Morphological changes and viability of Streptococcus mutans biofilm treated with erythrosine: A confocal laser scanning microscopy analysis

Author:

Paschoal Marco Aurélio Benini1ORCID,Gonçalves Letícia Machado2ORCID,Cavalcante Salma Ivanna Araújo3ORCID,Andrade‐Maia Gabriele1ORCID,Duarte Simone4ORCID

Affiliation:

1. Department of Child and Adolescent Oral Health Federal University of Minas Gerais – UFMG Belo Horizonte Brazil

2. Department of Dentistry Federal University of Maranhão – UFMA São Luís Brazil

3. Post‐Graduate Program in Dentistry CEUMA University São Luís Brazil

4. Senior Director, Applied Research Department American Dental Association Science and Research Institute Chicago Illinois USA

Abstract

AbstractAntimicrobial photodynamic therapy (a‐PDT) is a modality that aims to induce microorganisms through visible light, a photosensitizer, and molecular oxygen. This therapy has shown promising results in controlling cariogenic biofilm in vitro and in vivo counterparts. This study investigated bacterial viability and morphological characterization of Streptococcus mutans mature biofilms after combination of erythrosine and a high potency dental curing light. Biofilms were formed on saliva‐coated hydroxyapatite disks in batch culture. The samples were performed in triplicates. Fresh medium was replaced daily for five days and treated using 40 μM of E activated by HL 288 J/cm2 and total dose of 226 J at 1200 mW/cm2. Phosphate buffer saline and 0.12% of chlorhexidine were used as negative and positive control, respectively. After treatment, biofilms were assessed for microbial viability and morphological characterization by means of bio‐volume and thickness. COMSTAT software was used for image analysis. Data were analyzed using two‐way ANOVA followed by Tukey test with significance level 5%. The application of a‐PDT and CHX treatments decreased S. mutans bacterial viability. The image analysis showed more red cells on biofilms when compared to other groups, demonstrating photobacterial killing. Erythrosine irradiated with a high potency curing light can potentially act as an antimicrobial tool in the treatment of cariogenic biofilms. The morphology and viability of microorganisms were impacted after treatment. Treatment with photodynamic therapy may be able to reduce the bio‐volume and viability of bacteria present in biofilms.Clinical Relevance and Research HighlightsThe use of the a‐PDT technique has been applied in dentistry with satisfactory results. Some applications of this technique are in stomatology and endodontics. In the present study, we sought to understand the use of photodynamic therapy in the control of biofilm and the results found are compatible with the objective of microbiological control proposed by this technique, thus raising the alert for future studies in vivo using the combination of a‐PDT with erythrosine, since they are easily accessible materials for the dental surgeon and can be applied in clinical practice.

Funder

Fundação de Amparo à Pesquisa e ao Desenvolvimento Científico e Tecnológico do Maranhão

Publisher

Wiley

Subject

Medical Laboratory Technology,Instrumentation,Histology,Anatomy

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