National Center for Scientific Research, Havana, Cuba.
J Mater Sci Mater Med. 2012 Feb;23(2):259-70. doi: 10.1007/s10856-011-4514-1. Epub 2011 Dec 27.
Coralline calcium-hydroxyapatite and calcium carbonate from Porites Porites coral were added to a polymeric matrix based on polyvinyl acetate (POVIAC(®)), to obtain a novel bone substitute composite as well as a system for the controlled drug (cephalexin) release. Composite samples with different compositions were characterized by physical-chemical and mechanical methods. Furthermore, the in vitro release profile of cephalexin and the kinetic behavior of its release from these composites were analyzed by appropriate mathematical models. It was shown that there is no chemical interaction between the inorganic filler and the polymer matrix, each conserving the original properties of the raw materials. The compressive mechanical strength and Young modulus of the composite with 17.5% of POVIAC(®), has better mechanical properties than those of cancellous bone. The variation of POVIAC(®) content can affect the cephalexin release kinetic in the composite. The cephalexin release mechanism from the composites can be considered as the result of the joint contribution of a prevailing Fickian diffusion and of polymer chain relaxation. It was also demonstrated that cephalexin is occluded inside the composites and not on their surface.
珊瑚礁来源的珊瑚钙-羟基磷灰石和碳酸钙被添加到聚醋酸乙烯酯(PVA)基聚合物基质中,以获得一种新型的骨替代复合材料以及一种用于控制药物(头孢氨苄)释放的系统。通过物理化学和机械方法对具有不同组成的复合材料进行了表征。此外,通过适当的数学模型分析了头孢氨苄的体外释放曲线以及其从这些复合材料中的释放动力学行为。结果表明,无机填料与聚合物基质之间没有化学相互作用,每种填料都保留了原材料的原始特性。在含有 17.5%PVA 的复合材料中,抗压机械强度和杨氏模量具有比松质骨更好的机械性能。PVA 含量的变化会影响复合材料中头孢氨苄的释放动力学。可以认为,从复合材料中释放头孢氨苄的机制是占主导地位的菲克扩散和聚合物链松弛共同作用的结果。还证明了头孢氨苄被包含在复合材料内部,而不是在其表面。