茯苓心糖苷和脂质谱的研究。种子

D. Knittel, P. Lorenz, U. Huber, F. Stintzing, Dietmar Kammerer
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引用次数: 7

摘要

摘要:石竹属植物的种子。都含有高水平的心脏活性化合物。然而,Strophanthus在治疗心脏病方面的治疗用途需要更详细的化合物概况知识,以从Strophanthus制剂的全部潜力中获利。因此,目的是利用适用于常规质量控制的方法来表征红薯种子中的桃香内酯和亲脂性成分。采用新的HPLC-DAD-MSn方法对新鲜制备的红豆籽提取物进行分析,无需事先进行样品清理。此外,脂类衍生化后,采用气相色谱-质谱分析了种子油。经初步鉴定,其种子提取物中含有20余种桃核苷类,包括strophanthidin、strophanthidol、periplogenin和strophanthidacid gly锥体,携带不同的糖基。研究结果显示,存在8种新的桂枝内酯,到目前为止还没有在S. komb中描述过。通过与合成的strophantidic -cymaropyranoside进行比较,证实了strophantidic acid衍生物的存在。气相色谱-质谱分析结果显示,油酸和亚油酸是主要的脂肪酸成分,而植物甾醇是硬核内酯生物合成的中间体。总之,这些发现拓宽了我们对藤属植物次生代谢的认识。
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Characterization of the cardiac glycoside and lipid profiles of Strophanthus kombé Oliv. seeds
Abstract The seeds of Strophanthus kombé Oliv. are known to contain high levels of cardioactive compounds. However, the therapeutic use of Strophanthus in the treatment of cardiopathy requires more detailed knowledge of the compound profile to profit from the full potential of Strophanthus preparations. Therefore, the objective was to characterize the cardenolide profile and lipophilic constituents in S. kombé seeds using methods applicable in routine quality control. Freshly prepared S. kombé seed extracts were analyzed without previous sample clean-up using a novel HPLC-DAD-MSn method. In addition, seed oils were analyzed by GC-MS following derivatization of the lipids. More than 20 cardenolides were tentatively assigned in the seed extracts including strophanthidin, strophanthidol, periplogenin and strophanthidinic acid aglycones, carrying various saccharide moieties. The findings revealed the presence of eight novel cardenolides, which have not been described for S. kombé so far. The occurrence of strophanthidinic acid derivatives was verified by comparison with synthesized strophanthidinic acid-cymaropyranoside. GC-MS characterization of the oils mainly revealed the presence of fatty acids, especially oleic acid and linoleic acid, as well as phytosterols, the latter representing intermediates of cardenolide biosynthesis. In summary, these findings broaden our knowledge on the secondary metabolism of Strophanthus.
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