Cargando…

Rhamnolipid 89 Biosurfactant Is Effective against Streptococcus oralis Biofilm and Preserves Osteoblast Behavior: Perspectives in Dental Implantology

Biofilm-related peri-implant diseases represent the major complication for osteointegrated dental implants, requiring complex treatments or implant removal. Microbial biosurfactants emerged as new antibiofilm coating agents for implantable devices thanks to their high biocompatibility. This study ai...

Descripción completa

Detalles Bibliográficos
Autores principales: Tambone, Erica, Ceresa, Chiara, Marchetti, Alice, Chiera, Silvia, Anesi, Adriano, Nollo, Giandomenico, Caola, Iole, Bosetti, Michela, Fracchia, Letizia, Ghensi, Paolo, Tessarolo, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10530769/
https://www.ncbi.nlm.nih.gov/pubmed/37762317
http://dx.doi.org/10.3390/ijms241814014
_version_ 1785111563153178624
author Tambone, Erica
Ceresa, Chiara
Marchetti, Alice
Chiera, Silvia
Anesi, Adriano
Nollo, Giandomenico
Caola, Iole
Bosetti, Michela
Fracchia, Letizia
Ghensi, Paolo
Tessarolo, Francesco
author_facet Tambone, Erica
Ceresa, Chiara
Marchetti, Alice
Chiera, Silvia
Anesi, Adriano
Nollo, Giandomenico
Caola, Iole
Bosetti, Michela
Fracchia, Letizia
Ghensi, Paolo
Tessarolo, Francesco
author_sort Tambone, Erica
collection PubMed
description Biofilm-related peri-implant diseases represent the major complication for osteointegrated dental implants, requiring complex treatments or implant removal. Microbial biosurfactants emerged as new antibiofilm coating agents for implantable devices thanks to their high biocompatibility. This study aimed to assess the efficacy of the rhamnolipid 89 biosurfactant (R89BS) in limiting Streptococcus oralis biofilm formation and dislodging sessile cells from medical grade titanium, but preserving adhesion and proliferation of human osteoblasts. The inhibitory activity of a R89BS coating on S. oralis biofilm formation was assayed by quantifying biofilm biomass and microbial cells on titanium discs incubated up to 72 h. R89BS dispersal activity was addressed by measuring residual biomass of pre-formed biofilms after rhamnolipid treatment up to 24 h. Adhesion and proliferation of human primary osteoblasts on R89BS-coated titanium were evaluated by cell count and adenosine-triphosphate quantification, while cell differentiation was studied by measuring alkaline phosphatase activity and observing mineral deposition. Results showed that R89BS coating inhibited S. oralis biofilm formation by 80% at 72 h and dislodged 63–86% of pre-formed biofilms in 24 h according to concentration. No change in the adhesion of human osteoblasts was observed, whereas proliferation was reduced accompanied by an increase in cell differentiation. R89BS effectively counteracts S. oralis biofilm formation on titanium and preserves overall osteoblasts behavior representing a promising preventive strategy against biofilm-related peri-implant diseases.
format Online
Article
Text
id pubmed-10530769
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-105307692023-09-28 Rhamnolipid 89 Biosurfactant Is Effective against Streptococcus oralis Biofilm and Preserves Osteoblast Behavior: Perspectives in Dental Implantology Tambone, Erica Ceresa, Chiara Marchetti, Alice Chiera, Silvia Anesi, Adriano Nollo, Giandomenico Caola, Iole Bosetti, Michela Fracchia, Letizia Ghensi, Paolo Tessarolo, Francesco Int J Mol Sci Article Biofilm-related peri-implant diseases represent the major complication for osteointegrated dental implants, requiring complex treatments or implant removal. Microbial biosurfactants emerged as new antibiofilm coating agents for implantable devices thanks to their high biocompatibility. This study aimed to assess the efficacy of the rhamnolipid 89 biosurfactant (R89BS) in limiting Streptococcus oralis biofilm formation and dislodging sessile cells from medical grade titanium, but preserving adhesion and proliferation of human osteoblasts. The inhibitory activity of a R89BS coating on S. oralis biofilm formation was assayed by quantifying biofilm biomass and microbial cells on titanium discs incubated up to 72 h. R89BS dispersal activity was addressed by measuring residual biomass of pre-formed biofilms after rhamnolipid treatment up to 24 h. Adhesion and proliferation of human primary osteoblasts on R89BS-coated titanium were evaluated by cell count and adenosine-triphosphate quantification, while cell differentiation was studied by measuring alkaline phosphatase activity and observing mineral deposition. Results showed that R89BS coating inhibited S. oralis biofilm formation by 80% at 72 h and dislodged 63–86% of pre-formed biofilms in 24 h according to concentration. No change in the adhesion of human osteoblasts was observed, whereas proliferation was reduced accompanied by an increase in cell differentiation. R89BS effectively counteracts S. oralis biofilm formation on titanium and preserves overall osteoblasts behavior representing a promising preventive strategy against biofilm-related peri-implant diseases. MDPI 2023-09-13 /pmc/articles/PMC10530769/ /pubmed/37762317 http://dx.doi.org/10.3390/ijms241814014 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tambone, Erica
Ceresa, Chiara
Marchetti, Alice
Chiera, Silvia
Anesi, Adriano
Nollo, Giandomenico
Caola, Iole
Bosetti, Michela
Fracchia, Letizia
Ghensi, Paolo
Tessarolo, Francesco
Rhamnolipid 89 Biosurfactant Is Effective against Streptococcus oralis Biofilm and Preserves Osteoblast Behavior: Perspectives in Dental Implantology
title Rhamnolipid 89 Biosurfactant Is Effective against Streptococcus oralis Biofilm and Preserves Osteoblast Behavior: Perspectives in Dental Implantology
title_full Rhamnolipid 89 Biosurfactant Is Effective against Streptococcus oralis Biofilm and Preserves Osteoblast Behavior: Perspectives in Dental Implantology
title_fullStr Rhamnolipid 89 Biosurfactant Is Effective against Streptococcus oralis Biofilm and Preserves Osteoblast Behavior: Perspectives in Dental Implantology
title_full_unstemmed Rhamnolipid 89 Biosurfactant Is Effective against Streptococcus oralis Biofilm and Preserves Osteoblast Behavior: Perspectives in Dental Implantology
title_short Rhamnolipid 89 Biosurfactant Is Effective against Streptococcus oralis Biofilm and Preserves Osteoblast Behavior: Perspectives in Dental Implantology
title_sort rhamnolipid 89 biosurfactant is effective against streptococcus oralis biofilm and preserves osteoblast behavior: perspectives in dental implantology
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10530769/
https://www.ncbi.nlm.nih.gov/pubmed/37762317
http://dx.doi.org/10.3390/ijms241814014
work_keys_str_mv AT tamboneerica rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT ceresachiara rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT marchettialice rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT chierasilvia rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT anesiadriano rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT nollogiandomenico rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT caolaiole rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT bosettimichela rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT fracchialetizia rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT ghensipaolo rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology
AT tessarolofrancesco rhamnolipid89biosurfactantiseffectiveagainststreptococcusoralisbiofilmandpreservesosteoblastbehaviorperspectivesindentalimplantology