首页|期刊导航|Integrative Medicine Discovery|UPLC/MS-MS-based pharmacokinetics of phytosterol magnetic targeted drug delivery system in rat and tissue distribution in mouse

UPLC/MS-MS-based pharmacokinetics of phytosterol magnetic targeted drug delivery system in rat and tissue distribution in mouseOA

中文摘要

Background:Building upon our previous work that developed a folate receptor-mediated,euphaorbia factor L1-loaded PLGA microsphere system integrating active and magnetic targeting for theranostics,further investigation into its in vivo pharmacokinetics and tissue distribution is warranted despite its demonstrated biocompatibility and safety.Methods:A UPLC-MS/MS method was established to determine the concentration of euphorbia sterol in rat plasma and mouse tissue homogenates,healthy male SD rats and KM mice were administered in groups,drug concentrations at different time points were determined,pharmacokinetic parameters were analyzed by DAS software,and data were processed by SAS software.Results:The proposed method met the requirements of biological sample detection.The plasma pharmacokinetics of rats showed that the drug concentration in the microsphere group was lower than that in the injection group,and the parameters such as mean residence time(MRT(0–t)),half-life(T1/2z)and apparent volume of distribution(Vz)were significantly different from those in the solution group.The distribution of mouse tissues showed that the drug concentrations in the liver and lung tissues of the microsphere preparation group were higher than those in the injection group,and the drug concentrations in the lung and liver tissues were more distributed.Conclusion:The targeted drug delivery system changed the pharmacokinetic behavior and tissue distribution of euphorbia sterol,slowed down plasma elimination,prolonged the half-life,and improved the targeting of drugs in lung and liver tissues and the magnetic targeting effect of lungs.

Xiao-Yu Wang;Wen-Jing Chen;Yi-Fan Mao;Jun-Li Zhang;Hai-Ting Zhu;Hui-Nan Wang;Ming-Rui Jiang;Xin-Ning Zhang;Peng Xu;Ying-Zi Wang

School of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,ChinaSchool of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,ChinaSchool of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,ChinaSchool of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,ChinaSchool of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,ChinaSchool of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,ChinaSchool of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,ChinaSchool of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,ChinaSchool of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,ChinaSchool of Chinese Materia Medica,Beijing University of Chinese Medicine,Beijing 102488,China

医药卫生

euphorbia sterolmagnetic targeted drug delivery systempharmacokineticstissue distribution

《Integrative Medicine Discovery》 2025 (16)

P.1-9,9

sponsored by the Fundamental Research Funds forthe Central Universities(No.2024-JYB-JBZD-047)High Level Key Discipline Construction of Traditional Chinese Medicine(zyyzdxk-2023272).

10.53388/IMD202509016

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