Department of Chemistry IFM, University of Torino, Via P. Giuria 7, Torino, Italy; Department of Science and Technology of Pharmaceutics, University of Torino, Via P. Giuria 9, Torino, Italy.
Int J Pharm. 2013 Nov 1;456(1):95-100. doi: 10.1016/j.ijpharm.2013.08.012. Epub 2013 Aug 14.
Cyclodextrin nanosponges are solid, porous nanoparticulate three dimensional structures, have been used as delivery system of different drugs. In this work, new cyclodextrin-based nanosponges of calcium carbonate were prepared by polymer condensation method to release the calcium in controlled manner in the treatment of hyperphosphatemia as novel carriers. SEM measurements revealed their roughly spherical shape, porous nature and mean particle size of about 400 nm. Zeta potentials of the nanosponges were sufficiently high to obtain stable formulations. The encapsulation efficiencies of calcium in nanosponge formulations were found to be 81-95%. The moisture contents of the nanosponges were in the range of 0.1-0.7%. The optimized formulation produces enteric and controlled release kinetics of calcium in the management and treatment of hyperphosphatemia. It was also observed that calcium ions bound efficiently to free phosphate in a pH-dependent fashion especially at pH 7. In accelerated stability study no significant changes occurred in physical appearance, size and nature of drug in formulation for 3 months. The results of FTIR and DSC confirmed that calcium carbonate was encapsulated in nanosponges structure.
环糊精纳米海绵是一种固体、多孔的三维纳米结构,已被用作不同药物的递送系统。在这项工作中,通过聚合物缩合方法制备了新型碳酸钙基环糊精纳米海绵,以控制方式释放治疗高磷血症中的钙作为新型载体。SEM 测量显示其大致呈球形,具有多孔性和约 400nm 的平均粒径。纳米海绵的 Zeta 电位足够高,可以获得稳定的配方。纳米海绵制剂中钙的包封效率为 81-95%。纳米海绵的水分含量在 0.1-0.7%之间。优化的配方可产生肠溶性和控释动力学,用于管理和治疗高磷血症。还观察到钙离子以 pH 依赖性方式有效地与游离磷酸盐结合,尤其是在 pH 7 时。在加速稳定性研究中,在 3 个月内,制剂的物理外观、大小和药物性质没有发生显著变化。FTIR 和 DSC 的结果证实碳酸钙被包封在纳米海绵结构中。