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首页> 外文期刊>Journal of Planar Chromatography-Modern TLC: JPC >Gas Chromatography-Mass Spectrometry and High-Performance Thin-Layer Chromatography Quantifications of Some Physiologically Active Secondary Metabolites in Averrhoa carambola L. Fruits
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Gas Chromatography-Mass Spectrometry and High-Performance Thin-Layer Chromatography Quantifications of Some Physiologically Active Secondary Metabolites in Averrhoa carambola L. Fruits

机译:气相色谱 - 质谱和高性能薄层色谱定量的一些生理活性次生代谢物在Averrhoa阳桃L.果实中的一些生理活性次生代谢物

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The extraction of crude drugs by using different solvents provides polarity-based fractions containing specific types of secondary metabolites. Averrhoa carambola L. fruits were extracted and fractionated, and petroleum ether extract was processed by fatty acid methyl ester (FAME) technique for characterization by gas chromatography. mass spectrometry (GC. MS) analysis. The remaining part was extracted with methanol for high-performance thin-layer chromatography (HPTLC) analysis, for simultaneous quantitative determination of gallic acid, protocatechuic acid, and quercetin in methanolic fractions. Petroleum ether and methanol fractions were found to be the best for the highest possible recovery of target analytes. The chromatographic elutions of FAME compounds generated from ether extract were evaluated by GC. MS profiling. Ten fatty acid compounds were separated with the highest quantity of oleic acid methyl ester (42.88%). On other hand, polar fraction was processed by HPTLC profiling. For achieving good separation, a mobile phase of toluene. ethyl acetate. formic acid (5: 4: 1, v/v) was used. The densitometric determination was carried out at 310 nm in reflection-absorption mode. The calibration curves were linear in the range of 100-600 ng per spot for gallic acid, protocatechuic acid, and quercetin. During the analysis, the dried raw material from A. carambola L. fruits showed the presence of gallic acid (0.96%), protocatechuic acid (0.05%), and quercetin (0.40%). The proposed method is simple, precise, specific, and accurate. The statistical analysis of the data obtained proves that the method is reproducible and selective and can be used for the routine analysis of the reported phenolic compounds in crude drug and extracts. The results indicated that the methanolic extracts of the plant contained a considerable amount of bioactive compounds. The presence of phytochemicals especially phenolics and flavonoids explains its use in various diseases. It may be concluded that the results obtained from the quantitative evaluation of quercetin by HPTLC fingerprinting could be useful in its authentication, the quality control of the drug, and in ensuring therapeutic efficacy.
机译:使用不同溶剂的粗药物提取提供含有特异性次级代谢物的极性基级分。提取和分离果实Averrhoa阳桃L.果实,通过脂肪酸甲酯(FAME)技术处理石油醚提取物,用于通过气相色谱表征。质谱(GC。MS)分析。剩余部分用甲醇萃取,用于高性能薄层色谱(HPTLC)分析,用于同时定量测定甲醇级分中的无碱酸,Protocatechuic酸和槲皮素。发现石油醚和甲醇级分是最高可能的靶分析物的恢复最佳。通过GC评估由醚提取物产生的MAME化合物的色谱壳。分析女士。将十种脂肪酸化合物与最高量的油酸甲酯(42.88%)分离。另一方面,通过HPTLC分析处理极性级分。为了实现良好的分离,甲苯的流动阶段。乙酸乙酯。使用甲酸(5:4:1,v / v)。在反射吸收模式下在310nm下进行密度测定法。校准曲线在每斑的100-600ng范围内为无碱酸,Protocatechuic酸和槲皮素的线性。在分析过程中,来自A.阳桃酱油的干燥原料。果实的存在表明,无碱酸(0.96%),ProtocateChuic酸(0.05%)和槲皮素(0.40%)。所提出的方法简单,精确,具体,准确。所获得的数据的统计分析证明了该方法是可再现和选择性的,可用于粗药物和提取物中所报道的酚类化合物的常规分析。结果表明,该植物的甲醇提取物含有大量的生物活性化合物。植物化学症尤其是酚类和黄酮类化合物的存在解释了其在各种疾病中的用途。可以得出结论,从HPTLC指纹识别的槲皮素定量评估中获得的结果可用于其认证,药物质量控制以及确保治疗疗效。

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