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紫杉醇对人中性粒细胞的作用。

Effects of taxol on human neutrophils.

作者信息

Roberts R L, Nath J, Friedman M M, Gallin J I

出版信息

J Immunol. 1982 Nov;129(5):2134-41.

PMID:6126502
Abstract

Taxol, a plant alkaloid, promotes and stabilizes microtubule assembly in cells and cellfree systems. In the present study, the effects of taxol on various functional, morphologic, and biochemical phenomena in human peripheral blood PMN (Hypaque-Ficoll) were examined. Taxol (10(-7) M) inhibited PMN chemotaxis stimulated by N-formyl-methionyl-leucyl-phenylalanine (f-met-leu-phe) or endotoxin-activated serum by more than 60%. The inhibition was not readily reversed by washing, and taxol itself was not a chemoattractant, nor is it a secretagogue. Spontaneous nondirected migration, cell spreading on a glass surface, and orientation of cell organelles in response to a chemoattractant gradient were also inhibited by taxol. Taxol (10(-5) M) decreased killing of Staphylococcus aureus, but did not alter phagocytosis of heat-killed Candida or hexose monophosphate shunt activity in resting or stimulated PMN. Ultrastructural studies showed that PMN incubated in f-met-leu-phe, taxol, or both had increased (p less than 0.001) numbers of centrosome-associated microtubules, and the microtubules of cells incubated in taxol with or without f-met-leu-phe were organized into bundles. Taxol (10(-5) M) markedly inhibited post-translational tyrosinolation of alpha-chains of tubulin in both resting and f-met-leu-phe-stimulated PMN. The data indicate that taxol inhibits PMN locomotion and bacterial killing, supporting a role for microtubules in these processes. The ultrastructural and biochemical data also support the view that taxol mediates its effects on PMN by its effect on microtubules.

摘要

紫杉醇是一种植物生物碱,可促进并稳定细胞及无细胞系统中的微管组装。在本研究中,检测了紫杉醇对人外周血多形核白细胞(经Hypaque - Ficoll分离)的各种功能、形态和生化现象的影响。紫杉醇(10⁻⁷ M)抑制了由N - 甲酰 - 甲硫氨酰 - 亮氨酰 - 苯丙氨酸(f - met - leu - phe)或内毒素激活血清刺激的多形核白细胞趋化作用,抑制率超过60%。洗涤不能轻易逆转这种抑制作用,紫杉醇本身不是趋化因子,也不是促分泌剂。紫杉醇还抑制自发的无定向迁移、细胞在玻璃表面的铺展以及细胞细胞器对趋化因子梯度的定向排列。紫杉醇(10⁻⁵ M)降低了对金黄色葡萄球菌的杀伤作用,但不改变静息或受刺激的多形核白细胞对热杀死的念珠菌的吞噬作用或磷酸己糖旁路活性。超微结构研究表明,在f - met - leu - phe、紫杉醇或两者中孵育的多形核白细胞,与中心体相关的微管数量增加(p < 0.001),并且在有或没有f - met - leu - phe的情况下在紫杉醇中孵育的细胞的微管形成束状。紫杉醇(10⁻⁵ M)显著抑制静息和f - met - leu - phe刺激的多形核白细胞中微管蛋白α链的翻译后酪氨酸化。数据表明紫杉醇抑制多形核白细胞的运动和细菌杀伤,支持微管在这些过程中的作用。超微结构和生化数据也支持紫杉醇通过对微管的作用介导其对多形核白细胞的影响这一观点。

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