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首页> 外文期刊>Molecular pharmaceutics >Multivalent benzoboroxole functionalized polymers as gp120 glycan targeted microbicide entry inhibitors
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Multivalent benzoboroxole functionalized polymers as gp120 glycan targeted microbicide entry inhibitors

机译:多价苯并硼唑官能化聚合物作为gp120聚糖靶向的杀菌剂进入抑制剂

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Microbicides are women-controlled prophylactics for sexually transmitted infections. The most important class of microbicides target HIV-1 and contain antiviral agents formulated for topical vaginal delivery. Identification of new viral entry inhibitors that target the HIV-1 envelope is important because they can inactivate HIV-1 in the vaginal lumen before virions can come in contact with CD4+ cells in the vaginal mucosa. Carbohydrate binding agents (CBAs) demonstrate the ability to act as entry inhibitors due to their ability to bind to glycans and prevent gp120 binding to CD4+ cells. However, as proteins they present significant challenges in regard to economical production and formulation for resource-poor environments. We have synthesized water-soluble polymer CBAs that contain multiple benzoboroxole moieties. A benzoboroxole-functionalized monomer was synthesized and incorporated into linear oligomers with 2-hydroxypropylmethacrylamide (HPMAm) at different feed ratios using free radical polymerization. The benzoboroxole small molecule analogue demonstrated weak affinity for HIV-1BaL gp120 by SPR; however, the 25 mol % functionalized benzoboroxole oligomer demonstrated a 10-fold decrease in the KD for gp120, suggesting an increased avidity for the multivalent polymer construct. High molecular weight polymers functionalized with 25, 50, and 75 mol % benzoboroxole were synthesized and tested for their ability to neutralize HIV-1 entry for two HIV-1 clades and both R5 and X4 coreceptor tropism. All three polymers demonstrated activity against all viral strains tested with EC50s that decrease from 15000 nM (1500 μg mL -1) for the 25 mol % functionalized polymers to 11 nM (1 μg mL-1) for the 75 mol % benzoboroxole-functionalized polymers. These polymers exhibited minimal cytotoxicity after 24 h exposure to a human vaginal cell line.
机译:杀微生物剂是妇女控制的性传播感染的预防剂。最重要的一类杀微生物剂以HIV-1为目标,并包含配制用于局部阴道输送的抗病毒剂。鉴定靶向HIV-1包膜的新型病毒进入抑制剂非常重要,因为它们可以在病毒体与阴道粘膜中的CD4 +细胞接触之前使阴道腔中的HIV-1失活。碳水化合物结合剂(CBA)由于具有与聚糖结合并阻止gp120与CD4 +细胞结合的能力,因此具有充当进入抑制剂的能力。但是,作为蛋白质,它们在经济生产和资源匮乏环境的配方方面提出了重大挑战。我们已经合成了包含多个苯并硼恶唑部分的水溶性聚合物CBA。合成了苯并硼氧烷官能化的单体,并使用自由基聚合以不同的进料比将其与2-羟丙基甲基丙烯酰胺(HPMAm)掺入线性低聚物中。苯并硼恶唑小分子类似物通过SPR对HIV-1BaL gp120的亲和力很弱。然而,该25mol%官能化的苯并硼恶唑低聚物显示出gp120的KD降低了10倍,表明该多价聚合物构建体的亲合力增加。合成了用25、50和75 mol%苯并硼唑官能化的高分子量聚合物,并测试了它们针对两个HIV-1进化枝中和HIV-1的能力以及R5和X4共受体亲和力的能力。所有三种聚合物均表现出针对所有EC50测试的病毒株的活性,EC50从25 mol%官能化的聚合物的15000 nM(1500μgmL -1)降低到75 mol%苯并硼氧烷官能化的聚合物的11 nM(1μgmL-1)。 。这些聚合物在暴露于人类阴道细胞系24小时后表现出最小的细胞毒性。

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