Gul Sergen, Amudi Karina S I, Kuzu Burak, Menges Nurettin
Science and Technology Research and Application Center (BITAM), Necmettin Erbakan University, 42100 Konya, Türkiye.
Pharmaceutical Chemistry Section, Van Yüzüncü Yil University, 65080 Van, Türkiye.
ACS Omega. 2025 May 5;10(18):18881-18888. doi: 10.1021/acsomega.5c00775. eCollection 2025 May 13.
A novel and regioselective cyanofunctionalization-benzannulation cascade reaction has been developed, utilizing tetrabutylammonium cyanide (TBACN) as a practical and efficient cyanide source. This transformation provides streamlined access to a structurally diverse array of cyano-substituted indolizine scaffolds, which are valuable intermediates in the synthesis of nitrogen-containing heterocycles with potential pharmaceutical applications. The methodology employs readily available -propargyl pyrrole derivatives as starting materials and proceeds under relatively mild reaction conditions, enabling the synthesis of 20 structurally distinct cyanoindolizine derivatives. The reaction exhibits remarkable regioselectivity in the installation of the cyano group, a feature that was not initially anticipated. This unexpected regioselective outcome was elucidated through a combination of control experiments, by-product analysis, and intermediate isolation, shedding light on the underlying mechanistic pathway. Furthermore, the reaction displays a broad substrate scope, demonstrating high functional group tolerance with respect to both electronic and steric variations on the pyrrole ring and the propargyl substituents. The versatility of the methodology is further highlighted by the potential for downstream transformations of the cyano group into other functional groups, such as amide moieties, which expand the synthetic utility of the obtained scaffolds. Importantly, this work represents the first reported example of a TBACN-mediated benzannulation of propargyl units, marking a significant advancement in the field of heterocyclic chemistry. The strategy not only provides a novel route to access complex indolizine frameworks but also offers valuable mechanistic insights and synthetic opportunities for the design and development of biologically relevant heterocycles.
已开发出一种新颖的区域选择性氰基官能化-苯并环化串联反应,使用氰化四丁铵(TBACN)作为实用且高效的氰源。这种转化为结构多样的一系列氰基取代中氮茚支架提供了简化的合成途径,这些支架是合成具有潜在药物应用的含氮杂环化合物的有价值中间体。该方法采用易于获得的炔丙基吡咯衍生物作为起始原料,并在相对温和的反应条件下进行,能够合成20种结构不同的氰基中氮茚衍生物。该反应在氰基的引入过程中表现出显著的区域选择性,这一特征最初并未被预期到。通过对照实验、副产物分析和中间体分离相结合,阐明了这种意外的区域选择性结果,揭示了潜在的反应机理途径。此外,该反应具有广泛的底物范围,对吡咯环和炔丙基取代基上的电子和空间变化均显示出高官能团耐受性。该方法的多功能性还通过将氰基下游转化为其他官能团(如酰胺部分)的潜力得到进一步突出,这扩展了所得支架的合成用途。重要的是,这项工作代表了首次报道的TBACN介导的炔丙基单元苯并环化反应实例,标志着杂环化学领域的重大进展。该策略不仅提供了一种获取复杂中氮茚骨架的新途径,还为生物相关杂环的设计和开发提供了有价值的机理见解和合成机会。