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对曼氏血吸虫经辐照的免疫致敏童虫在肺部延长停留期间进行的超微结构检查。

An ultrastructural examination of irradiated, immunizing schistosomula of Schistosoma mansoni during their extended stay in the lungs.

作者信息

Mastin A, Bickle Q D, Wilson R A

出版信息

Parasitology. 1985 Aug;91 ( Pt 1):101-10. doi: 10.1017/s0031182000056547.

Abstract

An ultrastructural study has been performed on radiation-attenuated parasites fixed in situ during their extended stay in the lungs. At day 7 post-infection all parasites were located within blood vessels. In contrast to normally migrating parasites, at days 13 and 21 post-infection the majority of radiation-attenuated parasites were lying free within alveoli. As far as could be seen, radiation-attenuated parasites had undergone the normal developmental changes associated with the lung stage of migration. These included elongation of the body and loss of mid-body spines and the fibrous layer beneath the tegument. No ultrastructural evidence was found to suggest why schistosomula failed to migrate further and instead burst into alveoli. No parasites observed on day 7 post-infection were associated with a host inflammatory reaction. At day 13, inflammation was noticeable but could have been a response as much to pulmonary tissue damage as to the presence of parasites. At day 21 post-infection some parasites were internally disrupted but were not associated with host inflammatory reactions and had intact tegumental surfaces - all facts consistent with death by autophagy. One parasite was observed at day 21 with an adherent neutrophil infiltrate and extensive tegumental damage. The relevance of persisting lung-stage parasites to the induction of resistance to challenge is discussed.

摘要

对在肺部长期停留期间原位固定的辐射减毒寄生虫进行了超微结构研究。感染后第7天,所有寄生虫都位于血管内。与正常迁移的寄生虫不同,感染后第13天和第21天,大多数辐射减毒寄生虫游离于肺泡内。就所能观察到的情况而言,辐射减毒寄生虫经历了与肺部迁移阶段相关的正常发育变化。这些变化包括虫体伸长、体表中部棘突和皮层下纤维层消失。未发现超微结构证据表明血吸虫幼虫为何未能进一步迁移而是破裂进入肺泡。感染后第7天观察到的寄生虫均未引发宿主炎症反应。在第13天,炎症明显,但这可能是对肺组织损伤以及寄生虫存在的共同反应。感染后第21天,一些寄生虫内部结构破坏,但未引发宿主炎症反应,且体表完整——所有这些事实都与自噬导致的死亡一致。在第21天观察到一只寄生虫附着有嗜中性粒细胞浸润且体表广泛受损。文中讨论了持续存在的肺部阶段寄生虫与诱导攻击抗性之间的相关性。

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