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缓激肽和[去-精氨酸9]缓激肽代谢途径中的种间血清差异:依那普利拉的影响

Serum interspecies differences in metabolic pathways of bradykinin and [des-Arg9]BK: influence of enalaprilat.

作者信息

Décarie A, Raymond P, Gervais N, Couture R, Adam A

机构信息

Département de Physiologie, Faculté de Médecine, Faculté de Pharmacie, Université de Montréal, Québec, Canada.

出版信息

Am J Physiol. 1996 Oct;271(4 Pt 2):H1340-7. doi: 10.1152/ajpheart.1996.271.4.H1340.

Abstract

Among the different enzymes responsible for the metabolism of bradykinin (BK), three peptidases look relevant in vivo: kininase I (KI), which transforms BK into its active metabolite, [des-Arg9]BK; kininase II (KII); and neutral endopeptidase, which inactivate BK and [des-Arg9]BK. The in vitro incubation of BK and [des-Arg9]BK in the serum of four species with or without enalaprilat and the quantification of the immunoreactivity of both peptides at different time intervals allowed the measurement of the kinetic parameters characterizing their metabolic pathways. Highly sensitive chemiluminescent enzyme immunoassays were used to measure the residual concentrations of BK and [des-Arg9]BK. Half-life (t1/2) of BK showed significant difference among species: rats (10 +/- 1 s) = dogs (13 +/- 1 s) < rabbits (31 +/- 1 s) < humans (49 +/- 2 s). t1/2 values of [des-Arg9]BK were also species dependent: rats (96 +/- 6 s) < < rabbits (314 +/- 6 s) = dogs (323 +/- 11 s) = humans (325 +/- 12 s). Enalaprilat significantly prevented the rapid BK and [des-Arg9]BK degradation in all species except that of [des-Arg9]BK in rat serum. Relative amount of BK hydrolyzed by serum KII was given as follows: rabbits (93.7 +/- 14.8%) = rats (83.6 +/- 6.7%) = humans (76.0 +/- 7.5%) > dogs (50.0 +/- 3.9%). Its importance in the hydrolysis of [des-Arg9]BK was 5.2 +/- 0.5% in rats < < 33.9 +/- 1.5% in humans < 52.0 +/- 1.1% in rabbits < 65.1 +/- 3.4% in dogs. The participation of serum KI in the transformation of BK into [des-Arg9]BK was dogs (67.2 +/- 5.3%) > > humans (3.4 +/- 1.2%) = rabbits (1.8 +/- 0.2%) = rats (1.4 +/- 0.3%). Finally, no significant difference on t1/2 values for BK and [des-Arg9]BK could be demonstrated between serum and plasma treated with either sodium citrate or a thrombin inhibitor. These results revealed striking species differences in the serum metabolism of kinins that could address at least partially some of the controversial data related to the cardioprotective role of kinins.

摘要

在负责缓激肽(BK)代谢的不同酶中,有三种肽酶在体内似乎具有相关性:激肽酶I(KI),它将BK转化为其活性代谢产物[去-精氨酸9]BK;激肽酶II(KII);以及中性内肽酶,它使BK和[去-精氨酸9]BK失活。在有或没有依那普利拉的情况下,将BK和[去-精氨酸9]BK在四种物种的血清中进行体外孵育,并在不同时间间隔对两种肽的免疫反应性进行定量,从而可以测量表征其代谢途径的动力学参数。使用高灵敏度化学发光酶免疫分析法来测量BK和[去-精氨酸9]BK的残留浓度。BK的半衰期(t1/2)在不同物种间存在显著差异:大鼠(10±1秒)=狗(13±1秒)<兔子(31±1秒)<人类(49±2秒)。[去-精氨酸9]BK的t1/2值也因物种而异:大鼠(96±6秒)<<兔子(314±6秒)=狗(323±11秒)=人类(325±12秒)。依那普利拉显著抑制了除大鼠血清中[去-精氨酸9]BK之外的所有物种中BK和[去-精氨酸9]BK的快速降解。血清KII水解BK的相对量如下:兔子(93.7±14.8%)=大鼠(83.6±6.7%)=人类(76.0±7.5%)>狗(50.0±3.9%)。其在[去-精氨酸9]BK水解中的重要性在大鼠中为5.2±0.5%<<人类中为33.9±1.5%<兔子中为52.0±1.1%<狗中为65.1±3.4%。血清KI在将BK转化为[去-精氨酸9]BK中的参与度为:狗(67.2±5.3%)>>人类(3.4±1.2%)=兔子(1.8±0.2%)=大鼠(1.4±0.3%)。最后,在用柠檬酸钠或凝血酶抑制剂处理的血清和血浆之间,未发现BK和[去-精氨酸9]BK的t1/值有显著差异。这些结果揭示了激肽血清代谢中显著的物种差异,这至少可以部分解释一些与激肽心脏保护作用相关的有争议的数据。

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