暴露于全身γ辐射的小鼠腹膜细胞的定量、功能和生化改变。1 .与血小板活化因子形成和失活以及花生四烯酸酯代谢相关的细胞蛋白、粘附特性和酶活性的变化。

L K Steel, H N Hughes, T L Walden
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引用次数: 13

摘要

在暴露于单剂量(7、10或12 Gy) γ辐射后2小时至10天,研究了小鼠腹膜细胞的总数量、差异、细胞蛋白、粘附特性、乙酰转移酶和乙酰水解酶活性、前列腺素E2和白三烯C4产生以及Ca2+离子载体A23187刺激的变化。与辐射剂量相关的巨噬细胞和淋巴细胞数量的减少以及细胞蛋白和塑料表面粘附能力的增加是明显的。体内辐照也提高了贴壁和非贴壁腹膜细胞的乙酰转移酶和乙酰水解酶(分别催化血小板活化因子的生物合成和失活)的活性,特别是暴露后3-4天。受辐射动物的血浆没有反映细胞乙酰水解酶活性的增加。暴露后前列腺素E2和白三烯C4合成升高,表明底物(花生四烯酸酯)可用性增加,环加氧酶和脂加氧酶活性增加。在受辐射的腹膜细胞中,离子载体对酶活性和类二十烷释放的刺激也有所不同。虽然粘附特性、血小板活化因子合成/失活相关酶活性和类二十烷酸的产生通常被描述为巨噬细胞、淋巴细胞或其产物的特性,但可能影响或促成观察到的辐射诱导的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantitative, functional and biochemical alterations in the peritoneal cells of mice exposed to whole-body gamma-irradiation. I. Changes in cellular protein, adherence properties and enzymatic activities associated with platelet-activating factor formation and inactivation, and arachidonate metabolism.

Changes in total number, differentials, cell protein, adherence properties, acetyltransferase and acetylhydrolase activities, prostaglandin E2 and leukotriene C4 production, as well as Ca2+ ionophore A23187 stimulation were examined in resident peritoneal cells isolated from mice 2 h to 10 days postexposure to a single dose (7, 10 or 12 Gy) of gamma-radiation. Radiation dose-related reductions in macrophage and lymphocyte numbers and increases in cellular protein and capacity to adhere to plastic surfaces were evident. In vivo irradiation also elevated the activities of acetyltransferase and acetylhydrolase (catalysing platelet-activating factor biosynthesis and inactivation, respectively) in adherent and nonadherent peritoneal cells, particularly 3-4 days postexposure. Blood plasma from irradiated animals did not reflect the increased cellular acetylhydrolase activity. Prostaglandin E2 and leukotriene C4 synthesis were elevated postexposure, suggesting increased substrate (arachidonate) availability and increased cyclooxygenase and lipoxygenase activities. Ionophore stimulation of enzyme activities and eicosanoid release also differed in irradiated peritoneal cells. While the properties of adherence, platelet-activating factor synthesis/inactivation-associated enzyme activities, and eicosanoid production are generally characterized as those of macrophages, lymphocytes or their products may influence or contribute to the observed radiation-induced changes.

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