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曼氏血吸虫尾蚴:腹吸盘腺分泌的刺激作用适应于哺乳动物皮肤的化学成分。

Schistosoma mansoni cercariae: stimulation of acetabular gland secretion is adapted to the chemical composition of mammalian skin.

作者信息

Haas W, Diekhoff D, Koch K, Schmalfuss G, Loy C

机构信息

Institut für Zoologie I, Universität Erlangen-Nürnberg, Germany.

出版信息

J Parasitol. 1997 Dec;83(6):1079-85.

PMID:9406783
Abstract

The chemical signals of mammalian skin that stimulate the secretion of acetabular gland contents of Schistosoma mansoni cercariae were determined by exposing cercariae to fractions of human and pig skin surface obtained by thin-layer chromatography. Postacetabular gland secretion was stimulated by hydrophilic skin extracts but was often combined with a secretion of preacetabular glands. Secretion of preacetabular glands, which contain enzymes for skin lysis, could be selectively stimulated with skin surface lipids. Two different mechanisms of lipid-stimulated preacetabular gland release could be distinguished. First, secretion in combination with penetration behavior and probably tegument transformation was stimulated by the fraction of free fatty acids. Second, secretion independent of penetration behavior and tegument transformation was exclusively stimulated by glucosylceramides and phospholipids, probably phosphatidylcholines. The secretion mechanisms seem to allow a continuous lysis of epidermal macromolecules during the skin passage of the cercariae. Free fatty acids occur in the uppermost skin layers and may stimulate the combination of the first response; phospholipids and glucosylceramides are restricted to deeper epidermal layers and may stimulate the enzyme secretion there. An active preacetabular gland release was also stimulated by toxic chemicals, which could suggest an emergency penetration program for impaired cercariae.

摘要

通过将曼氏血吸虫尾蚴暴露于经薄层色谱法获得的人及猪皮肤表面组分中,确定了刺激曼氏血吸虫尾蚴腹吸盘腺分泌物分泌的哺乳动物皮肤化学信号。亲水性皮肤提取物可刺激腹吸盘后腺分泌,但通常会伴有腹吸盘前腺的分泌。含有皮肤溶解酶的腹吸盘前腺的分泌,可被皮肤表面脂质选择性地刺激。脂质刺激腹吸盘前腺释放存在两种不同机制。首先,游离脂肪酸组分可刺激与穿透行为及可能的体表转化相关的分泌。其次,葡糖神经酰胺和磷脂(可能是磷脂酰胆碱)可单独刺激与穿透行为及体表转化无关的分泌。这些分泌机制似乎可使尾蚴在皮肤穿行过程中持续溶解表皮大分子。游离脂肪酸存在于皮肤最上层,可能刺激第一种反应的协同作用;磷脂和葡糖神经酰胺局限于表皮较深层,可能刺激该处的酶分泌。有毒化学物质也可刺激腹吸盘前腺的活跃释放,这可能提示受损尾蚴存在紧急穿透程序。

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