Cláudio Carvalho Santana Júnior, Anamaria Mendonça Santos, Ana Maria Santos Oliveira, José Adão Carvalho Nascimento Júnior, Laurent Picot, Luiza Abrahão Frank, Paula Dos Passos Menezes, Izabel Almeida Alves, Mairim Russo Serafini
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引用次数: 0
摘要
抗菌素耐药性(AMR)是一个重要的公共卫生问题,当微生物进化出逃避抗生素影响的机制,从而使常规治疗无效时,就会出现这种情况。这一日益严峻的挑战凸显了对新型治疗方法的迫切需求。纳米技术,特别是与诸如绿色合成等环境可持续的做法相结合时,减少了有毒物质的使用并最大限度地减少了废物,提供了一个有希望的解决方案。本文综述了利用黄酮类化合物(具有丰富生物活性的天然化合物)作为还原剂和稳定剂的抗菌纳米颗粒的绿色合成。通过系统分析来自PubMed、Scopus、Web of Science和Embase的文章,确定了10项关键研究。主要检测的纳米颗粒是金属的,包括银、金、铜和金属,它们对金黄色葡萄球菌、大肠杆菌和铜绿假单胞菌等病原体有显著的疗效。这些结果支持绿色合成纳米颗粒代表了一种对抗抗菌素耐药性的可行策略,为开发抗菌剂提供了一种有效和环保的替代方案。
Green synthesis of antimicrobial nanotechnology using flavonoids: a systematic review.
Antimicrobial resistance (AMR) is a critical public health concern that arises when microorganisms evolve mechanisms to evade the effects of antibiotics, thereby rendering conventional treatments ineffective. This growing challenge underscores the urgent need for novel therapeutic approaches. Nanotechnology, particularly when combined with environmentally sustainable practices such as green synthesis, reduces the use of toxic substances and minimises waste, offering a promising solution. This review explores the green synthesis of antimicrobial nanoparticles using flavonoids-natural compounds with substantial biological activity-as reducing and stabilising agents. By systematically analysing articles from PubMed, Scopus, Web of Science, and Embase, 10 key studies were identified. The primary nanoparticles examined were metallic, including silver, gold, copper, and metallic, which demonstrated notable efficacy against pathogens such as S. aureus, E. coli, and P. aeruginosa. The results support that green-synthesised nanoparticles represent a viable strategy to combat AMR, offering an effective and eco-friendly alternative for developing antimicrobial agents.
期刊介绍:
The Journal of Microencapsulation is a well-established, peer-reviewed journal dedicated to the publication of original research findings related to the preparation, properties and uses of individually encapsulated novel small particles, as well as significant improvements to tried-and-tested techniques relevant to micro and nano particles and their use in a wide variety of industrial, engineering, pharmaceutical, biotechnology and research applications. Its scope extends beyond conventional microcapsules to all other small particulate systems such as self assembling structures that involve preparative manipulation.
The journal covers:
Chemistry of encapsulation materials
Physics of release through the capsule wall and/or desorption from carrier
Techniques of preparation, content and storage
Many uses to which microcapsules are put.