Vrancheva Radka, Ivanov Ivan, Aneva Ina, Stoyanova Magdalena, Pavlov Atanas
Department of Analytical Chemistry and Physical chemistry University of Food Technologies-Plovdiv Plovdiv Bulgaria.
Department of Organic Chemistry and Inorganic Chemistry University of Food Technologies-Plovdiv Plovdiv Bulgaria.
Eng Life Sci. 2018 Aug 28;18(11):799-806. doi: 10.1002/elsc.201800063. eCollection 2018 Nov.
During the last few years there is an increasing demand to the natural biologically active compounds. According to the World Health Organization (WHO) about 11% of the conventional medicines are of plant origin. Nowadays, plant biotechnologies are modern and reliable tool for producing valuable bioactive compounds. Recently, the potential of plant cells as foods also was confirmed. The advantages of plant in vitro systems over the intact plants are well known: growing under controlled and optimized laboratory conditions; independence of climatic and soil differences; preservation of rare and endangered plant species; cultivation in diverse bioreactor systems for increasing production yields of target metabolites. There have been developed many in vitro systems for production of various plant bioactive compounds with potential application in food industries. But potential for industrial implementation of this technology depends on solving problems with the scale-up of bioreactor cultivation, development of additional approaches for improving/modification of bioactivities of the target plant secondary metabolites, and to find way to exclude or replace in the culture media the carcinogenic plant growth regulator 2,4-dichlorophenoxyacetic acid (2,4-D) with its safety analogs, such as α-naphtaleneacetic acid (NAA) and/or indole-3-butyric acid (IBA). The aim of the current mini review is to summarize information about different in vitro systems of edible plants from the Balkan Peninsula with potential for producing food additives and biologically active substances and to describe prospects for successful industrial implementation of this technology.
在过去几年中,对天然生物活性化合物的需求日益增加。根据世界卫生组织(WHO)的数据,约11%的传统药物源自植物。如今,植物生物技术是生产有价值生物活性化合物的现代且可靠的工具。最近,植物细胞作为食物的潜力也得到了证实。植物体外系统相对于完整植物的优势是众所周知的:在可控且优化的实验室条件下生长;不受气候和土壤差异的影响;保护珍稀濒危植物物种;在各种生物反应器系统中进行培养以提高目标代谢物的产量。已经开发出许多体外系统来生产各种具有潜在食品工业应用价值的植物生物活性化合物。但是这项技术的工业实施潜力取决于解决生物反应器培养放大问题、开发改进/修饰目标植物次生代谢物生物活性的其他方法,以及找到用其安全类似物(如α-萘乙酸(NAA)和/或吲哚-3-丁酸(IBA))排除或替代培养基中致癌植物生长调节剂2,4-二氯苯氧乙酸(2,4-D)的方法。本小型综述的目的是总结有关巴尔干半岛可食用植物不同体外系统的信息,这些系统具有生产食品添加剂和生物活性物质的潜力,并描述该技术成功实现工业应用的前景。