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Gold nanoparticle-assisted enhancement in bioactive properties of Australian native plant extracts, Tasmannia lanceolata and Backhousia citriodora

机译:澳大利亚天然植物提取物的生物活性性能,塔曼尼亚兰克塔和止回休奥拉

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Green nanotechnology plays a significant role in developing effective treatment strategies for numerous diseases. The biological synthesis of metal nanoparticles (M-NPs) possesses suitable alternatives than chemical techniques. Using plant extract to synthesis M-NPs is an eco-friendly, non-toxic, and cost-effective that are suitable for biological applications and efforts are directed to explore the efficacy of these materials in cancer management. In this study, gold nanoparticles (Au-NPs) were synthesised by following a one-step green synthesis, a reaction between HAuCl4 and biological molecules present in Tasmannia lanceolata leaf extract as a sole agent for both reduction and stabilisation. The characterisation techniques confirmed the successful synthesis of Au-NPs. TEM photograph revealed spherical shape nanoparticles with an average size of 7.10 +/- 0.66 nm. The in-vitro cytotoxicity of Au-NPs was performed by analysing the percentage inhibition of cell viability using Resazurin assay on human liver cancer (HepG2), melanoma cancer (MM418 C1) and breast cancer (MCF-7) cell lines and compared with Au-NPs synthesised by using Backhousia citriodora leaf extract. The results showed that biosynthesised Au-NPs displayed greater inhibitory activity towards MCF-7 cancer cells proliferation compared to HepG2 and MM418 cancer cells. In addition, synthesised Au-NPs@ Tasmannia lanceolata leaf extract indicated higher inhibitory activity towards cancer cells compared to Au-NPs@ Backhousia citriodora leaf extract.
机译:绿色纳米技术在制定众多疾病的有效治疗策略方面发挥着重要作用。金属纳米颗粒(M-NP)的生物合成具有比化学技术合适的替代品。使用植物提取物合成M-NPS是一种环保,无毒,并且适用于生物应用和努力的成本效益,旨在探讨这些材料在癌症管理中的疗效。在该研究中,通过在一步的绿色合成之后合成金纳米颗粒(Au-NPS),在达曼尼亚典可叶提取物中存在的Haucl4和生物分子之间的反应作为减少和稳定的唯一剂。表征技术证实了Au-NP的成功合成。 TEM照片揭示了平均尺寸为7.10 +/- 0.66nm的球形纳米颗粒。通过分析使用转基因测定对人肝癌(HepG2),黑素瘤癌(MM418 C1)和乳腺癌(MCF-7)细胞(MCF-7)细胞系进行额外的细胞活力的抑制率来进行AU-NPS的体外细胞毒性。与AU相比-NP通过使用止回性Citriodora叶提取物合成。结果表明,与HepG2和MM418癌细胞相比,生物合成的AU-NPS向MCF-7癌细胞增殖显示出更大的抑制活性。此外,与Au-NPS obousia Citriodora叶提取物相比,合成的Au-NPS @Tasmannia Lanceolata Lead提取物表明对癌细胞的抑制活性更高。

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