The mechanical properties of 3D printed denture base resin incorporating essential oil microcapsules.

IF 2.7 3区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
Steve An, Jane Lesleigh Evans, Stephen Hamlet, Robert Matthew Love
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Abstract

Purpose: The aim of this study was to investigate the mechanical properties of three-dimensional (3D) printed denture base resin incorporating microcapsules containing plant essential oils.

Materials and methods: Denture base specimens containing up to 3% w/v essential oil microcapsule powders (MCPs), i.e., eucalyptus, geranium, lavender, menthol, and tea tree, in two resins (Detax and NextDent 3D+) were 3D printed using two printers (Asiga and NextDent 5100). The dispersion and interaction of the MCPs in the resin were assessed by SEM while the mechanical properties of the incorporated denture base including flexural strength (MPa), flexural modulus (MPa), Vickers hardness (VHN), and surface roughness (Ra) were also subsequently evaluated. Statistical analysis of any differences in mean values was determined using a two-way ANOVA with Tukey's post hoc testing (α = .05).

Results: The spherical shape of the MCPs was maintained during the mixing and polymerization/printing process. However, the Detax-Asiga group showed significant agglomeration of the MCPs even at the lowest MCP concentration levels (0.5% w/v). Overall, as the microcapsule concentration increased, the mean flexural strength decreased, though the menthol MCP groups remained compliant with the ISO standard. The flexural modulus and harness remained relatively unchanged, and the flexural modulus complied with the ISO standard regardless of the MCP concentration. Surface roughness increased with the addition of the MCPs but also remained below that required for clinical acceptance.

Conclusion: Incorporation of microencapsulated plant essential oils into 3D printed denture base resin was successfully achieved. While incorporation negatively influenced flexural strength and surface roughness, little effect on flexural modulus and Vickers hardness was demonstrated.

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含有精油微胶囊的3D打印义齿基托树脂的机械性能。
目的:研究含植物精油微胶囊的三维打印义齿基托树脂的力学性能。材料和方法:使用两台打印机(Asiga和NextDent 5100) 3D打印含有高达3% w/v精油微胶囊粉末(MCPs)的义齿基托标本,即桉树、天竺竺树、薰衣草、薄荷醇和茶树,采用两种树脂(Detax和NextDent 3D+)。通过扫描电镜观察树脂中MCPs的分散和相互作用,同时评估义齿基托的力学性能,包括抗弯强度(MPa)、抗弯模量(MPa)、维氏硬度(VHN)和表面粗糙度(Ra)。采用双因素方差分析和Tukey事后检验对平均值的差异进行统计分析(α = 0.05)。结果:在混合和聚合/打印过程中,MCPs保持球形。然而,Detax-Asiga组即使在最低MCP浓度(0.5% w/v)下也显示出显著的MCP聚集。总体而言,随着微胶囊浓度的增加,平均抗弯强度下降,尽管薄荷醇MCP组仍然符合ISO标准。弯曲模量和线束相对不变,无论MCP浓度如何,弯曲模量均符合ISO标准。表面粗糙度随着mcp的加入而增加,但仍低于临床接受的要求。结论:成功地将微胶囊化植物精油掺入3D打印义齿基托树脂中。掺入物对抗弯强度和表面粗糙度有负向影响,但对抗弯模量和维氏硬度影响不大。
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来源期刊
Journal of Advanced Prosthodontics
Journal of Advanced Prosthodontics DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
4.70
自引率
3.80%
发文量
25
期刊介绍: This journal aims to convey scientific and clinical progress in the field of prosthodontics and its related areas to many dental communities concerned with esthetic and functional restorations, occlusion, implants, prostheses, and biomaterials related to prosthodontics. This journal publishes • Original research data of high scientific merit in the field of diagnosis, function, esthetics and stomatognathic physiology related to prosthodontic rehabilitation, physiology and mechanics of occlusion, mechanical and biologic aspects of prosthodontic materials including dental implants. • Review articles by experts on controversies and new developments in prosthodontics. • Case reports if they provide or document new fundamental knowledge.
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