Kato Gabriel, Gomes Pedro Sousa, Neppelenbroek Karin Hermana, Rodrigues Cláudia, Fernandes Maria Helena, Grenho Liliana
Laboratory for Bone Metabolism and Regeneration, Faculty of Dental Medicine, University of Porto, 4200-393 Porto, Portugal.
LAQV/Requimte, University of Porto, 4100-007 Porto, Portugal.
Materials (Basel). 2023 Jan 3;16(1):450. doi: 10.3390/ma16010450.
Calcium silicate-based cements (CSCs) are endodontic materials widely used in vital pulp-capping approaches. Concerning the clinical application, the reduced set time and pre-mixed formulations are relevant characteristics during the operative management of pulpal exposure, aiming to optimise the work time and improve cross-infection/asepsis control. Additionally, clinical success seems to be greatly dependent on the biological performance of the materials that directly contact the living pulp. As such, this work approaches an integrative biological characterisation (i.e., antibacterial, irritation, and cytocompatibility assays) of three fast-setting CSCs-Biodentine, TotalFill BC RRM™ Fast Putty, and Theracal LC. These cements, after setting for 24 h, presented the expected topography and elemental composition (assessed by scanning electron microscopy, coupled with EDS analysis), in accordance with the information of the manufacturer. The set cements displayed a significant and similar antibiofilm activity against , in a direct contact assay. Twenty-four-hour eluates were not irritant in the standardised CAM assay, but elicited distinct dose- and time-dependent cytotoxicity profiles on fibroblastic cells-i.e., Biodentine was devoid of toxicity, TotalFill presented a slight dose-dependent initial toxicity that was easily overcome, and Theracal LC was deleterious at high concentrations. When compared to long-setting ProRoot MTA cement, which highlighted the pursued integrative approach, Biodentine presented a similar profile, but TotalFill and Theracal LC displayed a poorer performance regarding antibiofilm activity/cytocompatibility features, and Theracal LC suggested eventual safety concerns.
硅酸钙基水门汀(CSCs)是广泛应用于活髓盖髓术的牙髓材料。关于临床应用,缩短凝固时间和预混配方是牙髓暴露手术操作过程中的相关特性,旨在优化工作时间并改善交叉感染/无菌控制。此外,临床成功似乎在很大程度上取决于直接接触活髓的材料的生物学性能。因此,这项工作对三种快凝CSCs——BioDentine、TotalFill BC RRM™ Fast Putty和Theracal LC进行了综合生物学特性分析(即抗菌、刺激性和细胞相容性试验)。这些水门汀在凝固24小时后,根据制造商提供的信息,呈现出预期的形貌和元素组成(通过扫描电子显微镜结合能谱分析进行评估)。在直接接触试验中,凝固后的水门汀对[具体对象未给出]显示出显著且相似的抗生物膜活性。24小时洗脱液在标准化的鸡胚绒毛尿囊膜(CAM)试验中无刺激性,但对成纤维细胞引发了不同的剂量和时间依赖性细胞毒性特征——即BioDentine无毒性,TotalFill呈现出轻微的剂量依赖性初始毒性,很容易克服,而Theracal LC在高浓度时具有有害性。与突出了所追求的综合方法的慢凝ProRoot MTA水门汀相比,BioDentine呈现出相似的特征,但TotalFill和Theracal LC在抗生物膜活性/细胞相容性特征方面表现较差,并且Theracal LC表明存在最终的安全问题。