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碳氟键活化可实现芳基二氟甲基双环戊烷的合成,作为二苯甲酮类生物电子等排体。

C-F bond activation enables synthesis of aryl difluoromethyl bicyclopentanes as benzophenone-type bioisosteres.

作者信息

Chen Mingshuo, Cui Yuang, Chen Xiaoping, Shang Rui, Zhang Xiaheng

机构信息

School of Chemistry and Materials Science, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, 1 Sub-lane Xiangshan, 310024, Hangzhou, People's Republic of China.

Department of Chemistry, The University of Tokyo, Tokyo, 113-0033, Japan.

出版信息

Nat Commun. 2024 Jan 10;15(1):419. doi: 10.1038/s41467-023-44653-6.

Abstract

Bioisosteric design has become an essential approach in the development of drug molecules. Recent advancements in synthetic methodologies have enabled the rapid adoption of this strategy into drug discovery programs. Consequently, conceptionally innovative practices would be appreciated by the medicinal chemistry community. Here we report an expeditous synthetic method for synthesizing aryl difluoromethyl bicyclopentane (ADB) as a bioisostere of the benzophenone core. This approach involves the merger of light-driven C-F bond activation and strain-release chemistry under the catalysis of a newly designed N-anionic-based organic photocatalyst. This defluorinative coupling methodology enables the direct conversion of a wide variety of commercially available trifluoromethylaromatic C-F bonds (more than 70 examples) into the corresponding difluoromethyl bicyclo[1.1.1]pentanes (BCP) arenes/difluoromethyl BCP boronates in a single step. The strategy can also be applied to [3.1.1]and [4.1.1]propellane systems, providing access to analogues with different geometries. Moreover, we have successfully used this protocol to rapidly prepare ADB-substituted analogues of the bioactive molecule Adiporon. Biological testing has shown that the ADB scaffold has the potential to enhance the pharmacological properties of benzophenone-type drug candidates.

摘要

生物电子等排体设计已成为药物分子开发中的一种重要方法。合成方法学的最新进展使得这种策略能够迅速应用于药物发现项目。因此,概念上的创新实践将受到药物化学界的赞赏。在此,我们报告一种快速合成方法,用于合成芳基二氟甲基双环戊烷(ADB),作为二苯甲酮核心的生物电子等排体。该方法涉及在新设计的基于N - 阴离子的有机光催化剂催化下,光驱动的C - F键活化和应变释放化学的结合。这种脱氟偶联方法能够将多种市售的三氟甲基芳族C - F键(超过70个实例)直接一步转化为相应的二氟甲基双环[1.1.1]戊烷(BCP)芳烃/二氟甲基BCP硼酸酯。该策略还可应用于[3.1.1]和[4.1.1]螺桨烷体系,从而获得具有不同几何结构的类似物。此外,我们已成功使用该方案快速制备生物活性分子Adiporon的ADB取代类似物。生物学测试表明,ADB支架具有增强二苯甲酮类候选药物药理性质的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f259/10781780/56995e3e33ee/41467_2023_44653_Fig1_HTML.jpg

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