Bauer Jose, Mendes Ruan Pinto, Cavaleiro de Macedo Rayssa, Carvalho Edilausson Moreno, Lopes Leonardo, Grazziotin-Soares Renata, Lima Darlon Martins, Oliveira Barbara Costa
Dentistry Biomaterials Laboratory (Biomma), School of Dentistry, Federal University of Maranhão (UFMA), Av. dos Portugueses, 1966, São Luís 65080-805, Brazil.
Department of Biomaterials and Oral Biology, School of Dentistry, University of São Paulo (FOUSP), Av. Prof. Lineu Prestes, 2227, São Paulo 05508-900, Brazil.
Materials (Basel). 2022 Nov 4;15(21):7791. doi: 10.3390/ma15217791.
Composite resins with low flowability are usually handled and manipulated before insertion into the tooth preparation with gloved hands and/or using an instrument covered with a little amount of adhesive to facilitate modeling. We investigated if the modeling techniques (combined or not) affected physicochemical and esthetic properties of a composite resin. Specimens were fabricated and divided into groups according to the handling/modeling technique: Gloved-hands (composite was hand-manipulated with powdered latex gloves); Adhesive (adhesive was used in between the composite layers); Gloved-hands + Adhesive; Control (no adhesive and no touch with gloved-hands). The highest values for flexural strength (MPa), modulus of elasticity (GPa), and fracture toughness (MPa.m0.5) were obtained for Adhesive and Gloved-hands + Adhesive (p < 0.05); the lowest values were obtained for Control and Gloved-hands (p < 0.05). The Control group had the highest sorption. The Gloved-hands (p < 0.05) group had the highest solubility. Adhesive and Gloved-hands + Adhesive had a similar solubility (p > 0.05). The Control group (p < 0.05) had the lowest solubility. There was no statistical interaction between translucency vs. handling/modeling techniques and color stability vs. handling/modeling techniques. Adhesive as a modeling liquid protected the composite against sorption and solubility (if powdered gloves were used) and improved its physical/mechanical properties. Translucency and color stability were not correlated with modeling techniques.
低流动性复合树脂通常在戴手套的手将其插入牙齿预备体之前进行处理和塑形,和/或使用涂有少量粘结剂的器械以利于塑形。我们研究了塑形技术(是否组合使用)是否会影响复合树脂的物理化学和美学性能。制备了样本,并根据处理/塑形技术将其分为几组:戴手套操作(用粉末状乳胶手套手动操作复合树脂);使用粘结剂(在复合树脂层之间使用粘结剂);戴手套操作+使用粘结剂;对照组(不使用粘结剂且不戴手套接触)。使用粘结剂组和戴手套操作+使用粘结剂组的弯曲强度(MPa)、弹性模量(GPa)和断裂韧性(MPa·m0.5)值最高(p<0.05);对照组和戴手套操作组的值最低(p<0.05)。对照组的吸附率最高。戴手套操作组(p<0.05)的溶解度最高。使用粘结剂组和戴手套操作+使用粘结剂组的溶解度相似(p>0.05)。对照组(p<0.05)的溶解度最低。在透明度与处理/塑形技术以及颜色稳定性与处理/塑形技术之间不存在统计学交互作用。作为塑形液体的粘结剂可保护复合树脂免受吸附和溶解(如果使用粉末状手套),并改善其物理/机械性能。透明度和颜色稳定性与塑形技术无关。