Taiariol Ludivine, Chaix Carole, Farre Carole, Moreau Emmanuel
Université Clermont Auvergne, Imagerie Moléculaire et Stratégies Théranostiques, BP 184, F-63005 Clermont-Ferrand, France.
Inserm U 1240, F-63000 Clermont-Ferrand, France.
Chem Rev. 2022 Jan 12;122(1):340-384. doi: 10.1021/acs.chemrev.1c00484. Epub 2021 Oct 27.
Over the years, click and bioorthogonal reactions have been the subject of considerable research efforts. These high-performance chemical reactions have been developed to meet requirements not often provided by the chemical reactions commonly used today in the biological environment, such as selectivity, rapid reaction rate, and biocompatibility. Click and bioorthogonal reactions have been attracting increasing attention in the biomedical field for the engineering of nanomedicines. In this review, we study a compilation of articles from 2014 to the present, using the terms "click chemistry and nanoparticles (NPs)" to highlight the application of this type of chemistry for applications involving NPs intended for biomedical applications. This study identifies the main strategies offered by click and bioorthogonal chemistry, with respect to passive and active targeting, for NP functionalization with specific and multiple properties for imaging and cancer therapy. In the final part, a novel and promising approach for "two step" targeting of NPs, called pretargeting (PT), is also discussed; the principle of this strategy as well as all the studies listed from 2014 to the present are presented in more detail.
多年来,点击反应和生物正交反应一直是大量研究工作的主题。这些高性能化学反应的开发是为了满足当今生物环境中常用化学反应通常无法提供的要求,如选择性、快速反应速率和生物相容性。点击反应和生物正交反应在纳米药物工程的生物医学领域正受到越来越多的关注。在这篇综述中,我们研究了2014年至今的一系列文章,使用“点击化学与纳米颗粒(NPs)”这一术语来突出此类化学在涉及用于生物医学应用的纳米颗粒的应用中的应用。本研究确定了点击化学和生物正交化学针对被动和主动靶向所提供的主要策略,用于纳米颗粒的功能化,使其具有用于成像和癌症治疗的特定和多种特性。在最后一部分,还讨论了一种用于纳米颗粒“两步”靶向的新颖且有前景的方法,称为预靶向(PT);详细介绍了该策略的原理以及2014年至今列出的所有研究。