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可见光光氧化还原催化合成的含1,2,5-恶二嗪烷化合物的血吸虫活性及药物代谢动力学性质

-Schistosomal activity and ADMET properties of 1,2,5-oxadiazinane-containing compound synthesized by visible-light photoredox catalysis.

作者信息

Itoh Kennosuke, Nakahara Hiroki, Takashino Atsushi, Hara Aya, Katsuno Akiho, Abe Yuriko, Mizuguchi Takaaki, Karaki Fumika, Hirayama Shigeto, Nagai Kenichiro, Seki Reiko, Sato Noriko, Okuyama Kazuki, Hashimoto Masashi, Tokunaga Ken, Ishida Hitoshi, Mikami Fusako, Kwofie Kofi Dadzie, Kawada Hayato, Lin Bangzhong, Nunomura Kazuto, Kanai Toshio, Hatta Takeshi, Tsuji Naotoshi, Haruta Junichi, Fujii Hideaki

机构信息

Laboratory of Medicinal Chemistry, School of Pharmacy, Kitasato University 5-9-1 Shirokane Minato-ku Tokyo 108-8641 Japan

Medicinal Research Laboratories, School of Pharmacy, Kitasato University 5-9-1 Shirokane Minato-ku Tokyo 108-8641 Japan.

出版信息

RSC Med Chem. 2024 Sep 26;15(12):4001-10. doi: 10.1039/d4md00599f.

Abstract

The incorporation of saturated nitrogen-containing heterocycle 1,2,5-oxadiazinane into small molecules represents a compelling avenue in drug discovery due to its unexplored behavior within biological systems and incomplete protocols for synthesis. In this study, we present 1,2,5-oxadiazinane, an innovative heterocyclic bioisostere of piperizin-2-one and novel chemotype of the -schistosomal drug praziquantel (PZQ), which has been the only clinical drug available for three decades. PZQ is associated with significant drawbacks, including poor solubility, a bitter taste, and low metabolic stability. Therefore, the discovery of a new class of -schistosomal agents is imperative. To address this challenge, we introduce a pioneering method for the synthesis of 1,2,5-oxadiazinane derivatives through the cycloaddition of nitrones with ,,,-tetraalkyldiaminomethane in the presence of an Ir complex photosensitizer. This transformative reaction offers a streamlined route to various kinds of 1,2,5-oxadiazinanes that is characterized by mild reaction conditions and broad substrate scope. Mechanistic investigations suggest that the photoredox pathway underlies the [3 + 3] photocycloaddition process. Thus, based on bioisosteric replacement, we identified a remarkable molecule as a new chemotype of a potent -schistosomal compound that not only exhibits superior solubility, but also retains the potent biological activity inherent to PZQ.

摘要

将饱和含氮杂环1,2,5 - 恶二嗪烷引入小分子中,在药物发现领域是一条引人注目的途径,因为其在生物系统中的行为尚未被探索,且合成方案不完善。在本研究中,我们展示了1,2,5 - 恶二嗪烷,它是哌嗪 - 2 - 酮的一种创新杂环生物电子等排体,也是抗血吸虫药物吡喹酮(PZQ)的新型化学类型,PZQ三十年来一直是唯一可用的临床药物。PZQ存在显著缺点,包括溶解度差、味道苦涩和代谢稳定性低。因此,发现一类新型抗血吸虫药物势在必行。为应对这一挑战,我们引入了一种开创性的方法,即在铱配合物光敏剂存在下,通过硝酮与四烷基二氨基甲烷的环加成反应合成1,2,5 - 恶二嗪烷衍生物。这种变革性反应为各种1,2,5 - 恶二嗪烷提供了一条简化的合成路线,其特点是反应条件温和、底物范围广泛。机理研究表明,光氧化还原途径是[3 + 3]光环加成过程的基础。因此,基于生物电子等排体替换,我们确定了一种显著的分子作为一种强效抗血吸虫化合物的新型化学类型,它不仅具有优异的溶解度,还保留了PZQ固有的强大生物活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6292/11636594/eac9d6c0477e/d4md00599f-s1.jpg

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