Novel Drug Delivery Systems and Biomaterial Department, Science Faculty, Iran Polymer and Petrochemical Institute, Tehran, Iran.
Department of Polymer Engineering and Color Technology, Amirkabir University of Technology, 424 Hafez Avenue, Tehran, Iran.
Int J Biol Macromol. 2019 Apr 15;127:396-405. doi: 10.1016/j.ijbiomac.2019.01.020. Epub 2019 Jan 6.
Enhancement of physical and mechanical properties of the scaffolds is achieved via various methods including cross-linking and incorporation of nano particles. In the present research chitosan-based scaffolds firstly were reinforced with the incorporation of the graphene oxide (GO) nanoparticles. The GO nanoparticles were synthesized from graphite successfully and were identified by TGA, XRD, SEM and FTIR analytical methods. Nanocomposite scaffolds based on chitosan with different percentages of the GO were prepared. The chitosan-GO nanocomposite scaffolds were then simultaneously sterilized and cross-linked in an autoclave and comprehensively characterized. In XRD measurements, the absence of the peak at 10° related to GO, is evidence that the GO layers are exfoliated. With increasing the GO concentration from 0 to 0.1, 0.2 and 0.3%, physical and mechanical properties were improved, considerably. Seeding of the human articular chondrocytes on the nanocomposite scaffolds showed an increased proliferation with augmentation of the GO percentage particularly in prolonged cultivation periods (14 days). Investigation of the human articular chondrocyte morphology revealed a more spherical morphology of the cells on the cross-linked scaffolds for 21 days of culture in vitro.
通过交联和纳米粒子掺入等各种方法来提高支架的物理和机械性能。在本研究中,首先通过掺入氧化石墨烯(GO)纳米粒子来增强壳聚糖基支架。GO 纳米粒子是从石墨成功合成的,并通过 TGA、XRD、SEM 和 FTIR 分析方法进行了鉴定。制备了基于壳聚糖的不同 GO 含量的纳米复合材料支架。壳聚糖-GO 纳米复合材料支架随后在高压釜中同时进行灭菌和交联,并进行了全面表征。在 XRD 测量中,与 GO 相关的 10°峰的缺失证明 GO 层被剥离。随着 GO 浓度从 0 增加到 0.1、0.2 和 0.3%,物理和机械性能得到了显著提高。将人关节软骨细胞接种到纳米复合材料支架上,随着 GO 百分比的增加(特别是在延长的培养期(14 天)),细胞增殖显著增加。对人关节软骨细胞形态的研究表明,在体外培养 21 天时,交联支架上的细胞呈现出更圆的形态。