首页> 美国卫生研究院文献>Journal of Pharmaceutical Analysis >Trace determination and characterization of ginsenosides in rat plasma through magnetic dispersive solid-phase extraction based on core-shell polydopamine-coated magnetic nanoparticles
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Trace determination and characterization of ginsenosides in rat plasma through magnetic dispersive solid-phase extraction based on core-shell polydopamine-coated magnetic nanoparticles

机译:核壳聚多巴胺包覆的磁性纳米粒子的磁分散固相萃取法测定大鼠血浆中的人参皂苷痕量并表征

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摘要

Enrichment of trace bioactive constituents and metabolites from complex biological samples is challenging. This study presented a one-pot synthesis of magnetic polydopamine nanoparticles (Fe O @SiO @PDA NPs) with multiple recognition sites for the magnetic dispersive solid-phase extraction (MDSPE) of ginsenosides from rat plasma treated with . The extracted ginsenosides were characterized by combining an ultra-high-performance liquid chromatography coupled to a high-resolution mass spectrometry with supplemental UNIFI libraries. Response surface methodology was statistically used to optimize the extraction procedure of the ginsenosides. The reusability of Fe O @SiO @PDA NPs was also examined and the results showed that the recovery rate exceeded 80% after recycling 6 times. Furthermore, the proposed method showed greater enrichment efficiency and could rapidly determine and characterize 23 ginsenoside prototypes and metabolites from plasma. In comparison, conventional methanol method can only detect 8 ginsenosides from the same plasma samples. The proposed approach can provide methodological reference for the trace determination and characterization of different bioactive ingredients and metabolites of traditional Chinese medicines and food.
机译:从复杂的生物样品中富集微量生物活性成分和代谢物具有挑战性。这项研究提出了一锅法合成具有多个识别位点的磁性聚多巴胺纳米颗粒(Fe O @SiO @PDA NPs),用于从用ICP处理的大鼠血浆中人参皂苷的磁性分散固相萃取(MDSPE)。提取的人参皂苷的特征是将超高效液相色谱与高分辨率质谱联用,并与补充的UNIFI库结合使用。统计学上采用响应面法优化人参皂苷的提取工艺。还研究了Fe O @SiO @PDA NPs的可重复使用性,结果表明,回收6次后,回收率超过80%。此外,所提出的方法显示出更高的富集效率,并且可以快速确定和表征血浆中的23种人参皂苷原型和代谢物。相比之下,常规甲醇方法只能从相同血浆样品中检测出8种人参皂苷。该方法可为中药和食品中不同生物活性成分和代谢产物的痕量测定和表征提供方法学参考。

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