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表面稳定化坎地沙坦西酯纳米晶的研制,提高了溶解速率、跨 CaCo-2 的渗透速率和口服生物利用度。

Development of surface stabilized candesartan cilexetil nanocrystals with enhanced dissolution rate, permeation rate across CaCo-2, and oral bioavailability.

机构信息

Centre for Pharmaceutical Nanotechnology, Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), Sector 67, S. A. S. Nagar (Mohali), Punjab, 160062, India.

出版信息

Drug Deliv Transl Res. 2016 Oct;6(5):498-510. doi: 10.1007/s13346-016-0297-8.

Abstract

Candesartan cilexetil (CC), an ester prodrug of candesartan, is BCS class II drug with extremely low aqueous solubility limiting its oral bioavailability. The present research aimed to develop a nanocrystalline formulation of CC with improved saturation solubility in gastrointestinal fluids and thereby, exhibiting enhanced oral bioavailability. CC nanocrystals were prepared using a low energy antisolvent precipitation methodology. A combination of hydroxypropyl methylcellulose (HPMC) and Pluronic® F 127 (50:50 w/w) was found to be optimum for the preparation of CC nanocrystals. The particle size, polydispersity index (PDI), and zeta potential of optimized formulation was found to be 159 ± 8.1 nm, 0.177 ± 0.043, and -23.7 ± 1.02 mV, respectively. Optimized formulation was found to possess irregular, plate-like morphology as evaluated by scanning electron microscopy and crystalline as evaluated by differential scanning calorimetry (DSC) and X-ray powder diffraction (XRPD). A significant increase in saturation solubility and dissolution rate of the optimized nanosuspension was observed at all the tested pH conditions. Optimized CC nanocrystals exhibited a storage stability of more than 3 months when stored under cold and room temperature conditions. In vitro Caco-2 permeability further revealed that CC nanocrystals exhibited nearly 4-fold increase in permeation rate compared to the free CC. In vivo oral bioavailability studies of optimized CC nanocrystals in murine model revealed 3.8-fold increase in the oral bioavailability and twice the C max as compared with the free CC when administered orally. In conclusion, this study has established a crystalline nanosuspension formulation of CC with improved oral bioavailability in murine model. Graphical Abstract Antisolvent precipitation methodology for the preparation of Candesartan Cilexetil nanocrystals for enhanced solubility and oral bioavailability.

摘要

坎地沙坦西酯(CC)是坎地沙坦的酯前药,属于 BCS 分类 II 类药物,其水溶性极低,限制了其口服生物利用度。本研究旨在开发一种坎地沙坦的纳米结晶制剂,以提高其在胃肠道液中的饱和溶解度,从而提高口服生物利用度。CC 纳米晶体采用低能量反溶剂沉淀法制备。发现羟丙基甲基纤维素(HPMC)和 Pluronic® F 127(50:50 w/w)的组合最适合制备 CC 纳米晶体。优化配方的粒径、多分散指数(PDI)和zeta 电位分别为 159±8.1nm、0.177±0.043 和-23.7±1.02mV。扫描电子显微镜评价结果表明,优化配方具有不规则、片状形态,差示扫描量热法(DSC)和 X 射线粉末衍射(XRPD)评价结果表明其具有结晶性。在所有测试的 pH 条件下,均观察到优化纳米混悬剂的饱和溶解度和溶解速率显著增加。优化的 CC 纳米晶体在冷藏和室温条件下储存 3 个月以上时,仍具有良好的储存稳定性。体外 Caco-2 渗透性进一步表明,与游离 CC 相比,CC 纳米晶体的渗透速率提高了近 4 倍。在小鼠体内口服生物利用度研究中,与口服游离 CC 相比,优化的 CC 纳米晶体的口服生物利用度提高了 3.8 倍,C max 提高了 2 倍。总之,本研究建立了一种提高坎地沙坦西酯在小鼠模型中口服生物利用度的结晶纳米混悬剂制剂。

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