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Viability and Stimulation of Human Stem Cells from the Apical Papilla (hSCAPs) Induced by Silicate-Based Materials for Their Potential Use in Regenerative Endodontics: A Systematic Review

机译:硅酸盐基材料诱导的根尖乳头(hSCAP)的人类干细胞的生存力和刺激及其在再生牙髓治疗中的潜在用途:系统综述

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摘要

Blood clot formation in the apical third of the root canal system has been shown to promote further root development and reinforcement of dentinal walls by the deposition of mineralized tissue, resulting in an advancement from traditional apexification procedures to a regenerative endodontic treatment (RET) for non-vital immature permanent teeth. Silicate-based hydraulic biomaterials, categorized as bioactive endodontic cements, emerged as bright candidates for their use in RET as coronal barriers, sealing the previously induced blood clot scaffold. Human stem cells from the apical papilla (hSCAPs) surviving the infection may induce or at least be partially responsible for the regeneration or repair shown in RET. The aim of this study is to present a qualitative synthesis of available literature consisting of in vitro assays which analyzed the viability and stimulation of hSCAPs induced by silicate-based hydraulic biomaterials. A systematic electronic search was carried out in Medline, Scopus, Embase, Web of Science, Cochrane and SciELO databases, followed by a study selection, data extraction, and quality assessment following the PRISMA protocol. In vitro studies assessing the viability, proliferation, and/or differentiation of hSCAPs as well as their mineralization potential and/or osteogenic, odontogenic, cementogenic and/or angiogenic marker expression in contact with commercially available silicate-based materials were included in the present review. The search identified 73 preliminary references, of which 10 resulted to be eligible for qualitative synthesis. The modal materials studied were ProRoot MTA and Biodentine. Both bioceramic materials showed significant positive results when compared to a control for hSCAP cell viability, migration, and proliferation assays; a significant up-regulation of hSCAP odontogenic/osteogenic marker (ALP, DSPP, BSP, Runx2, OCN, OSX), angiogenic growth factor (VEGFA, FIGF) and pro-inflammatory cytokine (IL-1α, IL-1β, IL-6, TNF-α) expression; and a significant increase in hSCAP mineralized nodule formation assessed by Alizarin Red staining. Commercially available silicate-based materials considered in the present review can potentially induce mineralization and odontogenic/osteogenic differentiation of hSCAPs, thus prompting their use in regenerative endodontic procedures.
机译:根管系统顶部三分之一处的血凝块形成已显示出通过矿化组织的沉积促进牙根壁进一步发展和增强的作用,从而导致传统的根尖化治疗技术发展为非牙髓性再生牙髓治疗(RET)。 -重要的未成熟恒牙。基于硅酸盐的水硬生物材料,被归类为具有生物活性的牙髓胶结物,成为在RET中用作冠状屏障的光明候选物,密封了先前诱发的血凝块支架。在感染后幸存的来自根尖乳头(hSCAP)的人类干细胞可能诱导RET再生或修复或至少部分负责。这项研究的目的是对现有文献进行定性综合,其中包括体外试验,该试验分析了由硅酸盐基水硬生物材料诱导的hSCAP的活力和刺激作用。在Medline,Scopus,Embase,Web of Science,Cochrane和SciELO数据库中进行了系统的电子搜索,然后按照PRISMA协议进行研究选择,数据提取和质量评估。评估hSCAPs的活力,增殖和/或分化以及它们的矿化潜力和/或与商购可得的硅酸盐基材料接触的成骨,成牙,牙本质和/或血管生成标志物表达的体外研究包括在本综述中。该搜索确定了73个初步参考文献,其中10个结果符合定性综合要求。研究的模态材料是ProRoot MTA和Biodentine。与hSCAP细胞活力,迁移和增殖分析的对照相比,两种生物陶瓷材料均显示出明显的阳性结果。 hSCAP牙源性/成骨标记物(ALP,DSPP,BSP,Runx2,OCN,OSX),血管生成生长因子(VEGFA,FIGF)和促炎性细胞因子(IL-1α,IL-1β,IL-6)显着上调,TNF-α)表达;茜素红染色可显着增加hSCAP矿化结节的形成。本综述中考虑的可商购的基于硅酸盐的材料可能潜在地诱导hSCAP的矿化和牙源性/成骨性分化,从而促使其在再生牙髓治疗程序中使用。

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