植物提取物介导的金属银、金和氧化锌纳米颗粒的生物医学应用综述及其与石墨相氮化碳结合的未来前景

A Review on Biomedical Applications of Plant Extract-Mediated Metallic Ag, Au, and ZnO Nanoparticles and Future Prospects for Their Combination with Graphitic Carbon Nitride.

作者信息

Panchal Priyanka, Rauwel Protima, Nehra Satya Pal, Singh Priyanka, Karla Mamta, Hermosa Glemarie, Rauwel Erwan

机构信息

Institute of Veterinary Medicine and Animal Sciences, Estonian University of Life Sciences, 51006 Tartu, Estonia.

Department of Aeronautical Engineering, Estonian Aviation Academy, 61707 Tartu, Estonia.

出版信息

Pharmaceuticals (Basel). 2025 May 29;18(6):820. doi: 10.3390/ph18060820.

Abstract

Since the publication of the 12 principles of green chemistry in 1998 by Paul Anastas and John Warner, the green synthesis of metal and metal oxide nanoparticles has emerged as an eco-friendly and sustainable alternative to conventional chemical methods. Plant-based synthesis utilizes natural extracts as reducing and stabilizing agents, minimizing harmful chemicals and toxic by-products. Ag nanoparticles (Ag-NPs) exhibit strong antibacterial activity; Au nanoparticles (Au-NPs) are seen as a promising carrier for drug delivery and diagnostics because of their easy functionalization and biocompatibility; and ZnO nanoparticles (ZnO-NPs), on the other hand, produce reactive oxygen species (ROS) that kill microorganisms effectively. These nanoparticles also demonstrate antioxidant properties by scavenging free radicals, reducing oxidative stress, and preventing degenerative diseases. Green syntheses based on plant extracts enhance biocompatibility and therapeutic efficacy, making them suitable for antimicrobial, anticancer, and antioxidant applications. Applying a similar "green synthesis" for advanced nanostructures like graphitic carbon nitride (GCN) is an environmentally friendly alternative to the traditional ways of doing things. GCN exhibits exceptional photocatalytic activity, pollutant degradation efficiency, and electronic properties, with applications in environmental remediation, energy storage, and biomedicine. This review highlights the potential of green-synthesized hybrid nanocomposites combining nanoparticles and GCN as sustainable solutions for biomedical and environmental challenges. The review also highlights the need for the creation of a database using a machine learning process that will enable providing a clear vision of all the progress accomplished till now and identify the most promising plant extracts that should be used for targeted applications.

摘要

自1998年保罗·阿纳斯塔斯和约翰·华纳发表绿色化学的12条原则以来,金属和金属氧化物纳米颗粒的绿色合成已成为传统化学方法的一种环保且可持续的替代方法。基于植物的合成利用天然提取物作为还原剂和稳定剂,最大限度地减少有害化学物质和有毒副产物。银纳米颗粒(Ag-NPs)具有很强的抗菌活性;金纳米颗粒(Au-NPs)因其易于功能化和生物相容性而被视为药物递送和诊断的有前途的载体;另一方面,氧化锌纳米颗粒(ZnO-NPs)会产生活性氧(ROS),能有效杀死微生物。这些纳米颗粒还通过清除自由基、减轻氧化应激和预防退行性疾病来展现抗氧化特性。基于植物提取物的绿色合成增强了生物相容性和治疗效果,使其适用于抗菌、抗癌和抗氧化应用。对石墨相氮化碳(GCN)等先进纳米结构应用类似的“绿色合成”是一种比传统方法更环保的选择。GCN具有卓越的光催化活性、污染物降解效率和电子性能,可应用于环境修复、能量存储和生物医学领域。本综述强调了绿色合成的混合纳米复合材料(将纳米颗粒与GCN结合)作为应对生物医学和环境挑战的可持续解决方案的潜力。该综述还强调需要利用机器学习过程创建一个数据库,以便能够清晰地了解到目前为止所取得的所有进展,并确定最有前途的用于特定应用的植物提取物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cfe/12195772/1e283e31f0c1/pharmaceuticals-18-00820-g001.jpg

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