Zafar Muhammad Sohail
Department of Restorative Dentistry, College of Dentistry, Taibah University, Al Madinah, Al Munawwarah 41311, Saudi Arabia.
Department of Dental Materials, Islamic International Dental College, Riphah International University, Islamabad 44000, Pakistan.
Polymers (Basel). 2020 Oct 8;12(10):2299. doi: 10.3390/polym12102299.
A wide range of polymers are commonly used for various applications in prosthodontics. Polymethyl methacrylate (PMMA) is commonly used for prosthetic dental applications, including the fabrication of artificial teeth, denture bases, dentures, obturators, orthodontic retainers, temporary or provisional crowns, and for the repair of dental prostheses. Additional dental applications of PMMA include occlusal splints, printed or milled casts, dies for treatment planning, and the embedding of tooth specimens for research purposes. The unique properties of PMMA, such as its low density, aesthetics, cost-effectiveness, ease of manipulation, and tailorable physical and mechanical properties, make it a suitable and popular biomaterial for these dental applications. To further improve the properties (thermal properties, water sorption, solubility, impact strength, flexural strength) of PMMA, several chemical modifications and mechanical reinforcement techniques using various types of fibers, nanoparticles, and nanotubes have been reported recently. The present article comprehensively reviews various aspects and properties of PMMA biomaterials, mainly for prosthodontic applications. In addition, recent updates and modifications to enhance the physical and mechanical properties of PMMA are also discussed.
多种聚合物常用于口腔修复学的各种应用中。聚甲基丙烯酸甲酯(PMMA)常用于口腔修复应用,包括人造牙、义齿基托、假牙、阻塞器、正畸保持器、临时或过渡性牙冠的制作,以及牙科修复体的修复。PMMA在牙科的其他应用包括咬合夹板、打印或铣削模型、用于治疗计划的模具以及用于研究目的的牙齿标本包埋。PMMA的独特性能,如低密度、美观性、成本效益、易于加工以及可定制的物理和机械性能,使其成为这些牙科应用中合适且受欢迎的生物材料。为了进一步改善PMMA的性能(热性能、吸水性、溶解性、冲击强度、弯曲强度),最近报道了几种使用各种类型的纤维、纳米颗粒和纳米管的化学改性和机械增强技术。本文全面综述了PMMA生物材料的各个方面和性能,主要针对口腔修复应用。此外,还讨论了最近为增强PMMA的物理和机械性能而进行的更新和改性。