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Effect of a chlorhexidine-encapsulated nanotube modified pit-and-fissure sealant on oral biofilm

机译:氯己定包封的纳米管改性凹陷密封剂对羊膜裂纹裂纹密封剂的影响

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The purpose of this study was to characterize a chlorhexidine-encapsulated nanotube modified pit-and-fissure sealant for biofilm development prevention. HS (commercial control); HNT (HS+15wt%Halloysite~(?)-clay-nanotube); CHX10% (HS+15wt% HNT-encapsulated with chlorhexidine 10%); and CHX20% (HS+15wt% HNT-encapsulated with CHX20%) were tested. Degree-of-conversion (DC%), Knoop hardness (KHN), and viscosity were analyzed. The ability of the sealant to wet the fissures was evaluated. Specimens were tested for zones of inhibition of microbial growth. S. mutans biofilm was tested by measuring recovered viability. Data were statistically analyzed (p <0.05). DC% was significantly higher for the HNT-CHX groups. For KHN, CHX10% presented a lower mean value than the other groups. Adding HNT resulted in higher viscosity values. The biofilm on CHX10% and CHX20% sealants presented remarkable CFU/mL reduction in comparison to the HS. The experimental material was able to reduce the biofilm development in S. mutans biofilm without compromising the sealant properties.
机译:本研究的目的是表征氯己定封装的纳米管改性凹陷裂纹密封剂,用于生物膜显影预防。 HS(商业控制); HNT(HS + 15wt%Holloysite〜(?) - 粘土纳米管); CHX10%(HS + 15wt%HNT - 用氯己定封装10%);并测试CHX20%(HS + 15wt%HNT - 封装用CHX20%)。分析了转化程度(DC%),Knoop硬度(KHN)和粘度。评价密封剂润湿裂缝的能力。测试样品用于抑制微生物生长的区域。 s。通过测量回收的存活率来测试变强生物膜。数据在统计学上分析( P <0.05)。对于HNT-CHX基团,DC%显着较高。对于KHN,CHX10%呈现比其他组的较低平均值。添加HNT导致更高的粘度值。与HS相比,CHX10%和CHX20%密封剂的生物膜呈现出显着的CFU / mL减少。实验材料能够减少在 S中的生物膜发育。 Mutans Biofilm而不损害密封剂性能。

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