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Esterases affect the physical properties of materials used to seal the endodontic space

机译:酯酶影响用于密封胸腔间隙的材料的物理性质

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Materials used to seal the endodontic space are subjected to enzymatic degradative activities of body fluids and bacteria.Objectives. To assess effects of simulated human salivary, blood and bacterial esterases (SHSE) on physical properties of typical restorative material and root canal sealers.Methods. Specimens of set methacrylate-based resin composite (Bisfil (TM) 2B; RC), calcium-silicate sealer (EndoSequence (R); BC) or epoxy-resin sealer (AH-Plus (R); ER) were tested after up to 28 Days exposure to phosphate buffered saline (PBS) or SHSE, using ANSI/ADA-57:2000 and ISO-6876:2012.Results. Regardless of media, microhardness increased with time for BC remained unchanged for ER and decreased for RC (p 0.05). SHSE moderated the increase for BC compared to PBS (28.0 +/- 4.8 vs. 38.1 +/- 7.9 KHN) at 7 Days, and enhanced the decrease for RC at 7 Days (55.6 +/- 7.1 vs. 66.3 +/- 6.5 KHN) and 28 Days (52.3 +/- 9.2 vs. 62.6 +/- 8.5 KHN). Compressive strength was enhanced only for BC by either media. BC expanded with time for both incubation conditions; SHSE moderated the expansion compared to PBS at 7 Days (0.026 +/- 0.01% vs. 0.049 +/- 0.007%). Shrinkage of ER was similar for both incubation media and was lower than that for RC (p 0.05). Shrinkage of RC was enhanced by SHSE compared to PBS at 7 Days (0.5 +/- 0.07% vs. 0.38 +/- 0.08%). Weight loss was lowest for ER and highest for BC (p 0.05). It was enhanced by SHSE compared to PBS for BC at 28 Days (2.40 +/- 0.2 vs. 2.96 +/- 0.19 W L%), and for RC at 7 Days (0.54 +/- 0.09 vs. 0.80 +/- 0.1 W L%).Significance. Simulated body fluids and bacterial esterases affected the physical properties of test materials, suggesting potential impacts on sealing ability and resistance to bacterial ingress, and to oth strength ultimately affecting their clinical performance. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:用于密封牙髓空间的材料经受体液和细菌的酶促降解活性。目的。评估模拟人唾液,血液和细菌酯酶(SHSE)对典型恢复材料和根管密封剂的物理性质的影响。将甲基丙烯酸酯基树脂复合物(Bisfil(TM)2b; RC),钙硅酸钙密封剂(核序列(R); BC)或环氧树脂封口剂(AH-Plus(R); ER)进行测试28天接触磷酸盐缓冲盐水(PBS)或SHSE,使用ANSI / ADA-57:2000和ISO-6876:2012。结果。无论培养基,均匀的微硬度随着BC的时间而增加,对于ER保持不变并降低RC(P <0.05)。 SHSE适度,与PBS(28.0 +/- 4.8与38.1 +/- 7.9 kHn)在7天内进行了适用于BC的增加,并在7天内增强RC减少(55.6 +/- 7.1与66.3 +/- 6.5 KHN)和28天(52.3 +/- 9.2与62.6 +/- 8.5 khn)。通过培养基仅针对BC增强压缩强度。 BC随着孵化条件而膨胀时间;与PBS在7天(0.026 +/- 0.01%vs.0.049 +/- 0.007%)相比,SHSE适度调节扩张。孵化介质的ER收缩相似,低于RC的培养基(P <0.05)。与PBS在7天(0.5 +/- 0.07%Vs.0.38 +/- 0.08%)的PBS相比,SHSE增强了RC的收缩。 ER和BC最高的体重减轻最低(P <0.05)。与BC的PBS相比,SHSE在28天(2.40 +/- 0.2与2.96 +/- 0.19 WL%),并在7天内(0.54 +/- 0.09 Vs. 0.80 +/- 0.1 WL %)。意义。模拟体液和细菌酯酶影响了测试材料的物理性质,表明对密封能力和对细菌进入的抗性影响,以及对临床表现的抗强度。 (c)2019年牙科材料学院。由elsevier Inc.出版的所有权利保留。

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