Journal of Peking University(Health Sciences) ›› 2018, Vol. 50 ›› Issue (1): 63-68. doi: 10.3969/j.issn.1671-167X.2018.01.011

• Article • Previous Articles     Next Articles

Cleaning efficacy of different solvents on sealer-contaminated dentin surface

ZANG Hai-ling1, WANG Yue2, LIANG Yu-hong1,2△   

  1. (1. Department of Cariology and Endodontology,Peking University School and Hospital of Stomatology & National Engineering Laboratory for Digital and Material Technology of Stomatology & Beijing Key Laboratory of Digital Stomatology, Beijing 100081, China; 2. Department of Stomatology, Peking University International Hospital, Beijing 102206, China)
  • Online:2018-02-18 Published:2018-02-18
  • Contact: LIANG Yu-hong E-mail:leungyuhong@sina.com

Abstract: Objective: To evaluate the influence of an epoxy resin-based sealer on the bond strength of adhesive resins to dentin and the cleaning efficacy of different solvents in removing sealer residues. Methods: The occlusal enamel of 25 freshly extracted human third molars without caries were removed to expose flat surfaces of dentin. The teeth were randomly divided into five groups according to the treatment received: For negative control group, the dentin surfaces were not contaminated with AH-Plus; For the other 4 experimental groups, the samples were contaminated with AH-Plus for 5 min and different mea-sures were taken:For positive control group, the sealer were wiped with dry cotton pellets; For solvents experimental groups: cotton pellets saturated with 95% (volume fraction) ethanol, 99.5% (volume fraction) acetone or 99% (volume fraction) amyl acetate were used to wipe the sealer until the surface appeared clean when viewed through a stereomicroscope under ×10 magnification, then rinsed with de-ionized water for 3 s. After sealer removal, a self-etching adhesive system was applied on the surfaces with resin composite. The samples were sectioned into 1.0 mm×1.0 mm stick specimens (n=45) for microtensile test. Failure modes at the dentin-resin interface were observed using a stereomicroscope. The samples were sectioned into 1.0 mm piece specimens (n=4) for scanning electron microscope observation. The microtensile bond strength data were analyzed by one-way ANOVA. Chi-square test were used to analyse the failure modes between the groups. Results: There was significant difference among the five groups (P<0.001). For dry cotton pellet group (38.69±8.60) MPa and the ethanol group (37.14±12.01) MPa, the microtensile bond strength significantly declined when compared with negative control group (43.86±7.99) MPa (P<0.05). No significant difference of bond strength was found between the dry cotton pellet group and the ethanol group (P=0.426). There was no statistical significant difference among acetone group, amyl acetate group and negative control group (P>0.05). The bond strength of acetone group and amyl acetate group were (45.94±10.37) MPa and (43.99±7.01) MPa, respectively. The ethanol group exhibited lower bond strength than that of acetone group and amyl acetate group (P<0.05). Scanning electronic microscope observation revealed that in dry cotton pellet group and ethanol group, the resin tags were short and loose. Moreover, sealer residues were identified in the interface in the ethanol group samples, while the resin tags in the acetone and amyl acetate group were as dense and uniform as in negative control group. The distribution of failure modes showed no significant difference in the five groups (P=0.086). Conclusion: The microtensile bond strength of dentin to composite resin was lower after exposure to sealer. Compared with ethanol and dry cotton pellets, the clea-ning effect of acetone and amyl acetate on sealer-contaminated dentin surface were better.

Key words: Dentin, Root canal filling materials, Tensile strength, Solvents

CLC Number: 

  • R783.1
[1] Peiyao HE,Xudong BAO. Sealing effect of GuttaFlow2 in curved root canals [J]. Journal of Peking University (Health Sciences), 2024, 56(1): 99-105.
[2] Ruo-qing ZHONG,Meng-qian ZHU,Ying-long LI,Jie PAN. Antibacterial effect of low-temperature plasma on Enterococcus faecalis in dentinal tubules in vitro [J]. Journal of Peking University (Health Sciences), 2023, 55(1): 38-43.
[3] Ruo-lan GUO,Gui-bin HUANG,Yun-zi LONG,Yan-mei DONG. Effects of novel bioactive glasses on promoting remineralization of artificial dentin caries [J]. Journal of Peking University (Health Sciences), 2023, 55(1): 82-87.
[4] Wei YONG,Kun QIAN,Wen-hao ZHU,Xiao-yi ZHAO,Chang LIU,Jie PAN. X-ray evaluation of pulp calcification in adult permanent teeth after pulpotomy [J]. Journal of Peking University (Health Sciences), 2023, 55(1): 88-93.
[5] MA Xin-rong,ZHU Xiao-ming,LI Jing,LI De-li,LI He-ping,TAN Jian-guo. Effect of a novel radio-frequency atmospheric-pressure glow discharge plasma jet treatment on crosslinking of dentin collagen [J]. Journal of Peking University (Health Sciences), 2022, 54(1): 83-88.
[6] LUO Chi-yi,PENG Chu-fang,YANG Yuan,QIN Man,WANG Yuan-yuan. Effects of three self-etch adhesives and mild salivary contamination on the bonding durability of deciduous teeth [J]. Journal of Peking University (Health Sciences), 2021, 53(1): 46-53.
[7] Qiu-ju LI,Wei-yu GONG,Yan-mei DONG. Effect of bioactive glass pretreatment on the durability of dentin bonding interface [J]. Journal of Peking University (Health Sciences), 2020, 52(5): 931-937.
[8] Yi-xiang PAN,Xiu-hua LI,Fu-cong TIAN,Xiao-yan WANG. Effect of intrapulpal pressure on the bonding strength of resin cement to dentin [J]. Journal of Peking University(Health Sciences), 2019, 51(2): 321-326.
[9] Xiao-ming ZHU,Xuan QI,De-li LI,Yu-wei ZHANG,He-ping LI,Jian-guo TAN. Effect of a novel cold atmospheric plasma jet treatment with different temperatures on resin-dentin bonding [J]. Journal of Peking University(Health Sciences), 2019, 51(1): 43-48.
[10] LI Fang, LIU Yang, LIU Hao-chen, FENG Hai-lan . Genetic variants analysis and histological observation of teeth in a patient with hereditary opalescent dentin [J]. Journal of Peking University(Health Sciences), 2018, 50(4): 666-671.
[11] LI Hao, LIU Yu-hua, LUO Zhi-qiang. Effects of bioactive glass on reducing the hypersensitivity after full crown preparation [J]. Journal of Peking University(Health Sciences), 2017, 49(4): 709-713.
[12] XIN Yi, WANG Sai-nan, CUI Cai-yun, DONG Yan-mei. Effects of bioactive glass and extracted dentin proteins on human dental pulp cells [J]. Journal of Peking University(Health Sciences), 2017, 49(2): 331-336.
[13] FAN Cong, YUAN Chong-yang, ZHANG Ji-chuan, WANG Xiao-yan. Effect of thermal conductivity on apical sealing ability of 4 dental gutta-percha cones [J]. Journal of Peking University(Health Sciences), 2017, 49(1): 110-114.
[14] WANG Yue,LIANG Yu-hong. Influence of surface treatment with sodium hypochlorite solution on dentin bond strength [J]. Journal of Peking University(Health Sciences), 2017, 49(1): 105-109.
[15] FU Zhao-ran,TIAN Fu-cong,ZHANG Lu,HAN Bing,WANG Xiao-yan. Curing mode of universal adhesives affects the bond strength of resin cements to dentin [J]. Journal of Peking University(Health Sciences), 2017, 49(1): 101-104.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!