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首页> 外文期刊>Annual Research & Review in Biology >Novel Scientific Appraisal of Elaeocarpus ganitrus the Rudraksha: Nano Silver Synthesis with Aspects of Variation in Concentration Antimicrobial Activity and In vitro Biocompatibility
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Novel Scientific Appraisal of Elaeocarpus ganitrus the Rudraksha: Nano Silver Synthesis with Aspects of Variation in Concentration Antimicrobial Activity and In vitro Biocompatibility

机译:Elaeocarpus ganitrus Rudraksha的新型科学鉴定:纳米银的合成及其浓度,抗菌活性和体外生物相容性的变化

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Aims: The remarkable non-degradable distinctive feature of the Rudraksha bead renders reutilization of its resources and inexhaustibility of its potentiality to mediate innumerable silver nanoparticle syntheses. The present study is a step forward towards high prospects of manoeuvred nano silver manufactured for many essential applications. Study Design: In this nanoregime we bring forth a glorious green route for flabbergasting silver nanoparticle fabrication, with the intervention of the five faced seed of the plant Elaeocarpus ganitrus Roxb, the Rudraksha bead. Aspects, of the variation in concentration of the precursor as well as the mediator on the physico-chemical nature of the silver nanostructure, its antimicrobial activity, together with the issues of its biocompatibility, have been dealt here. Place and Duration of Study: Chemistry Department and Biotechnology Department, Motilal Nehru National Institute of Technology, India, between April 2011 and August 2012. Methodology: The Rudraksha extracts were prepared and biosyntheses of silver nanoparticles were conducted and different parameters were studied together with various characterization. Results: The silver nanoparticles produced are chiefly spherical with variable size. There exists also variation in size and silver content depending upon the concentration of precursor and mediator. The antimicrobial activity of the nano silver produced is high with good biocompatibility. Conclusion: The inexhaustible characteristic of the non-degradable Rudraksha facilitates incessant biocompatible nano silver production.
机译:目的:Rudraksha珠子非凡的不可降解的显着特征使其资源得到了重新利用,并且其无穷的潜力可以介导无数的银纳米颗粒合成物。本研究是朝着为许多基本应用制造的机动纳米银的高前景迈出的一步。研究设计:在这种纳米体系中,我们通过制造Elaeocarpus ganitrus Roxb植物Rudraksha珠子的五面种子,为制造纳米级银纳米颗粒带来了光荣的绿色路线。本文讨论了前体浓度以及银纳米结构的物理化学性质的介体,其抗微生物活性以及其生物相容性问题等方面的变化。研究的地点和持续时间:印度Motilal Nehru国立技术学院化学系和生物技术系,于2011年4月至2012年8月之间。方法:制备Rudraksha提取物并进行银纳米颗粒的生物合成,并研究了各种参数以及各种参数。表征。结果:产生的银纳米颗粒主要为球形,尺寸可变。取决于前体和介体的浓度,尺寸和银含量也存在变化。所生产的纳米银的抗菌活性高,具有良好的生物相容性。结论:不可降解的Rudraksha的取之不尽的特性促进了生物相容性纳米银的不断生产。

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