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首页> 外文期刊>Journal of trace elements in medicine and biology: Organ of the Society for Minerals and Trace Elements (GMS) >Biomedical potential of actinobacterially synthesized selenium nanoparticles with special reference to anti-biofilm, anti-oxidant, wound healing, cytotoxic and anti-viral activities
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Biomedical potential of actinobacterially synthesized selenium nanoparticles with special reference to anti-biofilm, anti-oxidant, wound healing, cytotoxic and anti-viral activities

机译:抗生物膜,抗生物膜,抗氧化剂,伤口愈合,细胞毒性和抗病毒活性的生物医学介质

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摘要

Currently, there is an ever-increasing need to develop environmentally benign processes in place of synthetic protocols. As a result, researchers in the field of nanoparticle synthesis are focusing their attention on microbes from rare biological ecosystems. One potential actinobacterium, Streptomyces minutiscleroticus M10A62 isolated from a magnesite mine had the ability to synthesize selenium nanopartides (SeNPs), extracellularly. Actinobacteria mediated SeNP synthesis were characterized by UV-visible, Fourier transform infrared (FT-IR), X-ray diffraction (XRD), energy dispersive X-ray spectroscopy (EDX) and high resolution transmission electron microscopy (HR-TEM) analysis. The UV-spectral analysis of SeNPs indicated the maximum absorption at 510 nm, FT-IR spectral analysis confirms the presence of capping protein, peptide, amine and amide groups. The selenium signals confirm the presence of SeNPs. All the diffraction peaks in the XRD pattern and HR-TEM confirm the size of SeNPs in the range of 10-250 nm. Further, the anti-biofilm and antioxidant activity of the SeNPs increased proportionally with rise in concentration, and the test strains reduced to 75% at concentration of 3.21.1 mu g. Selenium showed significant anti-proliferative activity against HeLa and HepG2 cell lines. The wound healing activity of SeNPs reveals that 5% selenium oinment heals the excision wound of Wistar rats up to 85% within 18 days compared to the standard ointment. The biosynthesized SeNPs exhibited good antiviral activity against Dengue virus. The present study concludes that extremophilic actinobacterial strain was a novel source for SeNPs with versatile biomedical applications and larger studies are needed to quantify these observed effects of SeNPs. (C) 2015 Elsevier GmbH. All rights reserved.
机译:目前,需要越来越需要开发环境良好的过程代替合成协议。结果,纳米粒子合成领域的研究人员将注意力集中在稀有生态生态系统的微生物上。一种潜在的肌动菌,从菱镁矿中分离的Minutiscleroticus M10A62具有合成硒纳米钠(SENP),细胞外的能力。 Actinobacteria介导的SeNP合成的特征在于UV可见光,傅里叶变换红外(FT-IR),X射线衍射(XRD),能量分散X射线光谱(EDX)和高分辨率透射电子显微镜(HR-TEM)分析。 SENP的UV光谱分析表明510nm处的最大吸收,FT-IR光谱分析证实了封端蛋白,肽,胺和酰胺基团的存在。硒信号证实了塞皮斯的存在。 XRD图案中的所有衍射峰和HR-TEM在10-250nm的范围内确认森塞的大小。此外,抗生物膜和抗氧化剂活性随浓度的升高成比例地增加,并且测试菌株在3.21.1μg的浓度下降低至75%。硒对Hela和Hepg2细胞系具有显着的抗增殖活性。塞皮斯的伤口愈合活性显示,与标准软膏相比,5%硒病毒治疗Wistar大鼠的切除伤口高达85%。生物合成的森塞对登革热病毒的抗病毒活性呈现出良好的抗病毒活性。本研究得出结论,极致的肌动菌菌菌株是具有多功能生物医学应用的森塞的新源,并且需要更大的研究来量化这些观察到的森塞的效果。 (c)2015年Elsevier GmbH。版权所有。

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