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首页> 外文期刊>The Journal of Experimental Biology >A chemotactic response facilitates mosquito salivary gland infection by malaria sporozoites
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A chemotactic response facilitates mosquito salivary gland infection by malaria sporozoites

机译:趋化反应促进疟疾子孢子对蚊唾液腺的感染

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Sporozoite invasion of mosquito salivary glands is critical for malaria transmission to vertebrate hosts. After release into the mosquito hemocoel, the means by which malaria sporozoites locate the salivary glands is unknown. We developed a Matrigel-based in vitro system to observe and analyze the motility of GFP-expressing Plasmodium berghei sporozoites in the presence of salivary gland products of Anopheles stephensi mosquitoes using temperature-controlled, low-light-level video microscopy. Sporozoites moved toward unheated salivary gland homogenate (SGH) but not to SGH that had been heated at 56 degrees C for 30 min. We also investigated the origin of the attracted population. Attraction to SGH was restricted to hemolymph- and oocyst-derived sporozoites; salivary gland-derived sporozoites were not attracted to SGH. These data imply that sporozoites employ a chemotactic response to high molecular mass proteins or carbohydrate-binding proteins to locate salivary glands. This raises the possibility of utilizing anti-chemotactic factors for the development of mosquito transmission blocking agents.
机译:子孢子入侵蚊唾液腺对于疟疾向脊椎动物宿主的传播至关重要。释放到蚊子的血小管中后,疟疾子孢子定位唾液腺的方法尚不清楚。我们开发了一个基于Matrigel的体外系统,以观察和分析表达GFP的伯氏疟原虫子孢子在存在按蚊,唾液腺产品的唾液腺中的运动,该过程使用温度控制的微光视频显微镜。子孢子移向未加热的唾液腺匀浆(SGH),但未移至在56摄氏度下加热30分钟的SGH。我们还调查了吸引人口的来源。对SGH的吸引力仅限于血淋巴和卵囊性子孢子。唾液腺衍生的子孢子不被SGH吸引。这些数据暗示子孢子对高分子量蛋白质或碳水化合物结合蛋白采用趋化反应来定位唾液腺。这增加了利用抗趋化因子开发蚊子传播阻断剂的可能性。

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