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Inter-species comparative antioxidant assay and HPTLC analysis of sakuranetin in the chloroform and ethanol extracts of aerial parts of Rhus retinorrhoea and Rhus tripartita

机译:种间比较性抗氧化剂测定和RPTL分析HPR在视网膜色素上皮和鼠李的地上部分的氯仿和乙醇提取物中的樱草素

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摘要

>Context: Extensive research on Rhus (Anacardiaceae) shows their antioxidant potential, which warrants further evaluation of its other species.>Objective: To perform a comparative antioxidant assay on extracts of R. retinorrhoea and R. tripartita, including sakuranetin quantification by a validated HPTLC method.>Materials and methods:In vitro antioxidant assay was performed on chloroform and ethanol extracts of R. retinorrhoea Steud. ex Oliv. (RRCE and RREE) and R. tripartita (Ucria) Grande (RTCE and RTEE) by DPPH radical scavenging (at 31.25, 62.5, 125, 250 and 500 μg/mL concentrations) and β-carotene-linoleic acid bleaching methods at 500 μg/mL concentration. Densitometric HPTLC method was developed and validated using toluene: ethyl acetate: methanol (8:2:0.2; v/v/v) as mobile phase, executed on glass-backed silica gel F254 plate and scanned at 292 nm.>Results: Antioxidant activity of Rhus extracts tested by the two methods (DPPH/BCB) was found in order of RTEE > RREE > RTCE > RRCE with IC50 118.67/256.26, 315.75/82.35, 827.92/380.0 and 443.69/292.75, respectively. Scanning of the HPTLC plate provided an intense peak of sakuranetin at Rf = 0.59. The estimated sakuranetin content in the dry weight of the extracts was highest in RREE (27.95 μg/mg) followed by RRCE (25.22 μg/mg), RTEE (0.487 μg/mg) and RTCE (0.0 μg/mg). Presence of sakuranetin in RREE, RRCE and RTEE supported the highest antioxidant property of the two Rhus species. Nonetheless, low sakuratenin in R. tripartita indicated the presence of other bioactive constituents responsible for synergistic antioxidant activity.>Conclusion: The developed HPTLC method therefore guarantees its application in quality control of commercialized herbal drugs and formulations containing sakuranetin.
机译:>背景:对Rhus(Anacardiaceae)的广泛研究表明它们具有抗氧化作用,因此有必要进一步评估其其他物种。>目的:对R提取物进行比较抗氧化测定。 >材料和方法:对视网膜色素斑节菌Steud的氯仿和乙醇提取物进行了体外抗氧化剂测定。前奥利夫。 (RRCE和RREE)和R.tripartita(Ucria)Grande(RTCE和RTEE)通过DPPH自由基清除(浓度分别为31.25、62.5、125、250和500μg/ mL)和500μg的β-胡萝卜素-亚油酸漂白方法/ mL浓度。开发了光密度测定HPTLC方法,并使用甲苯:乙酸乙酯:甲醇(8:2:0.2; v / v / v)作为流动相,在玻璃背衬硅胶F254板上执行并在292nm扫描。>结果:用RTEE methods> RREE> RTCE> RRCE的两种方法(DPPH / BCB)测试了Rhus提取物的抗氧化活性,其IC50为118.67 / 256.26、315.75 / 82.35、827.92 / 380.0和443.69 / 292.75,分别。 HPTLC平板的扫描显示了Sakuranetin的强烈峰,Rf = 0.59。提取物干重中的樱草素含量估计最高,其中RREE(27.95μg/ mg),RRCE(25.22μg/ mg),RTEE(0.487μg/ mg)和RTCE(0.0μg/ mg)最高。在RREE,RRCE和RTEE中存在樱红素可以支持这两种Rhus物种的最高抗氧化特性。尽管如此,雷公藤中的樱草素含量低表明存在其他具有协同抗氧化活性的生物活性成分。>结论:因此,发达的HPTLC方法保证了其在商品化草药和含樱草素的制剂的质量控制中的应用。

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