Anti-Influenza Drug Discovery: Structure−Activity Relationship and Mechanistic Insight into Novel Angelicin Derivatives

Jiann-Yih Yeh(National Health Research Institutes), Mohane Selvaraj Coumar(National Health Research Institutes), Jim‐Tong Horng, Hui-Yi Shiao(National Tsing Hua University), Fu‐Ming Kuo(National Health Research Institutes), Hui-Ling Lee(National Health Research Institutes), In-Chun Chen(National Health Research Institutes), Chun-Wei Chang(National Health Research Institutes), Wen‐Fang Tang, Sung-Nain Tseng(Ekaterinburg Research Institute of Viral Infections), Chi-Jene Chen(Ekaterinburg Research Institute of Viral Infections), Shin‐Ru Shih, John Hsu(National Yang Ming Chiao Tung University), Chun‐Chen Liao(National Tsing Hua University), Yu-Sheng Chao(National Health Research Institutes), Hsing‐Pang Hsieh(National Health Research Institutes)
Journal of Medicinal Chemistry
January 21, 2010
Cited by 154

Abstract

By using a cell-based high throughput screening campaign, a novel angelicin derivative 6a was identified to inhibit influenza A (H1N1) virus induced cytopathic effect in Madin-Darby canine kidney cell culture in low micromolar range. Detailed structure-activity relationship studies of 6a revealed that the angelicin scaffold is essential for activity in pharmacophore B, while meta-substituted phenyl/2-thiophene rings are optimal in pharmacophore A and C. The optimized lead 4-methyl-9-phenyl-8-(thiophene-2-carbonyl)-furo[2,3-h]chromen-2-one (8g, IC(50) = 70 nM) showed 64-fold enhanced activity compared to the high throughput screening (HTS) hit 6a. Also, 8g was found effective in case of influenza A (H3N2) and influenza B virus strains similar to approved anti-influenza drug zanamivir (4). Preliminary mechanistic studies suggest that these compounds act as anti-influenza agents by inhibiting ribonucleoprotein (RNP) complex associated activity and have the potential to be developed further, which could form the basis for developing additional defense against influenza pandemics.


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