首页> 外文期刊>Stem cells and development >Transplantation of Human Dental Pulp-Derived Stem Cells or Differentiated Neuronal Cells from Human Dental Pulp-Derived Stem Cells Identically Enhances Regeneration of the Injured Peripheral Nerve
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Transplantation of Human Dental Pulp-Derived Stem Cells or Differentiated Neuronal Cells from Human Dental Pulp-Derived Stem Cells Identically Enhances Regeneration of the Injured Peripheral Nerve

机译:从人牙髓衍生的干细胞移植人牙牙髓衍生的干细胞或分化的神经元细胞相同地增强了受伤周围神经的再生

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Human dental mesenchymal stem cells isolated from the dental follicle, pulp, and root apical papilla of extracted wisdom teeth have been known to exhibit successful and potent neurogenic differentiation capacity. In particular, human dental pulp-derived stem cells (hDPSCs) stand out as the most prominent source for in vitro neuronal differentiation. In this study, to evaluate the in vivo peripheral nerve regeneration potential of hDPSCs and differentiated neuronal cells from DPSCs (DF-DPSCs), a total of 1x10(6) hDPSCs or DF-hDPSCs labeled with PKH26 tracking dye and supplemented with fibrin glue scaffold and collagen tubulization were transplanted into the sciatic nerve resection (5-mm gap) of rat models. At 12 weeks after cell transplantation, both hDPSC and DF-hDPSC groups showed notably increased behavioral activities and higher muscle contraction forces compared with those in the non-cell transplanted control group. In immunohistochemical analysis of regenerated nerve specimens, specific markers for angiogenesis, axonal fiber, and myelin sheath increased in both the cell transplantation groups. Pretransplanted labeled PKH26 were also distinctly detected in the regenerated nerve tissues, indicating that transplanted cells were well-preserved and differentiated into nerve cells. Furthermore, no difference was observed in the nerve regeneration potential between the hDPSC and DF-hDPSC transplanted groups. These results demonstrate that dental pulp tissue is an excellent stem cell source for nerve regeneration, and in vivo transplantation of the undifferentiated hDPSCs could exhibit sufficient and excellent peripheral nerve regeneration potential.
机译:已知从牙卵泡,纸浆和根顶部乳头分离的人体牙科间充质干细胞已知提取的智齿牙齿的牙齿,表现出成功和有效的神经源性分化能力。特别是,人牙髓衍生的干细胞(HDPSC)被作为体外神经元分化的最突出的来源。在本研究中,评估HDPSCS的体内周神经再生电位和来自DPSCS(DF-DPSCS)的分化的神经元细胞,总共1×10(6)HDPSC或DF-HDPSC,标有PKH26跟踪染料,并补充有纤维蛋白胶水支架将胶原蛋白水排移植到大鼠模型的坐骨神经切除(5毫米间隙)中。在细胞移植后12周,与非细胞移植对照组的那些相比,HDPSC和DF-HDPSC组两种HDPSC和DF-HDPSC基团显示出显着增加的行为活动和较高的肌肉收缩力。在再生神经标本的免疫组织化学分析中,两种细胞移植组中的血管生成,轴突纤维和髓鞘的特异性标志物增加。在再生神经组织中也清楚地检测到预翻透的标记的pKH26,表明移植的细胞被保存完全并分化为神经细胞。此外,在HDPSC和DF-HDPSC移植组之间的神经再生电位中没有观察到差异。这些结果表明,牙髓组织是神经再生的优异干细胞源,并且在未分化的HDPSC的体内移植中可以表现出充分且优异的周围神经再生电位。

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