Faculty of Materials Science and Ceramics, AGH University of Science and Technology, Mickiewicza Av. 30, 30-058 Krakow, Poland.
Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences, Niezapominajek 8, 30-239 Krakow, Poland.
Int J Mol Sci. 2023 Aug 30;24(17):13455. doi: 10.3390/ijms241713455.
In this work, the influence of the liquid phase composition on the physicochemical properties of double hybrid-type bone substitutes was investigated. The solid phase of obtained biomicroconcretes was composed of highly reactive α-tricalcium phosphate powder (α-TCP) and hybrid hydroxyapatite/chitosan granules (HA/CTS). Various combinations of disodium phosphate (NaHPO) solution and citrus pectin gel were used as liquid phases. The novelty of this study is the development of double-hybrid materials with a dual setting system. The double hybrid phenomenon is due to the interactions between polycationic polymer (chitosan in hybrid granules) and polyanionic polymer (citrus pectin). The chemical and phase composition (FTIR, XRD), setting times (Gillmore needles), injectability, mechanical strength, microstructure (SEM) and chemical stability in vitro were studied. The setting times of obtained materials ranged from 4.5 to 30.5 min for initial and from 7.5 to 55.5 min for final setting times. The compressive strength varied from 5.75 to 13.24 MPa. By incorporating citrus pectin into the liquid phase of the materials, not only did it enhance their physicochemical properties, but it also resulted in the development of fully injectable materials featuring a dual setting system. It has been shown that the properties of materials can be controlled by using the appropriate ratio of citrus pectin in the liquid phase.
本工作研究了液相组成对双杂交型骨替代物理化性能的影响。所得生物微混凝土的固相由高反应性α-磷酸三钙粉末(α-TCP)和混合羟磷灰石/壳聚糖颗粒(HA/CTS)组成。采用不同组合的磷酸二氢钠(NaHPO)溶液和柑橘果胶凝胶作为液相。本研究的新颖之处在于开发了具有双重凝固体系的双杂交材料。双杂交现象是由于多阳离子聚合物(杂交颗粒中的壳聚糖)与多阴离子聚合物(柑橘果胶)之间的相互作用所致。研究了化学和相组成(FTIR、XRD)、凝固时间(Gillmore 针)、可注射性、机械强度、微观结构(SEM)和体外化学稳定性。所得材料的初始凝固时间为 4.5-30.5 分钟,最终凝固时间为 7.5-55.5 分钟。抗压强度为 5.75-13.24 MPa。通过将柑橘果胶引入材料的液相中,不仅增强了它们的理化性能,还开发出了具有双重凝固体系的完全可注射材料。结果表明,可以通过在液相中使用适当比例的柑橘果胶来控制材料的性能。