Janini Ana Cristina Padilha, Bombarda Gabriela Fernanda, Pelepenko Lauter Eston, Marciano Marina Angélica
Department of Restorative Dentistry, School of Dentistry of Piracicaba, State University of Campinas, Sao Paulo 13083-970, Brazil.
Antibiotics (Basel). 2021 Jul 16;10(7):865. doi: 10.3390/antibiotics10070865.
Endodontic biomaterials have significantly improved dental treatment techniques in several aspects now that they can be used for vital pulp treatments, as temporary intracanal medication, in definitive fillings, in apical surgeries, and for regenerative procedures. Calcium silicate-based cement is a class of dental material that is used in endodontics in direct contact with the dental structures, connective tissue, and bone. Because the material interacts with biological tissues and stimulates biomineralization processes, its properties are of major importance. The main challenge in endodontic treatments is the elimination of biofilms that are present in the root canal system anatomical complexities, as it remains even after chemical-mechanical preparation and disinfection procedures. Thus, an additional challenge for these biomaterials is to exert antimicrobial activity while maintaining their biological properties in parallel. This article reviews the literature for studies considering the antimicrobial properties of calcium silicate-based dental biomaterials used in endodontic practice. Considering the reviewed studies, it can be affirmed that the reduced antimicrobial effect exhibited by calcium silicate-based endodontic materials clearly emphasizes that all clinical procedures prior to their use must be carefully performed. Future studies for the evaluation of these materials, and especially newly proposed materials, under poly-microbial biofilms associated with endodontic diseases will be necessary.
牙髓生物材料在多个方面显著改善了牙科治疗技术,因为它们可用于活髓治疗、作为根管内临时用药、用于最终充填、根尖手术以及再生程序。硅酸钙基水门汀是一类牙科材料,在牙髓病学中用于与牙齿结构、结缔组织和骨直接接触。由于该材料与生物组织相互作用并刺激生物矿化过程,其性能至关重要。牙髓治疗中的主要挑战是消除存在于根管系统解剖复杂性中的生物膜,因为即使经过化学机械预备和消毒程序后生物膜仍然存在。因此,这些生物材料的另一个挑战是在保持其生物学特性的同时发挥抗菌活性。本文综述了有关牙髓治疗中使用的硅酸钙基牙科生物材料抗菌性能的研究文献。考虑到所综述的研究,可以肯定的是,硅酸钙基牙髓材料表现出的抗菌效果降低清楚地表明,在使用它们之前的所有临床程序都必须谨慎进行。未来有必要对这些材料,尤其是新提出的材料,在与牙髓疾病相关的多微生物生物膜下进行评估研究。