Department of Biotechnology and Medical Engineering, National Institute of Technology, Rourkela, Odisha, 769008, India.
Int J Biol Macromol. 2017 Nov;104(Pt B):1946-1954. doi: 10.1016/j.ijbiomac.2017.04.055. Epub 2017 Apr 14.
The present work deals with the fabrication of chitosan composite scaffolds with controllable and predictable internal architecture for bone tissue engineering. Chitosan (CS) based composites were developed by varying montmorillonite (MMT) and hydroxyapatite (HA) combinations to fabricate macrospheric three dimensional (3D) scaffolds by direct agglomeration of the sintered macrospheres. The fabricated CS, CS/MMT, CS/HA and CS/MMT/HA 3D scaffolds were characterized for their physicochemical, biological and mechanical properties. The XRD and ATR-FTIR studies confirmed the presence of the individual constituents and the molecular interaction between them, respectively. The reinforcement with HA and MMT showed reduced swelling and degradation rate. It was found that in comparison to pure CS, the CS/HA/MMT composites exhibited improved hemocompatibility and protein adsorption. The sintering of the macrospheres controlled the swelling ability of the scaffolds which played an important role in maintaining the mechanical strength of the 3D scaffolds. The CS/HA/MMT composite scaffold showed 14 folds increase in the compressive strength when compared to pure CS scaffolds. The fabricated scaffolds were also found to encourage the MG 63 cell proliferation. Hence, from the above studies it can be concluded that the CS/HA/MMT composite 3D macrospheric scaffolds have wider and more practical application in bone tissue regeneration applications.
本工作致力于制备具有可控和可预测内部结构的壳聚糖复合支架,用于骨组织工程。通过改变蒙脱土(MMT)和羟基磷灰石(HA)的组合,制备了壳聚糖(CS)基复合材料,通过烧结微球的直接团聚来制造宏观三维(3D)支架。对制备的 CS、CS/MMT、CS/HA 和 CS/MMT/HA 3D 支架进行了物理化学、生物和机械性能的表征。XRD 和 ATR-FTIR 研究分别证实了各成分的存在和它们之间的分子相互作用。与纯 CS 相比,HA 和 MMT 的增强作用表现出较低的溶胀和降解速率。与纯 CS 相比,发现 CS/HA/MMT 复合材料表现出更好的血液相容性和蛋白质吸附能力。微球的烧结控制了支架的溶胀能力,这对维持 3D 支架的机械强度起着重要作用。与纯 CS 支架相比,CS/HA/MMT 复合支架的抗压强度增加了 14 倍。研究还发现,所制备的支架能够促进 MG-63 细胞的增殖。因此,从上述研究可以得出结论,CS/HA/MMT 复合 3D 宏观球型支架在骨组织再生应用中有更广泛和更实际的应用。