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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Process optimization for green synthesis of gold nanoparticles mediated by extract of Hygrophila spinosa T. Anders and their biological applications
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Process optimization for green synthesis of gold nanoparticles mediated by extract of Hygrophila spinosa T. Anders and their biological applications

机译:Hygrophira Spinosa T. Ander及其生物应用介导的金纳米粒子绿色合成的过程优化

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摘要

Plant extract-mediated green synthesis of gold nanoparticles (AuNPs) and their biomedical application is currently gaining huge interest in the field of nanotechnology. In the present study, AuNPs were synthesized using Hygrophila spinosa aqueous extract (HSAE). The formation of AuNPs was confirmed by observing color change and characteristic absorbance peak for surface plasmon resonance by UV-Vis spectroscopy. Different reaction parameters such as HSAE concentration, salt concentration, pH, reaction time and temperature were optimized for biosynthesis of AuNPs. The NPs were characterized for particle size, surface morphology, crystallinity, elemental composition and surface functionalities. Cytotoxicity of the AuNPs was studied against different cancer cell lines by MTT assay and antioxidant potential as total antioxidant capacity was also evaluated. The biosynthesized AuNPs were small in size and negatively charged. Phytochemical screening of HSAE, and FTIR spectrum of synthesized AuNPs demonstrated participation of various groups of chemical compounds as capping and stabilizing agents in biosynthesis of AuNPs. The green synthesized AuNPs exhibited significantly higher anticancer activity compared to HSAE against breast, ovarian, glioblastoma/brain and multi-drug resistant ovarian cancer cell lines. Antioxidant activity of the synthesized AuNPs was less than HSAE. The biosynthesized AuNPs could be studied further to access their potency in the treatment and imaging of various cancers.
机译:植物提取物介导的金纳米颗粒(AUNP)的绿色合成及其生物医学应用目前对纳米技术领域的巨大兴趣。在本研究中,使用氰然泮含水提取物(HSAE)合成AUNP。通过观察UV-VIS光谱,通过观察表面等离子体共振的颜色变化和特征吸光峰来确认AUNP的形成。针对AUNP的生物合成而优化了不同的反应参数,例如HSAE浓度,盐浓度,pH,反应时间和温度。 NPS的特征在于粒度,表面形态,结晶度,元素组成和表面官能团。通过MTT测定对不同癌细胞系进行了细胞毒性,并通过MTT测定和抗氧化剂潜力进行了评价。生物合成的aUnps的大小小,充电。 HSAE的植物化学筛选和合成的剖腹产谱的FTIR光谱证明了各种化合物作为肛周生物合成中的封端和稳定剂的参与。与乳腺癌,卵巢,胶质母细胞瘤/大脑和多药物抗性卵巢癌细胞系相比,绿色合成的AUNPS与HSAE相比表现出显着更高的抗癌活性。合成的AUNP的抗氧化活性小于HSAE。可以进一步研究生物合成的AUNP,以进一步研究其在各种癌症的治疗和成像中的效力。

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