Departments of Bacteriology and Immunology and Pediatrics, University of North Carolina School of Medicine, Chapel Hill, North Carolina 27514.
Infect Immun. 1974 Nov;10(5):1146-51. doi: 10.1128/iai.10.5.1146-1151.1974.
The effect of diphtheria toxin on guinea pig trachea in organ culture was examined to measure the susceptibility of respiratory epithelial cells to toxin action. Exposure of individual tracheal rings to toxin resulted in cessation of protein synthesis as well as the development of cytopathology within a few hours. Continued incubation led to further inhibition of protein synthesis and extensive disorganization of the epithelial layer. Other inhibitors of protein synthesis were monitored for their effect on the structural integrity of tracheal cells but were found incapable of eliciting similar histopathology. Early after its addition, toxin at minute concentrations possessed cytotoxic properties as well as the ability to inhibit protein synthesis. Interpretation of these data is correlated with current information on the structure and activity of diphtheria toxin.
本文研究了白喉毒素对豚鼠气管器官培养物的作用,以测量呼吸道上皮细胞对毒素作用的敏感性。将单个气管环暴露于毒素中,几小时内即可导致蛋白质合成停止,并出现细胞病变。继续孵育会导致蛋白质合成进一步抑制和上皮层广泛紊乱。还监测了其他蛋白质合成抑制剂对气管细胞结构完整性的影响,但发现它们不能引起类似的组织病理学变化。毒素在添加后的早期就具有细胞毒性和抑制蛋白质合成的能力,即使在微量浓度下也是如此。这些数据的解释与白喉毒素的结构和活性的最新信息相关。