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Production of superoxide and hydrogen peroxide in medium used to culture Legionella pneumophila: catalytic decomposition by charcoal.

机译:在用于培养嗜肺军团菌的培养基中产生超氧化物和过氧化氢:木炭催化分解。

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摘要

The difficulties associated with the growth of Legionella species in common laboratory media may be due to the sensitivity of these organisms to low levels of hydrogen peroxide and superoxide radicals. Exposure of yeast extract (YE) broth to fluorescent light generated superoxide radicals (3 microM/h) and hydrogen peroxide (16 microM/h). Autoclaved YE medium was more prone to photochemical oxidation than YE medium sterilized by filtration. Activated charcoals and, to a lesser extent, graphite, but not starch, prevented photochemical oxidation of YE medium, decomposed hydrogen peroxide and superoxide radicals, and prevented light-accelerated autooxidation of cysteine. Also, suspensions of charcoal in phosphate buffer and in charcoal yeast extract medium readily decomposed exogenous peroxide (17 and 23 nmol/ml per min, respectively). Combinations of bovine superoxide dismutase and catalase also decreased the rate of photooxidation of YE medium. Medium protected from light did not accumulate appreciable levels of hydrogen peroxide, and autoclaved YE medium protected from light supported good growth of Legionella micdadei. Various species of Legionella (10(4) cells per ml) exhibited sensitivity to relatively low levels of hydrogen peroxide (26.5 microM) in challenge experiments. The level of hydrogen peroxide that accumulated in YE medium over a period of several hours (greater than 50 microM) was in excess of the level tolerated by Legionella pneumophila, which contained no measurable catalase activity. Strains of L. micdadei, Legionella dumoffi, and Legionella bozmanii contained this enzyme, but the presence of catalase did not appear to confer appreciable tolerance to exogenously generated hydrogen peroxide.
机译:与军团菌种在普通实验室培养基中生长有关的困难可能是由于这些生物对低水平的过氧化氢和超氧自由基的敏感性。酵母提取物(YE)肉汤暴露于荧光下会产生超氧化物自由基(3 microM / h)和过氧化氢(16 microM / h)。高压灭菌的YE培养基比通过过滤灭菌的YE培养基更容易发生光化学氧化。活性炭和较小的石墨,但不包括淀粉,可防止YE介质的光化学氧化,分解过氧化氢和超氧自由基,并防止半胱氨酸的光加速自氧化。同样,木炭在磷酸盐缓冲液和木炭酵母提取液中的悬浮液易于分解外源过氧化物(分别为每分钟17和23 nmol / ml)。牛超氧化物歧化酶和过氧化氢酶的组合也降低了YE培养基的光氧化速率。避光的培养基没有积累明显的过氧化氢水平,避光的高压灭菌YE培养基支持军团菌的良好生长。在挑战实验中,军团菌的各种菌种(每毫升10(4)个细胞)对较低水平的过氧化氢(26.5 microM)表现出敏感性。 YE介质在数小时内(大于50 microM)累积的过氧化氢水平超过了嗜肺军团菌(Legionella pneumophila)所耐受的水平,后者没有可测量的过氧化氢酶活性。米氏乳杆菌,军团病菌和波兹曼军团菌的菌株都含有这种酶,但过氧化氢酶的存在似乎并未赋予其对外源产生的过氧化氢的明显耐受性。

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