首页> 美国卫生研究院文献>BMC Microbiology >Universal membrane-labeling combined with expression of Katushka far-red fluorescent protein enables non-invasive dynamic and longitudinal quantitative 3D dual-color fluorescent imaging of multiple bacterial strains in mouse intestine
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Universal membrane-labeling combined with expression of Katushka far-red fluorescent protein enables non-invasive dynamic and longitudinal quantitative 3D dual-color fluorescent imaging of multiple bacterial strains in mouse intestine

机译:通用膜标记结合Katushka远红色荧光蛋白的表达实现了小鼠肠内多种细菌菌株的无创动态和纵向定量3D双色荧光成像

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摘要

BackgroundThe human gastrointestinal (GI) tract microbiota has been a subject of intense research throughout the 3rd Millennium. Now that a general picture about microbiota composition in health and disease is emerging, questions about factors determining development of microbiotas with specific community structures will be addressed. To this end, usage of murine models for colonization studies remains crucial. Optical in vivo imaging of either bioluminescent or fluorescent bacteria is the basis for non-invasive detection of intestinal colonization of bacteria. Although recent advances in in vivo fluorescence imaging have overcome many limitations encountered in bioluminescent imaging of intestinal bacteria, such as requirement for live cells, high signal attenuation and 2D imaging, the method is still restricted to bacteria for which molecular cloning tools are available.
机译:背景技术在整个第三千年中,人类胃肠道(GI)微生物群一直是研究的热点。现在,关于健康和疾病中微生物群落组成的一般情况已经浮出水面,将解决有关决定具有特定群落结构的微生物群落发展的因素的问题。为此,将鼠模型用于定植研究仍然至关重要。生物发光或荧光细菌的光学体内成像是无创检测细菌肠道定殖的基础。尽管体内荧光成像的最新进展已经克服了肠道细菌生物发光成像中遇到的许多局限性,例如对活细胞的要求,高信号衰减和2D成像,但该方法仍然限于可使用分子克隆工具的细菌。

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