Catalytic, dearomative 2,3-difluorination of indoles

Fang-Hai Tu , Shuang Lin , Ya-Jie Tang , Li-Cai Liu , Qingjiang Li , Honggen Wang
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Abstract

Indolines, characterized by their diverse biological activities and structural significance, have garnered considerable attention in the realms of natural product synthesis and drug discovery. Concurrently, the incorporation of fluorine atoms into organic molecules has emerged as a powerful strategy to enhance their pharmacological properties. Herein, we report a robust and diastereoselective approach for the synthesis of 2,3-difluorinated indolines through the iodine(I/III)-catalyzed dearomatization of readily available indoles. The protocol operates under mild conditions, displaying excellent functional group tolerance and remarkable diastereoselectivity. By employing this developed protocol, vicinal-difluorinated analogues of indole-containing drugs can be efficiently accessed. Theoretical calculations have shed light on the underlying reaction mechanism, proposing the formation of a β-fluorine-substituted carbocation intermediate. It is postulated that the observed high diastereoselectivity can be attributed to the dipole-dipole interactions facilitated by the C–F bond. Crystallographic analysis has revealed the profound impact of fluorine atom introduction on the conformational preferences of the indoline core. Given the unique structural characteristics and pharmacological significance of 2,3-difluorinated indolines, we anticipate their widespread application in medicinal chemistry and drug discovery endeavors.

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吲哚催化脱芳2,3-二氟化反应
吲哚类化合物以其丰富的生物活性和重要的结构特征,在天然产物合成和药物开发领域引起了广泛的关注。同时,将氟原子纳入有机分子已成为增强其药理学特性的有力策略。在此,我们报道了一种强大的非对映选择性方法,通过碘(I/III)催化的易得吲哚的脱芳化合成2,3-二氟化吲哚。该方案在温和的条件下工作,表现出优异的官能团耐受性和显著的非对映选择性。通过采用这一制定的方案,可以有效地获得含吲哚药物的邻二氟化类似物。理论计算揭示了潜在的反应机制,提出了β-氟取代碳正离子中间体的形成。假设观察到的高非对构选择性可归因于由C-F键促进的偶极子-偶极子相互作用。晶体学分析揭示了氟原子的引入对吲哚核构象偏好的深刻影响。鉴于2,3-二氟化吲哚的独特结构特征和药理意义,我们期待它们在药物化学和药物发现方面的广泛应用。
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来源期刊
Tetrahedron chem
Tetrahedron chem Organic Chemistry
CiteScore
3.60
自引率
0.00%
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0
审稿时长
27 days
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