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荧光共振能量转移(FRET)作为体内纳米医学追踪的工具。

FRET as the tool for in vivo nanomedicine tracking.

机构信息

MINT, INSERM U1066, CNRS 6021, SFR-ICAT, University of Angers, 49333 Angers, France.

MINT, INSERM U1066, CNRS 6021, SFR-ICAT, University of Angers, 49333 Angers, France.

出版信息

J Control Release. 2022 Sep;349:156-173. doi: 10.1016/j.jconrel.2022.06.048. Epub 2022 Jul 7.

Abstract

Advanced drug delivery system utilizing a nanocarrier is the major application of nanotechnology on pharmacotherapeutics. However, despite the promising benefits and a leading trend in pharmaceutical research, nanomedicine development suffers from a poor clinical translation problem as only a handful of nanomedicine products reach the market yearly. The conventional pharmacokinetic study generally focuses only on monitoring the level of a free drug but ignores the nanocarrier's role in pharmacokinetics. One hurdle is that it is difficult to directly track intact nanocarriers in vivo to explore their pharmacokinetics. Although several imaging techniques such as radiolabeling, nuclear imaging, fluorescence imaging, etc., have been developed over the past few years, currently, one method that can successfully track the intact nanocarriers in vivo directly is by Förster resonance energy transfer (FRET). This review summarizes the application of FRET as the in vivo nanoparticle tracker for studying the in vivo pharmacokinetics of the organic nanocarriers and gives elaborative details on the techniques utilized.

摘要

利用纳米载体的先进药物输送系统是纳米技术在药物治疗学上的主要应用。然而,尽管纳米医学具有很有前景的益处,并且是药物研究的主要趋势,但由于每年只有少数几种纳米药物产品进入市场,纳米医学的发展仍然存在临床转化问题。传统的药代动力学研究通常仅关注监测游离药物的水平,但忽略了纳米载体在药代动力学中的作用。其中一个障碍是难以直接在体内追踪完整的纳米载体以探索其药代动力学。尽管在过去几年中已经开发了几种成像技术,如放射性标记、核成像、荧光成像等,但目前,一种可以成功地直接在体内追踪完整纳米载体的方法是Förster 共振能量转移(FRET)。本文综述了 FRET 在作为体内纳米颗粒示踪剂研究有机纳米载体体内药代动力学中的应用,并详细介绍了所使用的技术。

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