Yu Jinhua, Wang Yijing, Deng Zhihong, Tang Liang, Li Yuanfei, Shi Junnan, Jin Yan
Department of Endodontics, School of Stomatology, Fourth Military Medical University, Xi'an, Shaanxi, China.
Biol Cell. 2007 Aug;99(8):465-74. doi: 10.1042/BC20070013.
Although adult bone-marrow-derived cell populations have been used to make teeth when recombined with embryonic oral epithelium, the differences between dental and non-dental stem-cell-mediated odontogenesis remain an open question.
STRO-1(+) (stromal precursor cell marker) DPSCs (dental pulp stem cells) and BMSSCs (bone marrow stromal stem cells) were isolated from rat dental pulp and bone marrow respectively by magnetic-activated cell-sorting techniques. Their odontogenic capacity was compared under the same inductive microenvironment produced by ABCs (apical bud cells) from 2-day-old rat incisors. Co-cultured DPSCs/ABCs in vitro showed more active odontogenic differentiation ability than mixed BMSSCs/ABCs, as indicated by the accelerated matrix mineralization, up-regulated alkaline phosphatase activity, cell-cycle modification, and the expression of tooth-specific proteins and genes. After cultured for 14 days in the renal capsules of rat hosts, recombined DPSC/ABC pellets formed typical tooth-shaped tissues with balanced amelogenesis and dentinogenesis, whereas BMSSC/ABC recombinants developed into atypical dentin-pulp complexes without enamel formation. DPSC and BMSSC pellets in vivo produced osteodentin-like structures and fibrous connective tissues respectively.
DPSCs presented more striking odontogenic capability than BMSSCs under the induction of postnatal ABCs. This report provides critical insights into the selection of candidate cells for tooth regeneration between dental and non-dental stem cell populations.
尽管成年骨髓来源的细胞群体与胚胎口腔上皮重组后已被用于制造牙齿,但牙齿干细胞与非牙齿干细胞介导的牙发生之间的差异仍是一个悬而未决的问题。
通过磁激活细胞分选技术分别从大鼠牙髓和骨髓中分离出STRO-1(+)(基质前体细胞标志物)牙髓干细胞(DPSCs)和骨髓基质干细胞(BMSSCs)。在由2日龄大鼠切牙的根尖芽细胞(ABCs)产生的相同诱导微环境下比较它们的牙发生能力。体外共培养的DPSCs/ABCs显示出比混合的BMSSCs/ABCs更强的牙发生分化能力,表现为基质矿化加速、碱性磷酸酶活性上调、细胞周期改变以及牙齿特异性蛋白质和基因的表达。在大鼠宿主的肾囊中培养14天后,重组的DPSC/ABC微球形成了具有平衡釉质形成和牙本质形成的典型牙齿样组织,而BMSSC/ABC重组体则发育成无釉质形成的非典型牙髓-牙本质复合体。体内DPSC和BMSSC微球分别产生类骨牙本质结构和纤维结缔组织。
在出生后ABCs的诱导下,DPSCs表现出比BMSSCs更显著的牙发生能力。本报告为牙齿再生候选细胞在牙齿干细胞群体和非牙齿干细胞群体之间的选择提供了关键见解。