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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Managing bacterial biofilms with chitosan-based polymeric nitric oxides: Inactivation of biofilm bacteria and synergistic effects with antibiotics
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Managing bacterial biofilms with chitosan-based polymeric nitric oxides: Inactivation of biofilm bacteria and synergistic effects with antibiotics

机译:使用基于壳聚糖的聚合型一氧化氮处理细菌生物膜:生物膜细菌的失活和与抗生素的协同作用

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摘要

In this study, we developed a new approach in the preparation of chitosan-based polymeric nitric oxides. Chitosan film (unreacted chitosan) reacted with glutaraldehyde to introduce aldehyde groups onto the material surface (glutaraldehyde-treated chitosan). Glutaraldehyde-treated chitosan reacted with a small-molecule nitric oxide donor, 3,3-bis(aminoethyl)-1-hydroxy-2-oxo-1-triazene, to covalently immobilize nitric oxide-releasing moieties onto the polymer (chitosan-based polymeric nitric oxide). Chitosan-based polymeric nitric oxide showed sustained release of nitric oxide. The activation energies and rate constants of nitric oxide release were determined. The released nitric oxide provided potent antimicrobial effects against Gram-positive and Gram-negative bacteria living in biofilms, and the chitosan-based polymeric nitric oxide film showed added/synergistic effects with common antibiotics. At 4 degrees C, the chitosan-based polymeric nitric oxide could be stored for more than 1month, without significantly losing nitric oxide-releasing capabilities. Furthermore, chitosan-based polymeric nitric oxide showed excellent biocompatibility with mammalian cells, pointing to great potentials of the new materials for a wide range of biomedical applications.
机译:在这项研究中,我们开发了一种新的制备基于壳聚糖的聚合型一氧化氮的方法。壳聚糖膜(未反应的壳聚糖)与戊二醛反应,将醛基引入材料表面(戊二醛处理的壳聚糖)。戊二醛处理的壳聚糖与小分子一氧化氮供体3,3-双(氨基乙基)-1-羟基-2-氧代-1-三氮烯反应,将释放一氧化氮的部分共价固定在聚合物上(基于壳聚糖聚合型一氧化氮)。基于壳聚糖的聚合型一氧化氮显示出一氧化氮的持续释放。确定了释放一氧化氮的活化能和速率常数。释放的一氧化氮对生活在生物膜中的革兰氏阳性和革兰氏阴性细菌提供了有效的抗菌作用,基于壳聚糖的聚合型一氧化氮膜与普通抗生素相比具有增效作用。在4摄氏度下,基于壳聚糖的聚合型一氧化氮可以存储1个月以上,而不会显着损失一氧化氮的释放能力。此外,基于壳聚糖的聚合型一氧化氮表现出与哺乳动物细胞优异的生物相容性,这表明这种新材料在广泛的生物医学应用中具有巨大的潜力。

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