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利用飞秒激光激活材料:激光诱导击穿光谱监测仿生牙本质再矿化。

Using Femtosecond Laser Light-Activated Materials: The Biomimetic Dentin Remineralization Was Monitored by Laser-Induced Breakdown Spectroscopy.

机构信息

Department of Medical Laser Applications, Laser Institute for Research Application, Beni-Suef University, Beni Suef 2722165, Egypt.

Department of Medical Applications of Lasers, National Institute of Laser Enhanced Science (NILES), Cairo University, Giza 12611, Egypt.

出版信息

Medicina (Kaunas). 2023 Mar 16;59(3):591. doi: 10.3390/medicina59030591.

Abstract

: The purpose of this study is to investigate and compare the effects of the antimicrobial agents and bioactive glass nanoparticles activated by femtosecond laser light on the biomimetic dentin remineralization using teeth having carious dentin ICDAS code 3. : A total of 27 dentin surface samples were divided into three groups: the first group was treated with a extract, while the second group was treated with bioactive glass nanoparticles, and as for the control group, the third group received no additional agent. All groups were subjected to femtosecond laser light at three different wavelengths: 390 nm, 445 nm, and 780 nm. The photoactivation of each sample was achieved using the femtosecond laser light for 5 min with an average power rating of 300 mW, a pulse duration of 100 fs, and a pulse repetition rate of 80 Hz. The mineral content of the samples was obtained and analyzed using the laser-induced breakdown spectroscopy (LIBS). The LIBS analysis was conducted with the following laser light parameters: average power of ~215 mW, wavelength of 532 nm, pulse duration of 10 ns, and a pulse repetition rate of 10 Hz. : Most studied samples exhibited a relative increase in the mineral content that may enhance biomimetic remineralization. photoactivated by femtosecond laser light at 445 nm achieved a significant increase in mineral content. : Using the femtosecond laser light to activate the relatively cheap and commercially available antimicrobial agent supports the strategy of minimal invasive approaches for the treatment and biomimetic remineralization of carious dentin ICDAS code 3.

摘要

本研究旨在通过对经飞秒激光激活的抗菌剂和生物活性玻璃纳米粒子对 ICDAS 编码 3 的龋齿牙本质仿生再矿化的效果进行研究和比较。共有 27 个牙本质表面样本被分为三组:第一组用 提取物处理,第二组用生物活性玻璃纳米粒子处理,而第三组对照组则不添加任何额外的药剂。所有组均在三个不同的波长(390nm、445nm 和 780nm)下接受飞秒激光照射。每个样本的光激活使用平均功率为 300mW、脉冲持续时间为 100fs、脉冲重复率为 80Hz 的飞秒激光照射 5 分钟。使用激光诱导击穿光谱(LIBS)获得和分析样品的矿物质含量。LIBS 分析采用以下激光参数:平均功率约为 215mW、波长为 532nm、脉冲持续时间为 10ns、脉冲重复率为 10Hz。 大多数研究样本显示出矿物质含量的相对增加,这可能增强仿生再矿化。 经飞秒激光在 445nm 处光激活后,矿物质含量显著增加。 使用飞秒激光激活相对便宜且商业上可获得的抗菌剂 支持了针对 ICDAS 编码 3 的龋齿牙本质的微创治疗和仿生再矿化策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88e6/10054410/a6e9078839ba/medicina-59-00591-g001.jpg

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