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Graphene Oxide Quantum Dots Promote Osteogenic Differentiation of Stem Cells from Human Exfoliated Deciduous Teeth via the Wnt/ β -Catenin Signaling Pathway

机译:石墨烯氧化物量子点通过WNT /β-Catenin信号通路促进干细胞从人脱落落叶的骨质发生分化

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Graphene oxide quantum dots (GOQDs) are a carbon nanomaterial with broad potential for application in the field of nanomaterial biomedicine. Stem cells from human exfoliated deciduous teeth (SHEDs) play an important role in tissue engineering and regenerative medicine. This study investigated the effects of GOQDs on SHED osteogenic differentiation. GOQDs were synthesized; then, the proliferation of SHEDs incubated in GOQDs at different concentrations was evaluated; and the live cells were observed. We observed that live SHEDs incubated in GOQDs emitted green fluorescence in the absence of chemical dyes, and 1, 10, and 50? μ g/mL GOQDs significantly promoted SHED proliferation. Culture with the osteogenic induction medium containing 10? μ g/mL GOQDs induced calcium nodule formation, increased alkaline phosphatase (ALP) activity, and upregulated SHED mRNA and protein levels of OCN, RUNX2, COL I, and β -catenin. With the addition of Dickkopf 1 (DKK-1) or β - catenin knockdown, expression levels of the above mRNAs and proteins were decreased in GOQD-treated SHEDs. In summary, at a concentration of 10? μ g/mL, GOQDs promote SHED proliferation and osteogenic differentiation via the Wnt/ β -catenin signaling pathway. This work provides new ideas and fundamental information on interactions between GOQDs and SHEDs that are relevant for the biomedical engineering field.
机译:石墨烯氧化物量子点(GOQDS)是一种碳纳米材料,具有广泛的应用在纳米材料生物医学领域中的应用。来自人剥落的落叶牙齿(棚)的干细胞在组织工程和再生医学中起重要作用。本研究调查了GOQDS对血清成骨分化的影响。 Goqds被合成;然后,评估在不同浓度下在GOQDS中孵育的血液的增殖;并且观察到活细胞。我们观察到,在没有化学染料的情况下,在GoQDS中孵育的Live Sheds在没有化学染料的绿色荧光,1,10和50? μg/ ml GOQD显着促进血液增殖。培养含有10的成骨诱导培养基? μg/ ml GOQDS诱导钙结节形成,增加碱性磷酸酶(ALP)活性,以及​​UPN,RONX2,COL I和β-CATENIN的上调血液水平。随着Dickkopf 1(DKK-1)或β - catenin敲低的添加,在GoQD处理的血液中,上述MRNA和蛋白质的表达水平降低。总之,以10的浓度? μg/ ml,GOIQDS通过Wnt /β-Catenin信号传导途径促进Shed增殖和成骨分化。这项工作提供了关于与生物医学工程领域相关的GoQDS和Sheds之间的相互作用的新思路和基本信息。

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