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Improvement of oral bioavailability of glycyrrhizin by sodium deoxycholate/phospholipid-mixed nanomicelles

机译:脱氧胆酸钠/磷脂混合的纳米胶束改善甘草甜素的口服生物利用度

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摘要

Glycyrrhizin (GL), extracted from the Glycyrrhiza glabra L., is active triterpenoid saponin components. However, due to its impermeability across the gastrointestinal mucosa, oral bioavailability of the drug was relatively low. To improve its oral bioavailability, formulation of GL as sodium deoxycholate/phospholipid-mixed nanomicelles (SDC/PL-MMs) has been performed in this study. GL-SDC/PL-MMs were produced by a film dispersion method and then investigated using photon correlation spectroscopy (PCS), zeta potential measurement, as well as its physical stability after storage for 10, 20, 30, 60, 90 and 120 days. To verify the theoretical hypothesis, pharmacokinetics and pharmacodynamic studies based on carbon tetrachloride (CCl 4)-induced acute liver injury was investigated. Results showed that a narrow size distributed nanomicelles with a mean particle size of 82.99±7.5nm and a zeta potential of -32.23±1.05 mV was obtained. In the pharmacokinetics, GL-SDC/PL-MMs show a significant superiority in AUC 0-t', C max and other pharmacokinetic parameters compared with the control group. In the pharmacodynamic studies, compared with the bifendate control group, GL-SDC/PL-MMs showed an equivalent effect in reducing alanine aminotransferase (ALT), aspartate aminotransferase (AST) and improving the pathological changes of liver tissue. These results revealed that SDC/PL-MMs could enhance GL absorption in gastrointestinal tract and pharmacodynamic effect in the treatment of acute liver injury caused by CCl 4, and SDC/PL-MMs might be a good choice for oral delivery of poor bioavailability drug like GL.
机译:从甘草中提取的甘草甜素(GL)是活性的三萜皂苷成分。然而,由于其在胃肠道粘膜上的不渗透性,该药物的口服生物利用度相对较低。为了提高其口服生物利用度,已在本研究中将GL配制成脱氧胆酸钠/磷脂混合的纳米胶束(SDC / PL-MMs)。 GL-SDC / PL-MM通过薄膜分散法生产,然后使用光子相关光谱法(PCS),ζ电位测量及其在储存10、20、30、60、90和120天后的物理稳定性进行研究。为了验证理论假设,研究了基于四氯化碳(CCl 4)引起的急性肝损伤的药代动力学和药效学研究。结果表明,获得了窄粒径分布的纳米胶束,其平均粒径为82.99±7.5nm,ζ电势为-32.23±1.05 mV。在药物动力学方面,与对照组相比,GL-SDC / PL-MMs在AUC 0-t',C max和其他药物动力学参数方面显示出显着优势。在药效学研究中,与联苯双酯对照组相比,GL-SDC / PL-MMs在减少丙氨酸氨基转移酶(ALT),天冬氨酸氨基转移酶(AST)和改善肝组织病理变化方面显示出同等效果。这些结果表明,SDC / PL-MMs可以增强胃肠道中的GL吸收和治疗CCl 4引起的急性肝损伤的药效学作用,SDC / PL-MMs可能是口服口服生物利用度低的药物的好选择。 GL。

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