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热塑技术根管充填后反式聚异戊二烯的降解

Degradation of trans-polyisoprene after root filling with thermoplasticized techniques.

作者信息

Maniglia-Ferreira C, Bönecker G, Silva J B A, de Paula R C M, Feitosa J P A, Souza-Filho F J

机构信息

Department of Endodontics, University of Fortaleza, UNIFOR, Fortaleza, Brazil.

出版信息

Int Endod J. 2008 Apr;41(4):296-302. doi: 10.1111/j.1365-2591.2007.01352.x. Epub 2008 Jan 19.

Abstract

AIM

To evaluate ex vivo degradation of gutta-percha following six thermoplastic obturation techniques.

METHODOLOGY

Ninety human-extracted mandibular premolars were selected and divided randomly into nine groups for filling. Group 1: thermomechanical compaction for 3 s with Konne gutta-percha points (Konne Ind. e Com. de Mat. Odontol., Belo Horizonte, MG, Brazil); Group 2: thermomechanical compaction for 3 s with Dentsply TP gutta-percha points (Dentsply Indústria e Comércio Ltda, Petrópolis, R.J. Brazil); Group 3: thermomechanical compaction for 10 s with Konne; Group 4: thermomechanical compaction for 10 s with Dentsply TP; Group 5: warm vertical condensation using System B (EIE/Analytic, Richmond, WA, USA) with Konne; Group 6: warm vertical condensation using System B with Dentsply TP; Group 7: vertical condensation with Konne; Group 8: vertical condensation with Dentsply TP; Group 9: Microseal cone (Analytic Endodontics, Glendora, CA, USA). A further four groups were assessed without using teeth, Group 10: Microseal microflow (Analytic Endodontics); Group 11: Obtura (Obtura Corporation, Penton, MO, USA); Group 12: Obtura flow (Obtura Corporation); Group 13: Thermafil (Dentsply Maillefer, Tulsa, OK, USA). The filling material was removed from the root canal and trans-1,4-polyisoprene isolated by solubilization of the root filling remnants in chloroform followed by filtration and centrifugation. By gel permeation chromatography and infrared spectroscopy, the occurrence and degree of degradation were assessed. The results were analysed statistically using the Kruskal-Wallis test. With differential scanning calorimetry, the thermal behaviour of the gutta-percha was determined.

RESULTS

A significant decrease in polymer molar mass and the production of carboxyl and hydroxyl groups in the polymer were observed with thermomechanical compaction used for 10 s and vertical condensation filling techniques (P = 0.0001 and P = 0.0005, respectively). Other techniques caused no polymer degradation.

CONCLUSION

Polyisoprene degrades with high temperature. Thermomechanical compaction for 10 s and vertical condensation were associated with the greatest degradative process.

摘要

目的

评估六种热塑性根管充填技术后牙胶在体外的降解情况。

方法

选取90颗拔除的人下颌前磨牙,随机分为9组进行充填。第1组:使用Konne牙胶尖(Konne Ind. e Com. de Mat. Odontol., 贝洛奥里藏特,米纳斯吉拉斯州,巴西)进行3秒的热机械加压充填;第2组:使用登士柏TP牙胶尖(登士柏工业贸易有限公司,彼得罗波利斯,里约热内卢州,巴西)进行3秒的热机械加压充填;第3组:使用Konne进行10秒的热机械加压充填;第4组:使用登士柏TP进行10秒的热机械加压充填;第5组:使用System B(EIE/分析仪器公司,里士满,华盛顿州,美国)结合Konne进行热垂直加压充填;第6组:使用System B结合登士柏TP进行热垂直加压充填;第7组:使用Konne进行垂直加压充填;第8组:使用登士柏TP进行垂直加压充填;第9组:使用Microseal锥(分析牙髓病学公司,格伦多拉,加利福尼亚州,美国)。另外四组在不使用牙齿的情况下进行评估,第10组:Microseal微流(分析牙髓病学公司);第11组:Obtura(Obtura公司,彭顿,密苏里州,美国);第12组:Obtura流(Obtura公司);第13组:Thermafil(登士柏迈耶费尔公司,塔尔萨,俄克拉何马州,美国)。将充填材料从根管中取出,通过将根管充填残余物溶解于氯仿中,随后过滤和离心分离出反式-1,4-聚异戊二烯。通过凝胶渗透色谱法和红外光谱法评估降解的发生情况和程度。使用Kruskal-Wallis检验对结果进行统计学分析。通过差示扫描量热法测定牙胶的热行为。

结果

观察到使用10秒热机械加压充填和垂直加压充填技术时,聚合物摩尔质量显著降低,聚合物中羧基和羟基生成(分别为P = 0.0001和P = 0.0005)。其他技术未导致聚合物降解。

结论

聚异戊二烯在高温下会降解。10秒的热机械加压充填和垂直加压充填与最大程度的降解过程相关。

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