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Enhanced Activity and Sustained Release of Protocatechuic Acid a Natural Antibacterial Agent from Hybrid Nanoformulations with Zinc Oxide Nanoparticles

机译:从氧化锌纳米粒子的杂交纳米族种质中增强活性和Protocatechuic acid的活性抑菌酸的持续释放

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摘要

Hybrid nanostructures can be developed with inorganic nanoparticles (NPs) such as zinc oxide (ZnO) and natural antibacterials. ZnO NPs can also exert antibacterial effects, and we used them here to examine their dual action in combination with a natural antibacterial agent, protocatechuic acid (PCA). To produce hybrid nanoformulations, we functionalized ZnO NPs with four types of silane organic molecules and successfully linked them to PCA. Physicochemical assessment confirmed PCA content up to ~18% in hybrid nanoformulations, with a PCA entrapment efficiency of ~72%, indicating successful connection. We then investigated the in vitro release kinetics and antibacterial effects of the hybrid against Staphylococcus aureus. PCA release from hybrid nanoformulations varied with silane surface modification. Within 98 h, only 8% of the total encapsulated PCA was released, suggesting sustained long-term release. We used nanoformulation solutions collected at days 3, 5, and 7 by disc diffusion or log reduction to evaluate their antibacterial effect against S. aureus. The hybrid nanoformulation showed efficient antibacterial and bactericidal effects that also depended on the surface modification and at a lower minimum inhibition concentration compared with the separate components. A hybrid nanoformulation of the PCA prodrug and ZnO NPs offers effective sustained-release inhibition of S. aureus growth.
机译:杂化纳米结构可以用无机纳米颗粒(NPS),例如氧化锌(ZnO)和天然抗菌。 ZnO NPS还可以发挥抗菌效果,我们在此处使用它们与天然抗菌剂,ProtocateChuic acid(PCA)组合检查它们的双重作用。为了产生杂种纳米氧化物,我们用四种类型的硅烷有机分子官能化ZnO NPS,并成功地将它们连接到PCA。物理化学评估证实了杂交纳米族种质的PCA含量高达约〜18%,PCA截留效率为约72%,表明连接成功。然后,我们研究了杂种对金黄色葡萄球菌的体外释放动力学和抗菌作用。从杂交纳米族种质中的PCA释放随硅烷表面改性而变化。在98小时内,仅释放了8%的封装PCA,表明持续的长期释放。我们使用在第3,5和7天和7天的纳米造型溶液通过盘扩散或降低降低,以评估它们对金黄色葡萄球菌的抗菌作用。杂化纳米型测量显示出有效的抗菌和杀菌效果,也依赖于表面改性和与单独的组分相比的最小最小抑制浓度。 PCA前药和ZnO NPS的杂种纳米型纳米型纳米型纳米型测量抑制金黄色葡萄球菌生长的有效持续释放抑制。

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