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首页> 外文期刊>Journal of Clinical Microbiology >Determination of serum bactericidal activity with the aid of luminous bacteria.
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Determination of serum bactericidal activity with the aid of luminous bacteria.

机译:借助发光细菌测定血清杀菌活性。

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摘要

Nonmarine luminous bacteria belonging to the genus Vibrio cholerae were extremely sensitive to the bactericidal activity of human serum. Luminous bacteria incubated in a medium containing serum showed a decrease in their in vivo luminescence that was directly proportional to the decrease in the viable count and was a function of the serum concentration. Both immunoglobulins and the complement system were required to exert the serum bactericidal activity. Serum lacking immunoglobulins or certain complement components, especially C3, did not affect the luminescence. The bactericidal effect of the serum on luminous bacteria was diminished by the presence of lipopolysaccharide or by pretreatment of the serum with different species of killed bacteria. As found in other systems, the bacteriolytic activity of serum was only augmented by lysozyme, but was not lysozyme dependent; although the luminous bacteria were converted into spheroplasts in serum containing 0.5 M sucrose, their in vivo luminescence was almost not affected. This system could easily distinguish between the C classical pathway and the properdin pathway. Ethylene glycol-bis (beta-aminoethyl ether)-N,N'-tetraacetic acid, which inhibits only the classical complement pathway, did not inhibit the decrease in luminescence as did EDTA. Thus, it was possible to distinguish between deficiencies in complement components participating in both pathways and complement components that were involved only in the classical pathway. This system could also be used as a substitute to the hemolytic system in complement fixation tests.
机译:属于霍乱弧菌的非海洋发光细菌对人血清的杀菌活性极为敏感。在含有血清的培养基中培养的发光细菌显示出其体内发光的减少,其与存活计数的减少成正比,并且是血清浓度的函数。免疫球蛋白和补体系统都需要发挥血清杀菌活性。缺乏免疫球蛋白或某些补体成分(尤其是C3)的血清不会影响发光。脂多糖的存在或用不同种类的被杀死细菌预处理血清后,血清对发光细菌的杀菌作用减弱。如在其他系统中发现的那样,血清的细菌分解活性仅通过溶菌酶增强,而不受溶菌酶的影响;尽管发光细菌在含0.5 M蔗糖的血清中转化为原生质球,但它们的体内发光几乎不受影响。该系统可以轻松区分C经典途径和备解素途径。仅抑制经典补体途径的乙二醇-双(β-氨基乙基醚)-N,N'-四乙酸不像EDTA那样抑制发光的降低。因此,可以区分参与这两种途径的补体成分和仅涉及经典途径的补体成分的不足。该系统还可以在补体固定测试中用作溶血系统的替代品。

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