首页> 外文期刊>Stem cell research >Adenosine A1 receptor stimulation enhances osteogenic differentiation of human dental pulp-derived mesenchymal stem cells via WNT signaling - ScienceDirect
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Adenosine A1 receptor stimulation enhances osteogenic differentiation of human dental pulp-derived mesenchymal stem cells via WNT signaling - ScienceDirect

机译:腺苷A1受体刺激通过WNT信号增强人牙髓来源的间充质干细胞的成骨分化-ScienceDirect

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In this study, mesenchymal stem cells deriving from dental pulp (DPSCs) of normal human impacted third molars, previously characterized for their ability to differentiate into osteoblasts, were used. We observed that: i) DPSCs, undifferentiated or submitted to osteogenic differentiation, express all four subtypes of adenosine receptors (AR) and CD73, corresponding to 5′-ecto-nucleotidase; and ii) AR stimulation with selective agonists elicited a greater osteogenic cell differentiation consequent to A1 receptor (A1R) activation. Therefore, we focused on the activity of this AR. The addition of 15–60?nM 2-chloro-N6-cyclopentyl-adenosine (CCPA), A1R agonist, to DPSCs at each change of the culture medium significantly increased the proliferation of cells grown in osteogenic medium after 8?days in vitro (DIV) without modifying that of undifferentiated DPSCs. Better characterizing the effect of A1R stimulation on the osteogenic differentiation capability of these cells, we found that CCPA increased the: i) expression of two well known and early osteogenic markers, RUNX-2 and alkaline phosphatase (ALP), after 3 and 7?DIV; ii) ALP enzyme activity at 7?DIV and iii) mineralization of extracellular matrix after 21?DIV. These effects, abolished by cell pre-treatment with the A1R antagonist 8-cyclopentyl-1,3-dipropyl-xanthine (DPCPX), involved the activation of the canonical Wnt signaling as, in differentiating DPSCs, CCPA significantly increased dishevelled protein and inhibited glycogen synthase kinase-3β, both molecules being downstream of Wnt receptor signal pathway. Either siRNA of dishevelled or cell pre-treatment with Dickkopf-1, known inhibitor of Wnt signaling substantially reduced either DPSC osteogenic differentiation or its enhancement promoted by CCPA. Summarizing, our findings indicate that the stimulation of A1R may stimulate DPSC duplication enhancing their osteogenic differentiation efficiency. These effects may have clinical implications possibly facilitating bone tissue repair and remodeling.
机译:在这项研究中,使用了正常人感染的第三磨牙的牙髓(DPSCs)衍生的间充质干细胞,该细胞先前具有分化为成骨细胞的能力。我们观察到:i)未分化或已经历成骨分化的DPSC,表达腺苷受体(AR)和CD73的所有四个亚型,对应于5'-外切核苷酸酶; ii)由于A1受体(A1R)的激活,用选择性激动剂进行的AR刺激引起更大的成骨细胞分化。因此,我们专注于该AR的活动。在每次更换培养基时,向DPSCs中添加15-60?nM 2-氯-N6-环戊基腺苷(CCPA),A1R激动剂会显着增加成骨培养基中生长的细胞的体外增殖( DIV),而无需修改未分化的DPSC。我们更好地表征了A1R刺激对这些细胞的成骨分化能力的影响,我们发现CCPA增加了:i)3和7后两种众所周知的早期成骨标记物RUNX-2和碱性磷酸酶(ALP)的表达? DIV; ii)7?DIV时的ALP酶活性,以及​​iii)21?DIV后的细胞外基质矿化。这些作用通过用A1R拮抗剂8-环戊基-1,3-二丙基-黄嘌呤(DPCPX)进行细胞预处理而被取消,涉及经典Wnt信号的激活,因为在区分DPSC时,CCPA显着增加了衣衫不整的蛋白质并抑制了糖原合成酶激酶3β,两个分子都在Wnt受体信号通路的下游。已知的Wnt信号抑制剂Dickkopf-1的siRNA断裂或细胞预处理均可显着降低DPSC的成骨分化或CCPA促进的增强。总之,我们的发现表明,A1R的刺激可以刺激DPSC复制,从而增强其成骨分化效率。这些影响可能具有临床意义,可能促进骨组织的修复和重塑。

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