Strongyloides stercoralis: a model for translational research on parasitic nematode biology.

James B Lok
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引用次数: 97

Abstract

Because of their free-living life cycle alternatives, Strongyloides and related nematode parasites may represent the best models for translating C. elegans science to the study of nematode parasitism. S. stercoralis, a significant pathogen of humans, can be maintained in laboratory dogs and gerbils. Biosafety precautions necessary for work with S. stercoralis, though unfamiliar to many C. elegans researchers, are straightforward and easily accomplished. Although specialized methods are necessary for large-scale culture of the free-living stages of S. stercoralis, small-scale cultures for experimental purposes may be undertaken using minor modifications of standard C. elegans methods. Similarly, the morphological similarities between C. elegans and the free-living stages of S. stercoralis allow investigational methods such as laser cell ablation and DNA transformation by gonadal microinjection to be easily adapted from C. elegans to S. stercoralis. Comparative studies employing these methods have yielded new insights into the neuronal control of the infective process in parasites and its similarity to regulation of dauer development in C. elegans. Furthermore, we have developed a practical method for transient transformation of S. stercoralis with vector constructs having various tissue- and cell-specific expression patterns and have assembled these into a modular vector kit for distribution to the community.

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粪圆线虫:寄生线虫生物学转化研究的一个模型。
由于它们具有自由生活的生命周期选择,圆线虫和相关的线虫寄生虫可能是将秀丽隐杆线虫科学转化为线虫寄生研究的最佳模型。粪球菌是人类的一种重要病原体,可在实验犬和沙鼠体内维持。虽然许多秀丽隐杆线虫研究人员不熟悉,但研究粪虫所需的生物安全预防措施很简单,很容易完成。虽然需要专门的方法来大规模培养粪虫的自由生活阶段,但可以对标准秀丽隐杆线虫的方法进行轻微修改,以进行实验目的的小规模培养。同样,秀丽隐杆线虫和粪线虫自由生活阶段的形态相似性使得激光细胞消融和性腺显微注射DNA转化等研究方法很容易在秀丽隐杆线虫和粪线虫之间进行适应。采用这些方法的比较研究对寄生虫感染过程的神经元控制及其与秀丽隐杆线虫细胞发育调节的相似性产生了新的见解。此外,我们开发了一种实用的方法,利用具有各种组织和细胞特异性表达模式的载体构建物对粪球菌进行瞬时转化,并将这些构建物组装成一个模块化的载体工具包,以便在社区中分发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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