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Characterization in Vivo and in Vitro Evaluation of Solid Dispersion of Curcumin Containing d-α-Tocopheryl Polyethylene Glycol 1000 Succinate and Mannitol

机译:含有d-α-生育酚聚乙二醇1000琥珀酸酯和甘露醇的姜黄素固体分散体的体内表征和体外评估

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摘要

The aim of this study was to prepare a solid dispersion formulation of curcumin to enhance its solubility, dissolution rate, and oral bioavailability. The formulation was prepared with d-α-tocopheryl polyethylene glycol 1000 succinate (TPGS) and mannitol using solvent evaporation and freeze-drying methods, which yielded a solid dispersion composed of curcumin, TPGS, and mannitol at a ratio of 1:10:15 (w/w/w). The solubility and dissolution rate of the curcumin solid dispersion markedly improved compared with those of curcumin powder and a physical mixture of curcumin, TPGS, and mannitol. About 90% of the curcumin was released from the solid dispersion formulation within 10 min. After administering the formulation orally to rats, higher plasma concentrations of curcumin were observed, with increases in the maximum plasma concentration (Cmax) and area under the plasma concentration-time curve (AUC) of 86- and 65-fold, respectively, compared with those of curcumin powder. The solid dispersion formulation effectively increased intestinal permeability and inhibited P-gp function. These effects increased the anti-proliferative effect of curcumin in MDA-MB-231 breast cancer cells. Moreover, 2 h incubation with curcumin powder, solid dispersion formulation, and its physical mixture resulted in differential cytotoxic effect of paclitaxel in P-gp overexpressed LLC-PK1-P-gp and MDA-MB-231 cells through the inhibition of P-gp-mediated paclitaxel efflux. In conclusion, compared with curcumin, a solid dispersion formulation of curcumin with TPGS and mannitol could be a promising option for enhancing the oral bioavailability and efficacy of curcumin through increased solubility, dissolution rate, cell permeability, and P-gp modulation.
机译:这项研究的目的是制备姜黄素的固体分散制剂,以提高其溶解度,溶解速度和口服生物利用度。使用溶剂蒸发和冷冻干燥方法,使用d-α-生育酚聚乙二醇1000琥珀酸酯(TPGS)和甘露醇制备制剂,得到的姜黄素,TPGS和甘露醇比例为1:10:15的固体分散体(万维网)。与姜黄素粉末和姜黄素,TPGS和甘露醇的物理混合物相比,姜黄素固体分散体的溶解度和溶解速率显着提高。在10分钟内从固体分散体配方中释放出约90%的姜黄素。与大鼠口服后,观察到姜黄素的血浆浓度更高,最大血浆浓度(Cmax)和血浆浓度-时间曲线下面积(AUC)分别增加了86倍和65倍。姜黄素粉的那些。该固体分散体制剂有效地增加了肠通透性并抑制了P-gp功能。这些作用增强了姜黄素在MDA-MB-231乳腺癌细胞中的抗增殖作用。此外,用姜黄素粉,固体分散体制剂及其物理混合物孵育2小时,通过抑制P-gp,紫杉醇对P-gp过表达的LLC-PK1-P-gp和MDA-MB-231细胞的细胞毒性作用不同。介导的紫杉醇外排。总之,与姜黄素相比,具有TPGS和甘露醇的姜黄素固体分散体制剂可能是通过增加溶解度,溶解速率,细胞通透性和P-gp调节来增强姜黄素口服生物利用度和功效的有前途的选择。

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