首页> 外文期刊>Cell transplantation >Gingival Mesenchymal Stem Cells Outperform Haploidentical Dental Pulp-derived Mesenchymal Stem Cells in Proliferation Rate, Migration Ability, and Angiogenic Potential
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Gingival Mesenchymal Stem Cells Outperform Haploidentical Dental Pulp-derived Mesenchymal Stem Cells in Proliferation Rate, Migration Ability, and Angiogenic Potential

机译:牙龈间充质干细胞优于寄生牙齿牙髓衍生的间充质干细胞的增殖率,迁移能力和血管生成潜力

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摘要

High donor variation makes comparison studies between different dental sources dubious. Dental tissues offer a rare opportunity for comparing the biological characteristics of haploidentical mesenchymal stem cells (MSCs) isolated from the same donor. The objective was to identify the optimal dental source of MSCs through a biological and functional comparison of haploidentical MSCs from gingival (GMSCs) and dental pulp stem cells (DPSCs) focusing mainly on their angiogenic potential. The comparison study included (1) surface markers expression, (2) mesodermal differentiation capacity (chondrogenic, adipogenic, and osteogenic), (3) proliferation, (4) migration potential, (5) ability to form colony units, and (6) angiogenic potential in vitro and in vivo. Comparative analysis showed no difference in the immunophenotypic profile nor for the trilineage differentiation potential. Proliferation of GMSCs was higher than DPSCs at day 6 (2.6-fold higher, P 0.05). GMSCs showed superior migratory capacity compared to DPSCs at 4, 8, and 12 h (2.1-, 1.5-, and 1.2-fold higher, respectively, P 0.05). Furthermore, GMSCs formed a higher number of colony units for both cell concentrations (1.7- and 1.4-fold higher for 150 and 250 starting cells, respectively, P 0.05). GMSCs showed an improved angiogenic capacity compared to DPSCs (total tube lengths 1.17-fold higher and 1.5-fold total loops, P 0.05). This was correlated with an enhanced release of vascular growth factor under hypoxic conditions. Finally, in the plug transplantation assay evaluating the angiogenesis in vivo, the DPSC and GMSC hemoglobin content was 3.9- and 4-fold higher, respectively, when compared to the control (Matrigel alone). GMSCs were superior to their haploidentical DPSCs in proliferation, migration, and angiogenic potentials. This study positions GMSCs in the forefront of dental cell sources for applications in regenerative medicine.
机译:高供体变异使不同牙齿来源之间的比较研究变得可疑。牙齿组织为比较从同一供体分离的单倍体相合间充质干细胞(MSC)的生物学特性提供了难得的机会。目的是通过对来自牙龈(GMSCs)和牙髓干细胞(DPSCs)的单倍体相合骨髓间充质干细胞(DPSCs)的生物学和功能比较,确定最佳的骨髓间充质干细胞来源。比较研究包括(1)表面标记物表达,(2)中胚层分化能力(软骨、脂肪和成骨),(3)增殖,(4)迁移潜力,(5)形成菌落单位的能力,以及(6)体外和体内血管生成潜力。比较分析显示,免疫表型和三线分化潜能均无差异。在第6天,GMSCs的增殖高于DPSCs(2.6倍,P;0.05)。与DPSCs相比,GMSCs在4小时、8小时和12小时的迁移能力更强(分别高出2.1倍、1.5倍和1.2倍,P;0.05)。此外,在两种细胞浓度下,GMSCs形成的菌落单位数量都较高(150和250个起始细胞分别高出1.7倍和1.4倍,P;0.05)。与DPSCs相比,GMSCs显示出更好的血管生成能力(总管长比DPSCs高1.17倍,总环长比DPSCs高1.5倍,P;0.05)。这与低氧条件下血管生长因子的释放增强有关。最后,在评估体内血管生成的塞式移植试验中,与对照组(单独使用Matrigel)相比,DPSC和GMSC血红蛋白含量分别高3.9倍和4倍。在增殖、迁移和血管生成潜能方面,GMSCs优于其单倍体相合的DPSCs。这项研究将GMSCs定位在再生医学中应用的牙科细胞源的前沿。

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