Matsuzaki Naoya, Yamamoto Yousuke, Murayama Daisuke, Katakawa Yoshifumi, Mimura Hisashi, Kimura Shin-Ichiro, Iwao Yasunori, Itai Shigeru
Analytical Research Laboratories, Technology, Astellas Pharma Inc.
Department of Pharmaceutical Engineering, School of Pharmaceutical Sciences, University of Shizuoka.
Chem Pharm Bull (Tokyo). 2017;65(5):478-486. doi: 10.1248/cpb.c16-00929.
Fixed dose combination tablets consisting of mirabegron (MB) and solifenacin succinate (SS) were developed and formulated into bilayer tablets in the current study. The results of a chemical stability study showed that the original formulation for the tablets led to a significant increase of unknown degradants in the SS layer. Two compatibility studies were conducted to simulate the interface between the MB and SS layers, and the results revealed that the degradants only formed in the presence of both active pharmaceutical ingredients (APIs), and that the presence of maltose in the SS layer was critical to inducing degradation. High resolution mass spectroscopy coupled with high performance liquid chromatography was used to determine the chemical structures of the degradants, which were identified to MB derivatives bearing one or two sugar units. These findings therefore suggested that the degradation of the API could be attributed to the addition of sugar units from maltose to MB under the acidic conditions caused by SS. With this in mind, we developed a new formulation by replacing maltose with hydroxypropyl cellulose as a polymer-type binder. The results showed that this formulation suppressed the formation of the degradants. The results of this study have shown that chemical degradation can occur at the interface of bilayer tablets and that an alternative strategy is available to formulate more stable MB/SS bilayer tablets.
在本研究中,开发了由米拉贝隆(MB)和琥珀酸索利那新(SS)组成的固定剂量复方片剂,并将其制成双层片剂。化学稳定性研究结果表明,片剂的原始配方导致SS层中未知降解产物显著增加。进行了两项相容性研究以模拟MB层和SS层之间的界面,结果表明降解产物仅在两种活性药物成分(API)同时存在时形成,并且SS层中麦芽糖的存在对于诱导降解至关重要。采用高分辨率质谱联用高效液相色谱法测定降解产物的化学结构,鉴定为带有一个或两个糖单元的MB衍生物。因此,这些发现表明API的降解可归因于在SS引起的酸性条件下麦芽糖的糖单元添加到MB上。考虑到这一点,我们通过用羟丙基纤维素替代麦芽糖作为聚合物型粘合剂开发了一种新配方。结果表明该配方抑制了降解产物的形成。本研究结果表明双层片剂界面可能发生化学降解,并且有另一种策略可用于制备更稳定的MB/SS双层片剂。