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氟化核苷:合成、构象调控及治疗应用

Fluorinated Nucleosides: Synthesis, Modulation in Conformation and Therapeutic Application.

作者信息

Pal Shantanu, Chandra Girish, Patel Samridhi, Singh Sakshi

机构信息

School of Basic Sciences, Indian Institute of Technology, Bhubaneswar Argul, Odisha, India, 752050.

Department of Chemistry, School of Physical and Chemical Sciences, Central University of South Bihar, SH-7, Gaya Panchanpur Road, Gaya, Bihar, India, 824236.

出版信息

Chem Rec. 2022 May;22(5):e202100335. doi: 10.1002/tcr.202100335. Epub 2022 Mar 7.

Abstract

Over the last twenty years, fluorination on nucleoside has established itself as the most promising tool to use to get biologically active compounds that could sustain the clinical trial by affecting the pharmacodynamics and pharmacokinetic properties. Due to fluorine's inherent unique properties and its judicious introduction into the molecule, makes the corresponding nucleoside metabolically very stable, lipophilic, and opens a new site of intermolecular binding. Fluorination on various nucleosides has been extensively studied as a result, a series of fluorinated nucleosides come up for different therapeutic uses which are either approved by the FDA or under the advanced stage of the clinical trial. Here in this review, we are summarizing the latest development in the chemistry of fluorination on nucleoside that led to varieties of new analogs like carbocyclic, acyclic, and conformationally biased nucleoside and their biological properties, the influence of fluorine on conformation, oligonucleotide stability, and their use in therapeutics.

摘要

在过去的二十年里,核苷的氟化已成为最具前景的工具,用于获得能够通过影响药效学和药代动力学性质来维持临床试验的生物活性化合物。由于氟固有的独特性质及其在分子中的明智引入,使得相应的核苷在代谢上非常稳定、具有亲脂性,并开辟了分子间结合的新位点。因此,对各种核苷的氟化进行了广泛研究,一系列氟化核苷被开发用于不同的治疗用途,其中一些已获得美国食品药品监督管理局(FDA)批准,或处于临床试验的 advanced stage。在本综述中,我们总结了核苷氟化化学的最新进展,这些进展导致了各种新的类似物,如碳环、无环和构象偏向核苷及其生物学性质,氟对构象、寡核苷酸稳定性的影响,以及它们在治疗中的应用。

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