Li Xin, Jiang Qingwei, Du Lina, Li Ying, Li Miao
Pharmazie. 2014 Feb;69(2):109-16.
The aim of the present study was to develop the novel immediate-controlled release (ICR) tablets of isosorbide-5-mononitrate (5-ISMN) composed of an osmotic pump tablet core coated with an immediate-release layer. The novel ICR tablets of 5-ISMN could release drug quickly and continuously through a semi-permeable membrane (SPM) composed of ethylcellulose (EC)/polyethylene glycol (PEG) 4000 and cellulose acetate (CA)/PEG4000. Release tended to decrease with storage time. However, the drug release rates changed little for the SPM composed of EC/PVP K30. The weight loss test also confirmed these results. The major release mechanism was diffusion according to the Higuchi equation. The relative bioavailability of the ICR tablets compared to the reference formulation in the single and multiple dose regiments were 90.9 and 111.2%, respectively. They were both bioequivalent to the reference formulation. In vitro-in vivo correlation (IVIVC) studies demonstrated that the dissolution in vitro simulated the absorption in vivo well. In general, 5-ISMN ICR tablets composed of an osmotic pump tablet core and an immediate-release layer may be promising in providing immediate and constant drug delivery with minimum fluctuations during long storage time.
本研究的目的是研发新型的5-单硝酸异山梨酯(5-ISMN)速控释(ICR)片,该片剂由渗透泵片芯和速释层包衣组成。新型5-ISMN ICR片可通过由乙基纤维素(EC)/聚乙二醇(PEG)4000和醋酸纤维素(CA)/PEG4000组成的半透膜(SPM)快速持续释放药物。释放量倾向于随储存时间而降低。然而,由EC/PVP K30组成的SPM的药物释放速率变化很小。失重试验也证实了这些结果。根据Higuchi方程,主要释放机制为扩散。在单剂量和多剂量给药方案中,ICR片相对于参比制剂的相对生物利用度分别为90.9%和111.2%。它们均与参比制剂生物等效。体外-体内相关性(IVIVC)研究表明,体外溶出能很好地模拟体内吸收。总体而言,由渗透泵片芯和速释层组成的5-ISMN ICR片在长时间储存期间有望提供即时且恒定的药物递送,波动最小。