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含银和植物提取物的聚合物体系研究:抗氧化性能与动力学释放

Investigation of Silver- and Plant Extract-Infused Polymer Systems: Antioxidant Properties and Kinetic Release.

作者信息

Bańkosz Magdalena, Tyliszczak Bożena

机构信息

Department of Material Engineering, Faculty of Materials Engineering and Physics, CUT Doctoral School, Cracow University of Technology, 31-864 Kraków, Poland.

Department of Material Engineering, Faculty of Materials Engineering and Physics, Cracow University of Technology, 31-864 Kraków, Poland.

出版信息

Int J Mol Sci. 2024 Nov 28;25(23):12816. doi: 10.3390/ijms252312816.

Abstract

This study evaluated the impact of silver particles, suspended in flower extract, on the physicochemical characteristics and release dynamics of antioxidant compounds in PVP (polyvinylpyrrolidone)-based hydrogel systems. The hydrogels were synthesized via photopolymerization with fixed amounts of crosslinker (PEGDA) and photoinitiator, while the concentration of the silver-infused extract was systematically varied. Key properties, including the density, porosity, surface roughness, swelling capacity, and water vapor transmission rate (WVTR), were quantitatively analyzed. The results demonstrated that increasing the silver content reduced the hydrogel density from 0.6669 g/cm to 0.2963 g/cm and increased the porosity from 4% to 11.04%. The surface roughness parameters (Ra) rose from 8.42 µm to 16.33 µm, while the WVTR increased significantly from 65.169 g/m·h to 93.772 g/m·h. These structural changes directly influenced the release kinetics of antioxidant compounds, with kinetic modeling revealing silver-dependent variations in the evaluated release mechanisms. This innovative approach of integrating silver particles and plant-derived antioxidants into hydrogels highlights a novel pathway for tailoring material properties. The observed enhanced porosity and moisture regulation underscore the hydrogels' potential for biomedical applications, particularly in wound care, where controlled moisture and antioxidant delivery are critical. These findings provide new insights into how silver particles modulate hydrogel structures and functionalities.

摘要

本研究评估了悬浮于花提取物中的银颗粒对基于聚乙烯吡咯烷酮(PVP)的水凝胶体系中抗氧化化合物的物理化学特性及释放动力学的影响。水凝胶通过光聚合反应合成,交联剂(聚乙二醇二丙烯酸酯,PEGDA)和光引发剂的用量固定,而注入银的提取物浓度则系统地变化。对包括密度、孔隙率、表面粗糙度、溶胀能力和水蒸气透过率(WVTR)在内的关键性能进行了定量分析。结果表明,银含量的增加使水凝胶密度从0.6669 g/cm降至0.2963 g/cm,孔隙率从4%增至11.04%。表面粗糙度参数(Ra)从8.42 µm升至16.33 µm,而WVTR从65.169 g/m·h显著增至93.772 g/m·h。这些结构变化直接影响了抗氧化化合物的释放动力学,动力学建模揭示了所评估的释放机制中银依赖性的变化。将银颗粒与植物源抗氧化剂整合到水凝胶中的这种创新方法突出了一种定制材料性能的新途径。观察到的孔隙率增加和湿度调节能力增强强调了水凝胶在生物医学应用中的潜力,特别是在伤口护理中,其中可控的湿度和抗氧化剂递送至关重要。这些发现为银颗粒如何调节水凝胶结构和功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20a7/11641256/bb603c56e0dd/ijms-25-12816-g001.jpg

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