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Bioactivity of Bioceramic Materials Used in the Dentin-Pulp Complex Therapy: A Systematic Review

机译:用于牙本质浆复合疗法的生物陶瓷材料的生物活性:系统评价

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摘要

Dentistry-applied bioceramic materials are ceramic materials that are categorized as bioinert, bioactive and biodegradable. They share a common characteristic of being specifically designed to fulfil their function; they are able to act as root canal sealers, cements, root repair or filling materials. Bioactivity is only attributed to those materials which are capable of inducing a desired tissue response from the host. The aim of this study is to present a systematic review of available literature investigating bioactivity of dentistry-applied bioceramic materials towards dental pulp stem cells, including a bibliometric analysis of such a group of studies and a presentation of the parameters used to assess bioactivity, materials studied and a summary of results. The research question, based on the PICO model, aimed to assess the current knowledge on dentistry-based bioceramic materials by exploring to what extent they express bioactive properties in in vitro assays and animal studies when exposed to dental pulp stem cells, as opposed to a control or compared to different bioceramic material compositions, for their use in the dentin-pulp complex therapy. A systematic search of the literature was performed in six databases, followed by article selection, data extraction, and quality assessment. Studies assessing bioactivity of one or more bioceramic materials (both commercially available or novel/experimental) towards dental pulp stem cells (DPSCs) were included in our review. A total of 37 articles were included in our qualitative review. Quantification of osteogenic, odontogenic and angiogenic markers using reverse transcriptase polymerase chain reaction (RT-PCR) is the prevailing method used to evaluate bioceramic material bioactivity towards DPSCs in the current investigative state, followed by alkaline phosphatase (ALP) enzyme activity assays and Alizarin Red Staining (ARS) to assess mineralization potential. Mineral trioxide aggregate and Biodentine are the prevalent reference materials used to compare with newly introduced bioceramic materials. Available literature compares a wide range of bioceramic materials for bioactivity, consisting mostly of in vitro assays. The desirability of this property added to the rapid introduction of new material compositions makes this subject a clear candidate for future research.
机译:牙科应用的生物陶瓷材料是分类为生物惰性,生物活性和可生物降解的陶瓷材料。它们具有共同设计的特定特征以实现其功能。它们能够用作根管封闭剂,水泥,牙根修复或填充材料。生物活性仅归因于能够从宿主诱导所需的组织反应的那些材料。这项研究的目的是对研究牙科应用生物陶瓷材料对牙髓干细胞的生物活性的现有文献进行系统综述,包括对这类研究的文献计量分析以及用于评估生物活性的参数的介绍。研究和结果摘要。该研究问题基于PICO模型,旨在通过探索在体外试验和动物研究中接触牙髓干细胞时它们在何种程度上表达生物活性,从而评估基于牙科的生物陶瓷材料的当前知识。对照或与不同的生物陶瓷材料组合物比较,以用于牙本质-纸浆复合疗法。在六个数据库中对文献进行系统的搜索,然后进行文章选择,数据提取和质量评估。评估一种或多种生物陶瓷材料(无论是市售的还是新颖的/实验性的)对牙髓干细胞(DPSCs)的生物活性的研究都包括在我们的综述中。我们的定性研究总共包括37篇文章。使用逆转录酶聚合酶链反应(RT-PCR)对成骨,牙源性和血管生成标记进行定量是目前用于评估目前研究状态下生物陶瓷材料对DPSC的生物活性的主要方法,随后是碱性磷酸酶(ALP)酶活性测定和茜素红染色(ARS)以评估矿化潜力。三氧化二矿骨料和Biodentine是用于与新引入的生物陶瓷材料进行比较的普遍参考材料。现有文献比较了多种生物陶瓷材料的生物活性,这些材料主要由体外测定组成。快速引入新材料组合物增加了该特性的可取性,使该主题成为未来研究的明确候选对象。

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