Boateng Joshua, Okeke Obinna
School of Science, Faculty of Engineering and Science, University of Greenwich at Medway, Central Avenue, Chatham Maritime, Kent ME4 4TB, UK.
Pharmaceutics. 2019 Mar 1;11(3):104. doi: 10.3390/pharmaceutics11030104.
The functional physicochemical properties of nicotine (NIC)-loaded composite freeze-dried wafers and solvent-evaporated films comprising hydroxypropylmethylcellulose (HPMC) and sodium alginate (SA), stabilized with magnesium aluminium silicate (MAS), have been reported. The formulations were characterized for swelling capacity, mucoadhesion, in vitro drug dissolution properties in simulated saliva (SS) and PBS at pH 6.8, and ex vivo and in vitro permeation using pig buccal mucosa membrane and EpiOral buccal tissue culture, respectively; finally, the cell viability of the EpiOral tissues after contact with the NIC-loaded formulations was investigated using 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay and the functional characteristics compared with those of commercially available NIC strips. Swelling and NIC release from the HPMC⁻SA wafers were more prolonged (30 min) compared to the commercially available NIC strips which disintegrated rapidly and released the drug within 5 min. Generally, swelling, mucoadhesion, and drug release was faster in PBS than in SS, and the presence of MAS was essential for maintaining a high dose recovery compared to non-MAS formulations and commercial NIC strips, which showed lower percentage of NIC content, possibly due to evaporation during analysis. Permeation studies showed that the NIC released was able to cross both porcine buccal membrane and the EpiOral buccal tissue, with the latter showing higher permeation flux for all the formulations tested. All the NIC-loaded, MAS-stabilized formulations showed high tissue viability, with values above 80%, showing their great potential for use as buccal delivery platforms for NIC replacement therapy to aid smoking cessation.
据报道,含尼古丁(NIC)的复合冷冻干燥薄片和溶剂蒸发膜的功能物理化学性质,这些制剂由羟丙基甲基纤维素(HPMC)和海藻酸钠(SA)组成,并用硅酸镁铝(MAS)稳定。对这些制剂的溶胀能力、粘膜粘附性、在模拟唾液(SS)和pH 6.8的磷酸盐缓冲盐水(PBS)中的体外药物溶解特性,以及分别使用猪颊粘膜膜和口腔上皮颊组织培养进行的离体和体外渗透进行了表征;最后,使用3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐(MTT)测定法研究了与含NIC制剂接触后口腔上皮组织的细胞活力,并将其功能特性与市售NIC条进行了比较。与市售NIC条相比,HPMC⁻SA薄片的溶胀和NIC释放时间更长(30分钟),市售NIC条迅速崩解并在5分钟内释放药物。一般来说,PBS中的溶胀、粘膜粘附和药物释放比SS中更快,与不含MAS的制剂和市售NIC条相比,MAS的存在对于维持高剂量回收率至关重要,后者显示出较低的NIC含量百分比,可能是由于分析过程中的蒸发。渗透研究表明,释放的NIC能够穿过猪颊膜和口腔上皮颊组织,后者对所有测试制剂显示出更高的渗透通量。所有含NIC、MAS稳定的制剂均显示出高组织活力,值高于80%,表明它们作为NIC替代疗法的颊部给药平台以辅助戒烟具有巨大潜力。