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细菌溶血素和磷脂酶导致质膜功能和结构紊乱后培养细胞的存活情况。

Survival of cultured cells after functional and structural disorganization of plasma membrane by bacterial haemolysins and phospholipases.

作者信息

Thelestam M, Möllby R

出版信息

Toxicon. 1983;21(6):805-15. doi: 10.1016/0041-0101(83)90069-7.

Abstract

Lesions were induced in the plasma membranes of cultured human fibroblasts by membrane damaging toxins of bacterial origin (haemolysins). Structural disorganization of the membrane was measured as leakage of a radiolabelled small cytoplasmic marker and functional membrane damage was measured as decreased uptake of aminoisobutyrate. Cell survival was scored 24 and 48 hr later by measuring uptake of Trypan Blue and by light microscopical evaluation of cell morphology and proliferation. The membrane damage induced by most bacterial toxins was reversible upon removal of the toxin, since toxin-treated cells recovered and excluded Trypan Blue although they had been permeable to the dye immediately after the toxin treatment. Among ten bacterial toxins tested, the only exception of this general behavior was the Aeromonas hydrophila beta-haemolysin, which irreversibly damaged human fibroblasts. Thus, the action of bacterial haemolysins on cultured cells generally seems restricted to a plasma membrane permeabilization, which is reversible regardless of the mechanism of membrane damaging action of the toxin or of the relative size of the structural lesions induced. Furthermore, the use of Trypan Blue uptake as a measure of cell death caused by membrane damaging agents appears to be of limited value.

摘要

利用源自细菌的膜损伤毒素(溶血素)在培养的人成纤维细胞质膜上诱导损伤。膜结构紊乱通过放射性标记的小细胞质标记物的泄漏来衡量,膜功能损伤通过氨基异丁酸摄取减少来衡量。24小时和48小时后,通过测量台盼蓝摄取以及通过光学显微镜评估细胞形态和增殖来对细胞存活情况进行评分。大多数细菌毒素诱导的膜损伤在去除毒素后是可逆的,因为毒素处理过的细胞恢复并排斥台盼蓝,尽管在毒素处理后它们对该染料是可渗透的。在所测试的十种细菌毒素中,这种一般行为的唯一例外是嗜水气单胞菌β-溶血素,它会不可逆地损伤人成纤维细胞。因此,细菌溶血素对培养细胞的作用通常似乎仅限于质膜通透性增加,无论毒素的膜损伤作用机制或所诱导的结构损伤的相对大小如何,这种通透性增加都是可逆的。此外,使用台盼蓝摄取作为衡量由膜损伤剂引起的细胞死亡的指标,其价值似乎有限。

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