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首页> 外文期刊>BMC Cell Biology >Dental pulp pluripotent-like stem cells (DPPSC), a new stem cell population with chromosomal stability and osteogenic capacity for biomaterials evaluation
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Dental pulp pluripotent-like stem cells (DPPSC), a new stem cell population with chromosomal stability and osteogenic capacity for biomaterials evaluation

机译:牙髓多能干细胞(DPPSC),一种具有染色体稳定性和成骨能力的新型干细胞群体,可用于生物材料评估

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Background Biomaterials are widely used to regenerate or substitute bone tissue. In order to evaluate their potential use for clinical applications, these need to be tested and evaluated in vitro with cell culture models. Frequently, immortalized osteoblastic cell lines are used in these studies. However, their uncontrolled proliferation rate, phenotypic changes or aberrations in mitotic processes limits their use in long-term investigations. Recently, we described a new pluripotent-like subpopulation of dental pulp stem cells derived from the third molars (DPPSC) that shows genetic stability and shares some pluripotent characteristics with embryonic stem cells. In this study we aim to describe the use of DPPSC to test biomaterials, since we believe that the biomaterial cues will be more critical in order to enhance the differentiation of pluripotent stem cells. Methods The capacity of DPPSC to differentiate into osteogenic lineage was compared with human sarcoma osteogenic cell line (SAOS-2). Collagen and titanium were used to assess the cell behavior in commonly used biomaterials. The analyses were performed by flow cytometry, alkaline phosphatase and mineralization stains, RT-PCR, immunohistochemistry, scanning electron microscopy, Western blot and enzymatic activity. Moreover, the genetic stability was evaluated and compared before and after differentiation by short-comparative genomic hybridization (sCGH). Results DPPSC showed excellent differentiation into osteogenic lineages expressing bone-related markers similar to SAOS-2. When cells were cultured on biomaterials, DPPSC showed higher initial adhesion levels. Nevertheless, their osteogenic differentiation showed similar trend among both cell types. Interestingly, only DPPSC maintained a normal chromosomal dosage before and after differentiation on 2D monolayer and on biomaterials. Conclusions Taken together, these results promote the use of DPPSC as a new pluripotent-like cell model to evaluate the biocompatibility and the differentiation capacity of biomaterials used in bone regeneration.
机译:背景技术生物材料被广泛用于再生或替代骨组织。为了评估其在临床应用中的潜在用途,需要使用细胞培养模型在体外对其进行测试和评估。在这些研究中经常使用永生化的成骨细胞系。但是,它们不受控制的增殖速率,表型变化或有丝分裂过程中的畸变限制了它们在长期研究中的使用。最近,我们描述了来自第三磨牙(DPPSC)的牙髓干细胞的一种新的多能性亚群,它显示出遗传稳定性并与胚胎干细胞具有一些多能性特征。在这项研究中,我们旨在描述使用DPPSC来测试生物材料,因为我们认为生物材料的线索对于提高多能干细胞的分化将更为关键。方法将DPPSC分化为成骨细胞系的能力与人肉瘤成骨细胞系(SAOS-2)进行比较。胶原蛋白和钛用于评估常用生物材料中的细胞行为。通过流式细胞仪,碱性磷酸酶和矿化染色,RT-PCR,免疫组织化学,扫描电子显微镜,蛋白质印迹和酶活性进行分析。此外,通过短期比较基因组杂交(sCGH)评估和比较了分化前后的遗传稳定性。结果DPPSC表现出优异的分化能力,向成骨谱系分化,表达与SAOS-2类似的骨相关标记。当在生物材料上培养细胞时,DPPSC表现出更高的初始粘附水平。然而,它们的成骨分化在两种细胞类型中显示出相似的趋势。有趣的是,只有DPPSC在2D单层和生物材料上分化前后保持正常的染色体剂量。结论综上所述,这些结果促进了DPPSC作为一种新的多能样细胞模型的应用,以评估骨再生中使用的生物材料的生物相容性和分化能力。

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