Gopalakrishnan Umarevathi, Felicita A Sumathi, Mahendra Lodd, Kanji Masroor Ahmed, Varadarajan Saranya, Raj A Thirumal, Feroz Shaikh Mohammed Abdul, Mehta Deepak, Baeshen Hosam Ali, Patil Shankargouda
Department of Orthodontics, Sri Venkateswara Dental College and Hospital, Chennai, India.
Department of Orthodontics, Saveetha Dental College, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, India.
Front Bioeng Biotechnol. 2021 Mar 15;9:631103. doi: 10.3389/fbioe.2021.631103. eCollection 2021.
Systematic review assessing the association between oral microorganisms and corrosion of intra-oral metallic alloy-based dental appliances. PubMed, Scopus, and Web of Science were searched using keyword combinations such as microbes and oral and corrosion; microbes and dental and corrosion; microorganisms and oral and corrosion; microorganisms and dental and corrosion. Out of 141 articles, only 25 satisfied the selection criteria. s, sulfate-reducing bacteria, sulfate oxidizing bacteria, Veilonella, Actinomyces, were found to have a potential association with corrosion of intraoral metallic alloys such as stainless steel, titanium, nickel, cobalt-chromium, neodymium-iron-boron magnets, zirconia, amalgam, copper aluminum, and precious metal alloys. The included studies inferred an association between oral microorganisms and intra-oral metallic alloys-based dental appliances, although, it is vital to acknowledge that most studies in the review employed an simulation of the intra-oral condition.
评估口腔微生物与口腔内金属合金基牙科器械腐蚀之间关联的系统评价。使用“微生物与口腔与腐蚀”“微生物与牙科与腐蚀”“微生物与口腔与腐蚀”“微生物与牙科与腐蚀”等关键词组合在PubMed、Scopus和Web of Science数据库中进行检索。在141篇文章中,只有25篇符合入选标准。发现硫还原菌、硫氧化菌、韦荣球菌、放线菌等与不锈钢、钛、镍、钴铬、钕铁硼磁体、氧化锆、汞合金、铜铝和贵金属合金等口腔内金属合金的腐蚀可能存在关联。纳入的研究推断口腔微生物与口腔内金属合金基牙科器械之间存在关联,不过,必须承认的是,该评价中的大多数研究采用的是口腔内状况的模拟。