Yang Qiang, Teng Bin-Hong, Wang Li-Na, Li Kun, Xu Chen, Ma Xin-Long, Zhang Yang, Kong De-Ling, Wang Lian-Yong, Zhao Yan-Hong
Department of Spine Surgery, Tianjin Hospital, Tianjin, People's Republic of China.
School and Hospital of Stomatology, Tianjin Medical University, Tianjin, People's Republic of China.
Int J Nanomedicine. 2017 Sep 11;12:6721-6733. doi: 10.2147/IJN.S141888. eCollection 2017.
A 3-D scaffold that simulates the microenvironment in vivo for regenerating cartilage is ideal. In this study, we combined silk fibroin and decellularized cartilage extracellular matrix by temperature gradient-guided thermal-induced phase separation to produce composite scaffolds (S/D). Resulting scaffolds had remarkable mechanical properties and biomimeticstructure, for a suitable substrate for attachment and proliferation of adipose-derived stem cells (ADSCs). Moreover, transforming growth factor β3 (TGF-β3) loaded on scaffolds showed a controlled release profile and enhanced the chondrogenic differentiation of ADSCs during the 28-day culture. The S/D scaffold itself can provide a sustained release system without the introduction of other controlled release media, which has potential for commercial and clinical applications. The results of toluidine blue, Safranin O, and immunohistochemical staining and analysis of collagen II expression showed maintenance of a chondrogenic phenotype in all scaffolds after 28-day culture. The most obvious phenomenon was with the addition of TGF-β3. S/D composite scaffolds with sequential delivery of TGF-β3 may mimic the regenerative microenvironment to enhance the chondrogenic differentiation of ADSCs in vitro.
一种能够模拟体内微环境以促进软骨再生的三维支架是理想的。在本研究中,我们通过温度梯度引导的热致相分离将丝素蛋白和脱细胞软骨细胞外基质结合起来,制备了复合支架(S/D)。所得支架具有显著的力学性能和仿生结构,是脂肪来源干细胞(ADSCs)附着和增殖的合适基质。此外,负载在支架上的转化生长因子β3(TGF-β3)呈现出可控的释放曲线,并在28天的培养过程中增强了ADSCs的软骨分化。S/D支架本身可以提供一个持续释放系统,无需引入其他控释介质,具有商业和临床应用潜力。甲苯胺蓝、番红O染色以及免疫组化染色和Ⅱ型胶原蛋白表达分析结果显示,所有支架在培养28天后均维持了软骨形成表型。最明显的现象是添加了TGF-β3之后。具有TGF-β3顺序递送功能的S/D复合支架可能模拟再生微环境,以增强体外ADSCs的软骨分化。