植物衍生纳米颗粒:绿色合成、因子和生物活性

Demiana H. Hanna, Doaa Sayed Nady, Maria Wagdy Wasef, Merola Hany Fakhry, Fatma Sayed Mohamed, Demiana Magdy Isaac, Mariam Makram Kirolos, Mirna Samir Azmy, George Ezzat Hakeem, Clara Ashraf Fathy
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摘要

纳米粒子非凡的物理、化学和生物特性,如其光学、磁性、光催化和传感能力,使其成为全球范围内科学研究的主要焦点。现在可以使用各种物理和化学技术来制造纳米材料。但这些技术通常都很昂贵,使用有害的化学物质,并可能产生污染环境的危险副产品。这强调了迫切需要更简单、更便宜、更环保的替代品。绿色纳米技术,将纳米技术与可持续化学的理论和实践相结合,可能是很快建立可持续文明的秘诀。由于植物提取物简单、无毒、环保,近年来引起了人们对纳米材料合成的极大兴趣。植物的叶子、果实、根和种子等部分经常被用来制造各种NPs。事实上,植物提取物可以生产出具有特定大小、形状和组成的NPs。由于在植物提取物中发现的植物化学物质具有独特的品质,研究人员正在进行将纳米技术和生物技术结合在一起的跨学科研究。植物提取物中含有各种物质,包括黄酮类、萜类、醇类、碳水化合物、糖和多酚,它们是合成过程中重要的稳定和还原剂。因此,本研究强调了植物提取物介导的合成作为一种可持续的生产纳米颗粒的策略的潜力,这些纳米颗粒具有可控的性能和有前景的生物应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plant-derived nanoparticles: Green synthesis, factors, and bioactivities
The remarkable physical, chemical, and biological properties of nanoparticles, such as their optical, magnetic, photocatalytic, and sensing capabilities, have made them a major focus of scientific research on a global scale. Nanomaterials can now be created using a variety of physical and chemical techniques. But these techniques are frequently expensive, use harmful chemicals, and can result in dangerous byproducts that pollute the environment. This emphasizes how urgently simpler, less expensive, and environmentally friendly substitutes are needed. Green nanotechnology, which blends nanotechnology with theories and practices of sustainable chemistry, might be the secret to building a sustainable civilization soon. Because they are simple, non-toxic, and environmentally benign, plant extracts have recently drawn a lot of interest in the synthesis of nanomaterials. Plant parts such as leaves, fruits, roots, and seeds are frequently used to create various NPs. In fact, NPs with specific size, shape, and composition can be produced using plant extracts. Researchers are pursuing interdisciplinary studies that bring together nanotechnology and biotechnology because of the unique qualities of phytochemicals found in plant extracts. Various substances, including flavonoids, terpenoids, alcohols, carbohydrates, sugars, and polyphenols, are found in plant extracts and are important stabilizing and reducing agents during synthesis. Therefore, this study highlights the potential of plant extract–mediated synthesis as a sustainable strategy for producing nanoparticles with controlled properties and promising biological applications.
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