Purdy M A, Tenovuo J, Pruitt K M, White W E
Infect Immun. 1983 Mar;39(3):1187-95. doi: 10.1128/iai.39.3.1187-1195.1983.
The lactoperoxidase-thiocyanate-hydrogen peroxide system was found to have both bacteriostatic and bactericidal activities against strains of Salmonella typhimurium. The bactericidal activity was clearly dependent on the permeability of the bacterial cell envelope. The deep rough mutant TA1535, with the most permeable cell envelope, was killed both at neutral and acid pH, whereas very little or no killing was observed with the intact cells of the parent strain hisG46. The delta gal mutant, TA1530, representing an intermediate in cell envelope permeability, was inhibited to a much lesser extent than TA1535. Bacteria in log phase of growth were more sensitive to the bactericidal effects than were those in stationary phase. Growth phase had little influence on the bacteriostatic effects. The hisG46 strain produced significant quantities of acid in the presence of glucose. This acid production was inhibited by the lactoperoxidase-thiocyanate-hydrogen peroxide system, and, in contrast to results obtained with several strains of streptococci, this inhibition was not reversed by addition of a reducing agent (2-mercaptoethanol).
已发现乳过氧化物酶-硫氰酸盐-过氧化氢系统对鼠伤寒沙门氏菌菌株具有抑菌和杀菌活性。杀菌活性明显取决于细菌细胞壁的通透性。细胞壁通透性最高的深粗糙突变体TA1535在中性和酸性pH条件下均被杀死,而亲本菌株hisG46的完整细胞几乎没有或没有观察到杀伤现象。代表细胞壁通透性处于中间状态的δgal突变体TA1530受到的抑制程度远低于TA1535。对数生长期的细菌比稳定期的细菌对杀菌作用更敏感。生长阶段对抑菌作用影响很小。hisG46菌株在葡萄糖存在下会产生大量酸。这种产酸受到乳过氧化物酶-硫氰酸盐-过氧化氢系统的抑制,并且与用几种链球菌菌株获得的结果相反,添加还原剂(2-巯基乙醇)并不能逆转这种抑制作用。