Abioye Amos Olusegun, Kola-Mustapha Adeola
a Leicester School of Pharmacy, De Montfort University , The Gateway , Leicester , United Kingdom.
Drug Dev Ind Pharm. 2016 Jan;42(1):39-59. doi: 10.3109/03639045.2015.1024684. Epub 2015 Mar 31.
The effect of electrostatic interaction between ibuprofen sodium (IbS) and cationic diethylaminoethyl dextran (Ddex), on the tableting properties and ibuprofen release from the conjugate tablet was investigated. Ibuprofen exhibits poor flow, compaction (tableting) and dissolution behavior due to its hydrophobic structure, high cohesive, adhesive and viscoelastic properties therefore it was granulated with cationic Ddex to improve its compression and dissolution characteristics. Electrostatic interaction and hydrogen bonding between IbS and Ddex was confirmed with FT-IR and DSC results showed a stepwise endothermic solid-solid structural transformation from racemic to anhydrous forms between 120 and 175 °C which melted into liquid form at 208.15 °C. The broad and diffused DSC peaks of the conjugate granules as well as the disappearance of ibuprofen melting peak provided evidence for their highly amorphous state. It was evident that Ddex improved the flowability and densification of the granules and increased the mechanical and tensile strengths of the resulting tablets as the tensile strength increased from 0.67 ± 0.0172 to 1.90 ± 0.0038 MPa with increasing Ddex concentration. Both tapping and compression processes showed that the most prominent mechanism of densification were particle slippage, rearrangement and plastic deformation while fragmentation was minimized. Ddex retarded the extent of dissolution in general, indicating potentials for controlled release formulations. Multiple release mechanisms including diffusion; anomalous transport and super case II transport were noted. It was concluded that interaction between ibuprofen sodium and Ddex produced a novel formulation with improved flowability, tableting and dissolution characteristics with potential controlled drug release characteristics dictated by Ddex concentration.
研究了布洛芬钠(IbS)与阳离子二乙氨基乙基葡聚糖(Ddex)之间的静电相互作用对共轭片剂的压片性能和布洛芬释放的影响。布洛芬由于其疏水结构、高内聚性、粘附性和粘弹性,表现出较差的流动性、压缩性(压片性)和溶解行为,因此将其与阳离子Ddex制粒以改善其压缩和溶解特性。FT-IR证实了IbS与Ddex之间的静电相互作用和氢键,DSC结果表明在120至175°C之间存在从外消旋形式到无水形式的逐步吸热固-固结构转变,在208.15°C时熔化为液体形式。共轭颗粒的宽而弥散的DSC峰以及布洛芬熔融峰的消失为它们的高度无定形态提供了证据。很明显,Ddex改善了颗粒的流动性和致密化,并提高了所得片剂的机械强度和拉伸强度,随着Ddex浓度的增加,拉伸强度从0.67±0.0172MPa增加到1.90±0.0038MPa。振实和压缩过程均表明,致密化的最主要机制是颗粒滑动、重排和塑性变形,而破碎最小化。一般来说,Ddex延缓了溶解程度,表明其具有用于控释制剂的潜力。观察到多种释放机制,包括扩散、异常转运和超级Ⅱ型转运。得出的结论是,布洛芬钠与Ddex之间的相互作用产生了一种新型制剂,具有改善的流动性、压片性和溶解特性,并具有由Ddex浓度决定的潜在控释特性。