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Inactivation of Clostridium perfringens Type A Spores at Ultrahigh Temperatures

机译:超高温下产气荚膜梭菌A型孢子的失活

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The inactivation of Clostridium perfringens type A spores (three strains of different heat resistances) at ultrahigh temperatures was studied. Aqueous spore suspensions were heated at 85 to 135 C by the capillary tube method. When survivors were enumerated on the standard plating medium, the spores appeared to have been rapidly inactivated at temperatures above 100 C. The addition of lysozyme to the plating medium did not affect the recovery of spores surviving the early stages of heating, but lysozyme was required for maximal recovery of spores surviving extended heat treatments. The percentage of survivors requiring lysozyme for colony formation increased greatly with longer exposure times or increasing treatment temperature. Time-survivor curves indicated that each spore suspension was heterogeneous with respect to the heat resistance of spore outgrowth system or in the sensitivity of the spores to lysozyme. Recovery of survivors on the lysozyme containing medium revealed greater heat resistance for one strain than has been reported for spores of many mesophilic aerobes and anaerobes. The spores of all three strains were more resistant to heat inactivation when suspended in phosphate buffer, but a greater percentage of the survivors required lysozyme for colony formation.
机译:研究了超高温下产气荚膜梭状芽孢杆菌(三种耐热性不同的菌株)孢子的失活。通过毛细管法将孢子水悬浮液在85至135℃下加热。当在标准平板培养基上计数存活者时,孢子似乎在高于100 C的温度下迅速失活。向平板培养基中添加溶菌酶不会影响在加热初期存活的孢子的回收,但是需要溶菌酶延长热处理后最大程度恢复孢子。随着暴露时间的延长或治疗温度的升高,需要溶菌酶形成菌落的幸存者百分比大大增加。时间-存活曲线表明,就孢子生长系统的耐热性或孢子对溶菌酶的敏感性而言,每种孢子悬浮液是异质的。在含有溶菌酶的培养基中回收幸存者后发现,对于一种菌株,其耐热性要比许多中温需氧菌和厌氧菌的孢子报道的要高。当悬浮在磷酸盐缓冲液中时,所有三个菌株的孢子对热灭活具有更强的抵抗力,但是更多的幸存者需要溶菌酶才能形成菌落。

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