Author: Rui Xiong; Leike Zhang; Shiliang Li; Yuan Sun; Minyi Ding; Yong Wang; Yongliang Zhao; Yan Wu; Weijuan Shang; Xiaming Jiang; Jiwei Shan; Zihao Shen; Yi Tong; Liuxin Xu; Chen Yu; Yingle Liu; Gang Zou; Dimitri Lavillete; Zhenjiang Zhao; Rui Wang; Lili Zhu; Gengfu Xiao; Ke Lan; Honglin Li; Ke Xu
Title: Novel and potent inhibitors targeting DHODH, a rate-limiting enzyme in de novo pyrimidine biosynthesis, are broad-spectrum antiviral against RNA viruses including newly emerged coronavirus SARS-CoV-2 Document date: 2020_3_12
ID: hq5um68k_28
Snippet: The results in all provide striking information that DHODH inhibitors are effective in infected animals not only by inhibiting virus replication (Shown in Fig. 3 and Fig. 4) but also by eliminating excessive cytokine/chemokine storm. Usage of DHODHi could finally benefit to advanced disease in late infection. In this study, we applied DHODH inhibitors including a computer-aided designed compound S312 into viral infectious disease. We found that d.....
Document: The results in all provide striking information that DHODH inhibitors are effective in infected animals not only by inhibiting virus replication (Shown in Fig. 3 and Fig. 4) but also by eliminating excessive cytokine/chemokine storm. Usage of DHODHi could finally benefit to advanced disease in late infection. In this study, we applied DHODH inhibitors including a computer-aided designed compound S312 into viral infectious disease. We found that direct-targeting DHODHi are broad-spectrum antiviral both in cell culture and in vivo. The candidate S312 had further advantage to be used in infected animals with low toxicity and high efficiency.
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