Capacidad de sellado de biodentina y el agregado de trióxido mineral MTA en la reparación de perforación de furca. Revisión de literatura

Kiru Pub Date : 2018-10-27 DOI:10.24265/KIRU.2018.V15N4.07
S. Benavides, Alejandra Guallo, Yecenia Carrillo
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Abstract

Endodontic therapy seeks to maintain natural dentition's integrity in form function and aesthetics. Accidents during these procedures commonly occur which affect the prognosis of root canal treatment. A furcal perforation is a complication that refers to the mechanical or pathological communication between the pulp chamber and supporting ligament, in the lower area of the pulp chamber and leads to the worst result of the treatment. It can occur during the endodontic access or during the preparation of an intraradicular retainer, although it can also be due to caries lesions of root absorption. For long term success, perforations should be repaired as soon as possible with a biocompatible material any delay causes bacterial contamination and leads to complicated periodontal endodontic lesions. An ideal perforation repair material , should create an adequate seal, be biocompatible, not be affect by blood contamination, be a bactericide, radiopaque, induce bone formation and healing, induce mineralization, cementogenesis, facilite its manipulation and application. Various materials have been used to repair furcal perforations including MTA and Biodentine. The objective of this study is to carry out a review of the literature about the sealing capacity of MTA and Biodentine in the repair of furcal perforations. To reach this objective a bibliographic review is carried out in the leading odontological databases and magazines and articles are chosen according to their scientific validity their relationship with the topic and the year of publication wich stretches from 2009 to 2018.
生物牙本质和矿物三氧化二铁MTA骨料在修复熔炉穿孔中的密封能力。文献回顾
牙髓治疗旨在保持自然牙列在形态、功能和美观方面的完整性。这些手术过程中经常发生事故,影响根管治疗的预后。分叉穿孔是一种并发症,指的是髓室和支撑韧带之间在髓室下部区域的机械或病理连通,并导致最差的治疗结果。它可能发生在根管进入过程中或根内固定器的制备过程中,尽管它也可能是由于根吸收的龋齿损伤。为了获得长期成功,应尽快用生物相容性材料修复穿孔。任何延迟都会导致细菌污染,并导致复杂的牙周牙髓病变。理想的穿孔修复材料应具有足够的密封性、生物相容性、不受血液污染影响、杀菌剂、不透射线、诱导骨形成和愈合、诱导矿化、牙骨质形成、促进其操作和应用。各种材料已被用于修复毛发穿孔,包括MTA和生物牙本质。本研究的目的是对MTA和生物牙本质在修复牙龈穿孔中的密封能力的文献进行综述。为了实现这一目标,在领先的牙病数据库中进行了文献综述,并根据其科学有效性选择杂志和文章——它们与主题的关系以及2009年至2018年的出版年份。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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