首页> 外文期刊>Drug Design, Development and Therapy >Solutol ? HS15+pluronicF127 and Solutol ? HS15+pluronicL61 mixed micelle systems for oral delivery of genistein
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Solutol ? HS15+pluronicF127 and Solutol ? HS15+pluronicL61 mixed micelle systems for oral delivery of genistein

机译:Solutol? HS15 + pluronicF127和Solutol? HS15 + pluronicL61混合胶束系统,用于染料木黄酮的口服

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Purpose: We aimed to prepare two oral drug delivery systems consisting of polyoxyl 15 hydroxystearate (HS15) with pluronicF127 (F127) and HS15 with pluronicL61 (L61) to overcome the challenges of genistein’s poor oral bioavailability. This provides a good strategy for enhancing the potential value of genistein. Methods: We designed two binary mixed micelle systems employing the organic solvent evaporation method using surfactants (HS15, L61, and F127). Formulations (GEN-F and GEN-L) were characterized by transmission electron microscopy. Drug content analysis, including entrapment efficiency (EE%), drug loading (DL%), and the cumulative amount of genistein released from the micelles, was performed using HPLC. The permeability of optimum formulation was measured in Caco-2 cell monolayers, and the oral bioavailability was evaluated in SD rats. Results: The solutions of GEN-F and GEN-L were observed to be transparent and colorless. GEN-F had a lower EE% of 80.79±0.55% and a DL% of 1.69±0.24% compared to GEN-L, which had an EE% 83.40±1.36% and a DL% 2.26±0.18%. TEM results showed that the morphology of GEN-F and GEN-L was homogeneous and resembled a spherical shape. The dilution and storage conditions had no significant effect on particle size and EE%. Genistein demonstrated a sustained release behavior when encapsulated in micelles. Pharmacokinetics study showed that the relative oral bioavailability of GEN-F and GEN-L increased by 2.23 and 3.46 fold while also enhancing the permeability of genistein across a Caco-2 cell monolayer compared to that of raw genistein. Conclusion: GEN-F and GEN-L as a drug delivery system provide an effective strategy for enhancing and further realizing the potential value of GEN.
机译:目的:我们的目标是准备两种口服药物递送系统,其中包括由多羟基15羟基硬脂酸酯(HS15)和pluronicF127(F127)和具有15的pluronicL61(L61)组成的注射系统,以克服染料木黄酮口服生物利用度差的挑战。这提供了增强染料木黄酮潜在价值的良好策略。方法:我们使用表面活性剂(HS15,L61和F127)采用有机溶剂蒸发方法设计了两个二元混合胶束系统。通过透射电子显微镜表征制剂(GEN-F和GEN-L)。使用HPLC进行药物含量分析,包括包封率(EE%),药物载量(DL%)和从胶束释放的染料木黄酮的累积量。在Caco-2细胞单层中测量最佳制剂的通透性,并在SD大鼠中评估口服生物利用度。结果:观察到GEN-F和GEN-L溶液是透明无色的。与GEN-L的EE%83.40±1.36%和DL%2.26±0.18%相比,GEN-F的EE%为80.79±0.55%和DL%较低。 TEM结果表明,GEN-F和GEN-L的形态均匀,呈球形。稀释和储存条件对粒径和EE%无明显影响。金雀异黄素被包裹在胶束中时表现出持续释放的行为。药代动力学研究表明,与原始染料木黄酮相比,GEN-F和GEN-L的相对口服生物利用度提高了2.23和3.46倍,同时还增强了染料木黄酮在整个Caco-2细胞单层的通透性。结论:GEN-F和GEN-L作为药物递送系统为增强和进一步实现GEN的潜在价值提供了有效的策略。

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