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首页> 外文期刊>International Journal of Cell Biology >Clot Formation in the Sipunculid WormThemiste petricola: A Haemostatic and Immune Cellular Response
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Clot Formation in the Sipunculid WormThemiste petricola: A Haemostatic and Immune Cellular Response

机译:Sipunculid蠕虫Themiste petricola中的凝块形成:止血和免疫细胞反应。

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Clot formation in the sipunculidThemiste petricola, a coelomate nonsegmented marine worm without a circulatory system, is a cellular response that creates a haemostatic mass upon activation with sea water. The mass with sealing properties is brought about by homotypic aggregation of granular leukocytes present in the coelomic fluid that undergo a rapid process of fusion and cell death forming a homogenous clot or mass. The clot structure appears to be stabilized by abundant F-actin that creates a fibrous scaffold retaining cell-derived components. Since preservation of fluid within the coelom is vital for the worm, clotting contributes to rapidly seal the body wall and entrap pathogens upon injury, creating a matrix where wound healing can take place in a second stage. During formation of the clot, microbes or small particles are entrapped. Phagocytosis of self and non-self particles shed from the clot occurs at the clot neighbourhood, demonstrating that clotting is the initial phase of a well-orchestrated dual haemostatic and immune cellular response.
机译:sipunculidThemiste petricola(一种没有循环系统的腔状无节节海洋蠕虫)中的凝块形成是一种细胞反应,在被海水激活后会产生止血块。具有密封特性的团块是由存在于造液中的粒状白细胞的同型聚集引起的,它们经历快速融合过程和细胞死亡,形成均一的血块或团块。凝块结构似乎被大量的F-肌动蛋白所稳定,后者产生了纤维状支架,保留了细胞衍生的成分。由于保留体液对蠕虫至关重要,因此凝结有助于迅速密封体壁并在受伤时截留病原体,从而形成基质,伤口可以在第二阶段进行愈合。在凝块形成过程中,会截留微生物或小颗粒。从凝块脱落的自身和非自身颗粒的吞噬作用发生在凝块附近,表明凝结是精心设计的双重止血和免疫细胞反应的初始阶段。

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