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A Ciprofloxacin Extended Release Tablet Based on Swellable Drug Polyelectrolyte Matrices

机译:基于溶胀药物聚电解质基质的环丙沙星缓释片剂

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摘要

The aim of this work was the development of extended release tablets of 500 mg of ciprofloxacin based on swellable drug polyelectrolyte matrices (SDPM). A set of complexes of carbomer, ciprofloxacin and sodium, (CB–Cip)50Nax, having a molar ratio Cip/CB acid groups of 0.5 and variable proportions of Na+ was used to prepare SDPM. Characterization of complexes by FT-IR, powder X-ray diffraction and thermal analysis revealed that Cip, in its protonated form, is ionically bonded to the functional groups of CB. Rates of fluid uptake of (CB–Cip)50Nax matrices as well as Cip release in simulated gastric fluid were modulated by changes in the proportion of Na+ incorporated in the complexes. A direct correlation between fluid uptake and delivery rate was observed along the series of matrices. Release rates were modulated from 1.4 mg/min to 25 mg/min in going from (CB–Cip)50Na10 to (CB–Cip)50Na14. The analysis of kinetic data suggest that rates of swelling, ionic pair dissociation and drug diffusion play a role in the kinetic control of delivery. Complexes were satisfactorily prepared and processed together with small amounts of antiadherent and lubricant excipients to obtain a series of extended release SDPM tablets through the current tableting technology processes. Cip release from matrices was widely modulated by the composition of the complexes yielding a flexible system that allows selecting a composition that releases in 120 min 90% of the dose in simulated gastric fluid.
机译:这项工作的目的是开发基于可溶胀药物聚电解质基质(SDPM)的500 mg环丙沙星缓释片剂。使用卡波姆,环丙沙星和钠(CB–Cip)50Nax的一组配合物(Cip / CB酸基的摩尔比为0.5)和Na + 的比例可变来制备SDPM。通过FT-IR,粉末X射线衍射和热分析对络合物进行表征,发现质子化形式的Cip与CB的官能团离子键合。 (CB–Cip)50Nax基质的液体吸收速率以及模拟胃液中的Cip释放受复合物中Na + 比例变化的调节。沿一系列矩阵观察到流体吸收和输送速率之间存在直接关系。从(CB–Cip)50Na10到(CB–Cip)50Na14,释放速率从1.4 mg / min调整为25 mg / min。动力学数据分析表明,溶胀,离子对解离和药物扩散的速率在递送的动力学控制中起作用。令人满意地制备了复合物,并与少量的抗粘剂和润滑剂赋形剂一起加工,从而通过当前的压片技术工艺获得了一系列的缓释SDPM片剂。复合物的组成广泛地调节了Cip从基质的释放,从而产生了一个灵活的系统,该系统允许选择在120分钟内释放90%的模拟胃液剂量的组合物。

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