现代牙科复合材料的生物学方面。

Jan Tore Samuelsen, Jon E Dahl
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引用次数: 0

摘要

传统上,树脂基牙科复合材料的生物学评价是基于体外终点试验,采用不同的方法来确定暴露于材料或单体成分后细胞活力的丧失和细胞形态的变化。这些数据揭示了潜在的生物学效应,但这些数据的临床相关性有限。在牙科人员和患者中观察到阳性的过敏试验和对牙科单体的过敏临床反应。本综述的目的是针对暴露于树脂基复合材料引起的分子事件的最新研究,以便更好地了解潜在的临床不良反应。通过研究各种细胞培养模型中的谷胱甘肽耗竭、氧化应激、遗传毒性和免疫调节关键效应等参数,对牙科复合材料的生物学方面有了更准确的认识。使用基于组学的方法允许对甲基丙烯酸酯暴露引起的变化进行更广泛和非指定的搜索。在暴露于与临床暴露相关的单体浓度的细胞中观察到防御机制和适应。上述方法是改进测试策略的基础。大多数可用的体外终点试验的临床相关性对患者的相关性有限。分子机制的研究为甲基丙烯酸酯对暴露细胞的毒性提供了新的认识。利用这些机制研究的知识来开发标准化的体外生物相容性测试将有可能提高其临床相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biological aspects of modern dental composites.

Biological aspects of modern dental composites.

Biological aspects of modern dental composites.

Biological aspects of modern dental composites.

Biological evaluation of resin-based dental composites has traditionally been based on in vitro endpoint tests with different methods to determine loss of cell viability and cell morphology changes after exposure to the material or monomer constituents. The data reveals a potential for biological effects, but clinical relevance of such data is limited. Positive allergy tests and allergic clinical reactions to dental monomers are observed in dental personnel and patients. The aim of this review is to address newer research on molecular events caused by exposure to resin-based composites to have a better understanding of the potential for clinical adverse effects. A more accurate understanding of the biological aspects of dental composite materials has been found after studying parameters like glutathione depletion, oxidative stress, genotoxicity, and immunomodulatory key effects in various cell culture models. Using omics-based approaches allow for a broader and non-specified search of changes caused by methacrylate exposure. Defense mechanisms and adaption are observed in cells exposed to monomer concentrations relevant to clinical exposure. The above-mentioned methods are the foundations for modified testing strategies. The clinical relevance of most available in vitro endpoint tests is of limited relevance for the patient. Research focusing on molecular mechanisms has given new insight into methacrylate toxicity in exposed cells. Using this knowledge from mechanistic studies to develop standardized in vitro biocompatibility tests will likely improve their clinical relevance.

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