Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining, P. R. China.
Qinghai Provincial Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Xining, P. R. China.
J Sep Sci. 2021 Nov;44(21):3967-3975. doi: 10.1002/jssc.202100546. Epub 2021 Sep 16.
The high-polar compounds from natural products are often used as medicines due to their good bioactivities. However, owing to the complexity and diversity of their structure, the separation of high-polar compounds is still a challenging work. For this, an efficient method for enrichment and separation of the high-polar compounds from Saussurea obvallata was developed. First, the target compounds were enriched from the total extract using a solid-phase extraction method. An offline two-dimensional liquid chromatography method was used for the separation of pure compounds from the enriched sample. After optimization of chromatographic conditions, high separation selectivity of target compounds was obtained on a polar-modified C18 column and a HILIC XAmide column. Hence, a two-dimensional reversed-phase × hydrophilic interaction liquid chromatography system was constructed and enlarged from the analytical level to the preparative level. In the first dimension, four fractions were obtained on the XCharge C18 column with a recovery rate of 71.2%. In the second-dimension preparation on the XAmide column, eight high-polar compounds with more than 96% purity were isolated. All compounds were isolated from Saussurea obvallata for the first time. The results demonstrated that this developed strategy is effective for preparative-scale isolation of high-polar compounds from natural products.
天然产物中的高极性化合物由于其良好的生物活性,常被用作药物。然而,由于其结构的复杂性和多样性,高极性化合物的分离仍然是一项具有挑战性的工作。为此,开发了一种从雪莲中富集和分离高极性化合物的有效方法。首先,采用固相萃取法从总提取物中富集目标化合物。然后,采用离线二维液相色谱法从富集样品中分离纯化合物。优化色谱条件后,在极性改性 C18 柱和 HILIC XAmide 柱上获得了目标化合物的高分离选择性。因此,从分析水平扩展到制备水平,构建并放大了二维反相×亲水作用液相色谱系统。在 XCharge C18 柱的第一维,得到四个馏分,回收率为 71.2%。在 XAmide 柱的第二维制备中,分离得到八种纯度高于 96%的高极性化合物。所有化合物均首次从雪莲中分离得到。结果表明,该开发策略对于从天然产物中制备规模分离高极性化合物是有效的。