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STRO-1+牙髓干细胞的分化潜能在细胞传代过程中发生变化。

Differentiation potential of STRO-1+ dental pulp stem cells changes during cell passaging.

作者信息

Yu Jinhua, He Huixia, Tang Chunbo, Zhang Guangdong, Li Yuanfei, Wang Ruoning, Shi Junnan, Jin Yan

机构信息

Institute of Stomatology, Nanjing Medical University, Nanjing, Jiangsu 210029, China.

出版信息

BMC Cell Biol. 2010 May 8;11:32. doi: 10.1186/1471-2121-11-32.

Abstract

BACKGROUND

Dental pulp stem cells (DPSCs) can be driven into odontoblast, osteoblast, and chondrocyte lineages in different inductive media. However, the differentiation potential of naive DPSCs after serial passaging in the routine culture system has not been fully elucidated.

RESULTS

DPSCs were isolated from human/rat dental pulps by the magnetic activated cell sorting based on STRO-1 expression, cultured and passaged in the conventional culture media. The biological features of STRO-1+ DPSCs at the 1st and 9th passages were investigated. During the long-term passage, the proliferation ability of human STRO-1+ DPSCs was downregulated as indicated by the growth kinetics. When compared with STRO-1+ DPSCs at the 1st passage (DPSC-P1), the expression of mature osteoblast-specific genes/proteins (alkaline phosphatase, bone sialoprotein, osterix, and osteopontin), odontoblast-specific gene/protein (dentin sialophosphoprotein and dentin sialoprotein), and chondrocyte-specific gene/protein (type II collagen) was significantly upregulated in human STRO-1+ DPSCs at the 9th passage (DPSC-P9). Furthermore, human DPSC-P9 cells in the mineralization-inducing media presented higher levels of alkaline phosphatase at day 3 and day 7 respectively, and produced more mineralized matrix than DPSC-P9 cells at day 14. In vivo transplantation results showed that rat DPSC-P1 cell pellets developed into dentin, bone and cartilage structures respectively, while DPSC-P9 cells can only generate bone tissues.

CONCLUSIONS

These findings suggest that STRO-1+ DPSCs consist of several interrelated subpopulations which can spontaneously differentiate into odontoblasts, osteoblasts, and chondrocytes. The differentiation capacity of these DPSCs changes during cell passaging, and DPSCs at the 9th passage restrict their differentiation potential to the osteoblast lineage in vivo.

摘要

背景

牙髓干细胞(DPSCs)在不同的诱导培养基中可被诱导分化为成牙本质细胞、成骨细胞和软骨细胞谱系。然而,在常规培养系统中连续传代后的原始DPSCs的分化潜能尚未完全阐明。

结果

基于STRO-1表达,通过磁激活细胞分选从人/大鼠牙髓中分离出DPSCs,并在传统培养基中进行培养和传代。研究了第1代和第9代STRO-1+ DPSCs的生物学特性。在长期传代过程中,人STRO-1+ DPSCs的增殖能力如生长动力学所示被下调。与第1代STRO-1+ DPSCs(DPSC-P1)相比,第9代人STRO-1+ DPSCs(DPSC-P9)中成骨细胞特异性成熟基因/蛋白(碱性磷酸酶、骨涎蛋白、osterix和骨桥蛋白)、成牙本质细胞特异性基因/蛋白(牙本质涎磷蛋白和牙本质涎蛋白)以及软骨细胞特异性基因/蛋白(II型胶原)的表达显著上调。此外,在矿化诱导培养基中,人DPSC-P9细胞在第3天和第7天分别呈现出更高水平的碱性磷酸酶,并且在第14天比DPSC-P9细胞产生更多的矿化基质。体内移植结果表明,大鼠DPSC-P1细胞团分别发育成牙本质、骨和软骨结构,而DPSC-P9细胞仅能生成骨组织。

结论

这些发现表明,STRO-1+ DPSCs由几个相互关联的亚群组成,它们可自发分化为成牙本质细胞、成骨细胞和软骨细胞。这些DPSCs的分化能力在细胞传代过程中发生变化,并且第9代DPSCs在体内将其分化潜能限制为成骨细胞谱系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7662/2877667/7aecb1bc2953/1471-2121-11-32-1.jpg

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