cells (SMCs), notably via stimulation of the inducible B1 receptor (B1R), and have been shown to inhibit the migration of rat SMCs. The present study had several objectives: (i) to test whether B1R mediates the inhibition of migration of arterial SMCs from additional species (the human and the rabbit); (ii) whether B1R density influences this action and whether autocrine NO or prostanoid release modulate it; and (iii) the possible signaling interaction between the B1R and phosphatidylinositol-3 kinase (PI-3K) has been addressed. The peptidase resistant B1R agonist Sar-[D-Phe8]des-Arg9-BK (10 nmol/L - 1 mumol/L) was an inhibitor of migration in human or rabbit arterial SMCs in a wound closure assay, more effectively if the medium composition allowed a high B1R expression (20% fetal bovine serum (FBS) + interleukin-1beta (IL-1beta) in human SMCs, 10% FBS in rabbit cells). The effect of the B1R agonist on motility was abrogated by a B1R antagonist, B-9858, but not by the B2R antagonist Hoe 140; a peptidase-resistant B2R agonist, [Phe8Psi(CH2-NH)-Arg9]BK, had a marginal or no effect on migration. Sar-[D-Phe8]des-Arg9-BK (1 mumol/L) did not significantly influence SMC proliferation. The B1R-mediated inhibition of SMC migration was not affected by pharmacological inhibition of the nitric oxide synthases or cyclooxygenases-1 or -2, but was correlated to an inhibition of PI-3K in both types of SMCs. The inhibition of SMC migration mediated by the kinin B1R is likely independent from NO or prostanoid release, applicable to several species, and correlated to receptor density and the inhibition of PI-3K.
机译:缓激肽(BK)相关肽被怀疑会对血管平滑肌细胞(SMCs)的多种功能产生负面影响,特别是通过刺激诱导型B1受体(B1R),并已显示出抑制大鼠SMCs迁移的作用。本研究具有以下目标:(i)测试B1R是否介导抑制其他物种(人和兔子)对动脉SMC迁移的抑制; (ii)B1R密度是否影响该作用以及自分泌NO或前列腺素释放是否对其进行调节; (iii)解决了B1R和磷脂酰肌醇3激酶(PI-3K)之间可能的信号相互作用。抗肽酶的B1R激动剂Sar- [D-Phe8] des-Arg9-BK(10 nmol / L-1 mumol / L)在伤口闭合试验中是人或兔动脉SMC迁移的抑制剂,如果使用培养基,则更有效该组合物可实现高B1R表达(人SMC中20%的胎牛血清(FBS)+白介素-1β(IL-1beta),兔细胞中的10%FBS)。 B1R拮抗剂B-9858废除了B1R激动剂对运动的影响,但B2R拮抗剂Hoe 140则没有。抗肽酶的B2R激动剂[Phe8Psi(CH2-NH)-Arg9] BK对迁移的影响很小或没有影响。 Sar- [D-Phe8] des-Arg9-BK(1μmol/ L)没有明显影响SMC增殖。 B1R介导的SMC迁移抑制不受一氧化氮合酶或环氧合酶-1或-2的药理学抑制作用的影响,但与两种类型SMC中PI-3K的抑制作用有关。激肽B1R介导的SMC迁移抑制可能独立于NO或前列腺素释放,适用于多种物种,并且与受体密度和PI-3K抑制相关。

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