Identification of Small Molecules with Improved Potency against Orthopoxviruses from Vaccinia to Smallpox

牛痘 天花 病毒学 正痘病毒 效力 鉴定(生物学) 痘病毒科 天花疫苗 生物 微生物学 医学 接种疫苗 体外 遗传学 基因 植物 重组DNA
作者
Lauren E. Brown,Scott Seitz,Ashley V. Kondas,Paul T. Marcyk,Claire Marie Filone,Mohammad Mokbul Hossain,Scott E. Schaus,Victoria A. Olson,John H. Connor
出处
期刊:Antimicrobial Agents and Chemotherapy [American Society for Microbiology]
卷期号:66 (11) 被引量:3
标识
DOI:10.1128/aac.00841-22
摘要

The genus Orthopoxvirus contains several human pathogens, including vaccinia, monkeypox, cowpox, and variola virus, the causative agent of smallpox. Although there are a few effective vaccines, widespread prophylactic vaccination has ceased and is unlikely to resume, making therapeutics increasingly important to treat poxvirus disease. Here, we described efforts to improve the potency of the anti-poxvirus small molecule CMLDBU6128. This class of small molecules, referred to as pyridopyrimidinones (PDPMs), showed a wide range of biological activities. Through the synthesis and testing of several exploratory chemical libraries based on this molecule, we identified several compounds that had increased potency from the micromolar into the nanomolar range. Two compounds, designated (12) and (16), showed inhibitory concentrations of 326 nM and 101 nM, respectively, which was more than a 10-fold increase in potency to CMLDBU6128 with an inhibitory concentration of around 6 μM. We also expanded our investigation of the breadth of action of these molecules and showed that they can inhibit the replication of variola virus, a related orthopoxvirus. Together, these findings highlighted the promise of this new class of antipoxviral agents as broad-spectrum small molecules with significant potential to be developed as antiviral therapy. This would add a small molecule option for therapy of spreading diseases, including monkeypox and cowpox viruses, that would also be expected to have efficacy against smallpox.
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