Oh Soram, Gu Yu, Perinpanayagam Hiran, Yoo Yeon-Jee, Lee Yoon, Kim Ryun Kyung, Chang Seok Woo, Lee Jongho, Zhu Qiang, Kum Kee Yeon
Department of Conservative Dentistry, School of Dentistry, Kyung Hee University, 26 Kyunghee-daero, Dongdaemungu, Seoul, Republic of Korea.
Department of Conservative Dentistry, School of Stomatology, Shandong University, 17923 Jingshi Rd, Lixia Qu, Jinan Shi, Shandong Sheng, China.
Lasers Med Sci. 2018 Aug;33(6):1237-1244. doi: 10.1007/s10103-018-2464-2. Epub 2018 Feb 17.
The purpose of this study was to compare dentinal tubule sealing effects of a 532-nm diode-pumped solid-state (DPSS) laser, gallic acid/Fe complex, and three commercially available dentin desensitizers. Human premolars (n = 44) extracted for orthodontics had standardized cervical cavities prepared, etched (37% phosphoric acid) and randomly assigned to either a control (n = 4), or one of five treatment groups (n = 8/group). Desensitizing treatments were either a 532-nm DPSS laser, gallic acid/Fe complex, oxalate-based Super Seal™ (SS), DIO™ Enamel Coating Pen Pro Tooth (Dio), or adhesive-type Hybrid Coat™ (HC). Dentinal fluid flow (DFF) was monitored continuously in real time during the application of each desensitizing agent, by using a nanoliter-scaled fluid flow-measuring device. Following treatment, morphological changes on dentinal surfaces and within tubules were observed by scanning electron microscopy (SEM). DFF rates were significantly reduced after treatment in all experimental groups (P < 0.05), except SS (P > 0.05). The gallic acid/Fe complex reduced DFF rates the most, and significantly (P < 0.05) more than the three commercial dentin desensitizers. There were no significant differences in DFF reduction rates between the gallic acid/Fe complex and the DPSS laser groups (P > 0.05). There were no significant differences in DFF reduction rates among the three commercial dentin desensitizers (P > 0.05). SEM examination of treated dentin showed that the degree of occlusion of dentinal tubules correlated closely with the corresponding reduction in DFF rates. The gallic acid/Fe complex and 532-nm DPSS laser were superior to other desensitizing methods in occluding dentinal tubules and reducing DFF rates.
本研究的目的是比较532纳米二极管泵浦固体(DPSS)激光、没食子酸/铁络合物和三种市售牙本质脱敏剂的牙本质小管封闭效果。因正畸拔除的人类前磨牙(n = 44)制备标准化的颈部洞型,酸蚀(37%磷酸),并随机分为对照组(n = 4)或五个治疗组之一(每组n = 8)。脱敏治疗分别为532纳米DPSS激光、没食子酸/铁络合物、草酸盐基的Super Seal™(SS)、DIO™ 牙釉质涂层笔专业装(Dio)或粘结型Hybrid Coat™(HC)。在应用每种脱敏剂期间,通过使用纳升级流体流量测量装置实时连续监测牙本质液流(DFF)。治疗后,通过扫描电子显微镜(SEM)观察牙本质表面和小管内的形态变化。除SS组(P > 0.05)外,所有实验组治疗后DFF速率均显著降低(P < 0.05)。没食子酸/铁络合物降低DFF速率的效果最为显著,且显著(P < 0.05)优于三种市售牙本质脱敏剂。没食子酸/铁络合物组和DPSS激光组之间的DFF降低率无显著差异(P > 0.05)。三种市售牙本质脱敏剂之间的DFF降低率无显著差异(P > 0.05)。对治疗后的牙本质进行SEM检查显示,牙本质小管的封闭程度与相应的DFF速率降低密切相关。没食子酸/铁络合物和532纳米DPSS激光在封闭牙本质小管和降低DFF速率方面优于其他脱敏方法。