Phytochemical analysis of chitraka granthikadi kashaya—an ayurvedic polyherbal formulation

P. Dhanya, Neelakanta Sajjanar, G. Gopalakrishna
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Abstract

Background: Chromatographic fingerprinting of herbal formulations is a useful tool for explaining the scientific background and to develop a more targeted treatment methodology. Thus, this study has undertaken to report the characteristic parameters of chitraka granthikadi kashaya an ayurvedic polyherbal formulation to validate its quality. Materials and Methods: The root of Shodhita (purified) Chitraka (Plumbago zeylanica L.) and Eranda (Ricinus communis L.), dried rhizome of Shunti (Zingiber officinale Roscoe.), fruit of Pippali (Piper longum L.), and Saindhava lavana (Rock salt) were the ingredients of chitraka granthikadi kashaya. The Kwatha (medicated decoction) was prepared and evaluated for its phytochemical parameters and thin layer chromatography, gas chromatography-mass spectrometry chromatography parameters in accordance with the standard methods. Results: The phytochemical screening, GC–MS study, and TLC of the formulation reported the presence of 13 potential bioactive compounds. The action of these compounds based on the available literature has given a close similarity with the therapeutic action of the formulation. Conclusion: The presence of 13 bioactive compounds was found in this formulation with different peak values. Major compounds present are piperine, B-sitosterol, geranyl isovalarate, hexacosane, etc. Few compounds were very minimal and even no sufficient literature data available for them.
印度草药复方的植物化学分析
背景:草药配方的色谱指纹图谱是解释科学背景和开发更有针对性的治疗方法的有用工具。因此,本研究进行了报告的特征参数,以验证其质量的chitraka granthikadi kashaya和阿育吠陀草药复方。材料与方法:Chitraka granthikadi kashaya的主要成分为纯化的Chitraka (Plumbago zeylanica L.)和蓖麻(Ricinus communis L.)的根,干燥的Shunti (Zingiber officinale Roscoe.)的根茎,Pippali (Piper longum L.)的果实和Saindhava lavana(岩盐)。按照标准方法制备了番石榴水煎剂,并对其植物化学参数、薄层色谱、气相色谱-质谱色谱参数进行了评价。结果:经植物化学筛选、气相色谱-质谱及薄层色谱分析,发现13种潜在生物活性化合物。根据现有文献,这些化合物的作用与制剂的治疗作用非常相似。结论:该制剂中含有13种不同峰的活性成分。主要成分有胡椒碱、b -谷甾醇、异戊酸香叶基、己糖烷等。很少有化合物是非常微小的,甚至没有足够的文献资料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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