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Efficient conversion of myricetin from Ampelopsis grossedentata extracts and its purification by MIP-SPE

机译:杨梅提取物中杨梅素的高效转化及其MIP-SPE纯化

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摘要

In this study, we developed an efficient conversion process of dihydromyricetin to myricetin from Ampelopsis grossedentata extracts. The content of myricetin increased from 2.38% to 85.57%, demon- strating the successful dehydrogenation of dihydromyricetin. Molecularly imprinted polymers (MIPs) were prepared by surface imprinting method using silica microspheres as the support matrices and myricetin as template. The MIPs were applied for the selective adsorption of myricetin. The chemical structure of the MIPs was characterized by Fourier transform infrared spectroscopy and scanning elec- tron microscopy. Static, dynamic and selective adsorption experiments showed that the MIPs exhibited good adsorption ability, rather fast template rebinding kinetics, and appreciate selectivity over struc- turally related compounds. Accordingly, the MIPs were applied as the selective sorbent in SPE to purify myricetin obtained through dehydrogenation, followed by HPLC-UV analysis. The recoveries of myricetin and dihydromyricetin were 92.7% and 55.6%, respectively. This study demonstrates the feasibility of using the developed MIP-SPE method to purify and enrich myricetin in the natural products.
机译:在这项研究中,我们开发了一种从双翅目总提取物到二氢杨梅素的高效转化过程。杨梅素的含量从2.38%增至85.57%,表明二氢杨梅素成功脱氢。以硅胶微球为载体,以杨梅素为模板,通过表面压印法制备了分子印迹聚合物(MIPs)。 MIPs用于杨梅素的选择性吸附。 MIP的化学结构通过傅里叶变换红外光谱和扫描电子显微镜进行表征。静态,动态和选择性吸附实验表明,MIPs具有良好的吸附能力,具有较快的模板重新结合动力学,并且对结构相关的化合物具有较高的选择性。因此,将MIP用作SPE中的选择性吸附剂,以纯化通过脱氢获得的杨梅素,然后进行HPLC-UV分析。杨梅素和二氢杨梅素的回收率分别为92.7%和55.6%。这项研究证明了使用发达的MIP-SPE方法纯化和富集天然产品中杨梅素的可行性。

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