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Conjugating drug candidates to polymeric chains does not necessarily enhance anti-influenza activity

机译:将候选药物与聚合物链缀合并不一定会增强抗流感活性

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Using the plaque reduction assay, relatively simple bicyclic quinone molecules, as well as multiple copies thereof covalently attached to a long polyglutamate-based polymeric chain, were examined as new inhibitors of various naturally occurring strains of influenza A virus. The polymer-conjugated inhibitors were found to have a far greater potency (for some as high as two orders of magnitude when a long spacer arm was employed) than their corresponding parent molecules against the human Wuhan influenza strain. However, such polymeric inhibitors failed to exhibit higher potency compared with their small molecule predecessors against the human Puerto Rico and avian turkey influenza strains. These observations, further explored by means of molecular modeling, reveal the previously unrecognized unpredictability of the benefits of multivalency, possibly because of poor accessibility of the viral targets to polymeric agents.
机译:使用噬菌斑减少测定法,将相对简单的双环醌分子及其共价连接至长的基于聚谷氨酸的聚合物链的多个拷贝作为各种天然存在的甲型流感病毒的新抑制剂进行了研究。发现与聚合物缀合的抑制剂对人类武汉流感病毒株的效力比它们相应的母体分子强得多(当使用长的间隔臂时,效力高达两个数量级)。然而,与它们的小分子前体相比,这种聚合物抑制剂对人类波多黎各和禽火鸡流感病毒株没有更高的效力。这些观察结果,通过分子模型的进一步探索,揭示了以前无法识别的多价优势的不可预测性,这可能是由于病毒靶标对聚合物的可及性差。

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