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含硅酸钙的结冷胶-壳聚糖诱导间充质基质细胞成骨分化

Calcium-Silicate-Incorporated Gellan-Chitosan Induced Osteogenic Differentiation in Mesenchymal Stromal Cells.

作者信息

Genasan Krishnamurithy, Mehrali Mohammad, Veerappan Tarini, Talebian Sepehr, Malliga Raman Murali, Singh Simmrat, Swamiappan Sasikumar, Mehrali Mehdi, Kamarul Tunku, Balaji Raghavendran Hanumantha Rao

机构信息

National Orthopaedic Centre of Excellence in Research and Learning (NOCERAL), Tissue Engineering Group (TEG), Department of Orthopaedic Surgery, Faculty of Medicine, University of Malaya, Kuala Lumpur 50603, Malaysia.

Faculty of Engineering Technology, Department of Thermal and Fluid Engineering (TFE), University of Twente, 7500 AE Enschede, The Netherlands.

出版信息

Polymers (Basel). 2021 Sep 22;13(19):3211. doi: 10.3390/polym13193211.

Abstract

Gellan-chitosan (GC) incorporated with CS: 0% (GC-0 CS), 10% (GC-10 CS), 20% (GC-20 CS) or 40% (GC-40 CS) / was prepared using freeze-drying method to investigate its physicochemical, biocompatible, and osteoinductive properties in human bone-marrow mesenchymal stromal cells (hBMSCs). The composition of different groups was reflected in physicochemical analyses performed using BET, FTIR, and XRD. The SEM micrographs revealed excellent hBMSCs attachment in GC-40 CS. The Alamar Blue assay indicated an increased proliferation and viability of seeded hBMSCs in all groups on day 21 as compared with day 0. The hBMSCs seeded in GC-40 CS indicated osteogenic differentiation based on an amplified alkaline-phosphatase release on day 7 and 14 as compared with day 0. These cells supported bone mineralization on GC-40 CS based on Alizarin-Red assay on day 21 as compared with day 7 and increased their osteogenic gene expression (RUNX2, ALP, BGLAP, BMP, and Osteonectin) on day 21. The GC-40 CS-seeded hBMSCs initiated their osteogenic differentiation on day 7 as compared with counterparts based on an increased expression of type-1 collagen and BMP2 in immunocytochemistry analysis. In conclusion, the incorporation of 40% (/) calcium silicate in gellan-chitosan showed osteoinduction potential in hBMSCs, making it a potential biomaterial to treat critical bone defects.

摘要

将结冷胶-壳聚糖(GC)与0%(GC-0 CS)、10%(GC-10 CS)、20%(GC-20 CS)或40%(GC-40 CS)的壳聚糖(CS)混合,采用冷冻干燥法制备,以研究其在人骨髓间充质基质细胞(hBMSCs)中的物理化学、生物相容性和骨诱导特性。使用BET、FTIR和XRD进行的物理化学分析反映了不同组的组成。扫描电子显微镜图像显示hBMSCs在GC-40 CS中附着良好。alamar蓝测定表明,与第0天相比,所有组中接种的hBMSCs在第21天的增殖和活力增加。接种在GC-40 CS中的hBMSCs在第7天和第14天与第0天相比,碱性磷酸酶释放增加,表明其发生了成骨分化。与第7天相比,基于第21天的茜素红测定,这些细胞在GC-40 CS上支持骨矿化,并在第21天增加了它们的成骨基因表达(RUNX2、ALP、BGLAP、BMP和骨连接蛋白)。与对照组相比,基于免疫细胞化学分析中Ⅰ型胶原蛋白和BMP2表达的增加,接种在GC-40 CS中的hBMSCs在第7天开始其成骨分化。总之,在结冷胶-壳聚糖中掺入40%(/)的硅酸钙在hBMSCs中显示出骨诱导潜力,使其成为治疗严重骨缺损的潜在生物材料。

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