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Resistance of Bacillus subtilis var. niger Spores Occluded in Water-insoluble Crystals to Three Sterilization Agents

机译:枯草芽孢杆菌的抗性水不溶性晶体中的尼日尔孢子对三种杀菌剂的吸附

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The resistance to destruction of spores of Bacillus subtilis var. niger occluded in crystals of calcium carbonate and exposed to ethylene oxide and moist and dry heat was determined and compared with the destruction of unoccluded spores. Occluded spores could not be inactivated with ethylene oxide. Resistance to inactivation was approximately 900 and 9 times higher for occluded than for unoccluded spores subjected to moist and dry heat, respectively, at 121 C. The protective effect may be due either to the unavailability of oxygen for destruction by oxidation or to inhibition of the loss of essential cell constituents by vaporization. Evidence also implicates the crystal structure as a thermal conductivity barrier. Occluded spores retained viability over a 3-year period compared with unoccluded spores which decreased over 90% during this period. Occluded spores in insoluble materials are seldom encountered in the technology of sterilization, but could be the most critical factor in the sterilization of interplanetary vehicles. Entrapped spores in insoluble materials are usually difficult to detect, and are very stable as well as extremely resistant to destruction by heat and ethylene oxide.
机译:抗枯草芽孢杆菌变种的孢子。将尼日尔吸留在碳酸钙晶体中并暴露于环氧乙烷中,并测定湿热和干热,并将其与未吸留的孢子的破坏进行比较。封闭的孢子不能被环氧乙烷灭活。在121°C时,被封闭的孢子的抗灭活性分别比未封闭的孢子高900倍和9倍。保护作用可能是由于氧气无法被氧化破坏或抑制了氧化。通过蒸发损失必需的细胞成分。证据还暗示晶体结构是导热屏障。与未封闭的孢子相比,未封闭的孢子在此期间下降了90%以上,而封闭的孢子在3年内保持了活力。在灭菌技术中很少遇到不溶物中的被孢子堵塞,但可能是行星际飞行器灭菌中最关键的因素。通常难于检测不溶性材料中夹带的孢子,并且非常稳定,并且极耐热和环氧乙烷的破坏。

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