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Antibacterial Activity of Nitric Oxide-Releasing Hyperbranched Polyamidoamines

机译:一氧化氮释放的超支化聚酰胺胺的抗菌活性

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摘要

Hyperbranched polyamidoamines (h-PAMAM) were prepared using a one-pot reaction to have similar molecular weight to third generation PAMAM (G3-PAMAM) dendrimers, and then functionalized with N-diazeniumdiolate nitric oxide (NO) donors. A wide range of NO storage capacities (~1-2.50 μmol mg−1) and NO-release kinetics (t1/2 ~30-80 min) were achieved by changing the extent of propylene oxide (PO) modification. The therapeutic potential of these materials was evaluated by studying their antibacterial activities and toxicity against common dental pathogens and human gingival fibroblast cells, respectively. Our results indicate that the combination of NO release and PO modification is necessary to yield h-PAMAM materials with efficient bactericidal action without eliciting unwarranted cytotoxicity. Of importance, NO-releasing PO-modified h-PAMAM polymers exhibited comparable biological properties (i.e., antibacterial action and cytotoxicity) to defect-free G3-PAMAM dendrimers, but at a substantially lower synthetic burden.
机译:使用一锅反应制备超支化聚酰胺胺(h-PAMAM),使其具有与第三代PAMAM(G3-PAMAM)树状聚合物相似的分子量,然后用N-重氮二醇一氧化氮(NO)供体官能化。通过改变环氧丙烷(PO)的含量,可实现广泛的NO储存容量(〜1-2.50μmolmg -1 )和NO释放动力学(t1 / 2〜30-80分钟) ) 修改。通过分别研究它们对常见牙齿病原体和人牙龈成纤维细胞的抗菌活性和毒性来评估这些材料的治疗潜力。我们的结果表明,NO释放和PO修饰的组合对于产生具有有效杀菌作用而不会引起不必要的细胞毒性的h-PAMAM材料是必要的。重要的是,释放NO的PO-修饰的h-PAMAM聚合物表现出与无缺陷的G3-PAMAM树状聚合物相当的生物学性质(即,抗菌作用和细胞毒性),但是合成负担显着降低。

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