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Improving intestinal absorption and oral bioavailability of curcumin via taurocholic acid-modified nanostructured lipid carriers

机译:通过牛磺胆酸修饰的纳米结构脂质载体改善姜黄素的肠道吸收和口服生物利用度

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摘要

The expression of multiple receptors on intestinal epithelial cells enables an actively targeted carrier to significantly enhance the oral delivery of payloads. Conjugating the receptors’ ligands on the surfaces of a particulate-delivery system allows site-specific targeting. Here, we used taurocholic acid (TCA) as a ligand for uptake of nanostructured lipid carriers (NLCs) mediated by a bile-acid transporter to improve oral bioavailability of curcumin (Cur). First, synthesis of TCA–polyethylene glycol 100–monostearate (S100-TCA) was carried out. Then, the physical and chemical properties of S100-TCA-modified Cur-loaded NLCs (Cur-TCA NLCs) with varying levels of S100-TCA modifications were investigated. Small particle size (<150 nm), high drug encapsulation (>90%), drug loading (about 3%), negative ζ-potential (−7 to −3 mV), and sustained release were obtained. In situ intestinal perfusion studies demonstrated improved absorption rate and permeability coefficient of Cur-TCA NLCs. Depending on the degree of modification, Cur-TCA NLCs displayed about a five- to 15-fold higher area under the curve in rats after oral administration than unmodified Cur NLCs, which established that the addition of S100-TCA to the NLCs boosted absorption of Cur. Further investigations of TCA NLCs might reveal a bright future for effective oral delivery of poorly bioavailable drugs.
机译:肠上皮细胞上多种受体的表达使主动靶向的载体能够显着增强有效载荷的口服传递。在颗粒输送系统的表面上结合受体的配体可以实现针对特定部位的靶向。在这里,我们使用牛磺胆酸(TCA)作为吸收胆汁酸转运蛋白介导的纳米结构脂质载体(NLC)的配体,以改善姜黄素(Cur)的口服生物利用度。首先,进行了TCA-聚乙二醇100-单硬脂酸酯(S100-TCA)的合成。然后,研究了具有不同S100-TCA修饰水平的S100-TCA修饰的Cur-load NLC(Cur-TCA NLC)的物理和化学性质。获得了小粒径(<150 nm),高药物包封率(> 90%),药物载量(约3%),负ζ电位(-7至-3 mV)和持续释放。原位肠道灌注研究表明,Cur-TCA NLC的吸收率和渗透系数得到改善。根据修饰的程度,口服给药后,Cur-TCA NLCs在大鼠曲线下的面积比未修饰的Cur NLCs高约5至15倍,这表明在NLCs中添加S100-TCA可以促进吸收。姜黄素。对TCA NLC的进一步研究可能显示有效口服生物利用度较差的药物的广阔前景。

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