Patil Shankargouda, Licari Frank W, Bhandi Shilpa, Awan Kamran H, Badnjević Almir, Belli Valentina, Cervino Gabriele, Minervini Giuseppe
College of Dental Medicine, Roseman University of Health Sciences, South Jordan, UT 84095, USA.
Verlab Research Institute for Biomedical Engineering, Medical Devices and Artificial Intelligence, 71000 Sarajevo, Bosnia and Herzegovina.
J Funct Biomater. 2023 Aug 3;14(8):411. doi: 10.3390/jfb14080411.
Partial or complete dentures are constructed from thermoplastic resins that are thermally processed and molded. This review examines the presently available evidence for the cytotoxicity of thermoplasticized denture base resins on human gingival epithelial cells, adipose cells, and fibroblasts; human amnion fibroblasts; and mouse fibroblasts. Electronic searches were performed on PubMed, Scopus, Web of Science, and Google Scholar databases to identify relevant articles to be included in the review until September 2022. Clinical, in vivo, and in vitro studies in English language were searched for. The quality of the studies was assessed using the Toxicological data Reliability Assessment tool (ToxRTool) developed by the European Commission's Joint Research Centre. GRADE assessment was used to evaluate the certainty of evidence. Seven in vitro studies were included in the review. The overall risk of bias was determined to be high, with the majority of studies assessed found to be reliable with restrictions or not reliable. Only two studies were considered reliable without restrictions based on ToxRTool assessment. The effect of thermoplastic denture base resins on viability and cell adherence of human gingival or amnion fibroblasts and mouse fibroblasts (L929s) is not significant. Conditioned media from unpolished specimens of resins were significantly more toxic to cultured cells than those from polished specimens. This may be of concern in cases of poor post-processing of dentures. Based on the limited evidence available, there is low-certainty evidence that thermoplastic denture base resins appear to be biocompatible and show insignificant cytotoxicity. Further well-designed trials adhering to standard reporting guidelines and using objective measures are necessary before outlining universal guidelines for best practice. Long-term in vivo and clinical assessment is necessary to corroborate laboratory findings with clinical outcomes. Denture base resins are in constant contact with oral tissues, and cytotoxic components released by the resins may irritate or inflame the tissues or provoke an allergic response.
局部或全口义齿由经过热加工和成型的热塑性树脂制成。本综述考察了目前可得的关于热塑性义齿基托树脂对人牙龈上皮细胞、脂肪细胞和成纤维细胞;人羊膜成纤维细胞;以及小鼠成纤维细胞的细胞毒性的证据。在PubMed、Scopus、Web of Science和谷歌学术数据库中进行了电子检索,以确定截至2022年9月纳入该综述的相关文章。检索了英文的临床、体内和体外研究。使用欧盟联合研究中心开发的毒理学数据可靠性评估工具(ToxRTool)评估研究质量。采用GRADE评估来评价证据的确定性。该综述纳入了七项体外研究。总体偏倚风险被确定为高,大多数评估的研究被发现有局限性时可靠或不可靠。基于ToxRTool评估,只有两项研究被认为无局限性地可靠。热塑性义齿基托树脂对人牙龈或羊膜成纤维细胞以及小鼠成纤维细胞(L929s)的活力和细胞黏附的影响不显著。树脂未抛光标本的条件培养基对培养细胞的毒性明显高于抛光标本的条件培养基。在义齿后处理不佳的情况下,这可能令人担忧。基于现有有限的证据,有低确定性证据表明热塑性义齿基托树脂似乎具有生物相容性且细胞毒性不显著。在概述最佳实践的通用指南之前,有必要进行更多遵循标准报告指南并使用客观测量方法的精心设计的试验。需要进行长期的体内和临床评估,以将实验室结果与临床结果相印证。义齿基托树脂与口腔组织持续接触,树脂释放的细胞毒性成分可能会刺激或炎症组织或引发过敏反应。