Meng Xian-Hua, Wang Min, Lin Peng-Cheng
Key Laboratory for Tibet Plateau Phytochemistry of Qinghai Province, College of Pharmacy, Qinghai Nationalities University, Xining, 810007, Qinghai, China; CAS Key Laboratory of Chemistry of Northwestern Plant Resources and Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences (CAS), Lanzhou, 730000, China.
Key Laboratory for Tibet Plateau Phytochemistry of Qinghai Province, College of Pharmacy, Qinghai Nationalities University, Xining, 810007, Qinghai, China.
J Ethnopharmacol. 2023 Apr 24;306:116205. doi: 10.1016/j.jep.2023.116205. Epub 2023 Jan 25.
Gymnadenia conopsea, a perennial herbaceous flowering plant that belongs to the family of Orchidaceae, sporadic distributed in the altitudes of 200-4700 m across northern Europe and, temperate and subtropical Asia region. The dried tubers of G. conopsea have been used to treat cough, asthma, and their syndromes, and also as a tonic in China and surrounding countries for a long history. G. conopsea is often processed deeply processed before use to enhance its efficacy. In recent years, because of its remarkable pharmacological activity and health care function, G. conopsea has been used more and more widely. Due to its extensive application and bad growth environment, the wild distribution of G. conopsea is decreasing and it has been listed as an endangered plant.
This review aims to summarize the propagation and breeding, traditional uses, chemical composition, pharmacology, quality control, and processing of G. conopsea. Moreover, it also provides suggestions for the future high-value utilization of G. conopsea.
A literature search on Gymnadenia genus and G. conopsea was performed using scientific databases including SciFinder, ACS, Web of Science, Springer, ScienceDirect, PubMed, and CNKI. Information was also collected from classic books of Chinese herbal medicine, official websites, Ph.D. and M.Sc. Dissertations, and so on. Structures of chemical compounds were drawn by ChemDraw software.
As of submission date of this manuscript, total 170 natural compounds have been isolated and characterized from G. conopsea, and all of the compounds were isolated from the tubers. The isolated compounds including benzylester glucosides, dihydrostilbenes, phenanthrenes, phenolic compounds, alkaloids, polysaccharide, lignans, flavones, triterpenoids, steroids, and other compounds. Some of these compounds and active extracts exhibited a wide range of pharmacological activities, in which, the tonifying, anti-fatigue, anti-oxidant, anti-viral, sedative and hypnotic activities are consistent with the traditional uses for the treatment of diseases. In addition, a variety of new pharmacological activities, such as preventing and treating gastric ulcers, immunoregulatory, anti-hyperlipidemia, anti-anaphylaxis, anti-silicosis, anti-cancer and neuroprotective activities have also been reported. However, the bioactive compounds responsible for most of the above pharmacological effects have not been well summarised till now. In this manuscript, analysis, speculation and summary of compounds that responsible for pharmacological effects were conducted.
The chemical constituents and pharmacological activities studies of G. conopsea extract have been summarised in this context, the isolated compounds responsible for the pharmacological activities were also analyzed and deduced according to the publications, all above led to suggestions for the future high-value utilization of G. conopsea.
手参是一种多年生草本开花植物,属于兰科,零星分布于北欧以及亚洲温带和亚热带地区海拔200 - 4700米的区域。在中国及周边国家,手参的干燥块茎长期以来被用于治疗咳嗽、哮喘及其相关病症,也用作滋补品。手参在使用前常经过深加工以增强其功效。近年来,由于其显著的药理活性和保健功能,手参的应用越来越广泛。由于其广泛应用以及生长环境恶劣,手参的野生分布正在减少,已被列为濒危植物。
本综述旨在总结手参的繁殖与育种、传统用途、化学成分、药理学、质量控制及加工方法。此外,还为手参未来的高价值利用提供建议。
使用包括SciFinder、ACS、Web of Science、Springer、ScienceDirect、PubMed和CNKI在内的科学数据库对手参属和手参进行文献检索。还从经典中草药书籍、官方网站、博士和硕士学位论文等收集信息。化合物结构由ChemDraw软件绘制。
截至本稿件提交日期,已从手中分离并鉴定出总计170种天然化合物,所有这些化合物均从块茎中分离得到。分离出的化合物包括苄酯糖苷、二氢茋类、菲类、酚类化合物、生物碱、多糖、木脂素、黄酮、三萜类、甾体类及其他化合物。其中一些化合物和活性提取物表现出广泛的药理活性,其中滋补、抗疲劳、抗氧化、抗病毒、镇静催眠活性与治疗疾病的传统用途一致。此外,还报道了多种新的药理活性,如防治胃溃疡、免疫调节、抗高脂血症、抗过敏、抗矽肺、抗癌和神经保护活性等。然而,迄今为止,对上述大多数药理作用的生物活性化合物尚未进行很好的总结。在本稿件中,对具有药理作用的化合物进行了分析、推测和总结。
在此总结了手参提取物的化学成分和药理活性研究,根据已发表的文献对手参中具有药理活性的分离化合物进行了分析和推导,所有这些都为手参未来的高价值利用提供了建议。