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针对特定菌株的预先存在的免疫:理解慢性弓形虫感染在认知和阿尔茨海默病中的作用的关键?

Strain-specific pre-existing immunity: A key to understanding the role of chronic Toxoplasma infection in cognition and Alzheimer's diseases?

机构信息

Stanley Division of Developmental Neurovirology, Department of Pediatrics, Johns Hopkins School of Medicine, Baltimore, MD 21287, USA.

Department of Pathology, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

Neurosci Biobehav Rev. 2022 Jun;137:104660. doi: 10.1016/j.neubiorev.2022.104660. Epub 2022 Apr 9.

Abstract

Toxoplasma exposure can elicit cellular and humoral immune responses. In the case of chronic Toxoplasma infection, these immune responses are long-lasting. Some studies suggest that pre-existing immunity from Toxoplasma infection can shape immune responses and resistance to other pathogens and brain insults later in life. Much evidence has been generated suggesting Toxoplasma infection may contribute to cognitive impairment in the elderly. However, there have also been studies that disagree with the conclusion. Toxoplasma has many strain types, with virulence being the most notable difference. There is also considerable variation in the outcomes following Toxoplasma exposure ranging from resolved to persistent infection. Therefore, the brain microenvironment, particularly cellular constituents, differs based on the infecting strain (virulent versus hypovirulent) and infection stage (resolved versus persistent). Such difference might play a critical role in determining the outcome of the host on subsequent challengings to the brain. The ability of Toxoplasma strains to set up distinct stages for neurodegenerative pathology through varying degrees of virulence provides unique experimental tools for characterizing these pathways.

摘要

弓形虫感染可引发细胞和体液免疫反应。在慢性弓形虫感染的情况下,这些免疫反应是持久的。一些研究表明,来自弓形虫感染的预先存在的免疫可以塑造对其他病原体和大脑损伤的免疫反应和抵抗力。大量证据表明,弓形虫感染可能导致老年人认知障碍。然而,也有一些研究不同意这一结论。弓形虫有许多菌株类型,毒力是最显著的区别。在弓形虫暴露后,从解决到持续感染的结果也有很大的差异。因此,大脑微环境,特别是细胞成分,根据感染菌株(毒力型与弱毒力型)和感染阶段(解决型与持续型)而不同。这种差异可能在决定宿主对大脑后续挑战的结果方面发挥关键作用。弓形虫菌株通过不同程度的毒力为神经退行性病理建立不同阶段的能力为这些途径的特征提供了独特的实验工具。

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