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兔抗B族链球菌血清中调理吞噬抗体的抗原特异性

Antigenic specificity of opsonophagocytic antibodies in rabbit anti-sera to group B streptococci.

作者信息

Baltimore R S, Kasper D L, Baker C J, Goroff D K

出版信息

J Immunol. 1977 Feb;118(2):673-8.

PMID:65433
Abstract

An opsonophagocytic assay has been developed which requires human polymorphonuclear leukocytes, immune serum, and complement for optimal killing of Group B streptococci. Only with all three of these components was killing of greater than 1.0 log10 of the initial inoculum achieved, using rabbit antisera directed to homologous strains of each of the five known serotypes of Group B streptococci. Titers of specific antisera which opsonized the strains and resulted in greater than 1 log 10 reduction of colony-forming units, ranged from 1:100 (serotype Ib) to 1:3200 (serotype Ia). Cross-reactions between serotype-specific sera and heterologous strains were seen in certain instances. Type Ic strain and serotype Ic antiserum demonstrated cross-reactions with types Ia and Ib which were explainable by known shared antigens among these types. The only other cross-reaction which resulted in greater than 1 log 10 reduction in colony-forming units was when unabsorbed antiserum to strain Ia was used to opsonize a strain of serotype III. Opsonization of 10 serotype III strains was demonstrated with a single type III antiserum. Killing of nine of these strains required polymorphonuclear leukocytes, complement, and antiserum, but one strain, D136C, the reference strain, could be killed (greater than 1 log 10 reduction in colony-forming units) without either complement or specific antiserum. Inhibition studies were performed utilizing large m.w. polysaccharide antigens extracted from each serotype. These antigens inhibited opsonization of homologous strains by homologous antisera with 50% inhibition points ranging between 0.5 and 4 mug.

摘要

已开发出一种调理吞噬试验,该试验需要人多形核白细胞、免疫血清和补体才能对B族链球菌进行最佳杀伤。仅使用这三种成分,使用针对B族链球菌五种已知血清型中每种血清型的同源菌株的兔抗血清,才能实现对初始接种物大于1.0 log10的杀伤。使菌株调理并导致菌落形成单位减少大于1 log10的特异性抗血清滴度范围为1:100(血清型Ib)至1:3200(血清型Ia)。在某些情况下,观察到血清型特异性血清与异源菌株之间的交叉反应。Ic型菌株和Ic型血清型抗血清与Ia型和Ib型表现出交叉反应,这可以通过这些类型之间已知的共同抗原进行解释。导致菌落形成单位减少大于1 log10的唯一其他交叉反应是,当使用未吸收的Ia型菌株抗血清调理III型血清型菌株时。用单一的III型抗血清证明了对10株III型血清型菌株的调理作用。其中9株菌株的杀伤需要多形核白细胞、补体和抗血清,但一株菌株D136C(参考菌株)在没有补体或特异性抗血清的情况下也能被杀伤(菌落形成单位减少大于1 log10)。利用从每种血清型中提取的大分子量多糖抗原进行了抑制研究。这些抗原抑制同源抗血清对同源菌株的调理作用,50%抑制点范围在0.5至4微克之间。

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