Comparative Evaluation of the Penetration Depth into Dentinal Tubules of Three Endodontic Irrigants
Abstract
:1. Introduction
2. Materials and Methods
2.1. Surface Tension and Viscosity Measurements
2.2. Sample Selection and Experimental Procedures
2.3. Statistical Analysis
3. Results
3.1. Surface Tension
3.2. Penetration Depth into Dentinal Tubules
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Wong, J.; Manoil, D.; Näsman, P.; Belibasakis, G.N.; Neelakantan, P. Microbiological Aspects of Root Canal Infections and Disinfection Strategies: An Update Review on the Current Knowledge and Challenges. Front. Oral. Health 2021, 2, 672887. [Google Scholar] [CrossRef]
- Matsuo, T.; Shirakami, T.; Ozaki, K.; Nakanishi, T.; Yumoto, H.; Ebisu, S. An immunohistological study of the localization of bacteria invading root pulpal walls of teeth with periapical lesions. J. Endod. 2003, 29, 194–200. [Google Scholar] [CrossRef] [PubMed]
- Oguntebi, B.R. Dentine tubule infection and endodontic therapy implications. Int. Endod. J. 1994, 27, 218–222. [Google Scholar] [CrossRef] [PubMed]
- Ando, N.; Hoshino, E. Predominant obligate anaerobes invading the deep layers of root canal dentine. Int. Endod. J. 1990, 23, 20–27. [Google Scholar] [CrossRef] [PubMed]
- Siqueira, J.F.; Rôças, I.N. Clinical implications and microbiology of bacterial persistence after treatment procedures. J. Endod. 2008, 34, 1291–1301. [Google Scholar] [CrossRef]
- Peters, O.A.; Laib, A.; Göhring, T.N.; Barbakow, F. Changes in Root Canal Geometry after Preparation Assessed by High-Resolution Computed Tomography. J. Endod. 2001, 27, 1–6. [Google Scholar] [CrossRef]
- Baker, N.A.; Eleazer, P.D.; Averbach, R.E.; Seltzer, S. Scanning electron microscopic study of various irrigation solutions’ efficacy. J. Endod. 1975, 1, 127–135. [Google Scholar] [CrossRef]
- Giardino, L.; Ambu, E.; Becce, C.; Rimondini, L.; Morra, M. Surface tension comparison of four common root canal irrigants and two new irrigants containing antibiotic. J. Endod. 2006, 32, 1091–1093. [Google Scholar] [CrossRef]
- Giardino, L.; Savadori, P.; Generali, L.; Mohammadi, Z.; Del Fabbro, M.; De Vecchi, E.; Bidossi, A. Antimicrobial effectiveness of etidronate powder (Dual Rinse® HEDP) and two EDTA preparations against Enterococcus faecalis: A preliminary laboratory study. Odontology 2020, 108, 396–405. [Google Scholar] [CrossRef]
- Arias-Moliz, M.T.; Ferrer-Luque, C.M.; Espigares-García, M.; Baca, P. Enterococcus faecalis biofilms eradication by root canal irrigants. J. Endod. 2009, 35, 711–714. [Google Scholar] [CrossRef]
- Ferrer-Luque, C.M.; Arias-Moliz, M.T.; González-Rodríguez, M.P.; Baca, P. Antimicrobial activity of maleic acid and combinations of cetrimide with chelating agents against Enterococcus faecalis biofilm. J. Endod. 2010, 36, 1673–1675. [Google Scholar] [CrossRef]
- Dunavant, T.R.; Regan, J.D.; Glickman, G.N.; Solomon, E.S.; Honeyman, A.L. Comparative evaluation of endodontic irrigants against Enterococcus faecalis biofilms. J. Endod. 2006, 32, 527–531. [Google Scholar] [CrossRef]
- Ferrer-Luque, C.M.; Conde-Ortiz, A.; Arias-Moliz, M.T.; Valderrama, M.J.; Baca, P. Residual activity of chelating agents and their combinations with cetrimide on root canals infected with Enterococcus faecalis. J. Endod. 2012, 38, 826–828. [Google Scholar] [CrossRef]
- Glantz, P.O.; Hansson, L. Wetting of dentine by some root canal medicaments. Odontol. Revy 1972, 23, 205–210. [Google Scholar] [PubMed]
- Wang, Z.; Shen, Y.; Ma, J.; Haapasalo, M. The effect of detergents on the antibacterial activity of disinfecting solutions in dentin. J. Endod. 2012, 38, 948–953. [Google Scholar] [CrossRef] [PubMed]
- Banode, A.M.; Gade, V.; Patil, S.; Chandhok, D.; Sinkar, R. Comparative scanning electron microscopy evaluation of smear layer removal with 17% ethylenediaminetetraacetic acid, 10% citric acid and newer irrigant QMix: In vitro study. Indian J. Oral Health Res. 2015, 1, 56–61. [Google Scholar] [CrossRef]
- Georgopoulou, M.; Kontakiotis, E.; Nakou, M. Evaluation of the antimicrobial effectiveness of citric acid and sodium hypochlorite on the anaerobic flora of the infected root canal. Int. Endod. J. 1994, 27, 139–143. [Google Scholar] [CrossRef]
- Giardino, L.; Del Fabbro, M.; Morra, M.; Pereira, T.; Bombarda de Andrade, F.; Savadori, P.; Generali, L. Dual Rinse® HEDP increases the surface tension of NaOCl but may increase its dentin disinfection efficacy. Odontology 2019, 107, 521–529. [Google Scholar] [CrossRef]
- Council of Europe. Viscosity-rotating viscometer method. In European Pharmacopoeia, 8th ed.; Directorate for the Quality of Medicines &Health Care of the Council of Europe (EDQM): Strasbourg, France, 2014; pp. 27–30. [Google Scholar]
- De-Deus, G.; Barino, B.; Marins, J.; Magalhães, K.; Thuanne, E.; Kfir, A. Self-adjusting file cleaning-shaping-irrigation system optimizes the filling of oval-shaped canals with thermoplasticized gutta-percha. J. Endod. 2012, 38, 846–849. [Google Scholar] [CrossRef]
- Generali, L.; Puddu, P.; Borghi, A.; Brancolini, S.; Lusvarghi, L.; Bolelli, G.; Consolo, U.; Pedullà, E. Mechanical properties and metallurgical features of new and ex vivo used Reciproc Blue and Reciproc. Int. Endod. J. 2020, 53, 250–264. [Google Scholar] [CrossRef]
- Generali, L.; Prati, C.; Pirani, C.; Cavani, F.; Gatto, M.R.; Gandolfi, M.G. Double dye technique and fluid filtration test to evaluate early sealing ability of an endodontic sealer. Clin. Oral Investig. 2017, 21, 1267–1276. [Google Scholar] [CrossRef]
- Martinelli, S.; Alburquerque, G.; Silva, L. Effect of EDTAC and citric acid on dentinal walls. Variation of exposure time and dental age. Odontoestomatología 2019, 21, 5–15. [Google Scholar]
- Tonini, R.; Giovarruscio, M.; Gorni, F.; Ionescu, A.; Brambilla, E.; Mikhailovna, I.M.; Luzi, A.; Maciel Pires, P.; Sauro, S. In Vitro Evaluation of Antibacterial Properties and Smear Layer Removal/Sealer Penetration of a Novel Silver-Citrate Root Canal Irrigant. Materials 2020, 13, 194. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Generali, L.; Bertoldi, C.; Bidossi, A.; Cassinelli, C.; Morra, M.; Del Fabbro, M.; Savadori, P.; Ballal, N.V.; Giardino, L. Evaluation of Cytotoxicity and Antibacterial Activity of a New Class of Silver Citrate-Based Compounds as Endodontic Irrigants. Materials 2020, 13, 5019. [Google Scholar] [CrossRef] [PubMed]
- Giardino, L.; Estrela, C.; Mohammadi, Z.; Generali, L.; Asgary, S. The in vitro Effect of Irrigants with Low Surface Tension on Enterococcus faecalis. Iran. Endod. J. 2015, 10, 174–178. [Google Scholar]
- Giardino, L.; Morra, M.; Becce, C.; Pappen, F.G.; Mohammadi, Z.; Palazzi, F. Comparative wettability of different sodium hypochlorite solutions. G. It. Endod. 2012, 26, 57–62. [Google Scholar] [CrossRef] [Green Version]
- Paqué, F.; Luder, H.U.; Sener, B.; Zehnder, M. Tubular sclerosis rather than the smear layer impedes dye penetration into the dentine of endodontically instrumented root canals. Int. Endod. J. 2006, 39, 18–25. [Google Scholar] [CrossRef]
- Russel, A.A.; Chandler, N.P.; Haumann, C.; Siddiqui, A.Y.; Tompkins, G.R. The butterfly effect: An investigation of sectioned roots. J. Endod. 2013, 39, 208–210. [Google Scholar] [CrossRef] [PubMed]
- Küçük, M.; Kermeoğlu, F. Efficacy of different irrigation methods on dentinal tubule penetration of Chlorhexidine, QMix and Irritrol: A confocal laser scanning microscopy study. Aust. Endod. J. 2019, 45, 202–208. [Google Scholar] [CrossRef]
- Gopikrishna, V.; Ashok, P.; Pradeep Kumar, A.P.; Narayanan, L.L. Influence of temperature and concentration on the dynamic viscosity of sodium hypochlorite in comparison with 17% EDTA and 2% chlorhexidine gluconate: An in vitro study. J. Conserv. Dent. 2014, 17, 57–60. [Google Scholar]
- Bukiet, F.; Soler, T.; Guivarch, M.; Camps, J.; Tassery, H.; Cuisinier, F.; Candoni, N. Factors affecting the viscosity of sodium hypochlorite and their effect on irrigant flow. Int. Endod. J. 2013, 46, 954–961. [Google Scholar] [CrossRef] [PubMed]
- Heling, I.; Chandler, N.P. Antimicrobial effect of irrigant combinations within dentinal tubules. Int. Endod. J. 1998, 31, 8–14. [Google Scholar] [CrossRef] [PubMed]
- Rohm, H.; Jaros, D. Analytical Methods | Principles and Significance in Assessing Rheological and Textural Properties. In Encyclopedia of Dairy Sciences, 2nd ed.; Academic Press: Cambridge, MA, USA, 2011; pp. 264–271. [Google Scholar] [CrossRef]
- Jaiswal, S.; Patil, V.; Satish Kumar, K.S.; Ratnakar, P.; Rairam, S.; Tripathi, S. Comparative analysis of smear layer removal by conventional endodontic irrigants with a newly experimented irrigant-fumaric acid: A scanning electron microscopic study. J. Conserv. Dent. 2018, 21, 419–423. [Google Scholar] [CrossRef] [PubMed]
- Haznedaroğlu, F. Efficacy of various concentrations of citric acid at different pH values for smear layer removal. Oral Surg. Oral Med. Oral Pathol. Oral Radiol. Endod. 2003, 96, 340–344. [Google Scholar] [CrossRef]
- Poggio, C.; Dagna, A.; Vinci, A.; Beltrami, R.; Cucca, L.; Giardino, L. Decalcifying capability of irrigating solutions on root canal dentin mineral content. Contemp. Clin. Dent. 2015, 6, 201–205. [Google Scholar] [CrossRef]
- Sousa, S.M.; Silva, T.L. Demineralization effect of EDTA, EGTA, CDTA and citric acid on root dentin: A comparative study. Braz Oral Res. 2005, 19, 188–192. [Google Scholar] [CrossRef] [Green Version]
- Sterrett, J.D.; Delaney, B.; Rizkalla, A.; Hawkins, C.H. Optimal citric acid concentration for dentinal demineralization. Quintessence Int. 1991, 22, 371–375. [Google Scholar]
- Hülsmann, M.; Heckendorff, M.; Lennon, A. Chelating agents in root canal treatment: Mode of action and indications for their use. Int. Endod. J. 2003, 36, 810–830. [Google Scholar] [CrossRef]
Chelating Agents | Compositions | Manufacturer | |
---|---|---|---|
EDTA | 17% ethylenediaminetetraacetic acid water | Ogna Laboratori Farmaceutici, Muggio, Italy | |
Smear Clear | 17% EDTA Cetrimide (% unknown) Triton X-100 (% unknown) water | KerrHawe SA, Bioggio, Switzerland | |
BioAKT Endo | 4.846% citric acid 0.003% silver ions Detergents unknown water | New Tech Solutions s.r.l., Brescia, Italy |
Solutions | Number of Samples | Surface Tension Mean Value ± SD |
---|---|---|
17% EDTA | 5 | * 48.9 ± 0.65 |
Smear Clear | 5 | 33.00 ± 0.62 |
BioAKT Endo | 5 | ** 32.00 ± 0.59 |
Sample Level | Smear Clear | BioAKT Endo | EDTA |
---|---|---|---|
Apical | 82 ± 89 | 172 ± 229 | 63 ± 75 |
Middle | 361 ± 183 * | 606 ± 527 * | 516 ± 404 * |
Coronal | 911 ± 420 *,** | 1067 ± 485 *,** | 952 ± 313 *,** |
Total | 451 ± 436 | 615 ± 560 | 511 ± 468 |
Sample Level | Smear Clear | BioAKT Endo | EDTA |
---|---|---|---|
Apical | 329 ± 240 | 508 ± 459 § | 129 ± 147 |
Middle | 1339 ± 517 §§,* | 1351 ± 822 §§,* | 874 ± 458 * |
Coronal | 2022 ± 439 *,** | 1942 ± 617 * | 1543 ± 300 *,** |
Total | 1230 ± 813 | 1267 ± 867 | 849 ± 666 |
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Giardino, L.; Pedullà, E.; Cavani, F.; Bisciotti, F.; Giannetti, L.; Checchi, V.; Angerame, D.; Consolo, U.; Generali, L. Comparative Evaluation of the Penetration Depth into Dentinal Tubules of Three Endodontic Irrigants. Materials 2021, 14, 5853. https://doi.org/10.3390/ma14195853
Giardino L, Pedullà E, Cavani F, Bisciotti F, Giannetti L, Checchi V, Angerame D, Consolo U, Generali L. Comparative Evaluation of the Penetration Depth into Dentinal Tubules of Three Endodontic Irrigants. Materials. 2021; 14(19):5853. https://doi.org/10.3390/ma14195853
Chicago/Turabian StyleGiardino, Luciano, Eugenio Pedullà, Francesco Cavani, Francesca Bisciotti, Luca Giannetti, Vittorio Checchi, Daniele Angerame, Ugo Consolo, and Luigi Generali. 2021. "Comparative Evaluation of the Penetration Depth into Dentinal Tubules of Three Endodontic Irrigants" Materials 14, no. 19: 5853. https://doi.org/10.3390/ma14195853
APA StyleGiardino, L., Pedullà, E., Cavani, F., Bisciotti, F., Giannetti, L., Checchi, V., Angerame, D., Consolo, U., & Generali, L. (2021). Comparative Evaluation of the Penetration Depth into Dentinal Tubules of Three Endodontic Irrigants. Materials, 14(19), 5853. https://doi.org/10.3390/ma14195853