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Enhanced oral bioavailability and bioefficacy of phloretin using mixed polymeric modified self‐nanoemulsions

机译:使用混合聚合物改性自纳乳液增强了韧皮素的口服生物利用性和生物效率

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Phloretin (Ph) is a natural active ingredient with wide biological properties. However, its poor water‐solubility and low oral bioavailability limit the application significantly in functional food and drug. This study was to explore the mixed polymer Pluronic? F127 and P123 modified the different triglycerides (LCT, MCT, SCT) in self‐nanoemulsions (SNEs) for enhancing the oral bioavailability and bioefficacy of Ph. The SNEs were characterized in terms of physical property study, lipolysis study, pharmacokinetic study, and anti‐inflammatory effect. The water‐solubility of LCT‐Ph‐SNE increased 3000‐fold compared with Ph solution. Pharmacokinetic study of SNEs and other carriers (HP‐β‐CD, PVP) results indicated that LCT‐Ph‐SNE was 7.9‐fold more bioavailable compared with unformulated Ph. The anti‐inflammatory activity of LCT‐Ph‐SNE in vivo represented a 6.8‐fold enhancement compared with unformulated Ph. This novel SNE formulation may also be used for other poorly soluble ingredients with high loading capacity, which made a significant impact on functional food and drug.
机译:Phloretin(pH)是一种具有宽生物特性的天然活性成分。然而,其水溶性差和低口服生物利用度在功能性食品和药物中显着限制了应用。本研究是探索混合聚合物pluronic? F127和P123在自纳中乳液(SNES)中修饰了不同的甘油三酯(LCT,MCT,SCT),以增强口服生物利用度和pH的生物效率。SNES在物理性质研究,脂解性研究,药代动力学研究方面的特征表征,脂解性研究,抗-INOMORY效应。与pH溶液相比,LCT-pH-SNE的水溶性增加了3000倍。 SNES和其他载体(HP-β-CD,PVP)结果的药代动力学研究表明,与未装有的pH相比,LCT-PH-SNE比生物可利用者更高7.9倍。体内LCT-PH-SNE的抗炎活性代表A. 6.8倍的增强与未装有的pH值相比。这种新的SNE制剂也可用于具有高负载能力的其他差的可溶性成分,这对功能性食品和药物产生了重大影响。

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