首页> 外文期刊>Journal of applied microbiology >Mechanisms of killing of Bacillus subtilis spores by Decon and Oxone~(TM), two general decontaminants for biological agents
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Mechanisms of killing of Bacillus subtilis spores by Decon and Oxone~(TM), two general decontaminants for biological agents

机译:Decon和Oxone〜(TM)这两种生物试剂的通用去污剂杀死枯草芽孢杆菌孢子的机理

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Aims: To determine the mechanisms of Bacillus subtilis spore killing by and resistance to the general biological decontamination agents, Decon and Oxone~(TM). Methods and Results: Spores of B. subtilis treated with Decon or OxoneTM did not accumulate DNA damage and were not mutagenized. Spore killing by these agents was increased if spores were decoated. Spores prepared at higher temperatures were more resistant to these agents, consistent with a major role for spore coats in this resistance. Neither Decon nor OxoneTM released the spore core's depot of dipicolinic acid (DPA), but Decon- and Oxone~(TM)-treated spores more readily released DPA upon a subsequent normally sublethal heat treatment. Decon- and Oxone~(TM)-killed spores initiated germination with dodecylamine more rapidly than untreated spores, but could not complete germination triggered by nutrients or Ca~(2+)-DPA and did not degrade their peptidoglycan cortex. However, lysozyme treatment did not recover these spores. Conclusions: Decon and OxoneTM do not kill B. subtilis spores by DNA damage, and a major factor in spore resistance to these agents is the spore coat. Spore killing by both agents renders spores defective in germination, possibly because of damage to the inner membrane of spore. Significance and impact of study: These results provide information on the mechanisms of the killing of bacterial spores by Decon and Oxone~(TM).
机译:目的:确定枯草芽孢杆菌孢子对普通生物去污剂Decon和OxoneTM的杀灭作用及其耐药性。方法和结果:用Decon或OxoneTM处理的枯草芽孢杆菌的孢子没有积累DNA损伤,也没有诱变。如果孢子被去壳,则增加了这些药剂对孢子的杀灭作用。在较高温度下制备的孢子对这些试剂更具抵抗力,这与孢子衣在该抵抗力中的主要作用相一致。 Decon或OxoneTM均未释放出孢子核心的二吡啶甲酸(DPA)储库,但经过随后的通常为亚致死性的热处理后,经Decon-和OxoneTM处理的孢子更容易释放DPA。与未处理的孢子相比,用Decon-和OxoneTM杀死的孢子与十二烷基胺的萌发速度更快,但由于营养素或Ca〜(2 +)-DPA引发的萌芽不能完全萌发,并且不会降解其肽聚糖皮质。但是,溶菌酶处理不能回收这些孢子。结论:Decon和OxoneTM不会通过DNA损伤杀死枯草芽孢杆菌的孢子,并且孢子被膜是孢子对这些药剂抗性的主要因素。两种药剂杀死孢子都使孢子发芽有缺陷,这可能是由于对孢子内膜的破坏。研究的意义和影响:这些结果提供了Decon和Oxone〜(TM)杀死细菌孢子的机制的信息。

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