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人类血小板的异质性。I. 代谢和动力学证据表明存在年轻和衰老血小板。

Heterogeneity of human platelets. I. Metabolic and kinetic evidence suggestive of young and old platelets.

作者信息

Karpatkin S

出版信息

J Clin Invest. 1969 Jun;48(6):1073-82. doi: 10.1172/JCI106063.

Abstract

Human platelets have been separated into two extreme density populations by centrifugation in specific density media. A large-heavy platelet population with specific gravity > 1.055 and a light-small population with specific gravity < 1.046 were obtained, each representing approximately 15-20% of the total population volume. The average volume per platelet of the separated large-heavy and light-small platelet populations was 12 and 5 mu(3) respectively. When data are expressed per milliliter platelets or per gram wet weight, the large-heavy platelet population had a 2-fold greater glycogen content, 1.3-fold greater orthophosphate content, 1.3-fold greater total adenine nucleotide content, 4.2-fold greater rate of glycogenolysis, 2.6-fold greater rate of glycolysis, 2.9-fold greater rate of protein synthesis, and 5.7-fold greater rate of glycogen synthesis. Significant differences were not obtained with respect to total lipid content or total lipid synthesis. The large-heavy platelet had a 2.5-fold greater resistance to osmotic shock as measured by adenosine triphosphate (ATP) or adenosine diphosphate (ADP) release. These data, as well as diisopropyl fluorophosphate (DFP(32)) survival curves in rabbits, indicate that large-heavy platelets have a greater metabolic potential and suggest that they may be the young platelets which progress with age to light-small platelets with a diminished metabolic potential.

摘要

通过在特定密度介质中离心,已将人血小板分离为两个极端密度群体。获得了比重>1.055的大而重的血小板群体和比重<1.046的小而轻的血小板群体,每个群体约占总体积的15-20%。分离出的大而重和小而轻的血小板群体中,每个血小板的平均体积分别为12和5立方微米。当数据以每毫升血小板或每克湿重表示时,大而重的血小板群体的糖原含量高2倍,正磷酸盐含量高1.3倍,总腺嘌呤核苷酸含量高1.3倍,糖原分解速率高4.2倍,糖酵解速率高2.6倍,蛋白质合成速率高2.9倍,糖原合成速率高5.7倍。在总脂质含量或总脂质合成方面未获得显著差异。通过三磷酸腺苷(ATP)或二磷酸腺苷(ADP)释放测量,大而重的血小板对渗透压休克的抵抗力高2.5倍。这些数据以及兔体内二异丙基氟磷酸酯(DFP(32))存活曲线表明,大而重的血小板具有更大的代谢潜能,并提示它们可能是年轻血小板,随着年龄增长逐渐转变为代谢潜能降低的小而轻的血小板。

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