Niu Changhao, Zhang Zheng, Li Qi, Cheng Zengrui, Jiao Ning, Zhang Chun
Institute of Molecular Plus, Tianjin Key Laboratory of Molecular Optoelectronic Science, School of Pharmaceutical Science and Technology, Tianjin University, 92 Weijin Road, 300072, Tianjin, China.
State Key Laboratory of Natural and Biomimetic Drugs, Chemical Biology Center, School of Pharmaceutical Sciences, Peking University, 38 Xueyuan Road, 100191, Beijing, China.
Angew Chem Int Ed Engl. 2024 Apr 22;63(17):e202401318. doi: 10.1002/anie.202401318. Epub 2024 Mar 20.
The molecular structure-editing through selective C-C bond cleavage allows for the precise modification of molecular structures and opens up new possibilities in chemical synthesis. By strategically cleaving C-C bonds and editing the molecular structure, more efficient and versatile pathways for the synthesis of complex compounds could be designed, which brings significant implications for drug development and materials science. o-Aminophenethyl alcohols and amines are the essential key motifs in bioactive and functional material molecules. The traditional synthesis of these compounds usually requires multiple steps which could generate inseparable isomers and induce low efficiencies. By leveraging a molecular editing strategy, we herein reported a selective ring-opening amination of isochromans and tetrahydroisoquinolines for the efficient synthesis of o-aminophenethyl alcohols and amines. This innovative chemistry allows for the precise cleavage of C-C bonds under mild transition metal-free conditions. Notably, further synthetic application demonstrated that our method could provide an efficient approach to essential components of diverse bioactive molecules.
通过选择性碳-碳键裂解进行分子结构编辑,能够实现分子结构的精确修饰,并为化学合成开辟新的可能性。通过策略性地裂解碳-碳键并编辑分子结构,可以设计出更高效、更通用的复杂化合物合成途径,这对药物开发和材料科学具有重要意义。邻氨基苯乙醇和胺是生物活性和功能材料分子中的关键基序。这些化合物的传统合成通常需要多步反应,可能会产生难以分离的异构体并导致效率低下。通过利用分子编辑策略,我们在此报道了异苯并二氢呋喃和四氢异喹啉的选择性开环胺化反应,用于高效合成邻氨基苯乙醇和胺。这种创新的化学方法能够在温和的无过渡金属条件下精确裂解碳-碳键。值得注意的是,进一步的合成应用表明,我们的方法可以为多种生物活性分子的关键成分提供一种有效的合成方法。