芹菜多糖的分离、纯化和植物化学筛选

E. S. Surbeeva, S. I. Komova, V. S. Shurakova, Ksenia Stepanovna Nevedyuk, U. A. Efremova, Nadezhda Aleksandrovna Krishtanova, Ella Pavlovna Sanaeva, I. I. Terninko
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引用次数: 0

摘要

天然多糖具有药理作用,包括抗病毒活性和调节代谢紊乱的能力,因此天然多糖研究是一个重要的研究领域。此外,这些聚合结构还具有多种特性(吸附、塑形、运输(和输送系统)),这也增加了科学家们对其分离和分析的兴趣。本研究旨在对不同植物形态芹菜中的多糖组分进行比较研究。研究目的包括分离多糖馏分,用 Sevag 法纯化多糖,用 HPTLC 法估计酸水解后馏分的单体成分,以及用红外光谱法确定分子的结构特征。从芹菜的叶、叶柄和根中分离出了醇溶性多糖(ASPS)、水溶性多糖(WSPS)和果胶物质(PS)。纯化后,所得物质为浅棕色或浅米黄色无定形粉末,无味。芹菜根部植物形态的目标化合物收率最高(纯化后总收率为(13.54±1.07)%),而叶柄形态的目标化合物收率最低(纯化后总收率为(5.51±0.04)%)。果胶和 WSPS 的单体成分主要是半乳糖和阿拉伯糖,而酒精成分主要是果糖和葡萄糖。对红外光谱的解读显示,不同多糖组分中存在游离和结合羧基、C-O-C 价振动、糖苷键的 α 构型以及半乳糖醛酸的 C1-α 构型所特有的吸收带,因此我们可以得出一些有关物质结构的结论。我们首次对不同植物形态的臭芹多糖组分进行了比较研究。根据所获得的结果,可以将芹菜根茎作物中的 WSPS 和 PS 挑选出来,作为最有前途的植物物质,以便在其基础上进一步开发功能性专门营养产品和潜在药物。研究中使用的分析方法可作为控制这些产品的监管文件的一部分。
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ISOLATION, PURIFICATION AND PHYTOCHEMICAL SCREENING OF POLYSACCHARIDE FRACTIONS FROM APIUM GRAVEOLENS’ L. BOTANICAL FORMS
The study of natural polysaccharides is an important area of research due to their pharmacological effects, including antiviral activity and the ability to regulate metabolic disorders. In addition, these polymeric structures realize several properties (sorption, shaping, transport (and delivery systems), which increases the interest of scientists in their isolation and analysis. This study aims to comparatively investigate the polysaccharide fractions in different botanical forms of celery odouriferous. The objectives of the study include the isolation of polysaccharide fractions, their purification by the Sevag method, estimation of monomeric composition of the fractions after acid hydrolysis by the HPTLC method, and determination of structural characteristics of the molecules by IR spectroscopy. Alcohol-soluble polysaccharides (ASPS), water-soluble polysaccharides (WSPS), and pectin substances (PS) were isolated from leaf, petiole, and root botanical forms of celery. After purification, the obtained substances were amorphous powders of light brown or light beige colour and odourless. The root botanical form of celery showed the highest yield of the target compounds (total (13.54±1.07)% after purification), while the petiole form (total (5.51±0.04)% after purification) showed the lowest yield. The monomeric composition of pectins and WSPS showed a predominance of galactose and arabinose, whereas the alcoholic ones showed a predominance of fructose and glucose. The interpretation of IR spectra showed the presence of absorption bands characteristic of free and bound carboxyl groups, C-O-C valence vibrations, α-configuration of the glycosidic bond, and C1-α-conformation of galacturonic acid in different polysaccharide fractions, which allows us to draw some conclusions regarding the structure of the substances. A comparative study of polysaccharide fractions of different botanical forms of odorous celery was carried out for the first time. Based on the results obtained, it is possible to single out WSPS and PS of celery root crops as the most promising phytosubstances for further development of products of functional, specialized nutrition and potential medicines on their basis. The methods of analysis used in the study can be proposed as part of the regulatory documentation for the control of these products.
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