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梅毒螺旋体单克隆抗体的制备与鉴定

Production and characterization of monoclonal antibodies to Treponema pallidum.

作者信息

Whang K K, Lee M G, Lew W, Lee J B

机构信息

Department of Dermatology, Konkuk University College of Medicine, Chungkuk, Korea.

出版信息

J Dermatol Sci. 1992 Jul;4(1):26-32. doi: 10.1016/0923-1811(92)90052-d.

Abstract

This study was attempted to produce the monoclonal antibodies specific for Treponema pallidum and to investigate their characteristics, thereby contributing to identify the antigenic structure and to apply the diagnosis of syphilis. The seven clones (YS 3, YS 75, YS 307, YS 481, YS 343, YS 1 and YS 406) secreting monoclonal antibodies reactive with T. pallidum were produced. The isotypes of the seven monoclonal antibodies produced were defined. Optical densities of the 7 monoclonal antibodies were ranged from 0.59 to 1.48 as measured by ELISA. Monoclonal antibodies from 5 of the 7 clones which could agglutinate sheep RBC sensitized with T. pallidum, showed strong fluorescences. The monoclonal antibody from YS 343 was cross-reactive with non-pathogenic treponemes, but the other 6 monoclonal antibodies reacted with T. pallidum specifically. On immunoblotting, monoclonal antibodies from 5 of the 7 clones reacted with a polypeptide of a molecular weight of 47 kDa, and monoclonal antibodies from YS 343 reacted with a polypeptide of 64 kDa common to both T. pallidum and T. phagedenis. The above results revealed that 7 clones secreting monoclonal antibodies reactive to T. pallidum were produced successfully, and specific antibodies reacting with major antigenic polypeptides of a molecular weight of 47 kDa would be useful in the diagnosis of syphilis in the future.

摘要

本研究旨在制备针对梅毒螺旋体的单克隆抗体并研究其特性,从而有助于鉴定抗原结构并应用于梅毒诊断。产生了7个分泌与梅毒螺旋体反应的单克隆抗体的克隆(YS 3、YS 75、YS 307、YS 481、YS 343、YS 1和YS 406)。确定了所产生的7种单克隆抗体的亚型。通过ELISA测定,7种单克隆抗体的光密度范围为0.59至1.48。7个克隆中有5个克隆的单克隆抗体能够凝集用梅毒螺旋体致敏的绵羊红细胞,显示出强荧光。YS 343的单克隆抗体与非致病性密螺旋体有交叉反应,但其他6种单克隆抗体与梅毒螺旋体特异性反应。在免疫印迹中,7个克隆中有5个克隆的单克隆抗体与分子量为47 kDa的一种多肽反应,YS 343的单克隆抗体与梅毒螺旋体和溃蚀性密螺旋体共有的一种64 kDa的多肽反应。上述结果表明,成功产生了7个分泌与梅毒螺旋体反应的单克隆抗体的克隆,与分子量为47 kDa的主要抗原多肽反应的特异性抗体在未来梅毒诊断中可能会有用。

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