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首页> 外文期刊>Pharmacognosy Research >Pharmacognostic Specifications and Lawsone Content of Lawsonia inermis Leaves
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Pharmacognostic Specifications and Lawsone Content of Lawsonia inermis Leaves

机译:无花紫苏叶的药理学指标和紫苏叶含量

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Background: Lawsonia inermis L. has been used as a traditional or folk medicine for the treatment of a wide range of skin infectious diseases. Objective: The objective of this study was to determine the pharmacognostic specifications and lawsone contents of L. inermis leaves. Materials and Methods: The pharmacognostic specifications of L. inermis leaves from 12 sources were evaluated according to the WHO guideline of quality control method for medicinal plant materials. The lawsone contents were analyzed by thin-layer chromatography (TLC) coupled with densitometry and image analysis. Results: Microscopic evaluation of L. inermis powders showed the fragment of mesophyll, fragment of parenchyma, epidermis layer with stomata, and the rosette crystal of calcium oxalate. Physicochemical parameters revealed that total ash, acid-insoluble ash, loss on drying, and water content should be not <6.98, 1.12, 8.08, and 9.86% of dried weight, respectively, whereas ethanol and water extractive values should be not < 19.67 and 23.06% of dried weight, respectively. The content of lawsone in L. inermis leaves by TLC-densitometry was found to be 0.76 ± 0.05 g/100 g of dried crude drug, whereas the lawsone content evaluation by TLC image analysis was found to be 0.87 ± 0.11 g/100 g of dried crude drug. The validation of the methods revealed that both TLC-densitometry and TLC image analysis showed a good sensitivity and accuracy for lawsone quantitation in L. inermis . Conclusion: The pharmacognostic specifications could be used as the standardization data of L. inermis leaves, and the development of TLC method could be applied to determine lawsone content in this plant material. SUMMARY The pharmacognostic specification of Lawsonia inermis leaves could be used as the standardization data of L. inermis leaves in Thailand. Both TLC-densitometry and TLC image analysis showed a good sensitivity and accuracy for lawsone quantitation. Abbreviations Used : LOD: Limit of detection; LOQ: Limit of quantitation; RSD: Relative standard deviation; TLC: Thin layer chromatography; UV: Ultraviolet; Rf value: Relative to front value.
机译:背景:无草劳氏菌已被用作传统或民间药物,用于治疗多种皮肤感染性疾病。目的:本研究的目的是确定无形L.erermis叶片的药理学指标和罗氏含量。材料和方法:根据WHO药用植物材料质量控制方法指南,评估了12种来源的无定形乳杆菌叶片的药理学指标。通过薄层色谱法(TLC)结合光密度测定法和图像分析法分析了法律法规的内容。结果:无定形乳杆菌粉末的显微镜观察显示有叶肉碎片,薄壁组织碎片,带有气孔的表皮层和草酸钙的玫瑰花结晶体。理化参数表明,总灰分,酸不溶性灰分,干燥失重和水含量分别不应小于干重的6.98、1.12、8.08和9.86%,而乙醇和水的萃取值不应小于19.67和分别为干重的23.06%。通过TLC-光密度法测定的无花紫苏叶中的劳森酮含量为0.76±0.05 g / 100 g干燥原料药,而通过TLC图像分析测得的劳森酮含量为0.87±0.11 g / 100 g干燥的原料药。方法的验证表明,TLC密度测定法和TLC图像分析均显示了对无定形乳杆菌中Lawone定量的良好灵敏度和准确性。结论:该药理学指标可作为无定形乳杆菌叶片的标准化数据,TLC方法的发展可用于测定该植物材料中的法律含量。发明内容无棉劳草叶的药理学指标可作为泰国无水乳杆菌叶的标准化数据。 TLC密度计和TLC图像分析均显示了对Lawone定量的良好灵敏度和准确性。使用的缩写:LOD:检测限; LOQ:定量限; RSD:相对标准偏差; TLC:薄层色谱; m / z(MH +)。紫外线:紫外线; Rf值:相对于前值。

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