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Intravital imaging of skin infections

机译:皮肤感染的流体性成像

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Intravital imaging of cutaneous immune responses has revealed intricate links between the skin's structural properties, the immune cells that reside therein, and the carefully orchestrated migratory dynamics that enable rapid sensing and subsequent elimination of skin pathogens. In particular, the development of 2-photon intravital microscopy (2P-IVM), which enables the excitation of fluorescent molecules within deep tissue with minimal light scattering and tissue damage, has proven an invaluable tool in the characterization of different cell subset's roles in skin infection. The ability to visualize cells, tissue structures, pathogens and track migratory dynamics at designated times following infection, or during inflammatory responses has been crucial in defining how immune responses in the skin are coordinated, either locally or in concert with circulating immune cells. Skin pathogens affect millions of people worldwide, and skin infections leading to cutaneous pathology have a considerable impact on the quality of life and longevity of people affected. In contrast, pathogens that infect the skin to later cause systemic illness, such as malaria parasites and a variety of arthropod-borne viruses, or infection in distant anatomical sites are a significant cause of morbidity and mortality worldwide. Here, we review recent advances and seminal studies that employed intravital imaging to characterize key immune response mechanisms in the context of viral, bacterial and parasitic skin infections, and provide insights on skin pathogens of global significance that would benefit from such investigative approaches.
机译:皮肤免疫反应的腔内成像已经揭示了皮肤结构性质之间的复杂联系,其存在于其中的免疫细胞,以及仔细策划的迁移动态,使能快速感测和随后消除皮肤病原体。特别地,2-光子膀胱间显微镜(2P-IVM)的发育,使得能够激发荧光分子在深层组织内具有最小的光散射和组织损伤,已经证明了一种无价的工具,在不同细胞子集在皮肤中的作用中表征感染。在感染后的指定时间或炎症反应期间可视化细胞,组织结构,病原体和跟踪迁移动力学的能力对于定义皮肤中的免疫应答,局部或与循环免疫细胞的音乐会有何关心至关重要。皮肤病原体影响全球数百万人,并且导致皮肤病理学的皮肤感染对受影响的人们的生活质量和长寿具有相当大的影响。相反,感染皮肤以后来引起全身性病的病原体,例如疟疾寄生虫和各种节肢动物传播病毒,或远处解剖部位的感染是全世界发病率和死亡率的重要原因。在这里,我们审查了最近的进展和开创性研究,该研究采用了流体成像,在病毒,细菌和寄生皮肤感染的背景下表征关键免疫应答机制,并为全球意义的皮肤病原体提供了从这些调查方法中受益的洞察力。

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