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Lactoperoxidase peroxide thiocyanate antimicrobial system: correlation of sulfhydryl oxidation with antimicrobial action.

机译:乳过氧化物酶过氧化物硫氰酸盐抗菌体系:巯基氧化与抗菌作用的相关性。

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摘要

The antimicrobial activity of the lactoperoxidase, peroxide, thiocyanate system against Escherichia coli was directly related to the oxidation of bacterial sulfhydryls. Lactoperoxidase catalyzed the oxidation of thiocyanate, which resulted in the accumulation of hypothiocyanite ion, OSCN-. A portion of the bacterial sulfhydryls were oxidized by OSCN- to yield sulfenic acid and sulfenyl thiocyanate derivatives. The remaining sulfhydryls were not oxidized, although OSCN- was present in large excess. The oxidation of sulfhydryls to sulfenyl derivatives inhibited bacterial respiration. This inhibition could be reversed by adding sulfhydryl compounds to reduce the sulfenyl derivatives and the excess OSCN-. Also, this inhibition could be reversed by washing the cells so as to remove the excess unreacted OSCN-. After washing, the bacteria underwent a time-dependent recovery of their sulfhydryl content. This recovery resulted in recovery of the ability to respire. The inhibited cells were viable if diluted and plated shortly after the incubation with the lactoperoxidase, peroxide, thiocyanate system. On the other hand, long-term incubation in the presence of the excess OSCN- resulted in loss of viability. Also, the inhibition of respiration became irreversible. During this long-term incubation, the excess OSCN- was consumed and the sulfenyl derivatives disappeared.
机译:乳过氧化物酶,过氧化物,硫氰酸盐体系对大肠杆菌的抗菌活性与细菌巯基的氧化直接相关。乳过氧化物酶催化硫氰酸盐的氧化,导致次硫氰酸盐离子OSCN-的积累。一部分细菌巯基被OSCN-氧化,生成亚磺酸和亚硫基硫氰酸酯衍生物。尽管OSCN-存在过多,但其余的巯基没有被氧化。巯基氧化为亚硫基衍生物可抑制细菌呼吸。通过添加巯基化合物以减少亚磺酰基衍生物和过量的OSCN-可以逆转这种抑制作用。同样,可以通过洗涤细胞来逆转这种抑制作用,以除去过量的未反应的OSCN-。洗涤后,细菌的巯基含量随时间恢复。这种恢复导致呼吸能力的恢复。如果稀释并在与乳过氧化物酶,过氧化物,硫氰酸盐体系孵育后不久铺板,则抑制的细胞是可行的。另一方面,在过量的OSCN-存在下长期孵育会导致活力丧失。同样,对呼吸的抑制也变得不可逆。在这种长期孵育过程中,过量的OSCN-被消耗掉了,亚磺酰基衍生物消失了。

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