Choudhary Prashant, Tandon Shobha, Ganesh M, Mehra Anshul
Department of Pedodontics and Preventive Dentistry, College of Dental Science and Research Centre, Lucknow, India.
Indian J Dent Res. 2012 Mar-Apr;23(2):157-63. doi: 10.4103/0970-9290.100419.
To evaluate the remineralization potential of Amorphous Calcium Phosphate (ACP) and Fluoride containing pit and Fissure Sealants using Scanning Electron Microscopy.
Thirty maxillary first premolars were divided into three groups of ten each and were randomly selected for ACP containing (Aegis- Opaque White, Bosworth Co. Ltd.), Fluoride containing (Teethmate F1 Natural Clear, Kuraray Co. Ltd.), resin based (Concise- Opaque White, 3M ESPE Co. Ltd.) pit and fissure sealant applications. The Concise group served as a control. The teeth weresubjected to the pH-cycling regimen for a period of two weeks. After two weeks, the teeth were sectioned bucco-lingually into 4mm sections and were observed under Scanning Electron Microscope at 50X, 250X, 500X, 1000X and 1500X magnifications. The qualitative changes at the tooth surface and sealant interface were examined and presence of white zone at the interface was considered positive for remineralization.
Both ACP containing (Aegis) and Fluoride containing (Teethmate F1) group showed white zone at the tooth surface-sealant interface. The resin based group (Concise) showed regular interface between the sealant and the tooth structure, but no clear cut white zone was observed.
Both, Aegis and Teethmate F1 have the potential to remineralize. Release of Amorphous Calcium Phosphate molecules in Aegis group and formation of Fluoroapetite in Teethmate F1 group, were probably responsible for the remineralization.
使用扫描电子显微镜评估含无定形磷酸钙(ACP)和氟化物的窝沟封闭剂的再矿化潜力。
将30颗上颌第一前磨牙分为三组,每组10颗,并随机选择用于含ACP(Aegis - 不透明白色,博斯沃思有限公司)、含氟化物(Teethmate F1天然透明,可乐丽株式会社)、树脂基(Concise - 不透明白色,3M ESPE有限公司)窝沟封闭剂的应用。Concise组作为对照。牙齿接受为期两周的pH循环方案。两周后,将牙齿颊舌向切成4毫米的切片,并在扫描电子显微镜下以50倍、250倍、500倍、1000倍和1500倍放大倍数观察。检查牙齿表面和封闭剂界面的定性变化,界面处白色区域的存在被认为是再矿化的阳性表现。
含ACP(Aegis)组和含氟化物(Teethmate F1)组在牙齿表面 - 封闭剂界面均显示白色区域。树脂基组(Concise)在封闭剂与牙齿结构之间显示出规则的界面,但未观察到明显的白色区域。
Aegis和Teethmate F1均具有再矿化的潜力。Aegis组中无定形磷酸钙分子的释放以及Teethmate F1组中氟磷灰石的形成可能是再矿化的原因。