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首页> 外文期刊>Journal of Clinical Microbiology >Quantitative fluorescent immunoassay of antibodies to, and surface antigens of, Actinomyces viscosus.
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Quantitative fluorescent immunoassay of antibodies to, and surface antigens of, Actinomyces viscosus.

机译:粘性放线菌的抗体和表面抗原的定量荧光免疫测定。

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摘要

Optimal conditions for a fluorescence immunoassay of antibodies to, and surface antigens of, Actinomyces viscosus ATCC 19246 are described. In the standard fluorescence immunoassay, 10(8) colony-forming units of A. viscosus reacted with an antibody preparation, were washed, and then were treated with an excess of fluorescein-conjugated goat anti-rabbit immunoglobulin G. After another set of washes, fluorescence was determined in a spectofluorometer; in most cases excitation was at 485 nm, with emission measured at 525 nm. These conditions minimized interference from light scatter and stray light. Under appropriate conditions, antibodies to A. viscosus could be readily determined, with the fluorescence of the specific antibody-treated cells more than five times the fluorescence of controls treated with normal rabbit serum. Organisms coated with specific antibody could be detected at levels approaching 10(5) colony-forming units per ml. The standard fluorescence immunoassay procedure was readily adapted to the measurement of either particulate or soluble surface antigens of A. viscosus by competition of the antigen with a fixed amount of antibody in the standard assay system; the competition resulted in an antigen dose-dependent inhibition of fluorescence. The fluorescent immunoassay system thus appears to be a general one that could be applied to other microbial systems as well.
机译:描述了针对粘性放线菌ATCC 19246的抗体和表面抗原的荧光免疫测定的最佳条件。在标准的荧光免疫测定中,洗涤与抗体制剂反应的粘稠曲霉的10(8)个菌落形成单位,然后用过量的荧光素偶联的山羊抗兔免疫球蛋白G进行处理。 ,在分光荧光计中测定荧光;在大多数情况下,激发波长为485 nm,发射波长为525 nm。这些条件使来自光散射和杂散光的干扰最小化。在适当的条件下,可以很容易地确定针对粘液曲霉的抗体,特异性抗体处理的细胞的荧光是正常兔血清处理的对照的荧光的五倍以上。可以检测到被特异抗体包被的生物,其水平接近每毫升10(5)个菌落形成单位。通过在标准测定系统中将抗原与固定量的抗体竞争,标准荧光免疫测定方法很容易适应于粘液曲霉颗粒或可溶性表面抗原的测量。竞争导致抗原剂量依赖性的荧光抑制。因此,荧光免疫测定系统似乎是一种通用的系统,也可以应用于其他微生物系统。

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