Glycolipids as a promising ingredient in food and pharmaceutical technologies

E. Gerasimenko, M. Slobodyanik, S. Sonin, P. О. Popkova
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Abstract

The relevance of the analysis of scientific publications devoted to the study of the composition, properties, methods of preparation, areas of application, as well as the qualitative and quantitative identification of glycolipids is determined by the prospects for their use as alternative natural surfactants. Glycolipids possessing comparable surfactant properties with widely used surfactants of a petrochemical nature, and distinguished by the absence of toxicity and environmental friendliness, exhibit pronounced physiological and functional properties.Currently, there are no systematic data covering various aspects of the composition, physicochemical properties of glycolipids.The purpose of this research is to clarify the classification of glycolipids, to summarize data on the advantages and disadvantages of various industrial methods for obtaining glycolipids; systematization of data on the properties of glycolipids by application; identification of the most effective methods for the qualitative and quantitative identification of glycolipids.Particular attention is paid to the analysis of data on the possibility of isolating glycolipids from plant materials, including secondary resources of the oil and fat industry.The data presented in the review indicate that glycolipids, including those isolated from plant materials, are characterized by a high biotechnological potential for their use in the creation of pharmaceuticals, cosmetics, and functional foods.Of the known methods for the industrial production of glycolipids, currently the most common and cost-effective methods are those based on microbiological and enzymatic synthesis.Promising raw materials for the production of glycolipids are secondary products of processing of oilseeds – phosphatide emulsions and phosphatide concentrates containing up to 5% glycolipids in their composition. There are currently no methods for obtaining glycolipids from this type of raw material.Of the known methods for the qualitative and quantitative identification of glycolipids (TLC, HPTLC, HPLC, NMR), the most promising method is high-resolution NMR spectroscopy, as it is the most informative, rapid and accurate.
糖脂在食品和制药技术中是一种很有前途的成分
对专门研究糖脂的组成、性质、制备方法、应用领域以及定性和定量鉴定的科学出版物进行分析的相关性是由糖脂作为替代天然表面活性剂的前景决定的。糖脂具有与广泛使用的石油化学性质的表面活性剂相当的表面活性剂性质,并且具有无毒和环境友好的特点,具有明显的生理和功能特性。目前,还没有系统的数据涵盖糖脂的组成、理化性质的各个方面。本研究的目的是澄清糖脂的分类,总结各种工业方法获得糖脂的优缺点;应用中糖脂性质数据的系统化鉴定最有效的糖脂质定性和定量鉴定方法。特别注意分析从植物材料,包括油脂工业的二次资源中分离糖脂的可能性的数据。综述中提供的数据表明,糖脂,包括从植物材料中分离出来的糖脂,具有很高的生物技术潜力,可用于制造药品、化妆品和功能食品。在已知的工业生产糖脂的方法中,目前最常见和最具成本效益的方法是基于微生物和酶合成的方法。油籽加工的二次产物——磷脂乳剂和磷脂浓缩物中含有高达5%的糖脂,是生产糖脂的有前途的原料。目前还没有从这类原料中提取糖脂的方法。在已知的糖脂质定性和定量鉴定方法(TLC、HPTLC、HPLC、NMR)中,高分辨率核磁共振波谱法具有信息量大、快速、准确等优点,是最有前途的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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