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Bioconjug Chem. 2021 Dec 15;32(12):2457-2479. doi: 10.1021/acs.bioconjchem.1c00461. Epub 2021 Nov 30.
Bioorthogonal chemistry is a set of methods using the chemistry of non-native functional groups to explore and understand biology in living organisms. In this review, we summarize the most common reactions used in bioorthogonal methods, their relative advantages and disadvantages, and their frequency of occurrence in the published literature. We also briefly discuss some of the less common but potentially useful methods. We then analyze the bioorthogonal-related publications in the CAS Content Collection to determine how often different types of biomolecules such as proteins, carbohydrates, glycans, and lipids have been studied using bioorthogonal chemistry. The most prevalent biological and chemical methods for attaching bioorthogonal functional groups to these biomolecules are elaborated. We also analyze the publication volume related to different types of bioorthogonal applications in the CAS Content Collection. The use of bioorthogonal chemistry for imaging, identifying, and characterizing biomolecules and for delivering drugs to treat disease is discussed at length. Bioorthogonal chemistry for the surface attachment of proteins and in the use of modified carbohydrates is briefly noted. Finally, we summarize the state of the art in bioorthogonal chemistry and its current limitations and promise for its future productive use in chemistry and biology.
生物正交化学是一组利用非天然官能团的化学方法,用于探索和理解活生物体中的生物学。在这篇综述中,我们总结了生物正交方法中最常用的反应、它们的相对优缺点以及它们在已发表文献中的出现频率。我们还简要讨论了一些不太常见但具有潜在用途的方法。然后,我们分析了 CAS 内容集中与生物正交相关的出版物,以确定使用生物正交化学研究不同类型的生物分子(如蛋白质、碳水化合物、糖和脂质)的频率。详细阐述了将生物正交官能团附着到这些生物分子上的最常见的生物和化学方法。我们还分析了 CAS 内容集中与不同类型生物正交应用相关的出版物数量。详细讨论了生物正交化学在成像、识别和表征生物分子以及将药物用于治疗疾病方面的应用。简要介绍了生物正交化学在蛋白质表面附着和修饰碳水化合物方面的应用。最后,我们总结了生物正交化学的最新进展及其目前的局限性和未来在化学和生物学中富有成效的应用前景。