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首页> 外文期刊>American Journal of Physiology >Bradykinin and des-Arg(9)-bradykinin metabolic pathways and kinetics of activation of human plasma.
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Bradykinin and des-Arg(9)-bradykinin metabolic pathways and kinetics of activation of human plasma.

机译:缓激肽和des-Arg(9)-缓激肽的代谢途径和人类血浆激活的动力学。

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In the serum of 116 healthy individuals, exogenous bradykinin (BK) half-life (27 +/- 10 s) was lower than that of des-Arg(9)-BK (643 +/- 436 s) and was statistically different in men compared with women. The potentiating effect of an angiotensin-converting enzyme (ACE) inhibitor was, however, more extensive for BK (9.0-fold) than for des-Arg(9)-BK (2.2- fold). The activities of ACE, aminopeptidase P (APP), and kininase I were respectively 44 +/- 12, 22 +/- 9, and 62 +/- 10 nmol x min(-1) x ml(-1). A mathematical model (y = kt(alpha)e(-beta t), t > 0), applied to the BK kinetically released from endogenous high-molecular-weight kininogen (HK) during plasma activation in the presence of an ACE inhibitor, revealed a significant difference in the rate of formation of BK between men and women. For des-Arg(9)-BK, the active metabolite of BK, the rate of degradation was higher in women compared with men, correlating significantly with serum APP activity (r(2) = 0.6485, P < 0.001). In conclusion, these resultsconstitute a basis for future pathophysiological studies of inflammatory processes where activation of the contact system of plasma and the kinins is involved.
机译:在116名健康人的血清中,外源缓激肽(BK)的半衰期(27 +/- 10 s)低于des-Arg(9)-BK的半衰期(643 +/- 436 s),并且在统计学上有所不同男人和女人相比。但是,血管紧张素转换酶(ACE)抑制剂的增强作用对BK(9.0倍)比对des-Arg(9)-BK(2.2倍)更广泛。 ACE,氨肽酶P(APP)和激肽酶I的活性分别为44 +/- 12、22 +/- 9和62 +/- 10 nmol x min(-1)x ml(-1)。数学模型(y =ktαe(-βt),t> 0),应用于在存在ACE抑制剂的情况下血浆活化期间从内源性高分子激肽原(HK)动力学释放的BK,揭示了男女之间BK形成率的显着差异。对于BK的活性代谢产物des-Arg(9)-BK,女性的降解率高于男性,与血清APP活性显着相关(r(2)= 0.6485,P <0.001)。总之,这些结果构成了炎症过程未来病理生理研究的基础,其中涉及血浆和激肽接触系统的激活。

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