首页> 美国卫生研究院文献>Foods >Simultaneous Determination of 6-Shogaol and 6-Gingerol in Various Ginger (Zingiber officinale Roscoe) Extracts and Commercial Formulations Using a Green RP-HPTLC-Densitometry Method
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Simultaneous Determination of 6-Shogaol and 6-Gingerol in Various Ginger (Zingiber officinale Roscoe) Extracts and Commercial Formulations Using a Green RP-HPTLC-Densitometry Method

机译:使用绿色RP-HPTLC-密度测定法同时测定各种姜(Zingiber Officinale Roscoe)提取物和商业配方中的6分鞋和6-姜醇

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摘要

Various analytical methodologies have been reported for the determination of 6-shogaol (6-SHO) and 6-gingerol (6-GIN) in ginger extracts and commercial formulations. However, green analytical methods for the determination of 6-SHO and 6-GIN, either alone or in combination, have not yet been reported in literature. Hence, the present study was aimed to develop a rapid, simple, and cheaper green reversed phase high-performance thin-layer chromatography (RP-HPTLC) densitometry method for the simultaneous determination of 6-SHO and 6-GIN in the traditional and ultrasonication-assisted extracts of ginger rhizome, commercial ginger powder, commercial capsules, and commercial ginger teas. The simultaneous analysis of 6-SHO and 6-GIN was carried out via RP-18 silica gel 60 F254S HPTLC plates. The mixture of green solvents, i.e., ethanol:water (6.5:3.5 ) was utilized as a mobile phase for the simultaneous analysis of 6-SHO and 6-GIN. The analysis of 6-SHO and 6-GIN was performed at λ = 200 nm for 6-SHO and 6-GIN. The densitograms of 6-SHO and 6-GIN from traditional and ultrasonication-assisted extracts of ginger rhizome, commercial ginger powder, commercial capsules, and commercial ginger teas were verified by obtaining their single band at R = 0.36 ± 0.01 for 6-SHO and R = 0.53 ± 0.01 for 6-GIN, compared to standard 6-SHO and 6-GIN. The green RP-HPTLC method was found to be linear, in the range of 100–700 ng/band with R = 0.9988 for 6-SHO and 50–600 ng/band with R = 0.9995 for 6-GIN. In addition, the method was recorded as “accurate, precise, robust and sensitive” for the simultaneous quantification of 6-SHO and 6-GIN in traditional and ultrasonication-assisted extracts of ginger rhizome, commercial ginger powder, commercial capsules, and commercial ginger teas. The amount of 6-SHO in traditional extracts of ginger rhizome, commercial ginger powder, commercial capsules, and commercial ginger teas was obtained as 12.1, 17.9, 10.5, and 9.6 mg/g of extract, respectively. However, the amount of 6-SHO in ultrasonication-assisted extracts of ginger rhizome, commercial ginger powder, commercial capsules, and commercial ginger teas were obtained as 14.6, 19.7, 11.6, and 10.7 mg/g of extract, respectively. The amount of 6-GIN in traditional extracts of ginger rhizome, commercial ginger powder, commercial capsules, and commercial ginger teas were found as 10.2, 15.1, 7.3, and 6.9 mg/g of extract, respectively. However, the amount of 6-GIN in ultrasonication-assisted extracts of ginger rhizome, commercial ginger powder, commercial capsules, and commercial ginger teas were obtained as 12.7, 17.8, 8.8, and 7.9 mg/g of extract, respectively. Overall, the results of this study indicated that the proposed analytical technique could be effectively used for the simultaneous quantification of 6-SHO and 6-GIN in a wide range of plant extracts and commercial formulations.
机译:据报道,在姜提取物和商业配方中测定6-脑醇(6-Sho)和6-姜醇(6-甘油)的各种分析方法。然而,尚未在文献中尚未报道用于测定6-Sho和6-甘油的绿色分析方法。因此,本研究旨在发展快速,简单,更便宜的绿色反相高性能薄层色谱(RP-HPTLC)密度法,用于在传统和超声中同时测定6-Sho和6-甘油 - 姜根茎,商业姜粉,商业胶囊和商业姜茶的提取物。通过RP-18硅胶60F254S HPTLC板进行6-Sho和6-Gin的同时分析。绿色溶剂的混合物,即乙醇:水(6.5:3.5)作为移动阶段,用于同时分析6-Sho和6-杜松子。在6-Sho和6-杜松子里的λ= 200nm下进行6-sho和6-gin的分析。通过在r = 0.36±0.01的单击频段获得6-Sho和6-Sho的单频带,验证了6分和超声辅助提取物的6-Sho和6-甘蛋白和商业姜茶的封闭图进行了验证的与标准的6-Sho和6-GIN相比,r = 0.53±0.01。发现绿色RP-HPTLC方法是线性的,在100-700ng /波段的范围内,r = 0.9988,6-sho,50-600ng / band,r = 0.9995,适用于6孔。此外,该方法被记录为“准确,精确,鲁棒,敏感的”,用于同时定量的6-Sho和6-甘油,在姜根茎,商业姜粉,商业胶囊和商业姜的传统和超声辅助提取物中的6株辅助提取物和6-甘蔗茶。在姜根茎,商业生姜粉,商业胶囊和商业姜茶中的传统提取物中的6-sho的量分别为12.1,17.9,10.5和9.6mg / g.然而,在姜根茎,商业姜粉,商业胶囊和商业姜茶中的超声辅助提取物中的6-Sho的量分别为14.6,19.7,11.6和10.7mg / g.7mg / g。在姜根茎,商业姜粉,商业胶囊和商业姜茶中的传统提取物中的6-甘酮分别被发现为10.2,15.1,7.3和6.9mg / g.9mg / g。然而,在姜根茎,商业姜粉,商业胶囊和商业姜茶中的超声辅助提取物中的6-甘酮的量分别获得12.7,17.8,8.8和7.9mg / g.9mg / g。总的来说,本研究结果表明,在各种植物提取物和商业配方中,可以有效地用于同时定量6-Sho和6-谷的分析技术。

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