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白色念珠菌有毒物质的生物学和化学特性

Biological and chemical characterization of toxic substances from Candida albicans.

作者信息

Cutler J E, Friedman L, Milner K C

出版信息

Infect Immun. 1972 Oct;6(4):616-27. doi: 10.1128/iai.6.4.616-627.1972.

Abstract

Whole cells, morphological components, and various extracts of Candida albicans were tested for toxicity by methods involving biological activities ordinarily used to characterize bacterial endotoxin. Fungal preparations exerted several of these activities, but only at much higher dose levels than those required for bacterial products. Both fungal cell walls and intact cells were pyrogenic in rabbits and lethal to actinomycin D-treated mice, but only the former were also lethal to chicken embryos; neither coagulated a hemolysate of horseshoe crabs. Wallfree fungal protoplasm was minimally pyrogenic but negative in the other assays. Bacterial endotoxin was strongly active in all four systems. The toxicity of fungous cell walls was undiminished after exposure to strong alkali, a treatment which destroyed bacterial endotoxin. Extracts obtained with hot phenol-water or potassium hydroxide killed mice but were nonpyrogenic. A defatted and enzyme-digested ethylenediamine extract was both lethal and pyrogenic. Particulate fungal materials but not bacterial endotoxin induced a granulomatous response in prepared mice. These data indicate that contaminating bacterial endotoxin was not responsible for the biological effects of fungal products and suggest that C. albicans may contain at least two different toxic components. Chemical analyses were performed on soluble fractions, but a role in toxicity could not be assigned to any identified component.

摘要

通过通常用于表征细菌内毒素的生物活性方法,对白色念珠菌的全细胞、形态学成分和各种提取物进行了毒性测试。真菌制剂表现出其中几种活性,但所需剂量水平比细菌产物高得多。真菌细胞壁和完整细胞对家兔有致热作用,对放线菌素D处理的小鼠有致死作用,但只有前者对鸡胚也有致死作用;两者均不能使鲎血溶解物凝固。无壁真菌原生质致热作用极小,但在其他试验中呈阴性。细菌内毒素在所有四个系统中均具有强烈活性。真菌细胞壁暴露于强碱后毒性未减弱,而强碱处理会破坏细菌内毒素。用热酚 - 水或氢氧化钾获得的提取物可杀死小鼠,但无致热作用。脱脂且经酶消化的乙二胺提取物既有致死性又有致热作用。颗粒状真菌物质而非细菌内毒素在制备的小鼠中诱导肉芽肿反应。这些数据表明,污染的细菌内毒素并非真菌产物生物效应的原因,并提示白色念珠菌可能至少含有两种不同的毒性成分。对可溶性部分进行了化学分析,但无法确定任何已鉴定成分在毒性中的作用。

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