Bimetallic Nanoparticles – Expanding Grassroots in Medical Health Care through Enhanced Microbial Resistance

Laxmi Bhatti
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Abstract

Nanotechnology has spawned a slew of new research and application opportunities. Bimetallic nanoparticles offer certain advantages over monometallic nanoparticles in magnetic and optical properties which have utmost requirement in medicinal industry for therapeutics and drug delivery system. The advantage of using a green synthesis technique results in increased stability and enhancement of many physical and chemical characteristics. Green synthesis has the benefit of being able to replace existing physical and chemical processes. Different monometallic nanoparticles have already been tested. Researchers are working on even trimetallic nanoparticles in present scenario. In the present investigation research cum review article, we have randomly selected medicinal plants available in campus itself as lockdown conditions were prevalent all over the country.The bimetallic Cu-Zn nanoparticles were synthesized using mostly leaves as plant parts, from these selected plant materials.The Cu-Zn nanoparticles were confirmed by their synthesis, using visual color change along with UV visible spectroscopy techniques. The nanoparticles after confirmation were opted further for testing their efficacy against standard pathogens for plants viz Terminalia, Tecoma and Solanum nigrum.The results have been promising and significant giving zones bigger in size than 20 mm.The research is ongoing to reveal further the inherent potential of medicinal plants to act as alternative agents for antimicrobial potential.
双金属纳米颗粒-通过增强微生物耐药性扩大基层医疗保健
纳米技术产生了大量新的研究和应用机会。双金属纳米粒子在磁性和光学性能方面比单金属纳米粒子具有一定的优势,在医药行业的治疗和给药系统中有着极大的需求。使用绿色合成技术的优点是增加了稳定性并增强了许多物理和化学特性。绿色合成的好处是能够取代现有的物理和化学过程。不同的单金属纳米颗粒已经进行了测试。在目前的情况下,研究人员正在研究三金属纳米颗粒。在本次调查研究和综述文章中,我们随机选择了校园内可用的药用植物,因为全国各地都有封锁条件。以这些选定的植物材料为原料,主要以植物叶片为原料合成了双金属铜锌纳米颗粒。利用视觉颜色变化和紫外可见光谱技术合成了Cu-Zn纳米颗粒。确认后的纳米颗粒被进一步选择用于测试它们对植物如Terminalia、Tecoma和Solanum nigrum的标准病原体的功效。研究结果显示,这些区域的面积大于20毫米。研究还在继续,以进一步揭示药用植物作为抗菌潜力替代剂的内在潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bioscience Biotechnology Research Communications
Bioscience Biotechnology Research Communications BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
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73
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