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Fluorescence imaging host pathogen interactions: fifteen years benefit of hindsight….荧光成像宿主病原体相互作用:十五年的后见之明……
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Integrative Approaches to Understand the Mastery in Manipulation of Host Cytokine Networks by Protozoan Parasites with Emphasis on and Species.综合方法理解原生动物寄生虫对宿主细胞因子网络的操纵,重点是 和 物种。
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In-vivo monitoring of infectious diseases in living animals using bioluminescence imaging.活体动物体内传染病的生物发光成像监测。
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New insights into experimental visceral leishmaniasis: Real-time in vivo imaging of Leishmania donovani virulence.实验性内脏利什曼病的新见解:杜氏利什曼原虫毒力的实时体内成像
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In Vivo Molecular Bioluminescence Imaging: New Tools and Applications.体内分子生物发光成像:新工具与新应用
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Non-axial-scanning multifocal confocal microscopy with multiplexed volume holographic gratings.采用复用体全息光栅的非轴向扫描多焦点共聚焦显微镜。
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Long-Term Relationships: the Complicated Interplay between the Host and the Developmental Stages of Toxoplasma gondii during Acute and Chronic Infections.长期关系:急性和慢性感染期间宿主与刚地弓形虫发育阶段之间的复杂相互作用
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Versatile Conjugated Polymer Nanoparticles for High-Resolution O2 Imaging in Cells and 3D Tissue Models.多功能共轭聚合物纳米粒子用于细胞和 3D 组织模型中的高分辨率 O2 成像。
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Dynamic two-photon imaging of the immune response to Toxoplasma gondii infection.对弓形虫感染免疫反应的动态双光子成像
Parasite Immunol. 2015 Mar;37(3):118-26. doi: 10.1111/pim.12161.

捕捉寄生虫的活动:宿主-寄生虫界面成像

The Parasites Caught In-Action: Imaging at the Host-Parasite Interface.

作者信息

Afifi Mohammed A

机构信息

Department of Medical Microbiology and Parasitology, Faculty of Medicine, King Abdulaziz University, Jeddah, Saudi Arabia.

Department of Medical Parasitology, Faculty of Medicine, Beni-Suef University, Beni-Suef, Egypt.

出版信息

J Microsc Ultrastruct. 2020 May 8;9(1):1-6. doi: 10.4103/JMAU.JMAU_1_20. eCollection 2021 Jan-Mar.

DOI:10.4103/JMAU.JMAU_1_20
PMID:33850705
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8030542/
Abstract

For many decades, scientists were unable to expose the invisible existence of the parasites in their living hosts, except by scarification and then dissection of the animal model. This process just demonstrates a dead parasite in a dead host. Using this approach, very limited information can be obtained concerning the dynamics of infection and the pathways utilized by the parasite to survive within a hostile host's environment. Introduction of ultra-high-speed imaging techniques, with a time domain of barely few microseconds or even less, has revolutionized the " dissection" of the parasites. Such methods provide platforms for imaging host-parasite interactions at diverse scales, down to the molecular level. These have complementary advantages and relative assets in investigating host-parasite interactions. Therefore, better elucidation of such interaction may require the usage of more than one approach. Precise quantification, of the parasite load within the host, and better insight into the kinetics of infection are the two main advantages of the novel imaging procedures. However, imaging parasite-host interplay is still a challenging approach due to many constraints related to the parasite biology, the tissue environment within which the parasites exist, and the logistic technical limitations. This review was planned to assist better understanding of how much the new imaging techniques impacted the recent advances in parasite biology, especially the immunobiology of protozoan parasites.

摘要

几十年来,科学家们一直无法揭示寄生虫在其活体宿主中的无形存在,除非通过划破皮肤然后解剖动物模型。这个过程仅仅展示了死宿主中的死寄生虫。使用这种方法,关于感染动态以及寄生虫在恶劣宿主环境中生存所利用的途径,只能获得非常有限的信息。引入具有仅几微秒甚至更短时间域的超高速成像技术,彻底改变了对寄生虫的“解剖”方式。此类方法为在从分子水平到不同尺度上对宿主 - 寄生虫相互作用进行成像提供了平台。这些方法在研究宿主 - 寄生虫相互作用方面具有互补优势和相关优点。因此,要更好地阐明这种相互作用可能需要使用不止一种方法。精确量化宿主内的寄生虫负荷以及更深入了解感染动力学是新型成像程序的两个主要优点。然而,由于与寄生虫生物学、寄生虫所处的组织环境以及后勤技术限制等诸多相关约束,对寄生虫 - 宿主相互作用进行成像仍然是一种具有挑战性的方法。本综述旨在帮助更好地理解新成像技术对寄生虫生物学近期进展,尤其是原生动物寄生虫免疫生物学的影响程度。