Environmental Biotechnology Division, School of Bio Sciences and Technology, VIT University, Vellore, 632 014, Tamil Nadu, India.
Bioprocess Biosyst Eng. 2014 Feb;37(2):261-7. doi: 10.1007/s00449-013-0994-3. Epub 2013 Jun 15.
In the present study, the marine actinobacteria mediated biosynthesis of silver nanoparticles (AgNps) was achieved using Streptomyces sp LK3. The synthesized AgNps showed the characteristic absorption spectra in UV-vis at 420 nm, which confirmed the presence of nanoparticles. XRD analysis showed intense peaks at 2θ values of 27.51°, 31.87°, 45.57°, 56.56°, 66.26°, and 75.25° corresponding to (210), (113), (124), (240), (226), and (300) Bragg's reflection based on the fcc structure of AgNps. The FTIR spectra exhibited prominent peaks at 3,417 cm(-1) (OH stretching due to alcoholic group) and 1,578 cm(-1) (C=C ring stretching). TEM micrograph showed that the synthesized AgNps were spherical in shape with an average size of 5 nm. Surface morphology and topographical structure of the synthesized AgNps were dignified by AFM. The synthesized AgNps showed significant acaricidal activity against Rhipicephalus microplus and Haemaphysalis bispinosa with LC50 values of 16.10 and 16.45 mg/L, respectively. Our results clearly indicate that AgNps could provide a safer alternative to conventional acaricidal agents in the form of a topical antiparasitic formulation. The present study aimed to develop a novel, cost-effective, eco-friendly actinobacteria mediated synthesis of AgNps and its antiparasitic activity.
在本研究中,使用链霉菌 sp LK3 实现了海洋放线菌介导的银纳米粒子(AgNps)的生物合成。合成的 AgNps 在 UV-vis 中在 420nm 处显示出特征吸收光谱,这证实了纳米粒子的存在。XRD 分析显示在 2θ 值为 27.51°、31.87°、45.57°、56.56°、66.26°和 75.25°处有强烈的峰,对应于 AgNps 的 fcc 结构的(210)、(113)、(124)、(240)、(226)和(300)布拉格反射。FTIR 光谱在 3417cm(-1)(由于醇基团的 OH 伸缩)和 1578cm(-1)(C=C 环伸缩)处显示出明显的峰。TEM 显微照片显示合成的 AgNps 呈球形,平均尺寸为 5nm。AFM 突出显示了合成的 AgNps 的表面形态和形貌结构。合成的 AgNps 对 Rhipicephalus microplus 和 Haemaphysalis bispinosa 具有显著的杀螨活性,LC50 值分别为 16.10 和 16.45mg/L。我们的结果清楚地表明,AgNps 可以作为一种局部驱虫制剂,为传统的杀螨剂提供更安全的替代品。本研究旨在开发一种新型、经济高效、环保的放线菌介导的 AgNps 合成及其驱虫活性。