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长效软性义齿衬里材料

Long-Term Soft Denture Lining Materials.

作者信息

Chladek Grzegorz, Żmudzki Jarosław, Kasperski Jacek

机构信息

Faculty of Mechanical Engineering, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, Gliwice 44-100, Poland.

Department of Prosthetic Dentistry, Medical University of Silesia, pl. Akademicki 17, Bytom 41-902, Poland.

出版信息

Materials (Basel). 2014 Aug 12;7(8):5816-5842. doi: 10.3390/ma7085816.

Abstract

Long-term soft denture lining (LTSDL) materials are used to alleviate the trauma associated with wearing complete dentures. Despite their established clinical efficacy, the use of LTSDLs has been limited due to the unfavorable effects of the oral environment on some of their mechanical and performance characteristics. The unresolved issue of LTSDL colonization by is particularly problematic. Silicone-based LTSDL (SLTSDL) materials, which are characterized by more stable hardness, sorption and solubility than acrylic-based LTSDLs (ALTSDLs), are currently the most commonly used LTSDLs. However, SLTSDLs are more prone to debonding from the denture base. Moreover, due to their limitations, the available methods for determining bond strength do not fully reflect the actual stability of these materials under clinical conditions. SLTSDL materials exhibit favorable viscoelastic properties compared with ALTSDLs. Furthermore, all of the lining materials exhibit an aging solution-specific tendency toward discoloration, and the available cleansers are not fully effective and can alter the mechanical properties of LTSDLs. Future studies are needed to improve the microbiological resistance of LTSDLs, as well as some of their performance characteristics.

摘要

长期软性义齿衬里(LTSDL)材料用于减轻佩戴全口义齿相关的创伤。尽管其临床疗效已得到证实,但由于口腔环境对其某些机械和性能特性产生不利影响,LTSDL的使用受到限制。LTSDL被 定植这一未解决的问题尤其棘手。硅酮基LTSDL(SLTSDL)材料比丙烯酸基LTSDL(ALTSDL)具有更稳定的硬度、吸附性和溶解性,是目前最常用的LTSDL。然而,SLTSDL更容易从义齿基托上脱粘。此外,由于其局限性,现有的测定粘结强度的方法不能完全反映这些材料在临床条件下的实际稳定性。与ALTSDL相比,SLTSDL材料表现出良好的粘弹性。此外,所有衬里材料在特定老化溶液中都有变色趋势,而且现有的清洁剂并不完全有效,还会改变LTSDL的机械性能。未来需要开展研究以提高LTSDL的抗微生物性及其一些性能特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7437/5456172/10716e9afdd4/materials-07-05816-g001.jpg

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