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Improvement of oral availability of ginseng fruit saponins by a proliposome delivery system containing sodium deoxycholate

机译:通过含脱氧胆酸钠的脂质体递送系统改善人参果皂苷的口服利用率

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摘要

Ginseng fruit saponins (GFS) extracted from the ginseng fruit are the bioactive triterpenoid saponin components. The aim of the present study was to develop a drug delivery system called proliposome using sodium deoxycholate (NaDC) as a bile salt to improve the oral bioavailability of GFS in rats. The liposomes of GFS were prepared by a conventional ethanol injection and formed the solid proliposomes (P-GFS) using spray drying method on mannitol carriers. The formulation of P-GFS was optimized using the response surface methodology. The physicochemical properties of liposome suspensions including encapsulation efficiency, in vitro drug release studies, particle size of the reconstituted liposome were tested. The solid state characterization studies using the method of Field emission-scanning electron microscope (FE-SEM), Fourier transform infrared (FT-IR) and Differential scanning colorimetric (DSC) were tested to study the molecular state of P-GFS and to indicate the interactions among the formulation ingredients. In vitro studies showed a delayed release of ginsenoside Re (GRe). In vivo studies were carried out in rats. The concentrations of GRe in plasma of rats and its pharmacokinetic behaviors after oral administration of GFS, Zhenyuan tablets (commercial dosage form of GFS) and P-GFS were studied using ultra performance liquid chromatography tandem mass spectrometry. It was founded that the GRe concentration time curves of GFS, Zhenyuan tablets and P-GFS were much more different in rats. Pharmacokinetic behaviors of P-GFS showed a second absorption peak on the concentration time curve. The pharmacokinetic parameters of GFS, Zhenyuan tablets, P-GFS in rats were separately listed as follows: T max 0.25 h, C max 474.96 ± 66.06 ng/ml and AUC0−∞ 733.32 ± 113.82 ng/ml h for GFS; T max 0.31 ± 0.043 h, C max 533.94 ± 106.54 ng/ml and AUC0−∞ 1151.38 ± 198.29 ng/ml h for Zhenyuan tablets; T max 0.5 h, C max 680.62 ± 138.051 ng/ml and AUC0−∞ 2082.49 ± 408.33 ng/ml h for the P-GFS. The bioavailability of P-GFS was nearly 284% and 181% of the GFS and Zhengyuan tablets respectively. In conclusion, the proliposomes significantly enhanced the drug bioavailability, absorption in the gastrointestinal tract and decreased its elimination time of GRe in rats and could be selectively applied for oral delivery of GFS.
机译:从人参果实中提取的人参果实皂苷(GFS)是具有生物活性的三萜类皂苷成分。本研究的目的是开发一种使用脱氧胆酸钠(NaDC)作为胆盐的药物递送系统,称为脂质体,以改善大鼠GFS的口服生物利用度。通过常规乙醇注射制备GFS的脂质体,并通过喷雾干燥法在甘露醇载体上形成固体前脂质体(P-GFS)。使用响应面方法对P-GFS的配方进行了优化。测试了脂质体悬浮液的物理化学特性,包括封装效率,体外药物释放研究,重构脂质体的粒径。使用场发射扫描电子显微镜(FE-SEM),傅立叶变换红外(FT-IR)和差示扫描比色法(DSC)进行了固态表征研究,以研究P-GFS的分子状态并指出配方成分之间的相互作用。体外研究显示人参皂甙Re(GRe)的延迟释放。在大鼠中进行了体内研究。采用超高效液相色谱串联质谱法研究了口服GFS,镇远片(GFS的商业剂型)和P-GFS后大鼠血浆中GRe的浓度及其药代动力学行为。结果表明,大鼠GFS,镇远片和P-GFS的GRe浓度时间曲线差异较大。 P-GFS的药代动力学行为在浓度时间曲线上显示出第二个吸收峰。 GFS,镇远片,P-GFS在大鼠中的药代动力学参数分别列出如下:GFS的T max 0.25 h,C max 474.96±66.06 ng / ml和AUC0-∞733.32±113.82 ng / ml h;镇远片的T max 0.31±0.043 h,C max 533.94±106.54 ng / ml和AUC0-∞1151.38±198.29 ng / ml h; P-GFS的T max 0.5 h,C max 680.62±138.051 ng / ml和AUC0-∞2082.49±408.33 ng / ml h。 P-GFS的生物利用度分别约为GFS和正源片的284%和181%。总之,前脂质体显着提高了大鼠的药物生物利用度,胃肠道吸收并减少了GRe的消除时间,可选择性地用于口服GFS。

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