Hossain Md Sanower, Urbi Zannat, Sule Abubakar, Hafizur Rahman K M
Department of Biotechnology, Kulliyyah of Science, International Islamic University Malaysia, 25200 Kuantan, Pahang, Malaysia.
Department of Microbiology, School of Applied Sciences, Federal Polytechnic Institute, Nasarawa, Nigeria.
ScientificWorldJournal. 2014;2014:274905. doi: 10.1155/2014/274905. Epub 2014 Dec 24.
As aboriginal sources of medications, medicinal plants are used from the ancient times. Andrographis paniculata is one of the highly used potential medicinal plants in the world. This plant is traditionally used for the treatment of common cold, diarrhoea, fever due to several infective cause, jaundice, as a health tonic for the liver and cardiovascular health, and as an antioxidant. It is also used to improve sexual dysfunctions and serve as a contraceptive. All parts of this plant are used to extract the active phytochemicals, but the compositions of phytoconstituents widely differ from one part to another and with place, season, and time of harvest. Our extensive data mining of the phytoconstituents revealed more than 55 ent-labdane diterpenoids, 30 flavonoids, 8 quinic acids, 4 xanthones, and 5 rare noriridoids. In this review, we selected only those compounds that pharmacology has already reported. Finally we focused on around 46 compounds for further discussion. We also discussed ethnobotany of this plant briefly. Recommendations addressing extraction process, tissue culture, and adventitious rooting techniques and propagation under abiotic stress conditions for improvement of phytoconstituents are discussed concisely in this paper. Further study areas on pharmacology are also proposed where needed.
作为药物的原始来源,药用植物自古以来就被使用。穿心莲是世界上使用广泛的潜在药用植物之一。这种植物传统上用于治疗普通感冒、腹泻、多种感染性病因引起的发热、黄疸,作为肝脏和心血管健康的滋补品,以及作为抗氧化剂。它还用于改善性功能和作为避孕药。这种植物的所有部分都用于提取活性植物化学物质,但植物成分的组成因部位不同以及收获的地点、季节和时间而有很大差异。我们对植物成分进行的广泛数据挖掘揭示了55种以上的对映-贝壳杉烷二萜、30种黄酮类化合物、8种奎宁酸、4种呫吨酮和5种罕见的降环烯醚萜。在本综述中,我们只选择了那些药理学已经报道过的化合物。最后,我们聚焦于约46种化合物进行进一步讨论。我们还简要讨论了这种植物的民族植物学。本文简要讨论了关于提取工艺、组织培养、不定根生根技术以及在非生物胁迫条件下繁殖以改善植物成分的建议。还在需要的地方提出了药理学的进一步研究领域。