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活体显微镜用于实时监测药物输送和纳米生物过程。

Intravital microscopy for real-time monitoring of drug delivery and nanobiological processes.

机构信息

Department of Nanomedicine and Theranostics, Institute for Experimental Molecular Imaging, Faculty of Medicine, RWTH Aachen University, Aachen, Germany.

Department of Genetics and Cell Biology, Maastricht University, Maastricht, the Netherlands; Interdisciplinary Center for Clinical Research (IZKF), University Hospital RWTH Aachen University, Aachen, Germany.

出版信息

Adv Drug Deliv Rev. 2022 Oct;189:114528. doi: 10.1016/j.addr.2022.114528. Epub 2022 Sep 5.

Abstract

Intravital microscopy (IVM) expands our understanding of cellular and molecular processes, with applications ranging from fundamental biology to (patho)physiology and immunology, as well as from drug delivery to drug processing and drug efficacy testing. In this review, we highlight modalities, methods and model organisms that make up today's IVM landscape, and we present how IVM - via its high spatiotemporal resolution - enables analysis of metabolites, small molecules, nanoparticles, immune cells, and the (tumor) tissue microenvironment. We furthermore present examples of how IVM facilitates the elucidation of nanomedicine kinetics and targeting mechanisms, as well as of biological processes such as immune cell death, host-pathogen interactions, metabolic states, and disease progression. We conclude by discussing the prospects of IVM clinical translation and examining the integration of machine learning in future IVM practice.

摘要

活体显微镜技术(IVM)扩展了我们对细胞和分子过程的理解,其应用范围从基础生物学到(病理)生理学和免疫学,以及从药物输送到药物加工和药物疗效测试。在这篇综述中,我们强调了构成当今 IVM 领域的方式、方法和模式生物,并介绍了 IVM 如何通过其高时空分辨率来分析代谢物、小分子、纳米颗粒、免疫细胞和(肿瘤)组织微环境。我们还介绍了一些例子,说明 IVM 如何促进阐明纳米医学的动力学和靶向机制,以及免疫细胞死亡、宿主-病原体相互作用、代谢状态和疾病进展等生物学过程。最后,我们讨论了 IVM 临床转化的前景,并研究了机器学习在未来 IVM 实践中的整合。

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