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Discovery of Highly Potent Inhibitors Targeting the Predominant Drug-Resistant S31N Mutant of the Influenza A Virus M2 Proton Channel

机译:针对甲型流感病毒M2质子通道的主要耐药性S31N突变体的高效抑制剂的发现

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With the emergence of highly pathogenic avian influenza (HPAI) H7N9 and HSN1 strains, there is a pressing need to develop direct-acting antivirals (DAAs) to combat such deadly viruses. The M2-S31N proton channel of the influenza A virus (A/M2) is one of the validated and most conserved proteins encoded by the current circulating influenza A viruses; thus, it represents a high-profile drug target for therapeutic intervention. We recently discovered a series of S31N inhibitors with the general structure of adamantyl-1-NH2+CH2-aryl, but they generally had poor physical properties and some showed toxicity in vitro. In this study, we sought to optimize both the adamantyl as well as the aryl/heteroaryl group. Several compounds from this study exhibited submicromolar EC50 values against S31N-containing A/WSN/33 influenza viruses in antiviral plaque reduction assays with a selectivity index greater than 100, indicating that these compounds are promising candidates for in-depth preclinical pharmacology.
机译:随着高致病性禽流感(HPAI)H7N9和HSN1菌株的出现,迫切需要开发直接作用的抗病毒剂(DAA)来对抗这种致命的病毒。甲型流感病毒(A / M2)的M2-S31N质子通道是目前流行的甲型流感病毒编码的经过验证且最保守的蛋白质之一;因此,它代表了用于治疗干预的引人注目的药物靶标。我们最近发现了一系列具有金刚烷基-1-NH2 + CH2-芳基一般结构的S31N抑制剂,但它们的物理性质通常较差,有些在体外具有毒性。在这项研究中,我们试图优化金刚烷基以及芳基/杂芳基。这项研究中的几种化合物在抗病毒斑减少试验中对含S31N的A / WSN / 33流感病毒表现出亚微摩尔EC50值,选择性指数大于100,表明这些化合物有望成为深入临床前药理学的候选物。

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