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Assessment of Dentinal Tubules Penetration by Hyben X Delivered into the Root Canal System as an Irrigant; An in Vitro Study

INTRODUCTION: Disinfection of the root canal system is crucial for a successful endodontic treatment. Several factors influence the performance of effective irrigation. Diverse irrigating substances have been used but none has proved to completely penetrate the root canal system. HybenX dries biofil...

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Autores principales: Pérez-Quiñones, Zara, Padilla-Correales, Leonardo, Llanos-Torres, Jose, Diaz-Caballero, Antonio, Covo-Morales, Eduardo, Taron-Duyoner, Arnulfo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Iranian Center for Endodontic Research 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9900153/
https://www.ncbi.nlm.nih.gov/pubmed/36751409
http://dx.doi.org/10.22037/iej.v18i1.33114
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author Pérez-Quiñones, Zara
Padilla-Correales, Leonardo
Llanos-Torres, Jose
Diaz-Caballero, Antonio
Covo-Morales, Eduardo
Taron-Duyoner, Arnulfo
author_facet Pérez-Quiñones, Zara
Padilla-Correales, Leonardo
Llanos-Torres, Jose
Diaz-Caballero, Antonio
Covo-Morales, Eduardo
Taron-Duyoner, Arnulfo
author_sort Pérez-Quiñones, Zara
collection PubMed
description INTRODUCTION: Disinfection of the root canal system is crucial for a successful endodontic treatment. Several factors influence the performance of effective irrigation. Diverse irrigating substances have been used but none has proved to completely penetrate the root canal system. HybenX dries biofilm due to its hygroscopic properties; therefore, it is effective in the treatment of biofilm-related diseases. This investigation aimed to estimate HybenX’s degree of penetration into the dentinal tubules of upper first premolars. MATERIALS AND METHODS: Experimental in vitro intervention where 30 extracted maxillary premolars were evaluated to determine HybenX’s degree of penetration and 5% sodium hypochlorite in the dentinal tubules using three different irrigation techniques (passive ultrasonic irrigation, dynamic manual irrigation and conventional single jet irrigation technique). After preparation, the root canals were irrigated with fluorescent rhodamine 6G; then 500-micrometer sections were made to be analyzed under a fluorescence microscope. Measurements were made in micrometer in ZEN software to determine the penetration degree of each substance in the different root thirds. RESULTS: In the apical third, significant differences between the 3 irrigation techniques were found (P<0.05), similarly, for the middle and cervical thirds. Significant statistical differences between the HybenX and sodium hypochlorite were found at the cervical and middle levels when using the conventional Monoject irrigation and passive ultrasonic irrigation techniques. As for the apical level, differences were found between the passive ultrasonic irrigation techniques and the dynamic manual irrigation technique. CONCLUSIONS: Based on this in vitro study, HybenX proved to highly penetrate into the dentinal tubules, especially when using the passive ultrasonic irrigation technique. HybenX may be a useful option for root canal irrigation in endodontics.
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spelling pubmed-99001532023-02-06 Assessment of Dentinal Tubules Penetration by Hyben X Delivered into the Root Canal System as an Irrigant; An in Vitro Study Pérez-Quiñones, Zara Padilla-Correales, Leonardo Llanos-Torres, Jose Diaz-Caballero, Antonio Covo-Morales, Eduardo Taron-Duyoner, Arnulfo Iran Endod J Original Article INTRODUCTION: Disinfection of the root canal system is crucial for a successful endodontic treatment. Several factors influence the performance of effective irrigation. Diverse irrigating substances have been used but none has proved to completely penetrate the root canal system. HybenX dries biofilm due to its hygroscopic properties; therefore, it is effective in the treatment of biofilm-related diseases. This investigation aimed to estimate HybenX’s degree of penetration into the dentinal tubules of upper first premolars. MATERIALS AND METHODS: Experimental in vitro intervention where 30 extracted maxillary premolars were evaluated to determine HybenX’s degree of penetration and 5% sodium hypochlorite in the dentinal tubules using three different irrigation techniques (passive ultrasonic irrigation, dynamic manual irrigation and conventional single jet irrigation technique). After preparation, the root canals were irrigated with fluorescent rhodamine 6G; then 500-micrometer sections were made to be analyzed under a fluorescence microscope. Measurements were made in micrometer in ZEN software to determine the penetration degree of each substance in the different root thirds. RESULTS: In the apical third, significant differences between the 3 irrigation techniques were found (P<0.05), similarly, for the middle and cervical thirds. Significant statistical differences between the HybenX and sodium hypochlorite were found at the cervical and middle levels when using the conventional Monoject irrigation and passive ultrasonic irrigation techniques. As for the apical level, differences were found between the passive ultrasonic irrigation techniques and the dynamic manual irrigation technique. CONCLUSIONS: Based on this in vitro study, HybenX proved to highly penetrate into the dentinal tubules, especially when using the passive ultrasonic irrigation technique. HybenX may be a useful option for root canal irrigation in endodontics. Iranian Center for Endodontic Research 2023 /pmc/articles/PMC9900153/ /pubmed/36751409 http://dx.doi.org/10.22037/iej.v18i1.33114 Text en https://creativecommons.org/licenses/by-nc-sa/4.0/This open-access article has been distributed under the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0).https://creativecommons.org/licenses/by-nc-sa/4.0/
spellingShingle Original Article
Pérez-Quiñones, Zara
Padilla-Correales, Leonardo
Llanos-Torres, Jose
Diaz-Caballero, Antonio
Covo-Morales, Eduardo
Taron-Duyoner, Arnulfo
Assessment of Dentinal Tubules Penetration by Hyben X Delivered into the Root Canal System as an Irrigant; An in Vitro Study
title Assessment of Dentinal Tubules Penetration by Hyben X Delivered into the Root Canal System as an Irrigant; An in Vitro Study
title_full Assessment of Dentinal Tubules Penetration by Hyben X Delivered into the Root Canal System as an Irrigant; An in Vitro Study
title_fullStr Assessment of Dentinal Tubules Penetration by Hyben X Delivered into the Root Canal System as an Irrigant; An in Vitro Study
title_full_unstemmed Assessment of Dentinal Tubules Penetration by Hyben X Delivered into the Root Canal System as an Irrigant; An in Vitro Study
title_short Assessment of Dentinal Tubules Penetration by Hyben X Delivered into the Root Canal System as an Irrigant; An in Vitro Study
title_sort assessment of dentinal tubules penetration by hyben x delivered into the root canal system as an irrigant; an in vitro study
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9900153/
https://www.ncbi.nlm.nih.gov/pubmed/36751409
http://dx.doi.org/10.22037/iej.v18i1.33114
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