Open AccessChemistryMedicineBiology

Na Ye, Haiying Chen, E. Wold, P. Shi, Jia Zhou

2016.5.5ACS Infectious Diseases

DOI: 10.1021/acsinfecdis.6b00041

tlooto Summary

This review highlights recent advances in the development of biologically active spirooxindoles for their antiviral potential, primarily focusing on the structure–activity relationships (SARs) and modes of action, as well as future directions to achieve more potent analogues toward a viable antiviral therapy.

Abstract

Antiviral therapeutics with profiles of high potency, low resistance, panserotype, and low toxicity remain challenging, and obtaining such agents continues to be an active area of therapeutic development. Due to their unique three-dimensional structural features, spirooxindoles have been identified as privileged chemotypes for antiviral drug development. Among them, spiropyrazolopyridone oxindoles have been recently reported as potent inhibitors of dengue virus NS4B, leading to the discovery of an orally bioavailable preclinical candidate (R)-44 with excellent in vivo efficacy in a dengue viremia mouse model. This review highlights recent advances in the development of biologically active spirooxindoles for their antiviral potential, primarily focusing on the structure–activity relationships (SARs) and modes of action, as well as future directions to achieve more potent analogues toward a viable antiviral therapy.

Citation format

YE, Na, et al. Therapeutic potential of spirooxindoles as antiviral agents. ACS Infectious Diseases, 2016, 2: 382–392.