Disubstituted 1‑Aryl-4-Aminopiperidine Library
Synthesis Using Computational Drug Design and High-Throughput Batch
and Flow Technologies
- Publication date
- Publisher
Abstract
A platform that incorporates computational
library design, parallel
solution-phase synthesis, continuous flow hydrogenation, and automated
high throughput purification and reformatting technologies was applied
to the production of a 120-member library of 1-aryl-4-aminopiperidine
analogues for drug discovery screening. The application described
herein demonstrates the advantages of computational library design
coupled with a flexible, modular approach to library synthesis. The
enabling technologies described can be readily adopted by the traditional
medicinal chemist without extensive training and lengthy process development
times