Effects of calcium silicate cements on neuronal conductivity

D. Deniz-Sungur, M. A. Onur, Esin Akbay, G. Tan, Fügen Daglı-Comert, T. C. Sayin
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引用次数: 0

Abstract

Objectives This study evaluated alterations in neuronal conductivity related to calcium silicate cements (CSCs) by investigating compound action potentials (cAPs) in rat sciatic nerves. Materials and Methods Sciatic nerves were placed in a Tyrode bath and cAPs were recorded before, during, and after the application of test materials for 60-minute control, application, and recovery measurements, respectively. Freshly prepared ProRoot MTA, MTA Angelus, Biodentine, Endosequence RRM-Putty, BioAggregate, and RetroMTA were directly applied onto the nerves. Biopac LabPro version 3.7 was used to record and analyze cAPs. The data were statistically analyzed. Results None of the CSCs totally blocked cAPs. RetroMTA, Biodentine, and MTA Angelus caused no significant alteration in cAPs (p > 0.05). Significantly lower cAPs were observed in recovery measurements for BioAggregate than in the control condition (p < 0.05). ProRoot MTA significantly but transiently reduced cAPs in the application period compared to the control period (p < 0.05). Endosequence RRM-Putty significantly reduced cAPs. Conclusions Various CSCs may alter cAPs to some extent, but none of the CSCs irreversibly blocked them. The usage of fast-setting CSCs during apexification or regeneration of immature teeth seems safer than slow-setting CSCs due to their more favorable neuronal effects.
硅酸钙水泥对神经元导电性的影响
目的通过研究大鼠坐骨神经复合动作电位(cAPs),评价与硅酸钙骨水泥(CSCs)相关的神经元导电性的变化。材料和方法将坐骨神经置于Tyrode浴中,在施用试验材料之前、期间和之后分别记录cAP,用于60分钟的对照、施用和恢复测量。将新鲜制备的ProRoot MTA、MTA Angelus、Biodentine、Endosequence RRM Putty、BioAggregate和RetroMTA直接应用于神经上。Biopac LabPro 3.7版用于记录和分析cAPs。对数据进行了统计分析。结果CSC均未完全阻断cAPs。RetroMTA、Biodentine和MTA Angelus没有引起cAPs的显著变化(p>0.05)。在BioAggregate的恢复测量中观察到的cAPs显著低于对照条件下的cAPs(p<0.05)。与对照期相比,ProRoot MTA在施用期显著但短暂地降低了cAPs(p<0.05)。内序列RRM Putty显著降低了cAP。结论各种CSC可能在一定程度上改变cAPs,但没有一种CSC能不可逆转地阻断它们。在未成熟牙齿的根尖诱导成形或再生过程中使用快速凝固CSC似乎比慢速凝固CSC更安全,因为它们具有更有利的神经元作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.20
自引率
0.00%
发文量
35
审稿时长
12 weeks
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