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与丝虫寄生虫特定发育阶段相关的保护性免疫。

Protective immunity linked with a distinct developmental stage of a filarial parasite.

作者信息

Eisenbeiss W F, Apfel H, Meyer T F

机构信息

Abteilung Infektionsbiologie, Max-Planck-Institut für Biologie, Tübingen, Federal Republic of Germany.

出版信息

J Immunol. 1994 Jan 15;152(2):735-42.

PMID:8283048
Abstract

Repeated low dose infections of the jird Meriones unguiculatus, with the filarial parasite Acanthocheilonema viteae cause a substantial reduction of the total worm burden, suggesting a parasite-driven immune mechanism that controls super-infections. Quantitative recovery of parasites from tissues of triple infected jirds reveals that the larvae derived from a subsequent challenge infection are inactivated or severely impaired several days after transmission, precisely during their molt from the L3 to the L4 stage. Moreover, only larvae undergoing the molt from L3 to L4 stages are capable of stimulating an immune response directed against the challenge infection, indicating that protective Ag are produced during the molting period. Consistent with this, inactivated L3 or live L4 do not produce the same effect. In contrast to susceptible animals, immune jirds elicit high serum antibody titers against molting Ag. Indirect fluorescence antibody-binding tests with sera from protected jirds reveal specific labeling of the surface of molting L3 and not other larval stages, implying a stage-specific elimination process. The identification of molting L3 as a natural target for host immune mechanisms, emphasizes the central importance of this larval stage for future efforts aimed toward the development of a filarial vaccine.

摘要

用丝状寄生虫棘唇线虫反复低剂量感染沙鼠(Meriones unguiculatus),会使蠕虫总负荷大幅降低,这表明存在一种由寄生虫驱动的免疫机制来控制重复感染。从三重感染沙鼠的组织中定量回收寄生虫发现,后续激发感染产生的幼虫在传播几天后,恰好在其从L3期蜕皮到L4期时,会失活或严重受损。此外,只有经历从L3期到L4期蜕皮的幼虫才能刺激针对激发感染的免疫反应,这表明在蜕皮期会产生保护性抗原。与此一致的是,灭活的L3期幼虫或活的L4期幼虫不会产生相同的效果。与易感动物不同,免疫沙鼠会产生针对蜕皮抗原的高血清抗体滴度。用受保护沙鼠的血清进行间接荧光抗体结合试验,结果显示蜕皮L3期幼虫的表面有特异性标记,而其他幼虫阶段则没有,这意味着存在一个阶段特异性清除过程。将蜕皮L3期幼虫确定为宿主免疫机制的天然靶点,强调了这个幼虫阶段对于未来开发丝状线虫疫苗的核心重要性。

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