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基于植物化学物质的纳米抗氧化剂,用聚乙烯吡咯烷酮稳定以增强抗菌、抗氧化和抗炎活性。

Phytochemical-Based Nanoantioxidants Stabilized with Polyvinylpyrrolidone for Enhanced Antibacterial, Antioxidant, and Anti-Inflammatory Activities.

作者信息

Oh Hyeryeon, Lee Jin Sil, Park Hyojung, Son Panmo, Jeon Byoung Seung, Lee Sang Soo, Sung Daekyung, Lim Jong-Min, Choi Won Il

机构信息

Bio-Convergence Materials R&D Division, Korea Institute of Ceramic Engineering and Technology, 202 Osongsaengmyeong 1-ro, Heungdeok-gu, Cheongju 28160, Republic of Korea.

School of Materials Science and Engineering, Gwangju Institute of Science and Technology, 123 Cheomdangwagi-ro, Buk-gu, Gwangju 61005, Republic of Korea.

出版信息

Antioxidants (Basel). 2024 Aug 30;13(9):1056. doi: 10.3390/antiox13091056.

Abstract

Despite the inhibitory effect of phytoncide (Pht) on food-borne pathogenic bacterial growth, the hydrophobic nature and susceptibility to biodegradation under physiological conditions limits its applications. Here, we developed Pht-loaded polyvinylpyrrolidone (PVP) micelles (Pht@PVP MC) via micelle packing. Pht was solubilized using different types of PVP as micellar vehicles. The as-prepared Pht@PVP MCs were characterized using dynamic light scattering and transmission electron microscopy. The sizes of the Pht@PVP MCs were controlled from 301 ± 51 to 80 ± 3 nm by adjusting the PVP content. The polydispersity index of Pht@PVP MC was between 0.21 ± 0.03 and 0.16 ± 0.04, indicating homogeneous size. A colony-counting method was employed to evaluate the improvement in antibacterial activity after Pht encapsulation in PVP micelles. The reactive oxygen species (ROS)-scavenging activity and anti-inflammatory efficacy of Pht@PVP MC were analyzed in a concentration range of 10-100 μg/mL by evaluating in vitro ROS and nitric oxide levels using DCFDA and Griess reagents. PVP with both hydrophobic and hydrophilic moieties improved the aqueous solubility of Pht and stabilized it via steric hindrance. Higher-molecular-weight PVP at higher concentrations resulted in a smaller hydrodynamic diameter of Pht@PVP MC with uniform size distribution. The spherical Pht@PVP MC maintained its size and polydispersity index in a biological buffer for 2 weeks. Pht@PVP MC exhibited enhanced antibacterial activity compared to bare Pht. The growth of was effectively inhibited by Pht@PVP MC treatment. Furthermore, biocompatible Pht@PVP MC exhibited dose-dependent antioxidant and anti-inflammatory activities in vitro. Overall, Pht@PVP MC is an effective alternative to synthetic antibacterial, antioxidant, and anti-inflammatory chemicals.

摘要

尽管植物杀菌素(Pht)对食源性病原体细菌生长具有抑制作用,但其疏水性以及在生理条件下易被生物降解的特性限制了其应用。在此,我们通过胶束堆积法制备了负载Pht的聚乙烯吡咯烷酮(PVP)胶束(Pht@PVP MC)。使用不同类型的PVP作为胶束载体来溶解Pht。通过动态光散射和透射电子显微镜对所制备的Pht@PVP MC进行表征。通过调整PVP含量,将Pht@PVP MC的尺寸控制在301±51至80±3nm之间。Pht@PVP MC的多分散指数在0.21±0.03至0.16±0.04之间,表明尺寸均匀。采用菌落计数法评估Pht包封于PVP胶束后抗菌活性的提高情况。通过使用DCFDA和Griess试剂评估体外活性氧(ROS)和一氧化氮水平,在10 - 100μg/mL的浓度范围内分析了Pht@PVP MC的ROS清除活性和抗炎功效。兼具疏水和亲水部分的PVP提高了Pht的水溶性,并通过空间位阻使其稳定。较高浓度的高分子量PVP导致Pht@PVP MC的流体动力学直径更小且尺寸分布均匀。球形的Pht@PVP MC在生物缓冲液中2周内保持其尺寸和多分散指数。与裸露的Pht相比,Pht@PVP MC表现出增强的抗菌活性。Pht@PVP MC处理有效地抑制了[具体细菌名称未给出]的生长。此外,生物相容性良好的Pht@PVP MC在体外表现出剂量依赖性的抗氧化和抗炎活性。总体而言,Pht@PVP MC是合成抗菌、抗氧化和抗炎化学物质的有效替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c93/11429192/bd77300c4122/antioxidants-13-01056-g001.jpg

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