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用二磷酸腺苷(ADP)刺激未搅拌的人体血小板时其快速形态变化的瞬态动力学

Transient kinetics of the rapid shape change of unstirred human blood platelets stimulated with ADP.

作者信息

Deranleau D A, Dubler D, Rothen C, Lüscher E F

出版信息

Proc Natl Acad Sci U S A. 1982 Dec;79(23):7297-301. doi: 10.1073/pnas.79.23.7297.

Abstract

Unstirred (isotropic) suspensions of human blood platelets stimulated with ADP in a stopped-flow laser turbidimeter exhibit a distinct extinction maximum during the course of the classical rapid conversion of initially smooth flat discoid cells to smaller-body spiny spheres. This implies the existence of a transient intermediate having a larger average light scattering cross section (extinction coefficient) than either the disc or the spiny sphere. Monophasic extinction increases reaching the same final value were observed when either discoid or spiny sphere platelets were converted to smooth spheres by treatment with chlorpromazine, and sphering of discoid cells was accompanied by a larger total extinction change than the retraction of pseudopods by already spherical cells. These and other results suggest that the ADP-induced transient state represents platelets that are approximately as "spherical" as the irregular spiny sphere but lack the characteristic long pseudopods and as a consequence are larger bodied. Fitting the ADP progress curves to the series reaction A leads to B leads to C by means of the light scattering equivalent of the Beer-Lambert law yielded scattering cross sections that are consistent with this explanation. The rate constants for the two reaction steps were identical, indicating that ADP activation corresponds to a continuous random (Poisson) process with successive apparent states "disc," "sphere," and "spiny sphere," whose individual probabilities are determined by a single rate-limiting step.

摘要

在停流激光浊度仪中,用二磷酸腺苷(ADP)刺激的人血小板未搅拌(各向同性)悬浮液,在最初光滑扁平的盘状细胞经典快速转化为小体多刺球体的过程中,呈现出明显的消光最大值。这意味着存在一种瞬态中间体,其平均光散射截面(消光系数)比盘状细胞或多刺球体都大。当盘状或多刺球体血小板用氯丙嗪处理转化为光滑球体时,观察到单相消光增加并达到相同的最终值,并且盘状细胞的球化伴随着比已经呈球形的细胞伪足缩回更大的总消光变化。这些以及其他结果表明,ADP诱导的瞬态状态代表的血小板与不规则多刺球体一样“球形”,但缺乏特征性的长伪足,因此体积更大。通过光散射等效的比尔-朗伯定律将ADP进程曲线拟合到系列反应A→B→C,得到的散射截面与该解释一致。两个反应步骤的速率常数相同,表明ADP激活对应于一个连续随机(泊松)过程,具有连续的表观状态“盘状”、“球体”和“多刺球体”,其各自的概率由单个限速步骤决定。

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THE AGGREGATION OF BLOOD PLATELETS.血小板的聚集
J Physiol. 1963 Aug;168(1):178-95. doi: 10.1113/jphysiol.1963.sp007185.

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