Hamada S, Michalek S M, Torii M, Morisaki I, McGhee J R
Mol Immunol. 1983 Apr;20(4):453-64. doi: 10.1016/0161-5890(83)90026-3.
An ELISA was developed to quantitate the level of antibodies to various cell surface antigens of the Gram positive bacterium, Streptococcus mutans. Whole cells and purified cell wall components of S. mutans, lipoteichoic acid (LTA) from Streptococcus pyogenes, and dextran T 2000 were employed as coating antigens in this study. Cell walls of S. mutans were purified by mechanical disruption of whole cells followed by differential centrifugation and proteolytic enzyme treatment. Serotype-specific carbohydrate was purified from an autoclaved, lyophilized S. mutans whole cell preparation by column chromatography. LTA was prepared by Sepharose 4B chromatography of a phenol-water extract of S. pyogenes and used for detection of anti-polyglycerophosphate (PGP) antibodies. A rabbit antiserum to S. mutans 6715 (serotype g), which precipitated with purified carbohydrate antigen (RR g), gave good reactions with purified cell walls and whole cells of S. mutans 6715, less activity with RR g and low activity to LTA and dextran when tested by ELISA. Adsorption of this antiserum with whole cells of S. pyogenes resulted in antibody activity with specificity only to the serotype carbohydrate. The specificity of the antibody for homologous coating antigen was RR g greater than cell wall greater than whole cells. An antiserum to S. mutans MT573 (serotype e) contained antibody predominantly to LTA, whereas, anti-S. mutans MT703 (serotype e) reacted with both dextran and LTA; however, the activity to LTA was removed by prior adsorption of the antiserum with S. pyogenes cells. This treatment did not alter the antibody activity to dextran. To establish the sensitivity of ELISA, a purified IgG anti-serotype carbohydrate antibody was prepared by adsorption of anti-S. mutans 6715 antiserum with a mutant of S. mutans which lacks serotype carbohydrate followed by adsorption and elution of specific antibodies from S. mutans 6715 whole cells. The minimum level of sensitivity of ELISA was 12.5 ng of IgG anti-serotype carbohydrate.
开发了一种酶联免疫吸附测定法(ELISA)来定量针对革兰氏阳性细菌变形链球菌各种细胞表面抗原的抗体水平。本研究采用变形链球菌的全细胞和纯化的细胞壁成分、化脓性链球菌的脂磷壁酸(LTA)以及葡聚糖T 2000作为包被抗原。变形链球菌的细胞壁通过机械破碎全细胞,然后进行差速离心和蛋白酶处理来纯化。血清型特异性碳水化合物通过柱色谱法从高压灭菌、冻干的变形链球菌全细胞制剂中纯化。LTA通过化脓性链球菌酚水提取物的琼脂糖4B色谱法制备,并用于检测抗聚甘油磷酸(PGP)抗体。一种针对变形链球菌6715(血清型g)的兔抗血清,能与纯化的碳水化合物抗原(RR g)沉淀,在用ELISA检测时,与变形链球菌6715的纯化细胞壁和全细胞反应良好,与RR g的活性较低,对LTA和葡聚糖的活性较低。用化脓性链球菌全细胞吸附该抗血清后产生的抗体活性仅对血清型碳水化合物具有特异性。抗体对同源包被抗原的特异性为RR g>细胞壁>全细胞。一种针对变形链球菌MT573(血清型e)的抗血清主要含有针对LTA的抗体,而抗变形链球菌MT703(血清型e)与葡聚糖和LTA都有反应;然而,在用化脓性链球菌细胞预先吸附抗血清后,对LTA的活性被去除。这种处理没有改变对葡聚糖的抗体活性。为了确定ELISA的灵敏度,通过用缺乏血清型碳水化合物的变形链球菌突变体吸附抗变形链球菌6715抗血清,然后从变形链球菌6715全细胞中吸附和洗脱特异性抗体,制备了纯化的IgG抗血清型碳水化合物抗体。ELISA的最低灵敏度水平为12.5 ng IgG抗血清型碳水化合物。