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Modifications in the branched arms of a class of dual inhibitors of HIV and EV71 replication expand their antiviral spectrum

机译:一类HIV和EV71复制双重抑制剂分支臂的修饰扩大了它们的抗病毒谱。

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摘要

We have previously reported a new class of dendrimers with tryptophan (Trp) residues on the surface that show dual antiviral activities against HIV and enterovirus EV71. The prototype compound of this family is a derivative of pentaerythritol with 12 peripheral Trp groups and trivalent spacer arms. Here a novel series of dendrimers with divalent and tetravalent branched arms, instead of the trivalent ones present on the prototype, has been synthesized and its activity against HIV, EV71 and a panel of 16 different viruses and other pathogens has been determined. Convergent or divergent approaches have been used for the synthesis of these compounds. Our findings demonstrate that only compounds with tetravalent branched arms showed the same anti-HIV and anti-EV71 activity of the prototype (low micromolar) and even gain significant antiviral activity against new pathogens such as HSV-2, adenovirus-2, human corona virus and respiratory syncytial virus, being the first members of the Trp dendrimer family that showed activity against those viruses. As the prototype, these compounds also showed low-nanomolar activity against a representative EV71 clinical isolate. Experimental work carried on to determine the mode of action of the most potent , containing tetravalent branched arms, demonstrated that it interacts with the viral envelopes of HIV, EV71 and HSV-2 and thus may prevent virus attachment to the host cell. These results support the interest of this new series of Trp dendrimers and qualify them as useful prototypes for the development of novel inhibitors of viral entry with broad antiviral spectrum.
机译:我们以前曾报道过一种新型的树状聚合物,其表面具有色氨酸(Trp)残基,对HIV和肠病毒EV71具有双重抗病毒活性。该家族的原型化合物是季戊四醇的衍生物,具有12个外围Trp基团和三价间隔臂。在这里,已经合成了一系列具有二价和四价分支臂的树状大分子,而不是原型中存在的三价树枝状大分子,并且已经确定了其对HIV,EV71和一组16种不同病毒和其他病原体的活性。收敛或发散方法已用于合成这些化合物。我们的研究结果表明,只有具有四价分支臂的化合物才显示出与原型相同的抗HIV和抗EV71活性(低摩尔浓度),甚至对新病原体(例如HSV-2,腺病毒2,人冠状病毒)具有显着的抗病毒活性。和呼吸道合胞病毒,是Trp树状大分子家族的首批对这些病毒表现出活性的成员。作为原型,这些化合物还对代表性的EV71临床分离株表现出低纳摩尔活性。为确定最有效的含有四价分支臂的作用方式而进行的实验工作表明,它与HIV,EV71和HSV-2的病毒包膜相互作用,因此可以防止病毒附着于宿主细胞。这些结果支持了这个新系列的Trp树状大分子的兴趣,并使它们成为开发具有宽抗病毒谱的新型病毒进入抑制剂的有用原型。

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