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首页> 外文期刊>BMC Complementary and Alternative Medicine >Extraction optimization of medicinally important metabolites from Datura innoxia Mill.: an in vitro biological and phytochemical investigation
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Extraction optimization of medicinally important metabolites from Datura innoxia Mill.: an in vitro biological and phytochemical investigation

机译:曼陀罗无毒工厂药用重要代谢物的提取优化:体外生物学和植物化学研究

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Background The present study aims to probe the impact of polarity dependent extraction efficiency variation on pharmacological spectrum of Datura innoxia Mill. in order to reconnoiter its underexplored therapeutic potential. Methods A range of solvent extracts was subjected to phytochemical and biological assays to find the most proficient solvent system and plant part for each type of bioactivity. Total phenolic and flavonoid contents were determined colorimetrically and specific polyphenols were quantified by HPLC-DAD analysis. The samples were biologically evaluated by employing multimode antioxidant, cytotoxic, protein kinase inhibition and antimicrobial assays. Results Among all the solvents used, maximum percent extract recovery (33.28 %) was obtained in aqueous leaf extract. The highest amount of gallic acid equivalent phenolic and quercetin equivalent flavonoid content was obtained in the distilled water and ethyl acetate-ethanol extracts of leaf i.e., 29.91?±?0.12 and 15.68?±?0.18 mg/g dry weight (DW) respectively. Reverse phase HPLC-DAD based quantification revealed the presence of significant amounts of catechin, caffiec acid, apigenin and rutin ranging from 0.16 to 5.41 mg/g DW. Highest DPPH radical scavenging activity (IC 50 =?16.14 μg/ml) was displayed by the ethyl acetate-acetone stem extract. Maximum total antioxidant capacity and reducing power potential were recorded in the aqueous leaf and ethyl acetate stem extracts i.e., 46.98?±?0.24 and 15.35?±?0.61 mg ascorbic acid equivalent/g DW respectively. Cytotoxicity against brine shrimps categorized 25 % of the leaf, 16 % of the stem and 8.3 % of the fruit extracts as highly potent (LC 50 ≤?100 μg/ml). Significant cytotoxicity against human leukemia (THP-1) cell line was exhibited by the chloroform and n-hexane fruit extracts with IC 50 4.52 and 3.49 μg/ml respectively. Ethyl acetate and methanol-chloroform extracts of leaf and stem exhibited conspicuous protein kinase inhibitory activity against Streptomyces 85E strain with 22 mm bald phenotype. A noteworthy antimicrobial activity was exhibited by leaf extracts against Micrococcus luteus and n-hexane fruit extract against Aspergillus niger (MIC 3.70 and 12.5 μg/ml respectively). Conclusion Multiple solvent system is a crucial variable to retrieve pharmacological potential of medicinal plants and D. innoxia can be envisaged as a novel source of natural antioxidants, antimicrobials and anticancer compounds.
机译:背景技术本研究旨在探讨极性依赖的提取效率变化对曼陀罗无毒工厂药理谱的影响。为了重新认识其未开发的治疗潜力。方法对一系列溶剂提取物进行植物化学和生物学分析,以发现每种生物活性最有效的溶剂系统和植物部位。比色法测定总酚和类黄酮含量,并通过HPLC-DAD分析定量特定多酚。通过采用多模式抗氧化剂,细胞毒性,蛋白激酶抑制和抗菌测定对样品进行生物学评估。结果在所有使用的溶剂中,水叶提取物中的提取物回收率最高(33.28%)。叶的蒸馏水和乙酸乙酯-乙醇提取物中的没食子酸当量酚醛和槲皮素当量黄酮含量最高,分别为29.91±0.12和15.68±0.18 mg / g干重(DW)。基于反相HPLC-DAD的定量分析显示存在大量儿茶素,咖啡酸,芹菜素和芦丁,含量范围为0.16至5.41 mg / g DW。乙酸乙酯-丙酮茎提取物显示出最高的DPPH自由基清除活性(IC 50 =?16.14μg/ ml)。叶片和乙酸乙酯茎水提物中记录的最大总抗氧化剂能力和还原能力潜力分别为46.98±0.24 mg和15.35±0.61 mg抗坏血酸当量/ g DW。对盐水虾的细胞毒性分类为强效(LC 50 ≤?100μg/ ml),占叶的25%,茎的16%和水果的8.3%。氯仿和正己烷果实提取物的IC 50 分别为4.52和3.49μg/ ml,对人白血病(THP-1)细胞系具有明显的细胞毒性。叶和茎的乙酸乙酯和甲醇-氯仿提取物对具有22 mm秃表型的链霉菌85E菌株表现出明显的蛋白激酶抑制活性。叶提取物对黄褐微球菌和正己烷果实提取物对黑曲霉(分别为MIC 3.70和12.5μg/ ml)表现出显着的抗菌活性。结论多溶剂系统是恢复药用植物药理潜力的关键变量,无毒可被认为是天然抗氧化剂,抗微生物剂和抗癌化合物的新来源。

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