Chang Jui-Chih, Hsu Shan-Hui, Chen David C
Department of Life Sciences, National Chung Hsing University, Taichung, Taiwan, Republic of China.
Biomaterials. 2009 Oct;30(31):6265-75. doi: 10.1016/j.biomaterials.2009.07.064. Epub 2009 Aug 15.
The dynamic regulation of integrin-binding peptides is crucial for chondrogenic differentiation. Here, we revealed the feasibility for flexible modification of RGD by embedding a large molecular weight and slightly charged (isoelectric point, 6-6.25) RGD-chimeric protein (CBD-RGD) with cellulose-binding domain (CBD) in three dimensional (3D) alginate beads to evaluate the chondrogenesis of adipose-derived adult stem cells (ADAS). The binding of CBD-RGD with cells and its diffusion from alginate beads were studied on fluorescein isothiocyanate (FITC)-conjugated CBD-RGD. The increases in gene expression (Sox9, Aggrecan, fibronectin and collagen II), accumulation of chondrogenic matrices and decrease of collagen X gene expression during TGF-beta3 induction were only observed for those beads containing 10mg/g CBD-RGD initially, with 20.18+/-0.73% of that released in a week. The contrary was observed for beads with CBD-RGD 20mg/g initially and having higher persistence (only 8.6+/-2.17% released in a week). The 10mg/g CBD-RGD-mediated enhancement was demonstrated via the activation of integrin alpha5 and beta1-dependent pathway, and especially related to the upregulation of Sox9 gene and the temporary block of fibronectin expression as well as sustained inhibition of RhoA activity in the early differentiation stage. Thus, we speculated that the dynamic mobility of CBD-RGD may account for the enhanced chondrogenesis. It was concluded that the CBD-RGD-alginate culture system promoted the chondrogenesis of mesenchymal stem cells coordinated with TGF-beta3 induction in an RGD dose-dependent manner.
整合素结合肽的动态调节对软骨形成分化至关重要。在此,我们通过将具有纤维素结合结构域(CBD)的大分子量且带轻微电荷(等电点为6 - 6.25)的RGD嵌合蛋白(CBD - RGD)包埋在三维(3D)海藻酸钠珠中,揭示了对RGD进行灵活修饰以评估脂肪来源的成体干细胞(ADAS)软骨形成的可行性。利用异硫氰酸荧光素(FITC)偶联的CBD - RGD研究了CBD - RGD与细胞的结合及其从海藻酸钠珠中的扩散。仅在最初含有10mg/g CBD - RGD的那些珠子中观察到,在转化生长因子 - β3诱导过程中基因表达(Sox9、聚集蛋白聚糖、纤连蛋白和胶原蛋白II)增加、软骨形成基质积累以及胶原蛋白X基因表达降低,一周内释放量为20.18±0.73%。对于最初含有20mg/g CBD - RGD且具有更高持久性的珠子(一周内仅释放8.6±2.17%),观察到相反的情况。10mg/g CBD - RGD介导的增强作用通过整合素α5和β1依赖性途径的激活得以证明,尤其与早期分化阶段Sox9基因的上调、纤连蛋白表达的暂时阻断以及RhoA活性的持续抑制有关。因此,我们推测CBD - RGD的动态流动性可能是软骨形成增强的原因。得出的结论是,CBD - RGD - 海藻酸钠培养系统以RGD剂量依赖性方式促进间充质干细胞软骨形成并与转化生长因子 - β3诱导协同作用。