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Experimental Therapeutics

Evaluation of the Antifungal and Wound-Healing Properties of a Novel Peptide-Based Bioadhesive Hydrogel Formulation

Ahmed S. Sultan, Taissa Vila, Eman Hefni, Amy J. Karlsson, Mary Ann Jabra-Rizk
Ahmed S. Sultan
Department of Oncology and Diagnostic Sciences, Dental School, University of Maryland, Baltimore, Maryland, USA
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  • ORCID record for Ahmed S. Sultan
Taissa Vila
Department of Oncology and Diagnostic Sciences, Dental School, University of Maryland, Baltimore, Maryland, USA
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Eman Hefni
Department of Oncology and Diagnostic Sciences, Dental School, University of Maryland, Baltimore, Maryland, USA
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Amy J. Karlsson
Department of Chemical and Biomolecular Engineering, University of Maryland, College Park, Maryland, USA
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Mary Ann Jabra-Rizk
Department of Oncology and Diagnostic Sciences, Dental School, University of Maryland, Baltimore, Maryland, USADepartment of Microbiology and Immunology, School of Medicine, University of Maryland, Baltimore, Maryland, USA
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DOI: 10.1128/AAC.00888-19
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ABSTRACT

Oral candidiasis (OC) caused by the fungal pathogen Candida albicans is the most common opportunistic infection in immunocompromised populations. The dramatic increase in resistance to common antifungal agents has emphasized the importance of identifying alternative therapeutic options. Antimicrobial peptides have emerged as promising drug candidates due to their antimicrobial properties; specifically, histatin-5 (Hst-5), a peptide naturally produced and secreted by human salivary glands, has demonstrated potent activity against C. albicans. However, as we previously demonstrated vulnerability for Hst-5 to proteolysis by C. albicans proteolytic enzymes at specific amino acid residues, a new variant (K11R-K17R) was designed with amino acid substitutions at the identified cleavage sites. The new resistant peptide demonstrated no cytotoxicity to erythrocytes or human oral keratinocytes. To evaluate the potential of the new peptide for clinical application, we utilized our FDA-approved polymer-based bioadhesive hydrogel as a delivery system and developed a therapeutic formulation specifically designed for oral topical application. The new formulation was demonstrated to be effective against C. albicans strains resistant to the traditional antifungals, and the in vitro therapeutic efficacy was found to be comparable to that of the common topical antifungal agents in clinical use. Importantly, in addition to its antifungal properties, our findings also demonstrated that the new peptide variant induces cell proliferation and rapid cell migration of human oral keratinocytes, indicative of wound healing properties. The findings from this study support the progression of the novel formulation as a therapeutic agent against oral candidiasis, as well as a therapeutic modality for promoting wound healing.

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Evaluation of the Antifungal and Wound-Healing Properties of a Novel Peptide-Based Bioadhesive Hydrogel Formulation
Ahmed S. Sultan, Taissa Vila, Eman Hefni, Amy J. Karlsson, Mary Ann Jabra-Rizk
Antimicrobial Agents and Chemotherapy Sep 2019, 63 (10) e00888-19; DOI: 10.1128/AAC.00888-19

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Evaluation of the Antifungal and Wound-Healing Properties of a Novel Peptide-Based Bioadhesive Hydrogel Formulation
Ahmed S. Sultan, Taissa Vila, Eman Hefni, Amy J. Karlsson, Mary Ann Jabra-Rizk
Antimicrobial Agents and Chemotherapy Sep 2019, 63 (10) e00888-19; DOI: 10.1128/AAC.00888-19
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KEYWORDS

Candida albicans
antimicrobial peptides
formulation
hydrogel
topical
wound healing

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