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生物正交化学在转化研究中的应用:进展与机遇。

Bioorthogonal Chemistry in Translational Research: Advances and Opportunities.

机构信息

School of Chemical Sciences Indian Association for the Cultivation of Science, 2A and 2B Raja S.C. Mullick Road, Jadavpur, Kolkata, 700099, India.

出版信息

Chembiochem. 2023 Dec 1;24(23):e202300474. doi: 10.1002/cbic.202300474. Epub 2023 Oct 6.

Abstract

Bioorthogonal chemistry is a rapidly expanding field of research that involves the use of small molecules that can react selectively with biomolecules in living cells and organisms, without causing any harm or interference with native biochemical processes. It has made significant contributions to the field of biology and medicine by enabling selective labeling, imaging, drug targeting, and manipulation of bio-macromolecules in living systems. This approach offers numerous advantages over traditional chemistry-based methods, including high specificity, compatibility with biological systems, and minimal interference with biological processes. In this review, we provide an overview of the recent advancements in bioorthogonal chemistry and their current and potential applications in translational research. We present an update on this innovative chemical approach that has been utilized in cells and living systems during the last five years for biomedical applications. We also highlight the nucleic acid-templated synthesis of small molecules by using bioorthogonal chemistry. Overall, bioorthogonal chemistry provides a powerful toolset for studying and manipulating complex biological systems, and holds great potential for advancing translational research.

摘要

生物正交化学是一个快速发展的研究领域,涉及使用能够选择性地与活细胞和生物体中的生物分子反应的小分子,而不会对天然生化过程造成任何伤害或干扰。它通过在活系统中对生物大分子进行选择性标记、成像、药物靶向和操作,为生物学和医学领域做出了重大贡献。与基于传统化学的方法相比,这种方法具有许多优势,包括高特异性、与生物系统的兼容性以及对生物过程的最小干扰。在这篇综述中,我们概述了生物正交化学的最新进展及其在转化研究中的当前和潜在应用。我们介绍了这种创新的化学方法在过去五年中在细胞和活体系统中用于生物医学应用的最新进展。我们还强调了利用生物正交化学通过核酸模板合成小分子。总的来说,生物正交化学为研究和操纵复杂的生物系统提供了一个强大的工具集,并为推进转化研究提供了巨大的潜力。

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