Selecting a Stable Solid Form of Remdesivir Using Microcrystal Electron Diffraction and Crystal Structure Prediction

Blog details
2 min read
Share this:

RSC Adv., 2021,11, 17408-17412
Periodicals:RSC Advances
Author:Sivakumar Sekharan, Xuetao Liu, Zhuocen Yang, Xiang Liu, Li Deng, Shigang Ruan, Yuriy Abramov, GuangXu Sun, Sizhu Lib, Tian Zhou, Baime Shi, Qun Zeng, Qiao Zeng, Chao Chang, Yingdi Jin and Xuekun Shi
Time:2021-05-12

Therapeutic options in response to the coronavirus disease 2019 (COVID-19) outbreak are urgently needed. In this communication, we demonstrate how to support selection of a stable solid form of an antiviral drug remdesivir in quick time using the microcrystal electron diffraction (MicroED) technique and a cloud-based and artificial intelligence implemented crystal structure prediction platform. We present the MicroED structures of remdesivir forms II and IV and conclude that form II is more stable than form IV at ambient temperature in agreement with experimental observations. The combined experimental and theoretical study can serve as a template for formulation scientists in the pharmaceutical industry.

Your next success starts here

Recommended articles

AI-Predicted Full-Spectrum UV Correction Factors: An Analyte-Standard-Free Framework for Reaction Yield Quantification
SureRoute: Toward a Hallucination-Free Self-Improving Platform for Retrosynthesis
Selective pore modulation in layered molecular crystals
Synthesis of Z‑allylamines via masked alkenyl anions from alkynyl tetracoordinate boron compounds

XtalPi Newsletter