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Evaluation of Antimicrobial Activities of Nanoparticles and Nanostructured Surfaces In Vitro
Published on: April 21, 2023
Bactericidal activity of mastic resin against Staphylococcus pseudintermedius and Staphylococcus aureus and its
Nana Komai1, Yuta Kaga1, Mao Kaneki1
1Laboratory of Veterinary Pharmacology, Azabu University, 1-17-71, Fuchinobe, Chuo-ku, Sagamihara-shi, Kanagawa, Japan.
Abstract:
In recent years, inappropriate usage of antibiotics has led to a rapid increase in antimicrobial-resistant bacteria. Mastic is a natural resin obtained from the stems and leaves of Pistacia lentiscus trees. We previously demonstrated its anti-inflammatory potential for alleviating atopic dermatitis symptoms, however, its direct effects on Staphylococci are unclear. This study was performed to verify the bactericidal effects of mastic at different concentrations against staphylococcal species in vitro and to evaluate the preventive and therapeutic potential of mastic in a mouse model of pyoderma/impetigo. Mastic showed bactericidal effects against methicillin-resistant Staphylococcus pseudintermedius and Staphylococcus aureus based on counting of the bacterial colonies and measurement of the ATP content. The effects of mastic on cytotoxicity and inflammatory cytokine release induced by staphylococcal strains were monitored using a human keratinocyte cell line. A murine model of pyoderma/impetigo was developed through intracutaneous administration of staphylococci in BALB/c mice. Lesion size analysis, histological examination, bacterial count, and gene expression analyses were performed. Mastic exhibited significant bactericidal effects against both strains of staphylococci. Cellular cytotoxicity and cytokine production induced by both strains of staphylococci were significantly inhibited by mastic pre-treatment. Mastic pre-treatment of mice also significantly inhibited the development of pyoderma/impetigo induced by both strains of staphylococci. Pyoderma induced by S. pseudintermedius was also significantly alleviated by therapeutic treatment with 1 % mastic; however, this effect was less pronounced for S. aureus-induced symptoms. These findings indicate the potential of mastic administration as a preventive and therapeutic approach for managing Staphylococcus-associated skin diseases.
Insights
Mastic, a natural resin, demonstrates potent bactericidal effects against Staphylococcus bacteria, including resistant strains. This study shows mastic
Area of Science:
- Microbiology and Dermatology
- Natural Product Research
Background:
- Antibiotic resistance is a growing global health concern, particularly with Staphylococcus species.
- Mastic, a resin from Pistacia lentiscus, has known anti-inflammatory properties but its direct impact on Staphylococci was uninvestigated.
Purpose of the Study:
- To determine the in vitro bactericidal activity of mastic against Staphylococcus aureus and methicillin-resistant Staphylococcus pseudintermedius.
- To assess the preventive and therapeutic efficacy of mastic in a mouse model of Staphylococcus-induced pyoderma/impetigo.
Main Methods:
- In vitro testing of mastic concentrations on bacterial colony counts and ATP content.
- Cytotoxicity and cytokine release assays using human keratinocytes.
- In vivo studies involving a murine pyoderma model with lesion analysis, histology, and gene expression.
Main Results:
- Mastic exhibited significant bactericidal effects against both Staphylococcus aureus and S. pseudintermedius.
- Mastic pre-treatment inhibited staphylococci-induced cytotoxicity and inflammatory cytokine release in keratinocytes.
- Mastic pre-treatment prevented pyoderma development in mice; therapeutic treatment showed efficacy, particularly against S. pseudintermedius.
Conclusions:
- Mastic possesses direct bactericidal activity against key staphylococcal pathogens.
- Mastic demonstrates potential as a preventive and therapeutic agent for Staphylococcus-associated skin infections.
- Further research into mastic for managing resistant bacterial skin diseases is warranted.
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