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Potential Theranostics Application of Bio-Synthesized Silver Nanoparticles (4-in-1 System)

机译:生物合成的银纳米颗粒(四合一系统)的潜在治疗学应用

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摘要

In this report, we have designed a simple and efficient green chemistry approach for the synthesis of colloidal silver nanoparticles (b-AgNPs) that is formed by the reduction of silver nitrate (AgNO3) solution using Olax scandens leaf extract. The colloidal b-AgNPs, characterized by various physico-chemical techniques exhibit multifunctional biological activities (4-in-1 system). Firstly, bio-synthesized silver nanoparticles (b-AgNPs) shows enhanced antibacterial activity compared to chemically synthesize silver nanoparticles (c-AgNPs). Secondly, b-AgNPs show anti-cancer activities to different cancer cells (A549: human lung cancer cell lines, B16: mouse melanoma cell line & MCF7: human breast cancer cells) (anti-cancer). Thirdly, these nanoparticles are biocompatible to rat cardiomyoblast normal cell line (H9C2), human umbilical vein endothelial cells (HUVEC) and Chinese hamster ovary cells (CHO) which indicates the future application of b-AgNPs as drug delivery vehicle. Finally, the bio-synthesized AgNPs show bright red fluorescence inside the cells that could be utilized to detect the localization of drug molecules inside the cancer cells (a diagnostic approach). All results together demonstrate the multifunctional biological activities of bio-synthesized AgNPs (4-in-1 system) that could be applied as (i) anti-bacterial & (ii) anti-cancer agent, (iii) drug delivery vehicle, and (iv) imaging facilitator. To the best of our knowledge, there is not a single report of biosynthesized AgNPs that demonstrates the versatile applications (4-in-1 system) towards various biomedical applications. Additionally, a plausible mechanistic approach has been explored for the synthesis of b-AgNPs and its anti-bacterial as well as anti-cancer activity. We strongly believe that bio-synthesized AgNPs will open a new direction towards various biomedical applications in near future.
机译:在本报告中,我们设计了一种简单有效的绿色化学方法,用于合成胶体银纳米颗粒(b-AgNPs),该方法是通过使用Olax scandens叶提取物还原硝酸银(AgNO3)溶液而形成的。以各种物理化学技术为特征的胶体b-AgNPs具有多功能的生物活性(4合1系统)。首先,与化学合成的银纳米颗粒(c-AgNPs)相比,生物合成的银纳米颗粒(b-AgNPs)显示出增强的抗菌活性。其次,b-AgNPs对不同的癌细胞具有抗癌活性(A549:人肺癌细胞系,B16:小鼠黑素瘤细胞系和MCF7:人乳腺癌细胞)(抗癌)。第三,这些纳米粒子与大鼠心肌成纤维细胞正常细胞系(H9C2),人脐静脉内皮细胞(HUVEC)和中国仓鼠卵巢细胞(CHO)具有生物相容性,这表明b-AgNPs作为药物递送载体的未来应用。最后,生物合成的AgNPs在细胞内显示出鲜红色的荧光,可用于检测癌细胞内药物分子的定位(一种诊断方法)。所有结果共同证明了生物合成的AgNPs(4合1系统)的多功能生物活性,可用作(i)抗菌剂和(ii)抗癌剂,(iii)药物递送载体和( iv)成像促进者。据我们所知,目前还没有关于生物合成AgNPs的单一报告,该报告展示了针对各种生物医学应用的通用应用(四合一系统)。此外,已经探索了一种可行的机制方法用于b-AgNP的合成及其抗菌和抗癌活性。我们坚信,生物合成的AgNP将在不久的将来为各种生物医学应用打开新的方向。

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