梓醇
根(腹足类)
环烯醚萜
化学
色谱法
糖苷
高效液相色谱法
降级(电信)
传统医学
植物
有机化学
计算机科学
医学
生物
电信
作者
Jingjing Yang,Lihua Zhang,Mengyue Zhang,Mingxuan Yang,Lin Zou,Ying Cui,Jing Yang,Xin Chai,Yuefei Wang
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2024-02-03
卷期号:29 (3): 705-705
被引量:8
标识
DOI:10.3390/molecules29030705
摘要
Radix Rehmanniae (RR), a famous traditional Chinese medicine (TCM) widely employed in nourishing Yin and invigorating the kidney, has three common processing forms in clinical practice, including fresh Radix Rehmanniae (FRR), raw Radix Rehmanniae (RRR), and processed Radix Rehmanniae (PRR). However, until now, there has been less exploration of the dynamic variations in the characteristic constituents and degradation products of catalpol as a representative iridoid glycoside with the highest content in RR during the process from FRR to PRR. In this study, an ultra-performance liquid chromatography coupled with photodiode array detector (UPLC-PDA) method was successfully established for the simultaneous determination of ten characteristic components to explore their dynamic variations in different processed products of RR. Among them, iridoid glycosides, especially catalpol, exhibited a sharp decrease from RRR to PRR. Then, three degradation products of catalpol were detected under simulated processing conditions (100 °C, pH 4.8 acetate buffer solution), which were isolated and identified as jiofuraldehyde, cataldehyde, and norviburtinal, respectively. Cataldehyde was first reported as a new compound. Moreover, the specificity of norviburtinal in self-made PRR samples was discovered and validated, which was further confirmed by testing in commercially available PRR samples. In conclusion, our study revealed the decrease in iridoid glycosides and the production of new degradation substances during the process from FRR to PRR, which is critical for unveiling the processing mechanism of RR.
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