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10-MDP Based Dental Adhesives: Adhesive Interface Characterization and Adhesive Stability—A Systematic Review

机译:基于10-MDP的牙科胶粘剂:胶粘剂界面表征和胶粘剂稳定性-系统评价

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摘要

The incorporation of functional monomers in dental adhesive systems promotes chemical interaction with dental substrates, resulting in higher adhesion forces when compared to micromechanical adhesion only. The 10-MDP monomer, whose chemical structure allows for a polar behavior which is favorable to adhesion, also promotes the protection of collagen fibers through the formation of MDP-calcium salts. This systematic review aimed to characterize the interface created by 10-MDP containing adhesive systems through an evaluation of the following parameters: Formation of nano-layered structures, capacity to produce an acid-base resistant zone, and adhesion stability. The research was conducted using PubMed, Cochrane Library, Web of Science and Embase, limited to English, Spanish, and Portuguese articles. The research was done according to the PICO strategy. The 10-MDP monomer has the capacity to produce an acid-base resistant zone on the adhesive interface, which increases the response to acid-base challenges. The adhesion established by these systems is stable over time. To have the best of these adhesive solutions, a scrubbing technique must be used to apply the adhesive system on dental substrates, in order to improve monomers infiltration and to create a stable bond. Time must be given for the solution to infiltrate, hybridize and form the MDP-Ca, improving adhesive stability.
机译:与仅微机械粘合相比,在牙科粘合剂体系中掺入功能单体可促进与牙科基材的化学相互作用,从而产生更高的粘合力。 10-MDP单体的化学结构允许极性行为,这有利于粘附,它还通过形成MDP-钙盐促进了胶原纤维的保护。该系统综述旨在通过评估以下参数来表征包含10-MDP的胶粘剂系统创建的界面:纳米层结构的形成,产生耐酸碱区域的能力以及胶粘稳定性。该研究是使用PubMed,Cochrane图书馆,Web of Science和Embase进行的,仅限于英语,西班牙语和葡萄牙语文章。根据PICO策略进行了研究。 10-MDP单体具有在粘合剂界面上产生耐酸碱区域的能力,从而增加了对酸碱挑战的响应。这些系统建立的附着力随时间推移是稳定的。为了获得最好的这些胶粘剂溶液,必须使用擦洗技术将胶粘剂体系施加到牙科基材上,以改善单体的渗透并建立稳定的粘结。必须留出一定的时间使溶液渗透,杂交并形成MDP-Ca,从而改善粘合稳定性。

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