首页> 外文期刊>International Journal of Pharmaceutics >Improved self-assembled micelles based on supercritical fluid technology as a novel oral delivery system for enhancing germacrone oral bioavailability
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Improved self-assembled micelles based on supercritical fluid technology as a novel oral delivery system for enhancing germacrone oral bioavailability

机译:基于超临界流体技术的改进的自组装胶束作为一种新型口服递送系统,用于增强Germacrone口腔生物利用度

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The main objective of this study was to develop a novel self-assembled micelle system to improve the oral bioavailability of the water-insoluble and thermal instable germacrone (GEM). Micelles were prepared with an improved supercritical reverse phase evaporation (ISCRPE) method, and the thin-film hydration (TFH) method was used for comparison. Physicochemical characterization confirmed the nanospherical morphology of the micelles prepared by the ISCRPE method (GEM@SDL-SCF Micelles) had smaller particle size and greater encapsulation efficiency than that of the micelles prepared by the TFH method (GEM@SDL-THF Micelles). Dilution resistance and stability experiments were performed to assess the structural integrity. In vitro GEM release was analyzed by the dialysis diffusion method, and the micelle system showed sustained and cumulative release. Furthermore, the fluorescence results from the cellular uptake study revealed improved drug absorption of GEM since the green fluorescence intensity of C6@SDL-SCF Micelles were stronger than that of C6@SDL-TFH Micelles. The transcellular transport study showed a distinct increase in the apparent permeability coefficient (AP -> BL) in a Caco-2 cell transport model, and free GEM solution, GEM@SDL-TFH Micelles and GEM@SDL-SCF Micelles had permeability coefficients of 7.30 x 10(-6), 8.01 x 10(-6), and 10.57 x 10(-6) cm.s(-1), respectively. The pharmacokinetics study in Sprague-Dawley rats showed that the oral absorption capacity of the GEM@SDL-SCF Micelles was obviously enhanced, with a relative oral bioavailability of 298% and 147% compared with that of free GEM solution and GEM@SDL-TFH Micelles, respectively. The gastrointestinal safety assessment demonstrated that the micelles used in the experiment did not cause gastrointestinal toxicity. These results indicated that self-assembled micelles are promising nanocarriers aimed at enhancing the oral absorption of drugs with thermal sensitivity and low aqueous solubility, and micelles prepared by supercritical fluid (SCF) technology showed better performance than those prepared by the TFH method.
机译:本研究的主要目的是开发一种新型的自组装胶束系统,以改善水不溶性和热固化态生长(GEM)的口服生物利用度。用改善的超临界反相蒸发(ISCRPE)方法制备胶束,薄膜水合(TFH)方法用于比较。物理化学表征证实通过ISCRPE方法(GEM @ SDL-SCF胶束制备的胶束的纳米球形形貌具有比通过TFH方法(GEM @ SDL-THF胶束制备的胶束更大的粒径和更高的封装效率。进行稀释性和稳定性实验以评估结构完整性。通过透析扩散方法分析体外宝石释放,胶束系统显示持续和累积释放。此外,来自蜂窝摄取研究的荧光结果揭示了GROM的改善的药物吸收,因为C6 @ SDL-SCF胶束的绿色荧光强度比C6 -SDL-TFH胶束强度强。造细胞转运研究表明,CaCo-2细胞传输模型中表观渗透系数(AP - > BL)显着增加,自由造粒机,GEM @ SDL-TFH胶束和GEM @ SDL-SCF胶束具有渗透系数7.30 x 10(-6),8.01×10(-6)和10.57×10(-6)Cm.S(-1)。 Sprague-Dawley大鼠的药代动力学研究表明,GEM @ SDL-SCF胶束的口腔吸收能力明显增强,具有298%和147%的相对口服生物利用度,与游离宝石溶液和GEM @ SDL-TFH相比胶束分别。胃肠安全评估证明了实验中使用的胶束不会引起胃肠道毒性。这些结果表明,自组装胶束是有前途的纳米载体,旨在增强具有热敏感性和低水溶性的药物的口腔吸收,并且通过超临界流体(SCF)技术制备的胶束表现出比通过TFH方法制备的胶束表现出更好的性能。

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