Synthesis and Solid State Pharmaceutical Centre, School of Pharmacy and Pharmaceutical Sciences, Trinity College Dublin, College Green, Dublin 2, Ireland.
Pharm Res. 2017 Nov;34(11):2425-2439. doi: 10.1007/s11095-017-2250-z. Epub 2017 Sep 5.
To improve the pharmaceutical properties of amorphous ciprofloxacin (CIP) succinate salts via formulation as polymer/amorphous salt solid dispersions (ASSDs).
ASSDs consisting of an amorphous CIP/succinic acid 1:1 or 2:1 salt dispersed in PVP or Soluplus were produced by spray drying and ball milling. The solid state characteristics, miscibility, stability, solubility and passive transmembrane permeability of the ASSDs were then examined.
The ASSDs had higher glass transition and crystallization temperatures than the corresponding amorphous succinate salts, and were also more stable during long-term stability studies. The results of inverse gas chromatography and thermal analysis indicated that the salts and polymers form a miscible mixture. The solubility of the pure drug in water and biorelevant media was significantly increased by all of the formulations. The permeability of the ASSDs did not differ significantly from that of the amorphous CIP succinate salts, however all samples were less permeable than the pure crystalline drug.
The formulation of amorphous CIP succinate salts as ASSDs with polymer improved their long-term stability, but did not significantly affect their solubility or permeability.
通过将无定形环丙沙星(CIP)琥珀酸盐制成聚合物/无定形盐固体分散体(ASSD)来改善其药物性质。
通过喷雾干燥和球磨制备了由无定形 CIP/琥珀酸 1:1 或 2:1 盐分散在 PVP 或 Soluplus 中的 ASSD。然后检查了 ASSD 的固态特性、混溶性、稳定性、溶解度和被动跨膜渗透性。
ASSD 的玻璃化转变温度和结晶温度均高于相应的无定形琥珀酸盐,并且在长期稳定性研究中也更加稳定。反气相色谱和热分析的结果表明,盐和聚合物形成了可混溶的混合物。所有制剂均显著提高了纯药物在水中和生物相关介质中的溶解度。然而,ASSD 的渗透性与无定形 CIP 琥珀酸盐没有显著差异,但所有样品的渗透性均低于纯晶型药物。
将无定形 CIP 琥珀酸盐制成 ASSD 与聚合物的制剂改善了其长期稳定性,但对其溶解度或渗透性没有显著影响。