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人疥螨在人体皮肤中的行为:一项超微结构研究。

The behaviour of Sarcoptes scabiei var. hominis in human skin: an ultrastructural study.

作者信息

Fimiani M, Mazzatenta C, Alessandrini C, Paccagnini E, Andreassi L

机构信息

Department of Dermatology, University of Siena, Italy.

出版信息

J Submicrosc Cytol Pathol. 1997 Jan;29(1):105-13.

PMID:9066149
Abstract

The biology of Sarcoptes scabiei var. hominis is poorly understood because of the lack of an in vivo or in vitro propagation system. To obtain more information on the mite behaviour in its natural habitat we conducted an ultrastructural study of burrows in a number of patients with common scabies. Scanning electron microscopy furnished attractive images of the tunnel, parasite body and eggs architecture and demonstrated the presence of holes in the tunnel roof probably representing aeration structures. Transmission electron microscopy showed a marked keratinocyte damage around burrowing mites, well evident ahead of the mite capitulum also. Faecal pellets containing keratinocyte micro-organelles (melanosomes and mitochondria) were documented in posterior midgut. For the first time we disclosed the adhesion mechanism of eggs to the burrow floor. We showed that the typical finger-like projections of the outer layer of the egg shell gradually disappear where the eggs are in contact with the tunnel floor. This allows the inner layer of the egg shell to fuse and stick with the damaged keratinocytes lining the tunnel floor. Our observation substantiates that Sarcoptes scabiei produces a proteolytic substance (salivary secretions?) that has a key role in its life cycle allowing burrowing, feeding and eggs-burrow adhesion.

摘要

由于缺乏体内或体外繁殖系统,人们对人疥螨的生物学特性了解甚少。为了获取更多关于这种螨虫在其自然栖息地行为的信息,我们对多名寻常疥疮患者的洞穴进行了超微结构研究。扫描电子显微镜提供了隧道、寄生虫体和卵结构的诱人图像,并证明隧道顶部存在孔洞,可能代表通气结构。透射电子显微镜显示,在打洞的螨虫周围有明显的角质形成细胞损伤,在螨虫头部前方也很明显。在后肠中部发现了含有角质形成细胞微细胞器(黑素体和线粒体)的粪便颗粒。我们首次揭示了卵与洞穴底部的粘附机制。我们发现,蛋壳外层典型的手指状突起在卵与隧道底部接触的地方逐渐消失。这使得蛋壳内层能够与衬在隧道底部的受损角质形成细胞融合并粘附。我们的观察证实,人疥螨产生一种蛋白水解物质(唾液分泌物?),该物质在其生命周期中起着关键作用,使打洞、进食和卵与洞穴粘附成为可能。

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