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通过喷雾冷冻干燥设计高度多孔无定形塞来昔布颗粒可加速体内药物吸收。

Designing highly porous amorphous celecoxib particles by spray freeze drying leads to accelerated drug absorption in-vivo.

机构信息

Department of Pharmaceutics, Institute of Pharmacy, University of Bonn, Bonn, Germany.

PEPITE EA4267, University of Burgundy / Franche-Comté, Besançon, France.

出版信息

Eur J Pharm Biopharm. 2022 May;174:20-28. doi: 10.1016/j.ejpb.2022.03.007. Epub 2022 Mar 23.

Abstract

Poorly water-soluble drugs are still a major challenge to overcome in order to achieve sufficiently high oral bioavailability. Spray freeze drying (SFD) is proposed here as an alternative for the preparation of amorphous, free-flowing porous celecoxib spheres for enhanced drug dissolution. Tertiary butyl alcohol solutions of celecoxib + excipient (povidone, hydroxypropyl methylcellulose acetate succinate (HPMC-AS) and Soluplus®) at variable ratios were sprayed into a cooled spray tower, followed by vacuum freeze drying. Final porous particles were free-flowing, highly spherical (circularity ≥ 0.96) and mean diameters ranging from 210 to 800 µm, depending on excipient and drug content. XRPD measurements showed that Celecoxib was amorphous in all formulations and remained stable during 6 months storage. Kollidon 25 and HPMC-AS combinations resulted in the highest dissolution rates as well as dissolved drug amounts (30.4 ± 1.5 µg/ml and 41.8 ± 1.7 µg/ml) which in turn was 2-fold and 1.3-fold increase compared to film casted amorphous reference formulations, respectively. This phenomenon also translated into a faster onset of the drug absorption in-vivo, with significantly lower tmax values, while AUC values were non-significantly lowered compared to amorphous references. The high porosity of SFDs led to the advantageous accelerated dissolution which also translated into faster onset of absorption in-vivo.

摘要

为了实现足够高的口服生物利用度,水溶性差的药物仍然是一个需要克服的主要挑战。本文提出喷雾冷冻干燥(SFD)可作为制备无定形、自由流动多孔塞来提高药物溶解的替代方法。塞来昔布+赋形剂(聚乙烯吡咯烷酮、羟丙甲纤维素醋酸琥珀酸酯(HPMC-AS)和 Soluplus®)的叔丁醇溶液以不同比例喷雾到冷却的喷雾塔中,然后进行真空冷冻干燥。最终的多孔颗粒具有自由流动、高度球形(圆度≥0.96)的特点,平均粒径范围为 210-800µm,具体取决于赋形剂和药物含量。XRPD 测量表明,所有配方中的塞来昔布均为无定形,在 6 个月的储存期间保持稳定。共聚维酮 25 和 HPMC-AS 组合导致了最高的溶解速率和溶解药物量(30.4±1.5µg/ml 和 41.8±1.7µg/ml),与薄膜铸造的无定形参比制剂相比,分别增加了 2 倍和 1.3 倍。这一现象也转化为药物在体内吸收更快的开始,tmax 值显著降低,而 AUC 值与无定形参比制剂相比没有显著降低。SFD 的高孔隙率导致了有利的加速溶解,这也转化为体内吸收更快的开始。

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