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Article

Comparison of the Effects of a Bioceramic and Conventional Resin-Based Sealers on Postoperative Pain after Nonsurgical Root Canal Treatment: A Randomized Controlled Clinical Study

Department of Conservative Dentistry, College of Medicine, Ewha Womans University, Seoul 07986, Korea
*
Author to whom correspondence should be addressed.
Materials 2021, 14(10), 2661; https://doi.org/10.3390/ma14102661
Submission received: 19 April 2021 / Revised: 14 May 2021 / Accepted: 17 May 2021 / Published: 19 May 2021
(This article belongs to the Special Issue Contemporary Endodontic Materials)

Abstract

:
Background: This clinical trial aimed to compare the effects of bioceramic sealer and resin-based sealer on the incidence and intensity of postoperative pain. Methods: Patients with anterior teeth or premolars requiring root canal treatment were assigned to group 1 (n = 51). Those with molars requiring treatment were assigned to group 2 (n = 57). In groups 1En and 2En, root canals were obturated with Endoseal MTA using the single-cone technique. In groups 1AH and 2AH, the sealer used was AH Plus with the continuous wave technique. On the day of canal filling, each patient was instructed to indicate their pain intensity over the 7 day postoperative period, at rest and, while biting, using a visual analog scale. Results: There was no significant difference in the incidence or intensity of postoperative pain between the Endoseal MTA and AH Plus groups during the 7 day postoperative period (p > 0.05). Less time was needed to seal the root canals with Endoseal MTA, especially in group 2 (p < 0.05). Conclusions: Endoseal MTA and AH Plus had similar effects on the incidence and intensity of postoperative pain. The obturation time was shorter when using Endoseal MTA compared to AH Plus.

1. Introduction

Pain of endodontic origin can be alleviated by root canal treatment. However, in one study, 17% of patients described the procedure as their most painful dental experience [1]. Indeed, it can be challenging for clinicians to alleviate pain during and after treatment. After root canal treatment, the incidence of postoperative pain reportedly ranges from 3% to 58% [2]. The factors associated with postoperative pain include working length determination [3], number of visits [4], gender [5], use of analgesics [6], instrumentation system [7], and root canal sealer [8]. To be more specific, extrusion of root canal sealer can disrupt periodontal tissues and cause inflammatory reactions, resulting in postoperative pain [8,9].
There are various kinds of root canal sealers; the most widely used are resin-based and bioceramic sealers, the latter of which were recently introduced. Bioceramic sealers generally contain alumina, zirconia particles, bioactive glass, calcium silicates, hydroxyapatite, and resorbable calcium phosphates [10]. These ingredients allow the sealers to resist bacterial leakage [11], make it biocompatible [12,13], and even stimulate dynamic intratubular biomineralization [14]. Furthermore, bioceramic sealers enhance endodontic treatment outcomes by facilitating the differentiation of odontoblasts [15] and the release of bioactive substances [16].
Endoseal MTA (Maruchi, Wonju, South Korea) is a premixed injectable bioceramic sealer that has garnered attention due to its convenience and positive outcomes. Endoseal MTA comprises calcium silicate, calcium aluminates and calcium sulfates, which has several advantages, such as high alkalinity, good flowability, and cytocompatibility [13,17]. In addition, it has dimensional stability during an experimental time of 30 days, while several other bioceramic sealers tend to expand [17]. In vitro and in vivo animal studies have shown that bioceramic sealers have favorable physiobiological properties [18,19,20]; however, although of great interest, there have been few clinical studies on the effects of bioceramic sealers on postoperative pain [8,21,22]. To the best of our knowledge, no clinical study has reported the effect of Endoseal MTA on post-obturation pain. Furthermore, pain is multifactorial, so it is very difficult to consider every factor potentially involved in its aggravation or diminution. Thus, a randomized controlled clinical trial is preferable to investigate postoperative pain [4,7,8,21].
The purpose of this single-blind, randomized controlled clinical trial was to compare the effects of Endoseal MTA and AH Plus on the incidence and intensity of postoperative pain.

2. Materials and Methods

2.1. Patient Allocation and Randomization

A total of 108 patients from the Department of Conservative Dentistry, Ewha Womans University Hospital, were enrolled in this study between March 2019 and May 2020. The study was approved by Ewha Womans University Medical Center (EUMC) Institutional Review Board on 18 January 2018, trial registration number of IRB no. 2018-01-021. Oral and written informed consent was obtained from all patients. In addition, all methods were performed following the approved guidelines and regulations. Patients with anterior teeth or premolars requiring root canal treatment were assigned to group 1; molars were assigned to group 2. Block randomization was performed to prevent any imbalance in the number of subjects in each group. The patients in group 1 were further randomized into group 1En (Endoseal MTA) and group 1AH (AH-Plus); those in group 2 were randomized to group 2En and group 2AH. The randomization table was managed by a study assistant, who delivered the allocated sealer to the practitioner just before obturation.

2.2. Inclusion and Exclusion Criteria

2.2.1. Inclusion Criteria

  • Patients requiring root canal treatment who can follow treatment protocols as well as the criteria for postoperative pain evaluation;
  • Patients of age between 19 to 70 years old,

2.2.2. Exclusion Criteria

  • Patients with any uncontrolled systemic diseases;
  • Patients who are pregnant;
  • Patients who refused to participate;
  • Teeth with open apex;
  • Retreatments of root canals;
  • Patients who initiated root canal treatment in other clinics.

2.3. Treatment Process

The root canal treatment was performed by a single practitioner. Before beginning the treatment, each patient rated their preoperative pain at rest and while biting using a visual analog scale (VAS). The treatment flow diagram is provided in Figure 1A,B.

2.4. Root Canal Treatment Procedure

The treated tooth in all patients was anesthetized with 2% lidocaine with 1:100,000 epinephrine and isolated using a rubber dam. An access cavity was formed, and the patency of each canal was confirmed using a #15 K file. The working length was established using Root ZX (J. Morita Corp, Osaka, Japan). Each canal was shaped with the ProTaper Next file system (Dentsply Maillefer, Ballaigues, Switzerland) and soaked in 2.5% sodium hypochlorite (NaOCl) during shaping. On the day of canal filling, the canals were irrigated with 5% NaOCl for 5 min, followed by 17% EDTA for 1 min and then irrigated with 5% NaOCl and saline. Each canal was dried with paper points. An assistant delivered the assigned sealer to the practitioner just before the obturation. The continuous-wave technique was used in the AH Plus group, and the single-cone technique was used in the Endoseal MTA group. After obturation, a postoperative radiograph was taken.

2.5. Assessment of Postoperative Pain

On the day of obturation, each patient indicated their level of postoperative pain over 7 days, at rest and while biting, using the VAS. On day 7, each patient was asked to visit the clinic for a recall check. Their pain on that day was noted.

2.6. Statistical Analysis

The chi-squared test was used to compare baseline demographic characteristics between the groups. Pain incidence and intensity were analyzed by multivariate logistic regression analysis and repeated analysis of variance (ANOVA), respectively. The Mann–Whitney U test was used to analyze the obturation time data. Differences were considered significant at p < 0.05. SPSS software (version 25.0; SPSS Inc., Chicago, IL, USA) was used for the statistical analysis.

3. Results

A total of 108 patients were enrolled in this 14 month study. According to the study criteria, 20 patients were excluded, and 21 were lost to follow-up. Thus, 32 patients in group 1 and 35 in group 2 were analyzed, with a response rate of 76.13%. The average patient age was 49.04 ± 16.62 years. Table 1 shows the baseline clinical features of the patients in each group.
There were no significant differences in the effects of Endoseal MTA and AH Plus on postoperative pain (pain intensity or incidence). The postoperative VAS pain scale scores were classified as follows: no pain, 0; slight pain, 1–39; moderate pain, 40–69; and severe pain, 70–100. Most patients had no pain or slight pain. The proportions of patients with pain at rest and while biting were similar, but there was a trend toward a higher incidence of biting pain.
Multiple logistic regression analysis was then conducted to determine the effects of the following potential confounding factors on pain incidence: sex, pulp vitality, and sealer. None of the preoperative factors significantly influenced the incidence of pain at any time during the 7 day postoperative period (p > 0.05) Repeated-measures ANOVA was conducted to determine the relationships of time and sealer with VAS pain score. The VAS scores over the 7 day postoperative period are shown in Figure 2A,B. Post-obturation pain, while biting, was analyzed separately from that and at rest. The analysis showed that: (1) VAS pain scores had a tendency to diminish over time regardless of the sealer used; (2) the VAS scores did not differ significantly over time between the sealer groups. Thus, there were no significant differences in VAS pain scores according to time or sealer.
Obturation time was compared between the sealers (Table 2). In group 1AH, more time was needed for obturation than in group 1 EN, but the difference was not statistically significant. On the other hand, group 2 EN needed 198 s for canal filling per tooth, while group 2AH needed 265 s. Differences were statistically significant (p = 0.004).

4. Discussion

Only a few studies have compared the effects of resin-based sealers, such as AH Plus, with those of other bioceramic sealers on postoperative pain; to the best of our knowledge, there have been no such studies on Endoseal MTA. Endoseal MTA is known for its high alkalinity [17] and good flowability, and cell biocompatibility [13]. Although in vitro studies have demonstrated the superior biocompatibility of Endoseal MTA over AH Plus [13], this has not been shown clinically. Bioceramic sealers are mostly used in conjunction with the single-cone technique. In contrast, AH Plus is used with the continuous wave technique. Thus, in this study, we compared the single-cone technique used in the Endoseal MTA groups with the continuous wave technique used in the AH Plus groups.
No statistically significant difference was found in pain incidence or severity between the sealers at any time point during the 7 days after obturation (p > 0.05). Similarly, a previous study reported no difference in postoperative pain between AH Plus (resin-based sealer) and Total Fill (bioceramic sealer), although confounding variables, such as tooth location, may have affected the results [8]. It is difficult to attribute pain to particular factors. Still, it has been suggested that the female gender is a risk factor for pain following endodontic treatment [23]. A randomized controlled design was selected for this clinical study to exclude various factors potentially associated with pain. In addition, block randomization prevented any imbalance in the number of subjects in each group. Various risk factors for postoperative pain were considered. As shown in Table 1, pulp vitality and gender showed a minor biased distribution between the groups. However, these factors did not significantly influence pain. They were adjusted for in the multivariate logistic regression analysis to ensure validity concerning the finding of no group difference in postoperative pain.
In this clinical trial, the patients were divided into anterior/premolar and molar groups because postoperative pain varies significantly by tooth type [24]. A previous study reported that pain was not experienced in 63% of anterior teeth and 44% of posterior teeth [25]. Following these studies, anterior and premolar teeth were allocated to group 1 and molars to group 2; this allowed us to exclude any effect of tooth type on pain.
Popular filling techniques, such as lateral condensation and warm vertical compaction, have drawbacks, including apical extrusion of the gutta-percha cone and insufficient gutta-percha homogeneity [26]. The single-cone technique was introduced to overcome these disadvantages. It has been proven to take less time than lateral condensation. It tightly seals the root canal without any requirement for accessory cones [26]. Compared to other obturation techniques, the single-cone technique is easier and faster [27]. Following previous studies, the obturation time in the Endoseal MTA group was shorter than that in the AH Plus group, especially in the molar group. The simplicity of this technique reduces practitioner fatigue, allowing optimal treatment to be provided to the patients [28]. One of the most important advantages of the obturation technique is apical sealing. It has been demonstrated that single-cone obturation can achieve a tight seal in the apical region [29,30]. It has also been shown that there is no significant difference in the adaptation of gutta-percha cones to root canal walls [31] or the percentage of volume voids in the apical third of root canals [32] between the continuous wave and single-cone techniques. Thus, the single-cone technique can be considered as effective as the continuous wave technique for obturation.
Bioceramic sealers are very promising but were introduced more recently than conventional resin-based sealers. Thus, further studies are required to definitively compare the clinical performance of various bioceramic sealers and postoperative pain with longer follow-ups and radiographical assessments.

5. Conclusions

This study showed that Endoseal MTA and AH Plus had equivalent effects on postoperative pain incidence and intensity. In addition, less time was needed for obturation in the Endoseal MTA group compared to the AH Plus group.
Thus, Endoseal MTA used in conjunction with the single-cone technique is a fast and less painful option for obturation.

Author Contributions

Conceptualization, K.S., Y.-E.J. and Y.K.; methodology, K.S., Y.-E.J. and Y.K.; validation, Y.K.; formal analysis, K.S.; investigation, K.S.; data curation, K.S.; writing—original draft preparation, K.S.; writing—review and editing, K.S.; supervision, Y.-E.J. and Y.K.; project administration, Y.K.; funding acquisition, Y.K. All authors have read and agreed to the published version of the manuscript.

Funding

This research was supported by the National Research Foundation of Korea (NRF) grant funded by the Korean government (grant no. NRF-2018R1D1A1B07045394).

Institutional Review Board Statement

The study was conducted according to the guidelines of the Declaration of Helsinki and approved by the Institutional Review Board of Ewha Womans University Hospital (EUMC 2018-01-021).

Informed Consent Statement

Informed consent was obtained from all subjects involved in the study.

Data Availability Statement

Not applicable.

Conflicts of Interest

The authors declare no conflict of interest. The funders had no role in the design of the study; in the collection, analyses, or interpretation of data; in the writing of the manuscript, or in the decision to publish the results.

References

  1. Wong, M.; Lytle, W.R. A comparison of anxiety levels associated with root canal therapy and oral surgery treatment. J. Endod. 1991, 17, 461–465. [Google Scholar] [CrossRef]
  2. Sathorn, C.; Parashos, P.; Messer, H. The prevalence of postoperative pain and flare-up in single-and multiple-visit endodontic treatment: A systematic review. Int. Endod. J. 2008, 41, 91–99. [Google Scholar] [CrossRef] [PubMed]
  3. Arslan, H.; Güven, Y.; Karataş, E.; Doğanay, E. Effect of the simultaneous working length control during root canal preparation on postoperative pain. J. Endod. 2017, 43, 1422–1427. [Google Scholar] [CrossRef]
  4. Patil, A.A.; Joshi, S.B.; Bhagwat, S.; Patil, S.A. Incidence of postoperative pain after single visit and two visit root canal therapy: A randomized controlled trial. J. Clin. Diagn. Res. 2016, 10, ZC09–ZC12. [Google Scholar] [CrossRef]
  5. Polycarpou, N.; Ng, Y.L.; Canavan, D.; Moles, D.; Gulabivala, K. Prevalence of persistent pain after endodontic treatment and factors affecting its occurrence in cases with complete radiographic healing. Int. Endod. J. 2005, 38, 169–178. [Google Scholar] [CrossRef]
  6. Seymour, R.A. The use of pain scales in assessing the efficacy of analgesics in post-operative dental pain. Eur. J. Clin. Pharm. 1982, 23, 441–444. [Google Scholar] [CrossRef] [PubMed]
  7. Comparin, D.; Moreira, E.J.L.; Souza, E.M.; De-Deus, G.; Arias, A.; Silva, E.J.N.L. Postoperative pain after endodontic retreatment using rotary or reciprocating instruments: A randomized clinical trial. J. Endod. 2017, 43, 1084–1088. [Google Scholar] [CrossRef] [PubMed]
  8. Graunaite, I.; Skucaite, N.; Lodiene, G.; Agentiene, I.; Machiulskiene, V. Effect of resin-based and bioceramic root canal sealers on postoperative pain: A split-mouth randomized controlled trial. J. Endod. 2018, 44, 689–693. [Google Scholar] [CrossRef]
  9. Thakur, S.; Emil, J.; Paulaian, B. Evaluation of mineral trioxide aggregate as root canal sealer: A clinical study. J. Conserv. Dent. 2013, 16, 494–498. [Google Scholar] [PubMed] [Green Version]
  10. Savannah, G. Bioceramic technology–The game changer in endodontics. Endod. Pract. 2009, 13, 13–17. [Google Scholar]
  11. Hwang, J.H.; Chung, J.; Na, H.S.; Park, E.; Kwak, S.; Kim, H.C. Comparison of bacterial leakage resistance of various root canal filling materials and methods: Confocal laser-scanning microscope study. Scanning 2015, 37, 422–428. [Google Scholar] [CrossRef]
  12. Jung, S.; Libricht, V.; Sielker, S.; Hanisch, M.R.; Schäfer, E.; Dammaschke, T. Evaluation of the biocompatibility of root canal sealers on human periodontal ligament cells ex vivo. Odontology 2019, 107, 54–63. [Google Scholar] [CrossRef]
  13. Lim, E.-S.; Park, Y.-B.; Kwon, Y.-S.; Shon, W.-J.; Lee, K.-W.; Min, K.-S. Physical properties and biocompatibility of an injectable calcium-silicate-based root canal sealer: In vitro and in vivo study. BMC Oral Health 2015, 15, 129. [Google Scholar] [CrossRef] [Green Version]
  14. Oh, S.; Cho, S.-I.; Perinpanayagam, H.; You, J.; Hong, S.-H.; Yoo, Y.-J.; Chang, S.W.; Shon, W.-J.; Yoo, J.-S.; Baek, S.-H. Novel calcium zirconate silicate cement biomineralize and seal root canals. Materials 2018, 11, 588. [Google Scholar] [CrossRef] [Green Version]
  15. Güven, E.; Taşlı, P.; Yalvac, M.; Sofiev, N.; Kayahan, M.; Sahin, F. In vitro comparison of induction capacity and biomineralization ability of mineral trioxide aggregate and a bioceramic root canal sealer. Int. Endod. J. 2013, 46, 1173–1182. [Google Scholar] [CrossRef]
  16. de Miranda Candeiro, G.T.; Correia, F.C.; Duarte, M.A.H.; Ribeiro-Siqueira, D.C.; Gavini, G. Evaluation of radiopacity, pH, release of calcium ions, and flow of a bioceramic root canal sealer. J. Endod. 2012, 38, 842–845. [Google Scholar] [CrossRef] [Green Version]
  17. Lee, J.K.; Kwak, S.W.; Ha, J.-H.; Lee, W.; Kim, H.-C. Physicochemical properties of epoxy resin-based and bioceramic-based root canal sealers. Bioinorganic Chem. Appl. 2017, 2017, 1–8. [Google Scholar] [CrossRef] [Green Version]
  18. Vouzara, T.; Dimosiari, G.; Koulaouzidou, E.A.; Economides, N. Cytotoxicity of a new calcium silicate endodontic sealer. J. Endod. 2018, 44, 849–852. [Google Scholar] [CrossRef]
  19. Loushine, B.A.; Bryan, T.E.; Looney, S.W.; Gillen, B.M.; Loushine, R.J.; Weller, R.N.; Pashley, D.H.; Tay, F.R. Setting properties and cytotoxicity evaluation of a premixed bioceramic root canal sealer. J. Endod. 2011, 37, 673–677. [Google Scholar] [CrossRef]
  20. Almeida, L.H.S.; Moraes, R.R.; Morgental, R.D.; Pappen, F.G. Are premixed calcium silicate–based endodontic sealers comparable to conventional materials? A systematic review of in vitro studies. J. Endod. 2017, 43, 527–535. [Google Scholar] [CrossRef]
  21. Ates, A.A.; Dumani, A.; Yoldas, O.; Unal, I. Post-obturation pain following the use of carrier-based system with AH Plus or iRoot SP sealers: A randomized controlled clinical trial. Clin. Oral Investig. 2019, 23, 3053–3061. [Google Scholar] [CrossRef]
  22. Paz, A. Evaluation of Postoperative Pain after Using Bioceramic Materials as Endodontic Sealers. EC Dent. Sci. 2018, 17, 1739–1748. [Google Scholar]
  23. Sadaf, D.; Ahmad, M.Z. Factors associated with postoperative pain in endodontic therapy. Int. J. Biomed. Sci. 2014, 10, 243–247. [Google Scholar]
  24. Alí, A.; Olivieri, J.G.; Duran-Sindreu, F.; Abella, F.; Roig, M.; García-Font, M. Influence of preoperative pain intensity on postoperative pain after root canal treatment: A prospective clinical study. J. Dent. 2016, 45, 39–42. [Google Scholar] [CrossRef]
  25. Segura-Egea, J.J.; Cisneros-Cabello, R.; Llamas-Carreras, J.M.; Velasco-Ortega, E. Pain associated with root canal treatment. Int. Endod. J. 2009, 42, 614–620. [Google Scholar] [CrossRef] [PubMed]
  26. Taşdemir, T.; Er, K.; Yildirim, T.; Buruk, K.; Çelik, D.; Cora, S.; Tahan, E.; Tuncel, B.; Serper, A. Comparison of the sealing ability of three filling techniques in canals shaped with two different rotary systems: A bacterial leakage study. Oral Surg. Oral Med. Oral Pathol. Oral Radiol. Endodontol. 2009, 108, e129–e134. [Google Scholar] [CrossRef]
  27. Pereira, A.C.; Nishiyama, C.K.; de Castro Pinto, L. Single-cone obturation technique: A literature review. RSBO Rev. Sul-Bras. Odontol. 2012, 9, 442–447. [Google Scholar]
  28. Tasdemir, T.; Yesilyurt, C.; Ceyhanli, K.T.; Celik, D.; Er, K. Evaluation of apical filling after root canal filling by 2 different techniques. J. Can. Dent. Assoc. 2009, 75, 201a–201d. [Google Scholar]
  29. El Sayed, M.A.A.M.; Taleb, A.A.A.; Balbahaith, M.S.M. Sealing ability of three single-cone obturation systems: An in-vitro glucose leakage study. J. Conserv. Dent. 2013, 16, 489–493. [Google Scholar] [CrossRef] [Green Version]
  30. Hörsted-Bindslev, P.; Andersen, M.A.; Jensen, M.F.; Nilsson, J.H.; Wenzel, A. Quality of molar root canal fillings performed with the lateral compaction and the single-cone technique. J. Endod. 2007, 33, 468–471. [Google Scholar] [CrossRef]
  31. Guess, G.M.; Edwards, K.R.; Yang, M.-L.; Iqbal, M.K.; Kim, S. Analysis of continuous-wave obturation using a single-cone and hybrid technique. J. Endod. 2003, 29, 509–512. [Google Scholar] [CrossRef] [PubMed]
  32. Iglecias, E.F.; Freire, L.G.; de Miranda Candeiro, G.T.; dos Santos, M.; Antoniazzi, J.H.; Gavini, G. Presence of voids after continuous wave of condensation and single-cone obturation in mandibular molars: A micro-computed tomography analysis. J. Endod. 2017, 43, 638–642. [Google Scholar] [CrossRef] [PubMed]
Figure 1. (A) Flow chart of patient selection in group 1. (B) Flowchart of patient selection in group 2.
Figure 1. (A) Flow chart of patient selection in group 1. (B) Flowchart of patient selection in group 2.
Materials 14 02661 g001
Figure 2. (A) Intensity of postoperative pain at rest over a 7 day period. The values are estimated means. The bar represents the 95% confidence interval. Repeated-measures ANOVA was used for the analysis. (B) Intensity of pain while biting over the 7 day postoperative period. The values are estimated means. The bar represents the 95% confidence interval. Repeated-measures ANOVA was used for the analysis.
Figure 2. (A) Intensity of postoperative pain at rest over a 7 day period. The values are estimated means. The bar represents the 95% confidence interval. Repeated-measures ANOVA was used for the analysis. (B) Intensity of pain while biting over the 7 day postoperative period. The values are estimated means. The bar represents the 95% confidence interval. Repeated-measures ANOVA was used for the analysis.
Materials 14 02661 g002
Table 1. Baseline clinical characteristics of the study groups. Chi-squared p value is presented.
Table 1. Baseline clinical characteristics of the study groups. Chi-squared p value is presented.
GroupGroup Ap ValueGroup Bp Value
EndosealAH Plus-EndosealAH Plus-
SexMale1360.0361160.127
Female49 711
ArchMaxillary9120.108580.238
Mandibular83 139
Pulp diagnosisVital1060.2887120.060
Non vital79 115
Pre-periapical lesionPresent8110.1311090.877
Absent94 88
Pre-operative painPresent420.4629120.529
Absent1313 65
Sealer extrusionPresent230.522550.915
Absent1512 1312
Table 2. Obturation time of groups 1 and 2. Mann–Whitney U test p value is presented.
Table 2. Obturation time of groups 1 and 2. Mann–Whitney U test p value is presented.
GroupsEndosealAH Plusp Value
Group 1, median (seconds)129132.50.396
Group 2, median (seconds)1982650.004
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Shim, K.; Jang, Y.-E.; Kim, Y. Comparison of the Effects of a Bioceramic and Conventional Resin-Based Sealers on Postoperative Pain after Nonsurgical Root Canal Treatment: A Randomized Controlled Clinical Study. Materials 2021, 14, 2661. https://doi.org/10.3390/ma14102661

AMA Style

Shim K, Jang Y-E, Kim Y. Comparison of the Effects of a Bioceramic and Conventional Resin-Based Sealers on Postoperative Pain after Nonsurgical Root Canal Treatment: A Randomized Controlled Clinical Study. Materials. 2021; 14(10):2661. https://doi.org/10.3390/ma14102661

Chicago/Turabian Style

Shim, Kiche, Young-Eun Jang, and Yemi Kim. 2021. "Comparison of the Effects of a Bioceramic and Conventional Resin-Based Sealers on Postoperative Pain after Nonsurgical Root Canal Treatment: A Randomized Controlled Clinical Study" Materials 14, no. 10: 2661. https://doi.org/10.3390/ma14102661

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