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含环内CF片段的氮杂环结构单元

Aza-Heterocyclic Building Blocks with In-Ring CF -Fragment.

作者信息

Ryabukhin S V, Bondarenko D V, Trofymchuk S A, Lega D A, Volochnyuk D M

机构信息

Enamine Ltd., 78 Winston Churchill str., 02094, Kyiv, Ukraine.

Taras Shevchenko National University of Kyiv, 60 Volodymyrska str., 01033, Kyiv, Ukraine.

出版信息

Chem Rec. 2024 Feb;24(2):e202300283. doi: 10.1002/tcr.202300283. Epub 2023 Oct 24.

Abstract

Modern organic chemistry is a titan supporting and reinforcing pharmaceutical, agricultural, food and material science products. Over the past decades, the organic compounds market has been evolving to meet all the research demands. In this regard, medicinal chemistry is especially dependent on available chemical space as subtle tuning of the molecule structure is required to create a drug with relevant physicochemical properties and a remarkable activity profile. The recent rapid evolution of synthetic methodology to deploy fluorine has brought fluorinated compounds to the spotlight of MedChem community. And now unique properties of fluorine still keep fascinating more and more as its justified installation into a molecular framework has a beneficial impact on membrane permeability, lipophilicity, metabolic stability, pharmacokinetic properties, conformation, pK , etc. The backward influence of medicinal chemistry on organic synthesis has also changed the landscape of the latter towards new fluorinated topologies as well. Such complex relationships create a flexible and ever-changing ecosystem. Given that MedChem investigations strongly lean on the ability to reach suitable building blocks and the existence of reliable synthetic methods in this review we collected advances in the chemistry of respectful, but still enigmatic gem-difluorinated aza-heterocyclic building blocks.

摘要

现代有机化学是支撑和强化制药、农业、食品及材料科学产品的巨人。在过去几十年里,有机化合物市场一直在不断发展以满足所有研究需求。在这方面,药物化学尤其依赖于可用的化学空间,因为需要对分子结构进行微调以创造出具有相关物理化学性质和显著活性的药物。最近用于引入氟的合成方法的快速发展使含氟化合物成为药物化学界关注的焦点。如今,氟的独特性质仍然越来越引人入胜,因为将其合理引入分子框架对膜通透性、亲脂性、代谢稳定性、药代动力学性质、构象、pK等都有有益影响。药物化学对有机合成的反向影响也使有机合成朝着新的含氟拓扑结构方向发生了改变。这种复杂的关系创造了一个灵活且不断变化的生态系统。鉴于药物化学研究强烈依赖于获得合适的结构单元的能力以及可靠合成方法的存在,在本综述中,我们收集了关于备受关注但仍神秘的偕二氟氮杂环结构单元化学方面的进展。

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