CREMER N, WATSON D W
J Exp Med. 1960 Dec 1;112(6):1037-53. doi: 10.1084/jem.112.6.1037.
one primarily an intracellular toxin and the other mainly an extracellular toxin. Both of these toxins are not extractable by the conventional methods, phenol and TCA, used for isolation of Gram-negative bacterial endotoxin. Their chemical composition, therefore, differs from that of Gram-negative bacterial endotoxin. On the basis of tolerance studies it appears that similar non-specific host factors may be involved in the detoxification of both the streptococcal intracellular pyrogenic toxin and the Gram-negative bacterial endotoxin. Detoxification of streptococcal exotoxin requires a more immunologically specific mechanism. Because all the Group A sonic extracts studied elicited reciprocal tolerance to one another, it is suggested that tolerance to the intracellular pyrogenic toxin is not correlated with type-specificity.
本研究中呈现的数据表明,A 组链球菌产生两种不同的致热毒素:一种主要是细胞内毒素,另一种主要是细胞外毒素。这两种毒素都不能通过用于分离革兰氏阴性菌内毒素的传统方法(苯酚和三氯乙酸)提取。因此,它们的化学组成与革兰氏阴性菌内毒素不同。基于耐受性研究,似乎相似的非特异性宿主因素可能参与了链球菌细胞内致热毒素和革兰氏阴性菌内毒素的解毒过程。链球菌外毒素的解毒需要一种更具免疫特异性的机制。由于所研究的所有 A 组超声提取物相互之间都能引发交叉耐受性,因此表明对细胞内致热毒素的耐受性与型特异性无关。