车前草中桃叶苷和梓醇环烯醚萜苷的生物活性及分析方法综述

S. Rahamouz-Haghighi
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引用次数: 0

摘要

背景:车前草属植物含有桃红素和梓醇环烯醚萜类苷,在传统医学中用途广泛。目的:为加快车前草中桃红素和梓醇的利用,应重点研究引进先进的纯化和检测方法。在这方面,提到了山茱萸素和梓醇化合物的治疗活性,以证实其在药用上的有效性。方法:在谷歌学者的公共领域中以“Aucubin and Catalpol + Plantago”为关键词进行广泛的文献检索。结果:环烯醚萜类化合物与车前草属代表性植物的形态特征和其他化学特征具有显著的相关性。通常,环烯醚萜苷的检测方法包括气相色谱法、液相色谱法、薄层色谱法、高效液相色谱法、高效薄层色谱法和毛细管电泳技术。最常用的方法是HPLC和HPTLC。桃苦素和梓醇是具有抗癌、抗衰老、抗炎、抗氧化、保肝、保骨、保神经等生物活性的活性化合物。结论:本文对车前草中桃红素和梓醇的细胞毒活性及检测方法进行了综述。结果表明,车前草及其代谢物可能对人类健康有益,而不仅仅是它们的传统用途。
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Biological Activities and Analytical Methods for Detecting Aucubin and Catalpol Iridoid Glycosides in Plantago Species: A Review Study
Background: Plantago species contain aucubin and catalpol iridoid glycosides used in traditional medicine for many purposes. Objectives: To accelerate the utilization of aucubin and catalpol in Plantago species, research should be focused on introducing advanced purification and detection methods. In this regard, the therapeutic activities of aucubin and catalpol compounds are mentioned to confirm their effectiveness in medicinal uses. Methods: An extensive literature search was conducted using the keywords “Aucubin and Catalpol + Plantago” in the public domains of Google scholar. Results: The iridoid patterns exhibited a significant correlation with morphological and other chemical specifications of the representatives of the genus Plantago. Commonly, iridoid glycosides are detected with gas chromatography, liquid chromatography, thin-layer chromatography, high-performance liquid chromatography (HPLC), high-performance thin-layer chromatography (HPTLC), and capillary electrophoresis techniques. The most common methods are HPLC and HPTLC. Aucubin and catalpol are active compounds possessing biological activities, including anti-cancer, anti-aging, anti-inflammatory, anti-oxidant, hepatoprotective, osteoprotective, and neuroprotective properties. Conclusion: This review article comprehensively summarizes cytotoxic activities and detection methods of aucubin and catalpol in Plantago species. The results suggest that Plantago species and their metabolites may benefit human health beyond their traditional uses.
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