Díaz-Puertas Rocío, Álvarez-Martínez Francisco J, Rodríguez-Cañas Enrique, Borrás Fernando, Valente Artur J M, Paixao José A, Falcó Alberto, Mallavia Ricardo
Institute of Research, Development and Innovation in Healthcare Biotechnology in Elche (IDiBE), Miguel Hernández University, Elche 03202, Alicante, Spain.
Statistics and Operative Research Department, Miguel Hernández University, Elche 03202, Alicante, Spain.
Bioinorg Chem Appl. 2025 Mar 13;2025:2009069. doi: 10.1155/bca/2009069. eCollection 2025.
This study describes a green synthesis method for silver nanoparticles (AgNPs) using autochthonous "Mollar de Elche" pomegranate peel extract and optimized through a Python-programmed Box-Behnken design (BBD) created specifically for the work. The bioactive compounds in pomegranate, particularly punicalagin, serve as effective reducing and stabilizing agents. BBD was used to analyze the effects of dependent variables such as silver nitrate concentration, pomegranate extract concentration, and temperature on responses such as hydrodynamic diameter, polydispersity index, and zeta potential, minimizing experimental trials and highlighting variable interactions. Optimal conditions were experimentally validated and agreed well with the predicted values. The optimized AgNPs were characterized via ultraviolet-visible spectrophotometry, Fourier transform infrared spectroscopy, X-ray diffraction, and field emission scanning electron microscopy. These AgNPs demonstrated substantial antibacterial activity against and . Furthermore, the AgNPs were incorporated into nanofibrous scaffolds as a proof of concept for potential biomedical applications, where their antibacterial activity was partially retained postincorporation. This study highlights the potential of pomegranate extract as a sustainable medium for AgNP synthesis with promising antibacterial applications and the ability of the BBD as a useful tool for efficient optimization of multivariable processes, including the synthesis of nanomaterials.
本研究描述了一种使用当地“莫拉尔·德埃尔切”石榴皮提取物合成银纳米颗粒(AgNPs)的绿色合成方法,并通过专门为该工作创建的Python编程的Box-Behnken设计(BBD)进行了优化。石榴中的生物活性化合物,特别是石榴皮素,可作为有效的还原剂和稳定剂。BBD用于分析硝酸银浓度、石榴提取物浓度和温度等自变量对流体动力学直径、多分散指数和zeta电位等响应的影响,最大限度地减少实验次数并突出变量之间的相互作用。通过实验验证了最佳条件,其与预测值吻合良好。通过紫外可见分光光度法、傅里叶变换红外光谱法、X射线衍射法和场发射扫描电子显微镜对优化后的AgNPs进行了表征。这些AgNPs对[具体细菌名称1]和[具体细菌名称2]表现出显著的抗菌活性。此外,作为潜在生物医学应用概念验证,将AgNPs掺入纳米纤维支架中,掺入后其抗菌活性部分得以保留。本研究突出了石榴提取物作为AgNP合成可持续介质在抗菌应用方面的潜力,以及BBD作为有效优化多变量过程(包括纳米材料合成)有用工具的能力。