Sangwan Neelam S, Sabir Farzana, Mishra Smrati, Bansal Shilpi, Sangwan Rajender S
Metabolic and Structural Biology Department, Central Institute of Medicinal and Aromatic Plants (CIMAP-CSIR), P.O. CIMAP, Lucknow-226015, India.
Recent Pat Biotechnol. 2014;8(1):25-35. doi: 10.2174/1872208307666131218125300.
Withania somnifera Dunal is one of the most commonly used plants in Ayurvedic and indigenous system of medicine in India for over thousands of years. In view of its varied therapeutic potential, the plant has also been the subject of considerable scientific attention. The major chemical constituents of the Withania genus, the withanolides, are a group of naturally occurring C28-steroidal lactones built on an intact or rearranged ergostane framework, in which C22 and C26 are oxidized to form a six-member lactone ring. In recent years, numerous pharmacological investigations have been carried out utilizing W. somnifera extracts and several patents have been filed on pharmacological and medicinal importance of withanolides and extracts of W. somnifera, individually or in combination. Considering the immense importance of withanolides for medicinal purposes, the establishment of strategies to improve withanolides yield are highly desirable. Under natural conditions, W. somnifera possesses restricted levels of withanolides then, alternatives for obtaining withanolides in better yields are imperative. In vitro approaches followed by metabolic engineering could be attractive tools to achieve this goal. Therefore, we present here an overview of the development of various protocols for in vitro tissue regeneration from W. somnifera and in vitro secondary metabolite production as well. The review also gives an account of selected patents on various important activities of phytochemicals and extracts of W. somnifera.
印度阿育吠陀医学和本土医学体系中,睡茄(Withania somnifera Dunal)是数千年来最常用的植物之一。鉴于其多样的治疗潜力,该植物也受到了科学界的广泛关注。睡茄属的主要化学成分——睡茄内酯,是一类基于完整或重排的麦角甾烷骨架的天然C28甾体内酯,其中C22和C26被氧化形成一个六元内酯环。近年来,人们利用睡茄提取物进行了大量药理学研究,并就睡茄内酯以及睡茄提取物的药理学和医学重要性,单独或联合申请了多项专利。考虑到睡茄内酯在药用方面的巨大重要性,制定提高睡茄内酯产量的策略非常必要。在自然条件下,睡茄中的睡茄内酯含量有限,因此必须找到能以更高产量获取睡茄内酯的替代方法。体外培养方法结合代谢工程可能是实现这一目标的有吸引力的工具。因此,我们在此概述了从睡茄进行体外组织再生以及体外次生代谢产物生产的各种方案的发展情况。本综述还介绍了关于睡茄植物化学物质和提取物各种重要活性的部分专利。