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首页> 外文期刊>Future Journal of Pharmaceutical Sciences >In-vitro antioxidant, anti-cancer, and anti-inflammatory activities of selected medicinal plants from western Nepal
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In-vitro antioxidant, anti-cancer, and anti-inflammatory activities of selected medicinal plants from western Nepal

机译:来自西尼泊尔西部选定药用植物的体外抗氧化剂,抗癌和抗炎活动

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Background:This study was focused on the measurement of anticancer properties of six medicinal plants from western Nepal in three cell lines; HeLa, Hep3B, and HCT116, and anti-inflammatory properties in RAW 264.7 cell line through NO, PGE2, and TNF-α production. In addition, the phytochemical screening, total phenolic, flavonoid content, and antioxidant properties were evaluated.ResultsThe qualitative phytochemical analysis revealed the presence of different secondary metabolite and range of total phenolic and total flavonoid content. The highest antioxidant activities were observed in Bergenia pacumbis against both DPPH (IC50 = 25.97 ± 0.19 μg/mL) and ABTS (IC50 = 14.49 ± 0.40 μg/mL). Furthermore, the highest antiproliferative effect against cervical, liver, and colon cancer cell lines were observed in Melia azedarach as IC50 values of 10.50, 5.30, and 1.57 μg/mL respectively, while the strongest anti-metastatic potential on liver cancer cell line was found in Pleurospermum benthamii. In addition, P. benthamii showed the most potent anti-inflammatory effect in RAW264.7 murine macrophage cells.ConclusionThis study provided the evidence for M. azedarach and P. benthamii to have great anticancer potential and finding builds the enough scientific Background:s in future to isolate and purify the bioactive compounds for further applications.
机译:背景:本研究专注于三种细胞系中尼泊尔六种药用植物的抗癌特性; HeLa,Hep3b和Hct116,以及原料264.7细胞系的抗炎特性通过NO,PGE 2 和TNF-α产生。此外,评估植物化学筛选,总酚类,类黄酮含量和抗氧化性能。质量性植物化学分析显示出不同次级代谢物和总酚类和总黄酮含量的存在。在DPPH(IC 50 = 25.97±0.19μg/ ml)和ABTs(IC 50 =中,观察到最高抗氧化活性14.49±0.40μg/ ml)。此外,在 Melia azedarach 分别观察到对宫颈,肝脏和结肠癌细胞系的最高抗增殖效果分别为10.50,50,30和1.57μg/ ml。 ,虽然在 Pleurospermum Benthamii 中发现了肝癌细胞系上最强的抗转移潜力。此外, p 。 Benthamii 在Raw264.7鼠巨噬细胞中显示出最有效的抗炎作用。结论本研究提供了 m 的证据。 azedarach 和 p 。 Benthamii 具有很大的抗癌潜力,并发现建立了足够的科学背景:未来,将其分离和净化生物活性化合物以进行进一步应用。

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