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首页> 外文期刊>International Journal of Pharmaceutics >Solubility enhancement of BCS Class II drug by solid phospholipid dispersions: Spray drying versus freeze-drying
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Solubility enhancement of BCS Class II drug by solid phospholipid dispersions: Spray drying versus freeze-drying

机译:固体磷脂分散体提高BCS II类药物的溶解度:喷雾干燥与冷冻干燥

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摘要

The poor aqueous solubility of BCS Class II drugs represents a major challenge for oral dosage form development. Using celecoxib (CXB) as model drug, the current study adopted a novel solid phospholipid nanoparticle (SPLN) approach and compared the effect of two commonly used industrial manufacturing methods, spray- and freeze-drying, on the solubility and dissolution enhancement of CXB. CXB was formulated with Phospholipoid E80 (PL) and trehalose at different CXB: PL: trehalose ratios, of which 1: 10: 16 was the optimal formulation. Spherical amorphous SPLNs with average diameters <1 mu m were produced by spray- drying; while amorphous 'matrix'-like structures of solid PL dispersion with larger particle sizes were prepared by freeze-drying. Formulations from both methods significantly enhanced the dissolution rates, apparent solubility, and molecularly dissolved concentration of CXB in phosphate buffer (PBS, pH 6.5) and in biorelevant fasted state simulated intestinal fluid (FaSSIF, pH 6.5) (p < 0.05). While similar dissolution rates were found, the spray-dried SPLNs had a larger enhancement in apparent solubility (29- to 132-fold) as well as molecular solubility (18-fold) of CXB at equilibrium (p < 0.05). The strong capability of the spray-dried SPLNs to attain 'true' supersaturation state makes them a promising approach for bioavailability enhancement of poorly soluble drugs. (C) 2015 Elsevier B.V. All rights reserved.
机译:BCS II类药物的不良水溶性代表了口服剂型开发的主要挑战。以塞来昔布(CXB)为模型药物,当前的研究采用了一种新型的固体磷脂纳米颗粒(SPLN)方法,并比较了两种常用的工业制造方法(喷雾干燥和冷冻干燥)对CXB溶解度和溶解度的影响。 CXB由磷脂E80(PL)和海藻糖配制而成,其CXB:PL:海藻糖的比例不同,其中最佳比例为1:10:16。通过喷雾干燥生产平均直径<1μm的球形无定形SPLN。通过冷冻干燥制备了具有较大粒径的无定形“基质”状固体PL分散体。两种方法的配方均显着提高了CXB在磷酸盐缓冲液(PBS,pH 6.5)和与生物相关的禁食状态的模拟肠液(FaSSIF,pH 6.5)中的溶解速率,表观溶解度和分子溶解浓度(p <0.05)。尽管发现了相似的溶出度,但喷雾干燥的SPLN在平衡时CXB的表观溶解度(从29到132倍)和分子溶解度(从18倍)都有较大的提高(p <0.05)。喷雾干燥的SPLN具有达到“真正”过饱和状态的强大能力,使其成为提高难溶性药物生物利用度的有前途的方法。 (C)2015 Elsevier B.V.保留所有权利。

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