Effect of supplementary sodium hypochlorite agitation techniques on an ex vivo oral multispecies biofilm during passive disinfection of simulated immature roots

Author:

Vieira Walbert de Andrade1ORCID,de‐Jesus‐Soares Adriana1ORCID,Lopes Erica M.1ORCID,Gomes Brenda P. F. A.1ORCID,Lima Bruno P.2ORCID

Affiliation:

1. Division of Endodontics, Department of Restorative Dentistry, Piracicaba Dental School Universidade Estadual de Campinas – UNICAMP Piracicaba Brazil

2. Division of Basic Sciences, Department of Diagnostic and Biological Sciences, School of Dentistry University of Minnesota Minneapolis Minnesota USA

Abstract

AbstractAimTo compare the effect of different sodium hypochlorite (NaOCl) agitation techniques on an ex vivo oral multispecies biofilm during passive disinfection of simulated immature roots.MethodologyExtracted human teeth were prepared to simulate immature roots. They were infected with a dental plaque‐derived multispecies biofilm and cultured for 14 days. The roots were randomly designated into four groups: (1) negative control (PBS), (2) 1.5% NaOCl (CNI), (3) CNI + Ultrasonic activation (UA), (4) CNI + EasyClean agitation (ECA), (5) CNI + XP‐endo finisher agitation (XPF), and (6) positive control (6% NaOCl). Biofilm samples were collected from the root canals and used to determine the number of viable cells (colony‐forming units), scanning electron microscopy, and 16S rRNA gene sequencing. The mean colony‐forming units per mL (CFU/mL) were analysed using One‐way anova. 16S rRNA sequencing data were analysed for alpha (observed OTUs, Shannon index, and Chao1) and beta diversity (Bray‐Curtis dissimilarities). The LEfSe analysis was used to determine the effect of treatment procedures on the abundance of root canal microbiota. The significance was set at .05.ResultsPBS and CNI samples had significantly higher CFU/mL counts than UA, ECA, XPF, and 6% NaOCl samples (p < .05). The pre‐treatment, PBS, and CNI groups had significantly greater alpha diversity than the UA, ECA, XPF, and 6% NaOCl groups (p < .05). NaOCl agitation groups and the 6% NaOCl group achieved a more pronounced reduction in bacteria from the genera Fusobacterium, Actinomyces, Porphyromonas, and Capnocytophaga.ConclusionsThe effectiveness of passive disinfection protocols was enhanced by NaOCl agitation techniques, suggesting that this supplementary method can improve the outcome of revitalization procedures.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

University of Minnesota

Publisher

Wiley

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