Evolution of the Synthetic Process to an Advanced GPR40 Agonist

Xiaoping Hou,Lucas W. Hernandez, Elizabeth A. Jurica,Rulin Zhao, Bei Wang, Michael Wong,Jung-Hui Sun, Dawn Sun,Dauh-Rurng Wu, Changxia Yuan,Michael Hay, Miao Yu, Ximao Wu, Yanting Huang,Bruce A. Ellsworth, Francisco Gonzalez Bobes, Arvind Mathur,James Kempson

ORGANIC PROCESS RESEARCH & DEVELOPMENT(2024)

引用 0|浏览7
暂无评分
摘要
Herein we describe a series of synthetic efforts to prepare an advanced GPR40 agonist (compound 1), with focus on phase-appropriate processes that circumvented key reagents with short supply in the original synthesis. The key transformations refined for large-scale production were an asymmetric aldol reaction, O-alkylation of an unstable intermediate, selective (Z)-olefination, and reduction of a Weinreb amide to aldehyde. Additionally, the new route circumvented stability issues of the core pyrrolidine fragment through de novo synthesis, achieving high d.r. during ring formation. The new improved route was efficiently scaled up to prepare more than 100 g API for toxicology studies.
更多
查看译文
关键词
GPR40,asymmetric aldolformation,(Z)-olefin,Lindlarhydrogenation,O-alkylation,processoptimization,Andoolefination,lithium diisobutyl-t-butoxyaluminumhydride (LDBBA)
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要