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Natural production and quantification of ellagic acid in multiple plant parts of three Terminalia spp.

机译:三种常年SPP多种植物部分鞣花酸的天然产量和定量。

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摘要

Ellagic acid (EA) is a natural phenol antioxidant, found in multiple fruits. Chemically, it is a dilactone of hexahydroxy diphenic acid. Owing to its immensely beneficial anti-proliferative, antioxidant, and anticancerous activities, it needs to be quantified m natural resources. An effective densitometric high-performance liquid chromatography (HPTLC) method was established for the simultaneous quantification of ellagic acid from different plant parts of Terminalia arjuna, T. bellerica, and T. chebula. The method was validated for intra- and inter-day precision, reproducibility, and specificity. The intraday precision and interday precision was 1.5% and 1.2% relative standard deviation (RSD), respectively. The reproducibility of standard EA was precise and the seven lanes provided similar banding pattern. The linearity curve for the EA produced a correlation coefficient (r) value of 0.98992, with regression equation Y=6330.441+935.150*X, and with a standard deviation value of 4.59%. For chromatogram development, toluene: ethyl acetate: formic acid (5:5: 2.5) was optimized as mobile phase. With the exception of fruits of T. bellerica, all the plant parts of all three species contain a significant amount of EA; the highest EA content being (0.733 mug / mug dry weight) found in the roots of T. bellerica. In this study, the proposed HPTLC method for simultaneous quantification of EA was conducted in a simple, sensitive, specific, and precise manner that can be recommended for routine quality controland quantification of EA in plant materials.
机译:鞣花酸(EA)是一种天然酚抗氧化剂,在多个水果中发现。化学上,它是六羟基二苯甲酸的稀释物。由于其完全有益的抗增殖性,抗氧化和抗冒犯活动,需要量化M自然资源。建立了一种有效的密度测量高效液相色谱(HPTLC)方法,用于同时定量来自不同植物症的末端Arjuna,T.Bellerica和T.Chebula的不同植物部分的鞣花酸。该方法验证了日内和日间精确,可重复性和特异性。中间精度和白天精度分别为1.5%和1.2%相对标准偏差(RSD)。标准EA的再现性精确,七个车道提供了类似的绷带图案。 EA的线性曲线产生了0.98992的相关系数(R)值,回归方程Y = 6330.441 + 935.150 * X,标准偏差值为4.59%。对于色谱结构,甲苯:乙酸乙酯:甲酸(5:5:2.5)优化为流动相。除了T.Bellerica的果实外,所有三种物种的所有植物部分都含有大量的EA;最高的EA含量(0.733杯/杯状物干重)在T.Bellerica的根源中发现。在该研究中,以简单,敏感的,具体的和精确的方式进行所提出的HPTLC方法,可以推荐用于植物材料中EA的常规质量控制和定量。

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