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Characterization of Phenolic Acid Antimicrobial and Antioxidant Structure–Property Relationships

机译:酚酸抗微生物和抗氧化结构-性质关系的表征

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摘要

Plant-derived phenolic acids (PAs) are small molecules with antimicrobial, antioxidant, anti-inflammatory, and pro-coagulant properties. Their chemistry enables facile potential incorporation into biomaterial scaffolds to provide naturally-derived functionalities that could improve healing outcomes. While PAs have been previously characterized, their structure-property relationships in terms of antioxidant and antimicrobial properties are not well-understood, particularly in the context of their use in medical applications. To that end, a library of PAs with varied pendant groups was characterized here. It was found that increasing the number of radical-scavenging hydroxyl and methoxy groups on PAs increased antioxidant properties. All PAs showed some antimicrobial activity against the selected bacteria strains ( , (native and drug-resistant), and (native and drug-resistant)) at concentrations that are feasible for incorporation into polymeric biomaterials. In general, a trend of slightly decreased antimicrobial efficacy with increased number of pendant hydroxyl and methoxy groups was observed. The carboxylic acid group of a selection of PAs was modified with a polyurethane monomer analog. Modification did not greatly affect antioxidant or antimicrobial properties in comparison to unmodified controls, indicating that the carboxylic acid group of PAs can be altered without losing functionality. These results could be utilized for rational selection of phenolic moieties for use as therapeutics on their own or as part of a biomaterial scaffold with desired healing outcomes.
机译:植物来源的酚酸(PAs)是具有抗菌,抗氧化剂,消炎和促凝血特性的小分子。它们的化学性质使它们易于掺入生物材料支架中,从而提供可改善愈合结果的天然来源的功能。尽管PA以前已经被表征过,但是在抗氧化剂和抗菌性能方面它们的结构-特性关系还没有得到很好的理解,特别是在医疗应用中。为此,这里描述了具有不同侧基的PAs库。发现增加PAs上清除自由基的羟基和甲氧基的数量增加了抗氧化性能。所有PA均以适合掺入高分子生物材料中的浓度对选定的细菌菌株(,(天然和耐药)和(天然和耐药))表现出一定的抗菌活性。通常,观察到随着侧羟基和甲氧基侧基数目的增加,抗菌功效略有下降的趋势。用聚氨酯单体类似物修饰某些PA的羧酸基团。与未修饰的对照相比,修饰对抗氧化剂或抗菌性能的影响不大,这表明PA的羧酸基团可以被改变而不会失去功能。这些结果可用于合理选择酚类部分以单独用作治疗剂或用作具有所需治疗结果的生物材料支架的一部分。

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