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首页> 外文期刊>Biomaterials Research >Effect of alginate concentration on chondrogenesis of co-cultured human adipose-derived stem cells and nasal chondrocytes: a biological study
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Effect of alginate concentration on chondrogenesis of co-cultured human adipose-derived stem cells and nasal chondrocytes: a biological study

机译:藻酸盐浓度对共培养人脂肪干细胞和鼻软骨细胞软骨形成的生物学研究

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Background The three-dimensional (3D) system is one of the important factors to engineer a biocompatible and functional scaffold for the applications of cell-based therapies for cartilage repair. The 3D alginate hydrogels system has previously been shown to potentially promote chondrogenesis. The chondrocytic differentiation of co-cultured adipose-derived stem cells (ADSCs) and nasal chondrocytes (NCs) within alginate constructs are hypothesized to be influenced by concentration of alginate hydrogel. In this study, we evaluated the effects of alginate concentration on chondrogenic differentiation of ADSCs and NCs co-cultured in a biological approach. Method The co-cultured cells of 2:1 ADSCs-to-NCs ratio were encapsulated in alginate constructs in one of three concentrations (1.0%, 1.2% and 1.5%) and cultured under serum free conditions for 7?days. Cell viability, cell proliferation, immunohistochemical, gycosaminogylycans (GAG) synthesis, and gene expression were examined. Results Overall, the 1.2% alginate concentration group was relatively effective in chondrocytic differentiation in comparable to other groups. The cell morphology, cell viability, and cell proliferation revealed initial chondrogenic differentiation by the formation of cell clusters as well as the high permeability for exchange of solutes. The formation of newly synthesis cartilage-specific extracellular matrix in 1.2% group was demonstrated by positive immunohistochemical staining of collagen type II. The co-cultured cells in 1.2% group highly expressed COL II, ACP and SOX-9, compared to 1.0% and 1.5% groups, denote the retention of cartilaginous-specific phenotype by suppressing the undifferentiation stem cell markers of SOX-2 and OCT-4. The study showed 1.2% group was less likely to differentiate towards osteogenesis by downregulating hyperthrophy chondrocytic gene of COL X and osseous marker genes of OSC and OSP. Conclusion This study suggests that variations in the alginate concentration of co-cultured ADSCs and NCs influenced the chondrogenesis. The remarkable biological performance on chondrogenic differentiation in regulating the concentration of alginate 3D culture provides new insights into the cell cross-talk and demonstrates the effectiveness in regenerative therapies of cartilage defects in tissue engineering.
机译:背景技术三维(3D)系统是设计生物相容性和功能性支架以用于基于细胞的软骨修复疗法的重要因素之一。先前已显示3D海藻酸盐水凝胶系统潜在地促进软骨形成。假设藻酸盐构建物中共培养的脂肪干细胞(ADSC)和鼻软骨细胞(NC)的软骨分化可能受到藻酸盐水凝胶浓度的影响。在这项研究中,我们评估了藻酸盐浓度对通过生物学方法共培养的ADSC和NCs软骨分化的影响。方法将比例为2:1的ADSC与NC的共培养细胞以三种浓度(1.0%,1.2%和1.5%)之一封装在藻酸盐构建物中,并在无血清条件下培养7天。检查了细胞活力,细胞增殖,免疫组织化学,葡糖胺基聚糖(GAG)合成和基因表达。结果总体而言,与其他组相比,藻酸盐浓度为1.2%的组在软骨分化方面相对有效。细胞形态,细胞活力和细胞增殖显示出最初的软骨形成分化,其通过细胞簇的形成以及溶质交换的高渗透性来实现。 II型胶原蛋白的阳性免疫组织化学染色证实了1.2%组新合成的软骨特异性细胞外基质的形成。与1.0%和1.5%组相比,1.2%组的共培养细胞高表达COL II,ACP和SOX-9,这表明通过抑制SOX-2和OCT的未分化干细胞标记物保留了软骨特异性表型-4。研究表明1.2%的组通过下调COL X的肥大性软骨细胞基因和OSC和OSP的骨性标记基因来分化成骨的可能性较小。结论这项研究表明,共培养的ADSCs和NCs的藻酸盐浓度变化会影响软骨形成。在调节藻酸盐3D培养物浓度方面显着的软骨分化生物学性能为细胞串扰提供了新见识,并证明了组织工程中软骨缺损的再生治疗的有效性。

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