Nanoparticles in Enhancing Mechanical Properties of Silicone for Maxillofacial Rehabilitation - A Review

None Shahad Fadhil Bunyan, None Fatanah Mohamad Suhaimi, None Faraedon Mohidden Mostafa Zardawi, None Siti Noor Fazliah Mohd Noor, None Muhammad Azrul Zabidi
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 Facial prostheses are made to restore a missing part of the face, so they must be made from a material that mimics the surrounding soft tissues and skin in properties. The studies nowadays show that the maxillofacial silicone elastomer is widely used for this purpose because of its biocompatibility, can be easily colored by intrinsic or extrinsic coloration, and good elasticity. The drop points of the pure silicone elastomers are the mechanical properties such as the tear strength and the tensile strength, which need to be improved to be clinically applicable. This improvement may be done by the addition of some types of Nano-oxide fillers. The objective of the study was to review the results of previous studies that evaluated the effect of adding different types of nanoparticles on improving the silicone maxillofacial rehabilitation material mechanical properties.
 METHODS
 Search Methods: An electronic search in PubMed/Medline was used to find applicable papers that were published in English before September 2022.
 Selection Criteria: By examining the title, abstract, and full text of the articles to ensure that they fit the inclusion criteria, the relevance of the articles was confirmed. The term was chosen based on the following: silicone elastomer as the population, nanoparticles as the intervention, and silicone elastomer with and without nanoparticle reinforcement as the comparison (mechanical properties).
 Data Collection: Data regarding the published articles on the effect of adding nanoparticles to silicone material to enhance its mechanical properties has been collected.
 RESULTS
 Out of 27 articles, 18 articles met the requirements for data extraction for review of the results of studies that evaluated the effect of different nanoparticle addition on improving the mechanical properties of the silicone elastomer. Among the essential properties to be considered was that the silicone’s mechanical characteristics were enhanced by the incorporation of various nanoparticles at concentrations ranging from 1% to 3%.
 CONCLUSIONS
 An ideal maxillofacial silicone that exhibits perfect mechanical properties in a variety of human and environmental aging situations hasn't yet been found.","PeriodicalId":47072,"journal":{"name":"Journal of Evolution of Medical and Dental Sciences-JEMDS","volume":"244 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-10-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Evolution of Medical and Dental Sciences-JEMDS","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.14260/jemds.v12i9.489","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

BACKGROUND Facial prostheses are made to restore a missing part of the face, so they must be made from a material that mimics the surrounding soft tissues and skin in properties. The studies nowadays show that the maxillofacial silicone elastomer is widely used for this purpose because of its biocompatibility, can be easily colored by intrinsic or extrinsic coloration, and good elasticity. The drop points of the pure silicone elastomers are the mechanical properties such as the tear strength and the tensile strength, which need to be improved to be clinically applicable. This improvement may be done by the addition of some types of Nano-oxide fillers. The objective of the study was to review the results of previous studies that evaluated the effect of adding different types of nanoparticles on improving the silicone maxillofacial rehabilitation material mechanical properties. METHODS Search Methods: An electronic search in PubMed/Medline was used to find applicable papers that were published in English before September 2022. Selection Criteria: By examining the title, abstract, and full text of the articles to ensure that they fit the inclusion criteria, the relevance of the articles was confirmed. The term was chosen based on the following: silicone elastomer as the population, nanoparticles as the intervention, and silicone elastomer with and without nanoparticle reinforcement as the comparison (mechanical properties). Data Collection: Data regarding the published articles on the effect of adding nanoparticles to silicone material to enhance its mechanical properties has been collected. RESULTS Out of 27 articles, 18 articles met the requirements for data extraction for review of the results of studies that evaluated the effect of different nanoparticle addition on improving the mechanical properties of the silicone elastomer. Among the essential properties to be considered was that the silicone’s mechanical characteristics were enhanced by the incorporation of various nanoparticles at concentrations ranging from 1% to 3%. CONCLUSIONS An ideal maxillofacial silicone that exhibits perfect mechanical properties in a variety of human and environmental aging situations hasn't yet been found.
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纳米颗粒增强硅胶颌面修复材料力学性能的研究进展
背景# x0D;面部假体是用来修复脸部缺失的部分,所以它们必须由一种模仿周围软组织和皮肤特性的材料制成。目前的研究表明,颌面部有机硅弹性体具有生物相容性好、易于着色、弹性好等优点,被广泛应用于这一领域。纯硅弹性体的落点在于其撕裂强度、抗拉强度等力学性能有待提高,以达到临床应用的目的。这种改进可以通过添加某些类型的纳米氧化物填料来实现。本研究的目的是回顾以往的研究结果,评估添加不同类型的纳米颗粒对改善硅胶颌面康复材料力学性能的影响。 方法# x0D;检索方法:在PubMed/Medline进行电子检索,查找2022年9月之前发表的英文论文。 选择标准:通过检查文章的标题、摘要和全文,以确保它们符合纳入标准,确认文章的相关性。该术语的选择基于以下因素:有机硅弹性体作为填充体,纳米颗粒作为干预剂,有和没有纳米颗粒增强的有机硅弹性体作为比较(力学性能)。 数据收集:收集了在硅酮材料中加入纳米颗粒增强其力学性能的已发表文章的数据。 结果# x0D;在27篇文章中,18篇文章符合数据提取要求,用于评估不同纳米颗粒添加对改善有机硅弹性体机械性能的影响的研究结果。在需要考虑的基本性能中,有机硅的机械特性通过掺入浓度在1%至3%之间的各种纳米颗粒而增强。 结论# x0D;一种理想的颌面硅胶在各种人类和环境老化情况下表现出完美的机械性能,目前还没有发现。
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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