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临床相关纳米材料的生物分布、清除和长期归宿。

Biodistribution, Clearance, and Long-Term Fate of Clinically Relevant Nanomaterials.

机构信息

Adolphe Merkle InstituteUniversity of Fribourg, Chemin des Verdiers 4, 1700, Fribourg, Switzerland.

Respiratory Medicine, Department of Biomedical Research, University of Bern, Murtenstrasse 50, 3008, Bern.

出版信息

Adv Mater. 2018 May;30(19):e1704307. doi: 10.1002/adma.201704307. Epub 2018 Feb 1.

Abstract

Realization of the immense potential of nanomaterials for biomedical applications will require a thorough understanding of how they interact with cells, tissues, and organs. There is evidence that, depending on their physicochemical properties and subsequent interactions, nanomaterials are indeed taken up by cells. However, the subsequent release and/or intracellular degradation of the materials, transfer to other cells, and/or translocation across tissue barriers are still poorly understood. The involvement of these cellular clearance mechanisms strongly influences the long-term fate of used nanomaterials, especially if one also considers repeated exposure. Several nanomaterials, such as liposomes and iron oxide, gold, or silica nanoparticles, are already approved by the American Food and Drug Administration for clinical trials; however, there is still a huge gap of knowledge concerning their fate in the body. Herein, clinically relevant nanomaterials, their possible modes of exposure, as well as the biological barriers they must overcome to be effective are reviewed. Furthermore, the biodistribution and kinetics of nanomaterials and their modes of clearance are discussed, knowledge of the long-term fates of a selection of nanomaterials is summarized, and the critical points that must be considered for future research are addressed.

摘要

要实现纳米材料在生物医学应用中的巨大潜力,需要深入了解它们与细胞、组织和器官的相互作用方式。有证据表明,纳米材料的确会被细胞摄取,这取决于它们的物理化学性质和随后的相互作用。然而,随后的材料释放和/或细胞内降解、转移到其他细胞以及/或跨组织屏障的转位仍然知之甚少。这些细胞清除机制的参与强烈影响了使用的纳米材料的长期命运,特别是如果还考虑到重复暴露的情况。几种纳米材料,如脂质体和氧化铁、金或二氧化硅纳米颗粒,已经被美国食品和药物管理局批准用于临床试验;然而,关于它们在体内的命运,仍然存在巨大的知识差距。在此,我们综述了临床上相关的纳米材料、它们可能的暴露方式以及它们必须克服的生物屏障,以发挥作用。此外,还讨论了纳米材料的生物分布和动力学及其清除方式,总结了一些纳米材料的长期命运的知识,并提出了未来研究必须考虑的关键点。

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