Department of Materials Engineering, Isfahan University of Technology, 84156-83111 Isfahan, Iran.
Department of Materials Engineering, Isfahan University of Technology, 84156-83111 Isfahan, Iran.
Int J Biol Macromol. 2022 Jun 1;209(Pt B):1801-1814. doi: 10.1016/j.ijbiomac.2022.04.152. Epub 2022 Apr 26.
Articular cartilage is an avascular connective tissue with a slow healing rate. Tissue engineering scaffolds can provide appropriate condition to stimulate the natural healing mechanism of the damaged tissue. In this study, the electrospun nanocomposite scaffolds based on polycaprolactone (PCL)-chitosan/carboxyl-functionalized multi-walled carbon nanotubes (MWCNTs) were fabricated with different concentrations of MWCNTs including 0.5 and 1 wt%. The samples were characterized in terms of morphology, porosity, physicochemical structure, hydrophilicity, tensile strength, bioactivity, biodegradation and cell response. The scaffold containing 0.5 wt% MWCNTs presented the lowest fiber diameter (99 ± 15 nm) and the highest tensile strength (33.81 ± 6.76 MPa) (p ≤ 0.05), which were considerable for electrospun structures. The porosity percentage of the scaffolds were maintained above 80% which is appropriate for tissue engineering. As the MWCNTs increased, the water contact angle decreased due to the increase in the hydrophilic carboxyl functional groups related to the MWCNTs. MWCNTs increased the crystallinity of the scaffold, leading to a more bioactivity and stability proportional to healing rate of a natural cartilage. Chondrocytes were well cultured on the scaffold containing MWCNTs and presented more cell viability compared to the sample without MWCNTs. The PCL-chitosan/0.5wt.%MWCNTs scaffold can be considered for supplemental studies in cartilage tissue engineering applications.
关节软骨是一种无血管的结缔组织,其愈合速度较慢。组织工程支架可以提供适当的条件来刺激受损组织的自然愈合机制。在这项研究中,制备了基于聚己内酯(PCL)-壳聚糖/羧基功能化多壁碳纳米管(MWCNTs)的不同 MWCNTs 浓度(包括 0.5 和 1wt%)的静电纺纳米复合支架。对样品进行了形态、孔隙率、物理化学结构、亲水性、拉伸强度、生物活性、生物降解和细胞反应等方面的表征。含有 0.5wt%MWCNTs 的支架具有最低的纤维直径(99±15nm)和最高的拉伸强度(33.81±6.76MPa)(p≤0.05),这对于静电纺丝结构来说是相当可观的。支架的孔隙率百分比保持在 80%以上,适用于组织工程。随着 MWCNTs 的增加,由于与 MWCNTs 相关的亲水性羧基官能团的增加,水接触角降低。MWCNTs 增加了支架的结晶度,从而提高了生物活性和稳定性,与自然软骨的愈合速度成正比。软骨细胞在含有 MWCNTs 的支架上得到了很好的培养,与不含 MWCNTs 的样品相比,细胞活力更高。PCL-壳聚糖/0.5wt.%MWCNTs 支架可考虑用于软骨组织工程应用的补充研究。