Yang Jie, He Ming-Tang, Huang Xun, Wang Qiu-Shi, Pi Jiang, Wang Hua-Jun, Rahhal Ali Hasan, Luo Si-Min, Zha Zhen-Gang
Institute of Orthopedic Diseases and Center for Joint Surgery and Sports Medicine, the First Affiliated Hospital, Jinan University, Guangzhou, 510630, People's Republic of China.
Longgang Orthopedics Hospital of Shenzhen, Shenzhen, People's Republic of China.
Nanoscale Res Lett. 2018 Oct 23;13(1):333. doi: 10.1186/s11671-018-2722-z.
Integrin β1 is known to be involved in differentiation, migration, proliferation, wound repair, tissue development, and organogenesis. In order to analyze the binding probability between integrin β1 ligand and cluster of differentiation 29 (CD29) receptors, atomic force microscopy (AFM) was used to detect native integrin β1-coupled receptors on the surface of human adipose-derived stem cells (hADSc). The binding probability of integrin β1 ligand-receptor interaction was probed by integrin β1-functionalized tips on hADSc during early chondrogenic differentiation at the two-dimensional cell culture level. Cell morphology and ultrastructure of hADSc were measured by AFM, which demonstrated that long spindled cells became polygonal cells with decreased length/width ratios and increased roughness during chondrogenic induction. The binding of integrin β1 ligand and CD29 receptors was detected by β1-functionalized tips for living hADSc. A total of 1200 curves were recorded at 0, 6, and 12 days of chondrogenic induction. Average rupture forces were, respectively, 61.8 ± 22.2 pN, 60 ± 20.2 pN, and 67.2 ± 22.0 pN. Rupture events were 19.58 ± 1.74%, 28.03 ± 2.05%, and 33.4 ± 1.89%, respectively, which demonstrated that binding probability was increased between integrin β1 ligand and receptors on the surface of hADSc during chondrogenic induction. Integrin β1 and the β-catenin/SOX signaling pathway were correlated during chondrogenic differentiation. The results of this investigation imply that AFM offers kinetic and visual insight into the changes in integrin β1 ligand-CD29 receptor binding on hADSc during chondrogenesis. Changes in cellular morphology, membrane ultrastructure, and the probability of ligand-transmembrane receptor binding were demonstrated to be useful markers for evaluation of the chondrogenic differentiation process.
已知整合素β1参与细胞分化、迁移、增殖、伤口修复、组织发育和器官形成。为了分析整合素β1配体与分化簇29(CD29)受体之间的结合概率,采用原子力显微镜(AFM)检测人脂肪来源干细胞(hADSc)表面的天然整合素β1偶联受体。在二维细胞培养水平上,通过整合素β1功能化探针检测早期软骨形成分化过程中hADSc上整合素β1配体-受体相互作用的结合概率。利用AFM测量hADSc的细胞形态和超微结构,结果表明,在软骨诱导过程中,长梭形细胞变成多边形细胞,长宽比降低,粗糙度增加。用β1功能化探针检测活hADSc上整合素β1配体与CD29受体的结合。在软骨诱导的0、6和12天共记录了1200条曲线。平均断裂力分别为61.8±22.2 pN、60±20.2 pN和67.2±22.0 pN。断裂事件分别为19.58±1.74%、28.03±2.05%和33.4±1.89%,这表明在软骨诱导过程中,hADSc表面整合素β1配体与受体之间的结合概率增加。在软骨形成分化过程中,整合素β1与β-连环蛋白/SOX信号通路相关。本研究结果表明,AFM为软骨形成过程中hADSc上整合素β1配体-CD29受体结合的变化提供了动力学和可视化见解。细胞形态、膜超微结构以及配体-跨膜受体结合概率的变化被证明是评估软骨形成分化过程的有用标志物。