Khan Mohammad Adnan, Muhammad Nawshad, Liaqat Saad, Ejaz Munazzah, Fayyaz Sarmad, Ali Hoor, Ali Khan Taj
Department of Dental Materials, Institute of Basic Medical Sciences, Khyber Medical University, Peshawar, Khyber Pakhtunkhwa, Pakistan.
Department of Dental Materials, Sardar Begum Dental College Peshawar, Peshawar, Khyber Pakhtunkhwa, Pakistan.
Biomater Investig Dent. 2023 Oct 30;10(1):2271972. doi: 10.1080/26415275.2023.2271972. eCollection 2023.
The occlusal surface of a tooth is affected by the development of biofilm in pits and fissures as bacteria and food particles accumulate in its complex structure. In this study, miswak fibers containing cellulose and antimicrobial extract were incorporated in commercial pit and fissure sealants. The miswak powder was characterized by different analytical techniques. The powder was mixed in different ratios (0-5%) into a pit and fissure sealant to result in five sealants (Groups 0-5), and their mechanical properties i.e. flexural strength, compressive strength, and Vickers hardness were evaluated. The sealants were also evaluated against oral pathogenic bacteria. SEM analysis confirmed irregular shape and micron-size particles of miswak powder. The infrared spectral analysis and X-ray differential peaks showed characteristic peaks related to miswak fibers. The particle appearance increased in prepared pits and fissure sealants with higher loading of miswak powder in SEM analysis. The flexural strength, compressive strength, and Vickers hardness values were obtained in the range of 148-221 (±16.6: -value < 0.001) MPa, 43.1-50.3 MPa (±1.7: value <0.001), and 15.2-21.26 VHN (±0.56: -value <0.001) for control and prepared sealant specimens respectively. In the antibacterial study, the zone of inhibitions increased with increased content of miswak from 15.6 ± 0.45 mm (Group 1) to 20.3 ± 0.32 mm (Group 5). The MIC was calculated to be 0.039%. The prepared experimental sealant had acceptable mechanical and good antibacterial properties therefore it could be recommended as an efficient pit and fissure sealant.
随着细菌和食物颗粒在牙齿窝沟复杂结构中积聚,牙齿的咬合面会受到生物膜形成的影响。在本研究中,将含有纤维素和抗菌提取物的牙刷纤维加入到市售窝沟封闭剂中。采用不同分析技术对牙刷粉末进行表征。将该粉末按不同比例(0 - 5%)混入窝沟封闭剂中,制成五种封闭剂(0 - 5组),并对其机械性能即弯曲强度、抗压强度和维氏硬度进行评估。还对这些封闭剂针对口腔病原菌进行了评估。扫描电子显微镜(SEM)分析证实牙刷粉末形状不规则且为微米级颗粒。红外光谱分析和X射线衍射峰显示出与牙刷纤维相关的特征峰。在SEM分析中,随着牙刷粉末含量增加,制备的窝沟封闭剂中颗粒外观增多。对照和制备的封闭剂样本的弯曲强度、抗压强度和维氏硬度值分别在148 - 221(±16.6:P值<0.001)MPa、43.1 - 50.3 MPa(±1.7:P值<0.001)和15.2 - 21.26 VHN(±0.56:P值<0.001)范围内。在抗菌研究中,抑菌圈随着牙刷含量增加从15.6±0.45 mm(第1组)增加到20.3±0.32 mm(第5组)。计算得出最低抑菌浓度(MIC)为0.039%。制备的实验性封闭剂具有可接受的机械性能和良好的抗菌性能,因此可推荐作为一种有效的窝沟封闭剂。