Carlos Estrela, Luciano Tavares Angelo Cintra, Marco Antônio Hungaro Duarte, Giampiero Rossi-Fedele, Giulio Gavini, Manoel Damião Sousa-Neto
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The reflective analysis of the particularities of the chemical elements of these materials, considering the tissue and antibacterial mechanism of action, allows a better understanding of the characteristics and similarities in their tissue responses. Calcium hydroxide paste remains the antibacterial substance of choice as intracanal dressing for the treatment of root canal system infections. Calcium silicate cements, including MTA, show a favorable biological response with the stimulation of mineralized tissue deposition in sealed areas when in contact with connective tissue. This is due to the similarity between the chemical elements, especially ionic dissociation, the potential stimulation of enzymes in tissues, and the contribution towards an alkaline environment due to the pH of these materials. The behavior of bioactive materials, especially MTA and the new calcium silicate cements in the biological sealing activity, has been shown to be effective. Contemporary endodontics has access to bioactive materials with similar properties, which can stimulate a biological seal in lateral and furcation root perforations, root-end fillings and root fillings, pulp capping, pulpotomy, apexification, and regenerative endodontic procedures, in addition to other clinical conditions.</p>","PeriodicalId":9211,"journal":{"name":"Brazilian dental journal","volume":"34 1","pages":"1-11"},"PeriodicalIF":0.0000,"publicationDate":"2023-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10027099/pdf/","citationCount":"0","resultStr":"{\"title\":\"Mechanism of action of Bioactive Endodontic Materials.\",\"authors\":\"Carlos Estrela, Luciano Tavares Angelo Cintra, Marco Antônio Hungaro Duarte, Giampiero Rossi-Fedele, Giulio Gavini, Manoel Damião Sousa-Neto\",\"doi\":\"10.1590/0103-6440202305278\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>A continuous search for bioactive materials capable of supporting the replacement of damaged pulp tissue, with effective sealing potential and biocompatibility, has represented the attention of studies over the last decades. 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引用次数: 0
摘要
在过去的几十年中,人们一直在寻找能够替代受损牙髓组织、具有有效密封性和生物相容性的生物活性材料,这也是研究的重点。本研究通过在 PUBMED/MEDLINE 上搜索有代表性的研究,以及在教科书中搜索与生物活性材料(氢氧化钙、三氧化物矿物质骨料 (MTA) 和硅酸钙水门汀)作用机制相关的文献,对文献进行了叙述性综述。考虑到组织和抗菌作用机制,对这些材料化学元素的特殊性进行反思性分析,可以更好地了解其组织反应的特点和相似性。氢氧化钙糊剂仍然是治疗根管系统感染的首选抗菌材料。包括 MTA 在内的硅酸钙水门汀在与结缔组织接触时会刺激矿化组织在密封区域沉积,从而显示出良好的生物反应。这是由于化学元素之间的相似性,特别是离子解离、对组织中酶的潜在刺激,以及这些材料的 pH 值对碱性环境的贡献。生物活性材料,尤其是 MTA 和新型硅酸钙水门汀在生物封闭活性方面的表现已被证明是有效的。当代牙髓病学可以使用具有类似特性的生物活性材料,这些材料可以在侧根和毛细根穿孔、根端充填和根充填、牙髓盖髓、牙髓切断、根尖化和再生牙髓手术以及其他临床情况下激发生物密封。
Mechanism of action of Bioactive Endodontic Materials.
A continuous search for bioactive materials capable of supporting the replacement of damaged pulp tissue, with effective sealing potential and biocompatibility, has represented the attention of studies over the last decades. This study involves a narrative review of the literature developed by searching representative research in PUBMED/MEDLINE and searches in textbooks associated with the mechanism of action of bioactive materials (calcium hydroxide, mineral trioxide aggregate (MTA), and calcium silicate cements). The reflective analysis of the particularities of the chemical elements of these materials, considering the tissue and antibacterial mechanism of action, allows a better understanding of the characteristics and similarities in their tissue responses. Calcium hydroxide paste remains the antibacterial substance of choice as intracanal dressing for the treatment of root canal system infections. Calcium silicate cements, including MTA, show a favorable biological response with the stimulation of mineralized tissue deposition in sealed areas when in contact with connective tissue. This is due to the similarity between the chemical elements, especially ionic dissociation, the potential stimulation of enzymes in tissues, and the contribution towards an alkaline environment due to the pH of these materials. The behavior of bioactive materials, especially MTA and the new calcium silicate cements in the biological sealing activity, has been shown to be effective. Contemporary endodontics has access to bioactive materials with similar properties, which can stimulate a biological seal in lateral and furcation root perforations, root-end fillings and root fillings, pulp capping, pulpotomy, apexification, and regenerative endodontic procedures, in addition to other clinical conditions.
期刊介绍:
Brazilian Dental Journal, publishes Full-Length Papers, Short Communications and Case Reports, dealing with dentistry or related disciplines and edited six times a year.