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ON THE MECHANISM OF THE SERUM SENSITIZATION OF ACID-FAST BACTERIA

机译:酸性快细菌血清敏化机制的研究

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摘要

Serum sensitization of the acid-fast bacteria causes two definite and directly observable changes in the bacterial surface: 1. A change from a surface readily wet by oil to a surface more readily wet by aqueous salt solution than by oil. This change is observed by microscopic examination of the bacteria in a saline-oil interface; thus detected, the surface alteration is said to constitute a "positive interface reaction." 2. An increased cohesiveness of the sensitized bacteria. This may be detected either by centrifuging the bacteria and then shaking up the sediment (resuspension reaction), or by observation of the clumps in the saline-oil interface. The interface reaction is serologically specific and confirms the existence of qualitative differences among acid-fast bacteria. The interface reaction parallels the binding of agglutinins as detected by the resuspension reaction, but not agglutination as ordinarily tested for. The interface reaction is less sensitive,—i.e., gives lower titers—than the resuspension reaction in about the average ratio of 1:3. The interface reaction in most instances runs approximately parallel to the complement fixation reaction; under at least one set of conditions, however, the interface reaction is correlated with the binding of agglutinin but not with the complement fixation reaction. How much of the bacterial surface must be covered with agglutinin in order to produce agglutination varies greatly with the bacterial strain used. The bacterial surfaces are modified by treatment with fresh normal sera in a manner quantitatively less but qualitatively not observably different from the effects of immune sera. Heating normal human, sheep, goat, or rabbit sera for 30 minutes at 56°C. has usually diminished but not abolished their effect on the bacterial surface. Similar inactivation of guinea pig sera left them without detectable effect on the bacterial surface. The agglutination prezone is shown to be due to interference by excess colloidal material with the collisions of the bacteria prerequisite to clumping. The prezone maybe abolished by centrifugation and resuspension of the sediment. Antibodies may be partially dissociated from the sensitized bacteria by alkali, with return of the bacterial surface toward its normal, unsensitized condition. A carbohydrate yielding on hydrolysis a positive pentose test has been detected in the specific alcohol extracts of acid-fast bacteria studied by Furth and Aronson.27 The tentative suggestion is made that the alcohol-soluble antigens of acid-fast microorganisms may be conjugated lipins owing their specificity to carbohydrate haptenes. Protective antipneumococcus globulins after heat denaturation have shown behavior in the saline-tricaprylin interface indistinguishable from that of maximally sensitized acid-fast bacteria. This strengthens the evidence suggesting that sensitized bacteria are coated with denatured globulin.
机译:耐酸细菌的血清致敏作用会在细菌表面产生两个确定且可直接观察到的变化:1.从易于被油润湿的表面到更容易被盐水溶液润湿而不是被油润湿的表面的变化。通过显微镜观察盐-油界面中的细菌可以观察到这种变化。如此检测到的表面变化被认为构成“正界面反应”。 2.敏化细菌的内聚力增加。可以通过离心细菌,然后摇动沉淀物(重悬反应),或观察盐-油界面中的团块来检测。界面反应是血清学特异性的,证实了耐酸细菌之间存在质的差异。如通过重悬浮反应所检测,界面反应与凝集素的结合平行,但不像通常测试的那样凝集。与重悬反应相比,界面反应的敏感性较低(即滴度更低),平均比例约为1:3。在大多数情况下,界面反应与补体固定反应大致平行;然而,在至少一组条件下,界面反应与凝集素的结合相关,而与补体固定反应无关。为了产生凝集,必须用凝集素覆盖多少细菌表面,这取决于所使用的细菌菌株。通过用新鲜的正常血清处理细菌表面,其方式在数量上减少了,但在质量上与免疫血清的作用没有明显区别。在56°C下加热正常人,绵羊,山羊或兔子的血清30分钟。通常会减少但不会消除它们对细菌表面的影响。豚鼠血清的类似失活使它们对细菌表面无可检测的影响。显示凝集前区是由于多余的胶体材料干扰了细菌团聚的碰撞所致。离心分离和沉淀物悬浮可以取消预区。抗体可以通过碱与致敏细菌部分解离,使细菌表面恢复正常,不致敏的状态。在Furth和Aronson研究的耐酸细菌的特定醇提取物中,检测到一种水解产生的戊糖测试呈阳性的碳水化合物。 27 初步建议酸的醇溶性抗原由于它们对碳水化合物半抗原的特异性,因此快速微生物可以是缀合的脂蛋白。热变性后的保护性抗肺炎球菌球蛋白已显示出在盐-tricaprylin界面中的行为与最大敏化的耐酸细菌没有区别。这加强了表明致敏细菌被变性的球蛋白覆盖的证据。

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