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Advances in imaging the innate and adaptive immune response to Toxoplasma gondii

机译:刚体弓形虫先天性和适应性免疫反应成像的进展

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摘要

Toxoplasma gondii is an intracellular protozoan parasite that infects a wide variety of warm-blooded hosts and can have devastating effects in the developing fetus as well as the immunocompromised host. An appreciation of how this organism interacts with the host immune system is crucial to understanding the pathogenesis of this disease. The last decade has been marked by the application of various imaging techniques, such as bioluminescent imaging as well as confocal and multiphoton microscopy to study toxoplasmosis. The ability to manipulate parasites to express fluorescent/bioluminescent markers or model antigens/enzymes combined with the development of reporter mice that allow the detection of distinct immune populations have been crucial to the success of many of these studies. These approaches have permitted the visualization of parasites and immune cells in real-time and provided new insights into the nature of host–pathogen interactions. This article highlights some of the advances in imaging techniques, their strengths and weaknesses, and how these techniques have impacted our understanding of the interaction between parasites and various immune populations during toxoplasmosis.
机译:弓形虫是一种感染多种温血宿主的细胞内原生动物寄生虫,对发育中的胎儿以及免疫功能低下的宿主具有破坏性作用。了解这种生物如何与宿主免疫系统相互作用对于了解这种疾病的发病机理至关重要。在过去的十年中,以各种成像技术的应用为标志,例如生物发光成像以及共焦和多光子显微镜研究弓形虫病。操纵寄生虫表达荧光/生物发光标记物或模型抗原/酶的能力与允许检测不同免疫种群的报告小鼠的发展相结合,对于许多此类研究的成功至关重要。这些方法允许实时可视化寄生虫和免疫细胞,并提供了对宿主与病原体相互作用本质的新见解。本文重点介绍了成像技术的一些进步,它们的优缺点以及这些技术如何影响我们对弓形虫病期间寄生虫与各种免疫种群之间相互作用的理解。

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