放线菌诱导的非特异性免疫抑制作用。

K Ochiai, T Kurita, Y Kamino, T Ikeda
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摘要

以往的研究表明,免疫抑制作用与牙周病细菌的致病性和牙周病的发生有关。我们报道了放线菌芽孢杆菌和中间芽孢杆菌的可溶性声波提取物(SE)对抗srbc斑块形成细胞的初级反应有很强的免疫抑制作用。来自放线菌的SE抑制IgM----IgG同型转换。本研究的目的是探讨SE对继发性免疫反应的影响。作为对照,小鼠(C3H/HeN)腹腔注射SRBC和完全弗氏佐剂,并在30天后补充SRBC免疫。为了研究放线菌酵母SE对继发反应的影响,本实验共设4组。一组C3H/HeN小鼠在SRBC一次免疫前静脉注射SE。另外三组在二次注射SRBC的不同时间给予SE,并分别指定注射前、注射后和同时注射。在第二次注射后第5天进行溶血斑块测定,并估计各免疫球蛋白类和IgG亚类的抗srbc斑块形成细胞。各组均有免疫抑制作用。本研究强烈提示牙周病菌具有较强的佐剂活性,放线菌长期感染伴牙周菌群波动可引起免疫系统畸变。抑制的免疫系统解释了在我们的调查中测试的细菌的爆炸性生长,导致细菌在龈缝中藏匿的混合或机会性感染。
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[Non-specific immunosuppressive effect induced by A. actinomycetemcomitans].

Previous studies have shown that immunosuppressive effects are related to the pathogenicity of periodontopathic bacteria and the development of periodontal disease. We reported soluble sonic extracts (SE) from A. actinomycetemcomitans and B. intermedius had a strong immunosuppressive effect on primary response of anti-SRBC plaque forming cells. SE from A. actinomycetemcomitans inhibited the IgM----IgG isotype switching. The purpose of this study was to investigate the effect of SE on secondary immunoresponse. As a control, mice (C3H/HeN) were immunized with intraperitoneal injection of SRBC and complete Freund's adjuvant, and additional SRBC after 30 days. In order to study the effect of SE from A. actinomycetemcomitans on secondary response, four groups were prepared in this study. One group of C3H/HeN mice were injected SE intravenously before the primary immunization of SRBC. The other three groups were given SE at different time on secondary injection of SRBC and designated the pre-, post-, or simultaneous injection, respectively. Hemolytic plaque assay was performed and estimated anti-SRBC plaque forming cells in each immunoglobulin class and IgG subclass, on the 5th day after the secondary injection. The immunosuppressive effect was found in all the groups which we examined. The present study strongly suggests that periodontopathic bacteria have strong adjuvant activity, and long-term Actinobacillus infection accompanied by periodontal fluctuation in bacterial flora may induce aberration in the immune system. The suppressed immune system explain the explosive growth of bacteria tested in our investigation, resulting in the mixed or opportunistic infection by bacteria harbored in the gingival crevice.

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