当前位置: X-MOL 学术ACS Mater. Lett. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Rethinking Click and Bioorthogonal Chemistry for Biomedical Applications
ACS Materials Letters ( IF 9.6 ) Pub Date : 2023-12-07 , DOI: 10.1021/acsmaterialslett.3c01123
Vianney Delplace 1
Affiliation  

Over the last two decades, click chemistry and bioorthogonal chemistry have revolutionized the field of biomedical engineering. Extensive investigations have been conducted and allowed for unforeseeable developments in many different fields, including imaging, drug delivery, 3D cell culture, and bioprinting. The properties of advanced click and bioorthogonal chemical tools have now exceeded the expectations set by the researchers who first introduced the two concepts, calling for reevaluation. More importantly, their developments in distinct research contexts have led to conceptual divergences, which can now be a source of misunderstandings and disagreements. This perspective article aims to take a fresh look at the two concepts, with particular attention to their combination for applications in biological environments. After a short historical introduction, the definitions of click chemistry and bioorthogonal chemistry are revised, and the concept of ideal click chemistry is introduced. Chemical reactions that are commonly considered as click and bioorthogonal reactions are discussed in light of this new perspective. Finally, current challenges and new chemical concepts are presented, offering a new framework for future research.

中文翻译:

重新思考生物医学应用中的点击化学和生物正交化学

在过去的二十年中,点击化学和生物正交化学彻底改变了生物医学工程领域。人们已经进行了广泛的研究,并在许多不同领域取得了不可预见的发展,包括成像、药物输送、3D 细胞培养和生物打印。先进的点击和生物正交化学工具的特性现在已经超出了最初引入这两个概念的研究人员设定的预期,呼吁重新评估。更重要的是,它们在不同研究背景下的发展导致了概念上的分歧,这可能成为误解和分歧的根源。这篇透视文章旨在重新审视这两个概念,特别关注它们在生物环境中的应用组合。在简短的历史介绍后,修订了点击化学和生物正交化学的定义,并引入了理想点击化学的概念。根据这一新视角讨论了通常被认为是点击反应和生物正交反应的化学反应。最后,提出了当前的挑战和新的化学概念,为未来的研究提供了新的框架。
更新日期:2023-12-07
down
wechat
bug