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检测感染单核细胞增生李斯特菌的小鼠体内的细菌载量和免疫反应。

Measuring bacterial load and immune responses in mice infected with Listeria monocytogenes.

作者信息

Wang Nancy, Strugnell Richard, Wijburg Odilia, Brodnicki Thomas

机构信息

St Vincent's Institute, Department of Medicine, The University of Melbourne, Australia.

出版信息

J Vis Exp. 2011 Aug 9(54):3076. doi: 10.3791/3076.

Abstract

Listeria monocytogenes (Listeria) is a Gram-positive facultative intracellular pathogen. Mouse studies typically employ intravenous injection of Listeria, which results in systemic infection. After injection, Listeria quickly disseminates to the spleen and liver due to uptake by CD8α+ dendritic cells and Kupffer cells. Once phagocytosed, various bacterial proteins enable Listeria to escape the phagosome, survive within the cytosol, and infect neighboring cells. During the first three days of infection, different innate immune cells (e.g. monocytes, neutrophils, NK cells, dendritic cells) mediate bactericidal mechanisms that minimize Listeria proliferation. CD8+ T cells are subsequently recruited and responsible for the eventual clearance of Listeria from the host, typically within 10 days of infection. Successful clearance of Listeria from infected mice depends on the appropriate onset of host immune responses. There is a broad range of sensitivities amongst inbred mouse strains. Generally, mice with increased susceptibility to Listeria infection are less able to control bacterial proliferation, demonstrating increased bacterial load and/or delayed clearance compared to resistant mice. Genetic studies, including linkage analyses and knockout mouse strains, have identified various genes for which sequence variation affects host responses to Listeria infection. Determination and comparison of infection kinetics between different mouse strains is therefore an important method for identifying host genetic factors that contribute to immune responses against Listeria. Comparison of host responses to different Listeria strains is also an effective way to identify bacterial virulence factors that may serve as potential targets for antibiotic therapy or vaccine design. We describe here a straightforward method for measuring bacterial load (colony forming units [CFU] per tissue) and preparing single-cell suspensions of the liver and spleen for FACS analysis of immune responses in Listeria-infected mice. This method is particularly useful for initial characterization of Listeria infection in novel mouse strains, as well as comparison of immune responses between different mouse strains infected with Listeria. We use the Listeria monocytogenes EGD strain that, when cultured on blood agar, exhibits a characteristic halo zone around each colony due to β-hemolysis (Figure 1). Bacterial load and immune responses can be determined at any time-point after infection by culturing tissue homogenate on blood agar plates and preparing tissue cell suspensions for FACS analysis using the protocols described below. We would note that individuals who are immunocompromised or pregnant should not handle Listeria, and the relevant institutional biosafety committee and animal facility management should be consulted before work commences.

摘要

单核细胞增生李斯特菌(李斯特菌)是一种革兰氏阳性兼性细胞内病原体。小鼠研究通常采用静脉注射李斯特菌,这会导致全身感染。注射后,由于CD8α+树突状细胞和库普弗细胞摄取,李斯特菌迅速扩散到脾脏和肝脏。一旦被吞噬,各种细菌蛋白使李斯特菌能够逃离吞噬体,在细胞质中存活并感染邻近细胞。在感染的前三天,不同的固有免疫细胞(如单核细胞、中性粒细胞、自然杀伤细胞、树突状细胞)介导杀菌机制,使李斯特菌增殖降至最低。随后招募CD8+T细胞,负责最终从宿主体内清除李斯特菌,通常在感染后10天内完成。从感染小鼠中成功清除李斯特菌取决于宿主免疫反应的适当启动。近交小鼠品系之间存在广泛的敏感性差异。一般来说,对李斯特菌感染易感性增加的小鼠控制细菌增殖的能力较弱,与抗性小鼠相比,其细菌载量增加和/或清除延迟。包括连锁分析和基因敲除小鼠品系在内的遗传学研究已经确定了各种基因,其序列变异会影响宿主对李斯特菌感染的反应。因此,测定和比较不同小鼠品系之间的感染动力学是识别有助于抗李斯特菌免疫反应的宿主遗传因素的重要方法。比较宿主对不同李斯特菌菌株的反应也是识别可能作为抗生素治疗或疫苗设计潜在靶点的细菌毒力因子的有效方法。我们在此描述一种直接的方法,用于测量细菌载量(每组织的菌落形成单位[CFU]),并制备肝脏和脾脏的单细胞悬液,用于对感染李斯特菌的小鼠的免疫反应进行流式细胞术分析。该方法对于新小鼠品系中李斯特菌感染的初步表征以及感染李斯特菌的不同小鼠品系之间的免疫反应比较特别有用。我们使用单核细胞增生李斯特菌EGD菌株,当在血琼脂上培养时,由于β-溶血,每个菌落周围会出现特征性的晕圈区域(图1)。通过在血琼脂平板上培养组织匀浆,并使用下述方案制备用于流式细胞术分析的组织细胞悬液,可以在感染后的任何时间点测定细菌载量和免疫反应。我们需要注意的是,免疫功能低下或怀孕的个体不应处理李斯特菌,在开始工作前应咨询相关机构生物安全委员会和动物设施管理部门。

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