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Differentiation of Clostridium botulinum Types A, B, and E by Pyrolysis-Gas-Liquid Chromatography

机译:热解-气相色谱法鉴别A,B和E型肉毒梭菌

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Vegetative cells and spores of 10 strains of Clostridium botulinum representing types A, B, and E were grown in Trypticase-peptone-sucrose-yeast extract (TPSY) medium. Five type E strains were also grown in Multipeptone-sucrose-Nutramino acids (MSN) medium. Lyophilized samples were subjected to pyrolysis-gas-liquid chromatography (PGLC) analysis, and the resulting pyrograms were examined for variations in elution patterns between spores and vegetative cells of types A, B, and E grown in the TPSY medium and spores and vegetative cells of type E grown in the TPSY medium and spores and vegetative cells of type E grown in TPSY and MSN media. Growth and toxin production of all 10 strains of C. botulinum were investigated by using a modified dialysis sac culture technique. The dialysate supernatant fluid (DSF) obtained after centrifugation of the 5-day-old cultures from the dialysate was also subjected to PGLC analysis. Control samples consisting of (i) noninoculated DSF, (ii) noninoculated DSF plus partially purified toxin, and (iii) 1.0 mg of partially purified toxin were also analyzed by PGLC. Differences between pyrograms of cultures were suitable for positive identification at the type level but not at the strain level. Pyrograms permitting differentiation were also obtained between spores and vegetative cells as well as between the same cultures grown in different media. The dialysis sac technique was useful in detecting growth but not toxin production of C. botulinum.
机译:在胰蛋白酶-蛋白-蔗糖-酵母提取物(TPSY)培养基中生长代表A,B和E型的10株肉毒梭菌菌株的营养细胞和孢子。在Multipeptone-蔗糖-Nutr氨基酸(MSN)培养基中也生长了五种E型菌株。将冻干的样品进行热解气液色谱(PGLC)分析,并检查所得的热解图在TPSY培养基中生长的A,B和E型孢子与营养细胞以及孢子和营养细胞之间的洗脱模式变化在TPSY培养基中生长的E型细菌和在TPSY和MSN培养基中生长的E型孢子和营养细胞。使用改良的透析囊培养技术研究了所有10株肉毒梭菌的生长和毒素产生。将来自透析液的5天龄的培养物离心分离后获得的透析液上清液(DSF)也进行了PGLC分析。还通过PGLC分析了由(i)未接种的DSF,(ii)未接种的DSF加部分纯化的毒素和(iii)1.0mg部分纯化的毒素组成的对照样品。培养物热解图之间的差异适合在类型水平而非菌株水平进行阳性鉴定。还可以在孢子和营养细胞之间以及在不同培养基中生长的相同培养物之间获得允许分化的热解图。透析囊技术可用于检测肉毒梭菌的生长,但不能检测毒素的产生。

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