模型鼠钩虫巴西尼波圆线虫和多回Heligmosomoides诱导宿主免疫应答的研究

Q1 Agricultural and Biological Sciences Current protocols in mouse biology Pub Date : 2018-02-13 DOI:10.1002/cpmo.34
T. Bouchery, B. Volpe, K. Shah, L. Lebon, K. Filbey, G. LeGros, N. Harris
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引用次数: 24

摘要

钩虫感染(美洲钩虫或十二指肠钩虫)是一种被忽视的主要热带病,影响全世界约7亿人,由于这些蠕虫需要以宿主血液为食,可导致严重发病率。两种啮齿类寄生虫巴西奈瑟和多毛奈瑟是两种最常用的实验钩虫感染的实验室模型。这两种寄生虫都能引起2型免疫反应,它们的使用有助于深入了解2型免疫的分子机制,并有助于理解免疫反应如何控制寄生虫的数量。在这里,我们提供了一套完整的方法来研究多回螺旋体和巴西螺螺旋体感染小鼠的感染的自然进程和肺和肠道的宿主免疫反应。详细信息包括在每个时间点进行的最重要的寄生虫学和免疫学测量。©2017 by John Wiley &儿子,Inc。
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The Study of Host Immune Responses Elicited by the Model Murine Hookworms Nippostrongylus brasiliensis and Heligmosomoides polygyrus

Hookworm infections (Necator americanus or Ancylostoma duodenale) represent a major neglected tropical disease, affecting approximately 700 million people worldwide, and can cause severe morbidity due to the need for these worms to feed on host blood. N. brasiliensis and H. polygrus, both rodent parasites, are the two most commonly employed laboratory models of experimental hookworm infection. Both parasites evoke type 2 immune responses, and their use has been instrumental in generating fundamental insight into the molecular mechanisms of type-2 immunity and for understanding how the immune response can control parasite numbers. Here we provide a complete set of methods by which to investigate the natural progression of infection and the host immunological responses in the lung and intestine of H. polygyrus– and N. brasiliensis–infected mice. Detailed information is included about the most important parasitological and immunological measurements to perform at each time point. © 2017 by John Wiley & Sons, Inc.

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来源期刊
Current protocols in mouse biology
Current protocols in mouse biology Agricultural and Biological Sciences-Animal Science and Zoology
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期刊介绍: Sound and reproducible laboratory methods are the foundation of scientific discovery. Yet, all too often, nuances that are critical for an experiment''s success are not captured in the primary literature but exist only as part of a lab''s oral tradition. The aim of Current Protocols in Mouse Biology is to provide the clearest, most detailed and reliable step-by-step instructions for protocols involving the use of mice in biomedical research. Written by experts in the field and extensively edited to our exacting standards, the protocols include all of the information necessary to complete an experiment in the laboratory—introduction, materials lists with supplier information, detailed step-by-step procedures with helpful annotations, recipes for reagents and solutions, illustrative figures and information-packed tables. Each article also provides invaluable discussions of background information, applications of the methods, important assumptions, key parameters, time considerations, and tips to help avoid common pitfalls and troubleshoot experiments. Furthermore, Current Protocols in Mouse Biology content is thoughtfully organized by topic for optimal usage and to maximize contextual knowledge. Quarterly issues allow Current Protocols to constantly evolve to keep pace with the newest discoveries and developments. Current Protocols in Mouse Biology brings together resources in mouse biology and genetics and provides a mouse protocol resource that covers all aspects of mouse biology. Current Protocols in Mouse Biology also permits optimization of mouse model usage, which is significantly impacted by both cost and ethical constraints. Optimal and standardized mouse protocols ultimately reduce experimental variability and reduce the number of animals used in mouse experiments.
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