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首页> 外文期刊>Advances in Natural Sciences: Nanoscience and Nanotechnology >Comparison of biological activities of selenium and silver nanoparticles attached with bioactive phytoconstituents: green synthesized using Spermacoce hispida extract
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Comparison of biological activities of selenium and silver nanoparticles attached with bioactive phytoconstituents: green synthesized using Spermacoce hispida extract

机译:硒和银纳米颗粒与生物活性植物成分结合的生物活性比较:绿色组织由Spermacoce hispida提取物合成

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Selenium and silver nanoparticles (NPs) were synthesized using Spermacoce hispida aqueous leaf extract (Sh-ALE). The optimum condition required for the synthesis of Sh-SeNPs was found to be 30mM selenious acid solution to Sh-ALE at the ratio of 4:46, pH 9, incubated at 40 °C for 10 min. On the other hand, for Sh-AgNPs the optimum condition was found to be 1 mM AgNO3 to the Sh-ALE solution at the ratio of 4:46, pH 8, incubated at 40 °C for 10 min. SEM analysis revealed that both the Sh-AgNPs and Sh-SeNPs are predominantly rodshaped. Sh-SeNPs and Sh-AgNPs were found to possess concentration-dependent antioxidant activity. However, Sh-SeNPs showed potent anti-in?ammatory property, antibacterial property and anticancer activity against human cervical cancer cell in comparison to Sh-AgNPs. Phytochemical analysis, FTIR and GC-MS analysis showed that various ?avonoids, saponins and phenolic compounds present in Sh-ALE catalysed the formation of NPs. Also, GC-MS analysis revealed that Sh-SeNPs are capped by synaptogenin B and derivatives of apigenin, quinoline and quinazoline. The advantage of attachment of such phytoconstituents on Sh-SeNPs for its potent biological activity in comparison to Sh-AgNPs is evident in in vitro conditions.
机译:使用Spermacoce hispida含水叶提取物(Sh-ALE)合成硒和银纳米颗粒(NP)。发现合成Sh-SeNPs所需的最佳条件是30mM亚硒酸溶液与Sh-ALE的比例为4:46,pH为9,在40°C下孵育10分钟。另一方面,对于Sh-AgNPs,发现最佳条件是pH值为4:46,pH 8的Sh-ALE溶液中含有1 mM AgNO3,并在40°C下孵育10分钟。 SEM分析表明,Sh-AgNP和Sh-SeNP均为棒状。发现Sh-SeNP和Sh-AgNP具有浓度依赖性的抗氧化活性。然而,与Sh-AgNPs相比,Sh-SeNPs显示出对人宫颈癌细胞有效的抗发炎特性,抗菌特性和抗癌活性。植物化学分析,FTIR和GC-MS分析表明,Sh-ALE中存在的各种类黄酮,皂苷和酚类化合物可催化NP的形成。此外,GC-MS分析表明,Sh-SeNPs被突触素B和芹菜素,喹啉和喹唑啉的衍生物封端。与Sh-AgNPs相比,在Sh-SeNPs上附着此类植物成分的强大生物活性的优势在体外条件下显而易见。

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