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Immunoglobulin for Treating Bacterial Infections: One More Mechanism of Action

机译:免疫球蛋白治疗细菌感染:另一种作用机制

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摘要

The mechanisms underlying the effects of immunoglobulins on bacterial infections are thought to involve bacterial cell lysis via complement activation, phagocytosis via bacterial opsonization, toxin neutralization, and antibody-dependent cell-mediated cytotoxicity. Nevertheless, recent advances in the study of the pathogenicity of Gram-negative bacteria have raised the possibility of an association between immunoglobulin and bacterial toxin secretion. Over time, new toxin secretion systems like the type III secretion system have been discovered in many pathogenic Gram-negative bacteria. With this system, the bacterial toxins are directly injected into the cytoplasm of the target cell through a special secretory apparatus without any exposure to the extracellular environment, and therefore with no opportunity for antibodies to neutralize the toxin. However, antibodies against the V-antigen, which is located on the needle-shaped tip of the bacterial secretion apparatus, can inhibit toxin translocation, thus raising the hope that the toxin may be susceptible to antibody targeting. Because multi-drug resistant bacteria are now prevalent, inhibiting this secretion mechanism is an attractive alternative or adjunctive therapy against lethal bacterial infections. Thus, it is not unreasonable to define the blocking effect of anti-V-antigen antibodies as the fifth mechanism for immunoglobulin action against bacterial infections.
机译:免疫球蛋白对细菌感染的潜在作用机制被认为涉及通过补体激活引起细菌细胞裂解,通过细菌调理作用吞噬吞噬作用,毒素中和作用以及抗体依赖性细胞介导的细胞毒性作用。然而,革兰氏阴性细菌的致病性研究的最新进展提高了免疫球蛋白与细菌毒素分泌之间联系的可能性。随着时间的流逝,在许多致病性革兰氏阴性细菌中发现了新的毒素分泌系统,例如III型分泌系统。通过该系统,细菌毒素通过特殊的分泌设备直接注入靶细胞的细胞质中,而不会暴露于细胞外环境,因此抗体没有机会中和毒素。然而,位于细菌分泌设备的针状尖端上的针对V抗原的抗体可以抑制毒素的转运,从而增加了这种毒素可能易于靶向抗体的希望。由于现在具有多种药物耐药的细菌,抑制这种分泌机制是对抗致死性细菌感染的一种有吸引力的替代方法或辅助疗法。因此,将抗V抗原抗体的阻断作用定义为针对细菌感染的免疫球蛋白作用的第五种机制并非没有道理。

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