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Enhanced Antimicrobial and Cytotoxicity on Cancer Cell using Bio-Originated Selenium Nanoparticles

机译:使用生物起源硒纳米粒子增强癌细胞上的抗菌药物和细胞毒性

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Present work describes the bio-originated synthesis of selenium nanoparticles using seed extract of Cassia angustifolia. The biological macromolecules in seed extract react with metal ions to generate selenium nanoparticles. The seed extract acts as reducing, capping and stabilizing agents. The selenium nanoparticles produced by the plant extract are amorphous, nearly spherical in shape and held together by protein coating in a range of about 80-100 nm in size, under ambient conditions. The structural properties of selenium nanoparticles were characterized by UV-visible spectroscopy, FTIR, XRD, FESEM with EDAX, HRTEM and AFM. Antibacterial and antifungal activity of selenium nanoparticles were tested against four bacterial and two fungal strains using standard agar-well diffusion method. The zone of inhibition was observed in the selenium nanoparticles against different microbes and suggested that the bio-originated selenium nanoparticles act as an effective antibacterial and antifungal agent, so it has a great latent in the preparation of drugs used against pathogenic diseases. The cytotoxicity of bio-originated selenium nanoparticles was tested under in vitro conditions on Vero cell line and had compared with MDA-MB231 cancer cell line at different concentrations and the results had proved that bio-originated synthesis selenium nanoparticles can inhibit the growth of human breast-cancer cells by concentration-dependent manner.
机译:目前工作描述了使用Cassia Agusifolia的种子提取物的硒纳米粒子的生物起源合成。种子提取物中的生物大分子与金属离子反应以产生硒纳米粒子。种子提取物用作还原,覆盖和稳定剂。由植物提取物制备的硒纳米粒子是无定形的,几乎是球形的形状,并且在环境条件下通过蛋白质涂层在约80-100nm的范围内保持在一起。硒纳米粒子的结构性质的特征在于UV可见光谱,FTIR,XRD,eSEM,eDAX,HRTEM和AFM。使用标准琼脂孔扩散法对四种细菌和两个真菌菌株进行硒和硒活性的抗菌和抗真菌活性。在硒纳米粒子中观察到抑制区域,抗孔抗微生物,并表明生物起源的硒纳米粒子充当有效的抗菌和抗真菌剂,因此在用于致病性疾病的药物的制备中具有很大的潜伏。在Vero细胞系上的体外条件下测试生物起源硒纳米颗粒的细胞毒性,并与MDA-MB231癌细胞系相比不同浓度,结果证明了生物起源的合成硒纳米颗粒可以抑制人乳腺的生长 - 通过浓度依赖性方式进行癌细胞细胞。

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