A confocal laser scanning microscopic evaluation of nonthermal atmospheric plasma on the dentinal tubule penetration of bioceramic and epoxy resin-based root canal sealers.

Q2 Dentistry Journal of Conservative Dentistry Pub Date : 2023-05-01 Epub Date: 2023-05-16 DOI:10.4103/jcd.jcd_22_23
Roopadevi Garlapati, Praveen Kumar Gali, Nagesh Bolla, Bandlapally Sreenivasa Guptha Anila, Sayesh Vemuri, Bandaru Pydiah Naidu
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Abstract

Aim: Using confocal laser scanning microscopy (CLSM), the current study assessed the impact of nonthermal atmospheric plasma (NTAP) on the dentinal tubule penetration of bioceramic and epoxy resin-based root canal sealers (CLSM).

Materials and methods: Forty human mandibular premolar teeth with a single root that had just undergone extraction were chosen and biomechanical preparation of root canals was done with ProTaper Gold rotary Nickel-titanium instruments. Samples were divided into four groups (n = 10). Group 1: Bioceramic sealer (BioRoot RCS); Group 2: Epoxy resin-based sealer (AH Plus) without application of NTAP; Group 3: Bioceramic sealer (BioRoot RCS); and Group 4: Epoxy resin-based sealer (AH Plus) with the application of NTAP for 30 s. In Groups 3 and 4, all of the samples underwent obturation with the appropriate sealers following NTAP application. For determination of the sealer's dentinal tubule penetration values, slices with a thickness of 2 mm were taken from the middle third of sample's root and examined using CLSM. The acquired data were statistically analyzed with one-way analysis of variance and the Post hoc Tukey's test. The cutoff for statistical significance was P < 0.05.

Results: In comparison to other groups, the maximum sealer penetration values into dentinal tubules were significantly higher in Group 3 for Bioceramic sealer with NTAP application and Group 4 for Epoxy resin-based sealer with NTAP application.

Conclusion: NTAP application increased the dentinal tubule penetration of bioceramic and epoxy resin-based sealers in comparison to groups without NTAP application.

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非热大气等离子体对生物陶瓷和环氧树脂基根管封闭剂穿透牙本质小管的共焦激光扫描显微镜评价。
目的:利用共聚焦激光扫描显微镜(CLSM),评估了非热大气等离子体(NTAP)对生物陶瓷和环氧树脂基根管封闭剂(CLSM)穿透牙本质小管的影响。材料与方法:选择刚拔除的40颗下颌前磨牙,采用ProTaper Gold旋转镍钛器械进行根管生物力学预备。将样本分为四组(n=10)。第1组:生物陶瓷封闭剂(BioRoot RCS);第2组:不使用NTAP的环氧树脂基密封剂(AH Plus);第3组:生物陶瓷封闭剂(BioRoot RCS);第4组:环氧树脂基密封剂(AH-Plus),应用NTAP 30 s。在第3组和第4组中,所有样品在应用NTAP后用适当的密封剂进行封闭。为了测定封闭剂的牙本质小管穿透值,从样品根部的中间三分之一处取厚度为2mm的切片,并使用CLSM进行检查。采用单向方差分析和Post-hoc Tukey检验对获得的数据进行统计分析。统计学显著性的临界值为P<0.05。结果:与其他组相比,第3组应用NTAP的生物陶瓷密封剂和第4组使用NTAP的环氧树脂基密封剂对牙本质小管的最大渗透值显著更高。结论:与未应用NTAP的组相比,应用NTAP增加了生物陶瓷和环氧树脂基密封剂的牙本质小管穿透力。
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来源期刊
Journal of Conservative Dentistry
Journal of Conservative Dentistry Dentistry-Dentistry (all)
CiteScore
2.10
自引率
0.00%
发文量
114
期刊介绍: The Journal of Conservative Dentistry (ISSN - 0972-0707) is the official journal of the Indian Association of Conservative Dentistry and Endodontics (IACDE). Our journal publishes scientific articles, case reports, short communications, invited reviews and comparative studies evaluating materials and methods in the fields of Conservative Dentistry, Dental Materials and Endodontics. J Conserv Dent has a diverse readership that includes full-time clinicians, full-time academicians, residents, students and scientists. Effective communication with this diverse readership requires careful attention to writing style.
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