Chongqing Key Laboratory of Oral Diseases and Biomedical Sciences, Stomatological Hospital of Chongqing Medical University, Chongqing 401147, P.R. China.
Chongqing Municipal Key Laboratory of Oral Biomedical Engineering of Higher Education College of Stomatology, College of Stomatology, Chongqing Medical University, Chongqing 400016, P.R. China.
Int J Med Sci. 2019 Apr 25;16(4):567-575. doi: 10.7150/ijms.30801. eCollection 2019.
Bone tissue engineering requires a combination of cells, efficient biochemical and physicochemical factors, and biocompatible scaffolds. In this study, we evaluated the potential use of injectable Matrigel as a scaffold for the delivery of rat dental follicle stem/precursor cells (rDFSCs) transduced by bone morphogenetic protein (BMP) 9 to enhance osteogenic differentiation and promote ectopic bone formation . Recombinant adenovirus was used to overexpress BMP9 in rDFSCs. Alkaline phosphatase activity was measured using a histochemical staining assay and a chemiluminescence assay kit. Quantitative real-time polymerase chain reaction was used to determine mRNA expression levels of bone-related genes including distal-less homeobox 5 (), osteopontin (), osterix (), and runt-related transcription factor 2 (). Matrix mineralization was examined by Alizarin Red S staining. rDFSCs proliferation was analyzed using the Cell Counting Kit-8 assay. Subcutaneous implantation of rDFSCs-containing Matrigel scaffolds was used, and micro-computed tomography analysis, histological evaluation, and trichrome staining of implants extracted at 6 weeks were performed. We found that BMP9 enhanced alkaline phosphatase activity and mineralization in rDFSCs. The expression of bone-related genes ( and ) was also increased as a result of BMP9 stimulation. Micro-computed tomography analysis and histological evaluation revealed that the bone masses retrieved from BMP9-overexpressing rDFSCs were significantly more pronounced in those with than in those without Matrigel. Our results suggest that BMP9 effectively promote osteogenic differentiation of rDFSCs, and Matrigel facilitate BMP9-induced osteogenesis of rDFSCs .
骨组织工程需要细胞、有效的生化和物理化学因素以及生物相容性支架的结合。在这项研究中,我们评估了可注射的 Matrigel 作为支架用于递送经骨形态发生蛋白 (BMP) 9 转导的大鼠牙囊干细胞/前体细胞 (rDFSCs),以增强成骨分化并促进异位骨形成。重组腺病毒用于过表达 rDFSCs 中的 BMP9。使用组织化学染色测定法和化学发光测定试剂盒测量碱性磷酸酶活性。使用定量实时聚合酶链反应测定骨相关基因包括远侧同源盒 5 ()、骨桥蛋白 ()、osterix ()和 runt 相关转录因子 2 ()的 mRNA 表达水平。通过茜素红 S 染色检查基质矿化。使用细胞计数试剂盒-8 测定 rDFSCs 增殖。进行了 rDFSCs 含 Matrigel 支架的皮下植入,对植入物在 6 周时进行微计算机断层扫描分析、组织学评估和三色染色。我们发现 BMP9 增强了 rDFSCs 的碱性磷酸酶活性和矿化。骨相关基因 ()的表达也因 BMP9 刺激而增加。微计算机断层扫描分析和组织学评估显示,从 BMP9 过表达 rDFSCs 中回收的骨量在有 Matrigel 的情况下比没有 Matrigel 的情况下明显更明显。我们的结果表明,BMP9 有效促进 rDFSCs 的成骨分化,Matrigel 促进 BMP9 诱导的 rDFSCs 成骨。