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首页> 外文期刊>Journal of Taibah University for Science >Variations in the cytotoxic glycoalkaloids solamargine and solasonine in different parts of the Solanum incanum plant during its growth and development in Oman
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Variations in the cytotoxic glycoalkaloids solamargine and solasonine in different parts of the Solanum incanum plant during its growth and development in Oman

机译:茄果植物在阿曼生长发育过程中不同部位细胞毒性糖碱生物碱和茄碱的变化

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In addition to several important traditional medicine applications of Solanum incanum, the plant is a rich source of important cytotoxic glycoalkaloids, such as solamargine and solasonine. Because S. incanum is a potential source of compounds for steroid synthesis, it is worthwhile to study the content of these important glycoalkaloids during plant developmental stages. Therefore, an attempt has been made to quantitatively estimate solasonine and solamargine content using an optimized isolation process and a newly developed and validated HPTLC method using different parts of S. incanum plants at different developmental stages and comparing changes in the whole-plant GAs profile during the growth and development of S. incanum plants in Oman. Solamargine and solasonine produced well-separated compact bands with R"f values of 0.26 and 0.14, respectively, on silica gel HPTLC plates using chloroform:methanol:5% ammonia (7:3:0.5, v/v/v) after visualization using anisaldehyde sulphuric acid reagent. The chromatograms were scanned at 530nm wavelength and the simultaneous method was linear (r^2>=0.9962) in concentrations ranging from 50 to 2000ng/spot for both of the drugs. The validated method was applied to analyse solamargine and solasonine in small, young, immature and mature leaves as well as stem and root parts up to the 40th week of plants' growth, and showed a rich concentration of glycoalkaloids with large variations at different stages of plant development. Hence, this study highlights the importance of developmental stages of particular organs and the overall age of the plant when harvesting for these GAs from S. incanum plants.
机译:除茄茄的几种重要的传统医学应用外,该植物还富含重要的细胞毒性糖生物碱,如茄固精和茄碱。由于S. incanum是类固醇合成的潜在化合物来源,因此有必要在植物发育阶段研究这些重要糖生物碱的含量。因此,已尝试使用优化的分离工艺和新开发并验证的HPTLC方法,使用不同的发育阶段的印度拐杖植物的不同部分,并比较整个植物中GA的变化,来定量估算茄碱和茄草精的含量。阿曼S. incanum植物的生长发育。可视化后,使用氯仿:甲醇:5%氨水(7:3:0.5,v / v / v),在硅胶HPTLC板上,Solamargine和Solaso​​nine产生了分离良好的紧密带,R“ f值分别为0.26和0.14。茴香醛硫酸试剂。两种药物的色谱图在530nm波长处扫描,同时方法为线性(r ^ 2> = 0.9962),两种药物的浓度范围为50-2000ng /点,经验证的方法用于分析香豆素和直至植物生长的第40周,小,年轻,未成熟和成熟的叶子以及茎和根部分中的茄碱均显示出丰富的糖类生物碱浓度,在植物发育的不同阶段差异很大。当从S. incanum植物中收获这些GA时,特定器官发育阶段的重要性和植物的总体年龄。

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