Mouse infection models for space flight immunology.

Stephen Keith Chapes, Roman Reddy Ganta
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引用次数: 5

Abstract

Several immunological processes can be affected by space flight. However, there is little evidence to suggest that flight-induced immunological deficits lead to illness. Therefore, one of our goals has been to define models to examine host resistance during space flight. Our working hypothesis is that space flight crews will come from a heterogeneous population; the immune response gene make-up will be quite varied. It is unknown how much the immune response gene variation contributes to the potential threat from infectious organisms, allergic responses or other long term health problems (e.g. cancer). This article details recent efforts of the Kansas State University gravitational immunology group to assess how population heterogeneity impacts host health, either in laboratory experimental situations and/or using the skeletal unloading model of space-flight stress. This paper details our use of several mouse strains with several different genotypes. In particular, mice with varying MHCII allotypes and mice on the C57BL background with different genetic defects have been particularly useful tools with which to study infections by Staphylococcus aureus, Salmonella typhimurium, Pasteurella pneumotropica and Ehrlichia chaffeensis. We propose that some of these experimental challenge models will be useful to assess the effects of space flight on host resistance to infection.

航天飞行免疫学小鼠感染模型。
一些免疫过程会受到太空飞行的影响。然而,几乎没有证据表明飞行引起的免疫缺陷会导致疾病。因此,我们的目标之一是定义模型来检查宿主在太空飞行中的抵抗力。我们的工作假设是,太空飞行机组人员将来自异质人群;免疫反应基因的组成将是多种多样的。目前尚不清楚免疫反应基因变异对感染性生物、过敏反应或其他长期健康问题(如癌症)的潜在威胁有多大影响。本文详细介绍了堪萨斯州立大学重力免疫学小组最近的努力,以评估种群异质性如何影响宿主健康,无论是在实验室实验情况下还是使用太空飞行应力的骨骼卸载模型。本文详细介绍了我们使用几种不同基因型的几种小鼠菌株。特别是,具有不同MHCII同种异体型的小鼠和具有不同遗传缺陷的C57BL背景的小鼠已成为研究金黄色葡萄球菌、鼠伤寒沙门氏菌、尘肺巴氏杆菌和沙非埃利希体感染的特别有用的工具。我们建议这些实验挑战模型中的一些将有助于评估太空飞行对宿主抗感染的影响。
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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