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补体系统在豚鼠抗原诱导的支气管收缩及血压变化中的作用。

Role of the complement system in antigen-induced bronchoconstriction and changes in blood pressure in the guinea pig.

作者信息

Regal J F, Fraser D G, Toth C A

机构信息

Department of Pharmacology, University of Minnesota, Duluth.

出版信息

J Pharmacol Exp Ther. 1993 Nov;267(2):979-88.

PMID:8246173
Abstract

Systemic anaphylaxis involves life-threatening bronchoconstriction and a serious hypotensive response often complicated by cardiac arrhythmias. The purpose of the present study was to determine whether complement system activation is essential to the bronchoconstriction and the changes in blood pressure seen in guinea pig models of anaphylaxis. The soluble complement receptor 1 (sCR1; BRL 55730) was used to inhibit activation of the classical and alternative pathways of complement in the guinea pig, and to determine whether this inhibition prevents bronchoconstriction and changes in blood pressure induced by i.v. antigen injection in guinea pigs that are either passively or actively sensitized to the antigen ovalbumin. sCR1 at 15 mg/kg did not affect significantly either the antigen-induced bronchoconstriction or the changes in blood pressure in a guinea pig passively sensitized with immunoglobulin G antibody to ovalbumin. However, it shortened the duration of the antigen-induced increase in blood pressure and inhibited the antigen-induced decrease in circulating platelets in an actively sensitized guinea pig. Continued studies using a cumulative dose of sCR1 of 105 mg/kg administered over a 24-hr period demonstrated that sCR1 attenuated the bronchoconstrictor response and the decrease in circulating platelets and prevented the hypotension induced by antigen in an actively sensitized guinea pig. At a cumulative dose of 105 mg/kg, sCR1 did not inhibit the bronchoconstrictor or blood pressure response to either histamine or bradykinin, indicating that its attenuation of cardiovascular and respiratory reactivity is specific for complement-related processes. The anaphylactic response was accompanied by complement activation as evidenced by cleavage of the C3 molecule. In the presence of sCR1, no C3 cleavage products were detectable in the plasma. Our studies demonstrate that complement activation is an essential step in the antigen-induced bronchoconstriction and the changes in blood pressure in an actively sensitized guinea pig model of anaphylaxis. Continued studies of the differing mechanisms and mediators of anaphylaxis are of importance, and the complement system clearly warrants consideration as a source of those mediators.

摘要

全身性过敏反应涉及危及生命的支气管收缩以及常伴有心律失常的严重低血压反应。本研究的目的是确定补体系统激活对于过敏反应豚鼠模型中所见的支气管收缩和血压变化是否至关重要。可溶性补体受体1(sCR1;BRL 55730)用于抑制豚鼠补体经典途径和替代途径的激活,并确定这种抑制是否能预防静脉注射抗原诱导的支气管收缩和血压变化,这些豚鼠对卵清蛋白抗原进行了被动或主动致敏。15mg/kg的sCR1对用抗卵清蛋白免疫球蛋白G抗体被动致敏的豚鼠的抗原诱导的支气管收缩或血压变化均无显著影响。然而,它缩短了抗原诱导的血压升高持续时间,并抑制了主动致敏豚鼠中抗原诱导的循环血小板减少。使用在24小时内累积剂量为105mg/kg的sCR1进行的持续研究表明,sCR1减弱了支气管收缩反应和循环血小板减少,并预防了主动致敏豚鼠中抗原诱导的低血压。在累积剂量为105mg/kg时,sCR1并未抑制对组胺或缓激肽的支气管收缩或血压反应,表明其对心血管和呼吸反应性的减弱是补体相关过程所特有的。过敏反应伴随着补体激活,C3分子的裂解证明了这一点。在存在sCR1的情况下,血浆中未检测到C3裂解产物。我们的研究表明,补体激活是抗原诱导的支气管收缩和主动致敏豚鼠过敏反应模型中血压变化的关键步骤。对过敏反应不同机制和介质的持续研究很重要,补体系统显然值得作为这些介质的来源加以考虑。

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