Application of near-infrared-to-blue upconversion luminescence for the polymerization of resin cements through zirconia discs

IF 4.6 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Dental Materials Pub Date : 2024-06-08 DOI:10.1016/j.dental.2024.06.005
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Abstract

Objectives

To investigate a near-infrared-to-blue luminescence upconversion curing method for polymerizing resin cements under zirconia discs.

Methods

Lava zirconia discs of different thicknesses (0.5–2.0 mm) were manufactured. First, the transmittances of the NIR and two blue lights (BLs) (LED and halogen lights) through these discs were measured. Second, NaYF4:Yb3+/Tm3+ upconversion phosphor (UP) powder was milled into 0.5-μm particle sizes. A light-curable resin cement VariolinkII base was chosen as the control (UP0), and an experimental cement (UP5) was prepared by adding 5 % UPs. These two cements were examined using multiphoton excitation microscopy for particle distribution. UP5 and UP0 were polymerized with or without zirconia shielding then subjected to a microhardness test. A multifold analysis was performed to examine the effects of zirconia thickness, curing protocols (pure BL or combined BL and NIR curing), and cement type.

Results

The transmittance of NIR was superior to that of BL through zirconia discs of all thicknesses. UP particles were homogeneously distributed in UP5 and emitted blue luminescence under 980-nm NIR excitation. UP5 showed higher microhardness values than UP0 under any curing protocol or zirconia shielding condition. The combination of 20-s BL and 40-s NIR curing yielded the highest microhardness in uncovered UP5. However, combining 40-s BL and 20-s NIR curing surpassed the other groups when the zirconia discs were thicker than 0.5 mm.

Significance

NIR exhibits higher transmission through zirconia than BL. UP particles work as strengthen fillers and photosensitizers in cements. NIR upconversion curing could be a new strategy for polymerizing resin cements under thick zirconia restorations.

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将近红到蓝的上转换发光应用于通过氧化锆盘聚合树脂胶结物。
目的:研究一种在氧化锆盘下聚合树脂水门汀的近红至蓝发光上转换固化方法:研究一种在氧化锆盘下聚合树脂水门汀的近红至蓝发光上转换固化方法:方法:制造不同厚度(0.5-2.0 毫米)的熔岩氧化锆盘。首先,测量了近红外和两种蓝光(BL)(LED 灯和卤素灯)通过这些圆盘的透射率。其次,将 NaYF4:Yb3+/Tm3+ 上转换荧光粉(UP)粉末研磨成 0.5-μm 粒径。选择光固化树脂水门汀 VariolinkII 作为对照(UP0),并通过添加 5% 的 UPs 制备实验水门汀(UP5)。使用多光子激发显微镜对这两种水门汀的颗粒分布进行了检测。UP5 和 UP0 在有无氧化锆屏蔽的情况下进行聚合,然后进行显微硬度测试。对氧化锆厚度、固化方案(纯 BL 或 BL 和近红外联合固化)以及水泥类型的影响进行了多重分析:结果:近红外透过所有厚度氧化锆盘的透射率均优于蓝宝石。UP 颗粒均匀分布在 UP5 中,在 980 纳米近红外激发下发出蓝色荧光。在任何固化方案或氧化锆屏蔽条件下,UP5 的显微硬度值都高于 UP0。20 秒 BL 和 40 秒近红外固化的组合在未覆盖的 UP5 中产生了最高的显微硬度。然而,当氧化锆盘厚度大于 0.5 mm 时,40 秒 BL 和 20 秒近红外固化的组合超过了其他组别:重要意义:近红外在氧化锆中的透过率高于白光。UP 颗粒可作为水泥中的强化填料和光敏剂。近红外上转换固化可作为在厚氧化锆修复体下聚合树脂水门汀的新策略。
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来源期刊
Dental Materials
Dental Materials 工程技术-材料科学:生物材料
CiteScore
9.80
自引率
10.00%
发文量
290
审稿时长
67 days
期刊介绍: Dental Materials publishes original research, review articles, and short communications. Academy of Dental Materials members click here to register for free access to Dental Materials online. The principal aim of Dental Materials is to promote rapid communication of scientific information between academia, industry, and the dental practitioner. Original Manuscripts on clinical and laboratory research of basic and applied character which focus on the properties or performance of dental materials or the reaction of host tissues to materials are given priority publication. Other acceptable topics include application technology in clinical dentistry and dental laboratory technology. Comprehensive reviews and editorial commentaries on pertinent subjects will be considered.
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