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荆芥属植物:传统用途、植物化学和药理学特性。

The genus Nepeta: Traditional uses, phytochemicals and pharmacological properties.

机构信息

Department of Chemistry, Chandigarh University, NH-95, Chandigarh-Ludhiana Highway, Gharuan, Mohali, Punjab, 140413, India; Department of Chemistry, Sant Longowal Institute of Engineering and Technology, Longowal, Sangrur, Punjab, 148106, India.

Dept Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Kong.

出版信息

J Ethnopharmacol. 2021 Mar 25;268:113679. doi: 10.1016/j.jep.2020.113679. Epub 2020 Dec 8.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE

Nepeta is a multiregional genus of the "Lamiaceae" (Labiatae or Mint) family. Species of Nepeta are a valuable part of traditional medicine and used extensively, particularly in the Himalayan region of India (Uttarakhand, Himachal Pradesh, Jammu and Kashmir, Leh-Ladakh), Pakistan (Khyber Pakhtunkhwaand Pakistani Kashmir), Nepal (Baglund district), also in China and hilly regions of Turkey and Iran. Nepeta species are extensively used as a remedy against a variety of ailments and conditions like chicken pox, tuberculosis, malaria, pneumonia, influenza, measles, stomach disorders, eye complaints, respiratory disorders, asthma, colds, coughs etc. AIM OF THE REVIEW: The main aim of this review is to present a comprehensive and detailed study on traditional uses, pharmacology, phytochemistry, toxicology of Nepeta species and suggest future direction on the design and conduct of various preparations, either alone or in blends with prevailing conventional remedies. The review also emphasizes encouraging researchers towards the wide range of pharmaceutical applications of the various species of Nepeta for their better use and exploration in the future.

MATERIAL AND METHODS

All the relevant data and information on different species of Nepeta were assembled using different databases, such as Science Direct, Springer, PubMed, Taylor and Francis imprints, Chemspider, Google scholar, review and research articles from peer-reviewed journals and unpublished data. Some select 'grey literature' sources viz. ethnobotanical books, chapters, Wikipedia and webpages were also studied.

RESULTS

A variety of bioactive secondary metabolites and nutraceuticals has been isolated from various species of Nepeta. These bioactive compounds belong to different classes of secondary metabolites, such as phenolic acids and their glycosides (rosmarinic acid, gallic acid, caffeic acid), flavonoids and their glycosides (cirsimaritin, salvigenin, luteolin, apigenin), iridoids (nepetalactones and their derivatives), terpenoids (1,8-cineole, linalool, β-caryophyllene, germacrene D, parnapimaro, β-amyrin, oleanolic acid, ursolic acid), steroids (β-sitosterol, stigmasterol), lignans, amino acids, carbohydrates, volatile oils, etc. The species of the genus Nepeta possess a variety of pharmacological activities namely anti-inflammatory, anti-nociceptive, anti-alzheimer, anticancer and cytotoxic, antioxidant, immunomodulatory, antimicrobial, antifungal, insecticidal and along with other biological activities.

CONCLUSION

The species of the genus Nepeta contains a rich source of various bioactive compounds, which are well tolerated as traditional medicines. In fact, different species of Nepeta are widely used in a variety of traditional medicinal systems all around the world. Owing to the variety of pharmacological properties of Nepeta species, more comprehensive and inclusive clinical trials are necessary for the utilization of different Nepeta species against the treatment of a wide range of ailments. There are also various other uses such as food, cosmetic and agriculture that can be investigated or explored in future. Some of the major domains that can be explored within this genus are the investigation of different species for their unexplored biological potential, isolation and characterization of new bioactive constituents and finally, investigation of new applications and possible commercialization of these bioactive leads. No doubt, there are various viable research domains outside those discussed above, but presently for the purposes of this review we will only emphasize the activities herein.

摘要

民族药理学相关性

荆芥属是唇形科(薄荷科或薄荷)的一个多区域属。荆芥属的物种是传统医学的重要组成部分,被广泛使用,特别是在印度的喜马拉雅地区(北阿坎德邦、喜马偕尔邦、查谟和克什米尔、列城-拉达克)、巴基斯坦(开伯尔-普赫图赫瓦省和巴基斯坦克什米尔)、尼泊尔(巴格伦区),也在中国和土耳其、伊朗的丘陵地区。荆芥属的物种被广泛用作治疗各种疾病和病症的药物,如水痘、肺结核、疟疾、肺炎、流感、麻疹、胃病、眼部疾病、呼吸道疾病、哮喘、感冒、咳嗽等。

目的

本综述的主要目的是对荆芥属植物的传统用途、药理学、植物化学、毒理学进行全面详细的研究,并就各种制剂的设计和应用提出建议,无论是单独使用还是与现有的常规疗法混合使用。该综述还强调鼓励研究人员广泛研究各种荆芥属植物的药物应用,以便今后更好地利用和开发它们。

材料和方法

使用不同的数据库,如 Science Direct、Springer、PubMed、Taylor and Francis 印记、Chemspider、Google Scholar、同行评议期刊的评论和研究文章以及未发表的数据,收集了不同荆芥属植物的所有相关数据和信息。还研究了一些选定的“灰色文献”来源,如民族植物学书籍、章节、维基百科和网页。

结果

从各种荆芥属植物中分离出多种生物活性次生代谢物和营养保健品。这些生物活性化合物属于不同类别的次生代谢物,如酚酸及其糖苷(迷迭香酸、没食子酸、咖啡酸)、类黄酮及其糖苷(芹菜素、圣草酚、木樨草素、芹菜素)、环烯醚萜(荆芥内酯及其衍生物)、萜类(1,8-桉叶油素、沉香醇、β-丁香烯、大根香叶烯 D、帕纳皮马醇、β-香树脂醇、齐墩果酸、熊果酸)、甾体(β-谷甾醇、豆甾醇)、木脂素、氨基酸、碳水化合物、挥发油等。荆芥属植物具有多种药理活性,如抗炎、镇痛、抗老年痴呆症、抗癌和细胞毒性、抗氧化、免疫调节、抗菌、抗真菌、杀虫作用以及其他生物活性。

结论

荆芥属植物含有丰富的各种生物活性化合物,作为传统药物具有良好的耐受性。事实上,不同的荆芥属植物被广泛用于世界各地的各种传统医学系统。由于荆芥属植物具有多种药理特性,因此需要进行更全面和更具包容性的临床试验,以利用不同的荆芥属植物治疗各种疾病。还有其他各种用途,如食品、化妆品和农业,未来可以进行调查或探索。在这个属中,可以探索的一些主要领域是研究不同物种的未开发生物潜力、分离和鉴定新的生物活性成分,以及最终探索这些生物活性先导化合物的新应用和可能的商业化。毫无疑问,除了上面讨论的那些领域之外,还有许多可行的研究领域,但目前为了本综述的目的,我们只强调其中的活动。

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