Professor, Department of Prosthodontics, M R Ambedkar Dental College and Hospital, Bengaluru, Karnataka, India.
Private practice, Mawani Orthodontic Multispecialty Dental Clinic, Surat, Gujarat, India.
J Prosthet Dent. 2020 Jun;123(6):800-806.e6. doi: 10.1016/j.prosdent.2019.06.013. Epub 2019 Nov 5.
Occasional debonding between soft liners and denture base resin is common and limits the longevity of a relined prosthesis.
The purpose of this systematic review was to compare the bond strength of commercially available soft liners with that of polymethyl methacrylate (PMMA) and urethane dimethacrylate (UDMA) denture base resins after different surface treatments and thermocycling.
Searches were performed by 2 independent reviewers in the MEDLINE/PubMed and Cochrane Library databases from January 1990 to December 2018 to identify published journal articles related to this subject. Subsequently, a hand search was also carried out for all the articles mentioned in the references of the identified full articles.
A total of 61 articles were initially identified through database searches by the 2 reviewers. Twenty-four of the 61 articles met the inclusion criteria for qualitative analysis. Four of 6 articles showed that laser pretreatment of denture base resins increased their bonding to soft liners. Seven of 8 articles concluded that airborne-particle abrasion caused deterioration of the bonding between the liner and denture base resin. Four of 6 studies showed that acid etching, silica coating, primer or monomer application, and immersion in acetone or isobutyl methacrylate (iBMA) resulted in improved bond strengths between the liner and resin. One study reported that oxygen plasma treatment also resulted in improved bond strengths. Seven of 8 articles concluded that thermocycling resulted in decreased bond strengths.
Laser treatment, oxygen plasma pretreatment, primer or monomer application, and immersion in acetone or iBMA resulted in improved bonding of the denture base resin to soft liners. However, airborne-particle abrasion and thermocycling resulted in deterioration of the bond.
软衬材料与义齿基托树脂偶尔脱粘是常见的,这限制了修复体的使用寿命。
本系统评价的目的是比较不同表面处理和冷热循环后,市售软衬材料与聚甲基丙烯酸甲酯(PMMA)和聚氨酯二甲基丙烯酸酯(UDMA)义齿基托树脂的粘结强度。
两名独立评审员在 MEDLINE/PubMed 和 Cochrane 图书馆数据库中进行了检索,以查找与本主题相关的已发表期刊文章,检索时间从 1990 年 1 月至 2018 年 12 月。随后,还对已确定的全文参考文献中提到的所有文章进行了手工检索。
两名评审员通过数据库搜索共初步确定了 61 篇文章。61 篇文章中有 24 篇符合定性分析的纳入标准。4 篇文章显示,激光预处理义齿基托树脂可提高其与软衬材料的粘结性。8 篇文章中有 7 篇结论表明,喷砂处理会降低衬里与义齿基托树脂之间的粘结性。6 篇研究中有 4 篇表明酸蚀、硅烷涂层、底涂剂或单体应用以及浸泡在丙酮或异丁基甲基丙烯酸酯(iBMA)中会提高衬里与树脂之间的粘结强度。一项研究报告称,氧等离子体处理也会导致粘结强度提高。8 篇文章中有 7 篇结论表明,冷热循环会导致粘结强度降低。
激光处理、氧等离子体预处理、底涂剂或单体应用以及浸泡在丙酮或 iBMA 中可提高义齿基托树脂与软衬材料的粘结性。然而,喷砂处理和冷热循环会导致粘结劣化。