Introduction: The aim of this study was to evaluate the efficacy of chitosan nanoparticles (CNPs) and ethanolic propolis extract (EPE) incorporated into a calcium hydroxide paste (Ca[OH]) to kill bacterial biofilms.
Methods: Human root canal dentin was infected with Enterococcus faecalis for 21 days and also intraorally for 48 hours followed by incubation in brain-heart infusion for 48 hours to standardize biofilm growth. Ca(OH) pastes associated or not with CNPs or EPE were tested on biofilms for 7 and 14 days. Distilled water was used for control purposes. After the treatment procedures, microbiological analysis was performed to determine the reduction in E. faecalis colonies. Confocal microscopy was used to determine the percentage of cell viability in polymicrobial biofilms before and after the exposure to the experimental intracanal medications.
Results: All experimental pastes were able to significantly reduce the E. faecalis colony-forming units (CFU) after 7 or 14 days (P < .05). However, the CFU reduction was significantly improved when CNPs were incorporated into the Ca(OH) paste (P < .05). The multispecies biofilms treated with Ca(OH) showed similar percentages of bacterial viability to the control regardless of the exposure time (P > .05). The viable cell count significantly dropped in the Ca(OH)/CNPs groups for both 7 and 14 days (P < .05), whereas the Ca(OH)/EPE groups were only effective in eliminating bacteria during the first 7 days of treatment (P < .05).
Conclusions: Incorporating CNPs into pastes of Ca(OH) could potentially be beneficial when using interappointment intracanal medications because of their ability to kill bacteria in short- and long-term exposure.
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http://dx.doi.org/10.1016/j.joen.2017.03.017 | DOI Listing |
BMC Biotechnol
January 2025
Department of Microbiology and Immunology, Faculty of Pharmacy, Beni-Suef University, Beni-Suef, 62511, Egypt.
Background: Successful treatment of pathogenic bacteria like Enterobacter Cloacae with bacteriophage (phage) counteract some hindrance such as phage stability and immunological clearance. Our research is focused on the encapsulation of phage HK6 within chitosan nanoparticles.
Result: Encapsulation significantly improves stability, efficacy, and delivery of phages.
Sci Rep
January 2025
Botany and Microbiology Department, Faculty of Science, Zagazig University, Zagazig, Egypt.
The cotton leafworm, Spodoptra littoralis, causes great damage to cotton crops. A new, safer method than insecticide is necessary for its control. Selenium nanoparticles (SeNPs) are metalloid nanomaterial, with extensive biological activities.
View Article and Find Full Text PDFSci Rep
January 2025
Biophysics Department, Faculty of Science, Cairo University, Giza, Egypt.
Chemical fungicides have been used to control fungal diseases like Sclerotinia sclerotiorum. These fungicides must be restricted because of their toxicity and the development of resistance strains. Therefore, utilizing natural nanoscale materials in agricultural production is a potential alternative.
View Article and Find Full Text PDFACS Omega
December 2024
Institute of Analytical Sciences and Physico-Chemistry for Environment and Materials (IPREM), E2S UPPA, CNRS, Université de Pau et des Pays de l'Adour, University Avenue, 64 012 Pau, France.
The Mediterranean diet is a well-known dietary pattern that has gained considerable popularity worldwide for its ability to prevent the progression of nonalcoholic fatty liver disease. This is largely attributed to the use of virgin olive oil as the primary source of fat, which contains a substantial amount of squalene, a natural antioxidant. In order to enhance the delivery of squalene and amplify its effects due to its highly hydrophobic nature, herein, squalene has been incorporated into chitosan nanoparticles.
View Article and Find Full Text PDFInt J Biol Macromol
January 2025
Faculty of physics, University of Tabriz, Tabriz, Iran.
Today, curcumin's therapeutic properties are used in drug delivery systems. In this work, chitosan (CS) /Montmorillonite (MMT) hydrogels were synthesized to improve the performance of curcumin molecules. According to the results, drug release characteristics of CS/MMT/curcumin highly depend on the pH of the environment and properties of Ag nanoparticles.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!