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Updated: Oct 12, 2025

Production and Visualization of Bacterial Spheroplasts and Protoplasts to Characterize Antimicrobial Peptide Localization
Published on: August 11, 2018
A novel smaller β-defensin-derived peptide is active against multidrug-resistant bacterial strains
Roberta Colicchio1, Ersilia Nigro2,3, Irene Colavita2
1Department of Molecular Medicine and Medical Biotechnologies, University of Naples Federico II, Naples, Italy.
Abstract:
Antibiotic resistance is becoming a severe obstacle in the fight against acute and chronic infectious diseases that accompany most degenerative illnesses from neoplasia to osteo-arthritis and obesity. Currently, the race is on to identify pharmaceutical molecules or combinations of molecules able to prevent or reduce the insurgence and/or progression of infectivity. Attempts to substitute antibiotics with antimicrobial peptides have, thus far, met with little success against multidrug-resistant (MDR) bacterial strains. During the last decade, we designed and studied the activity and features of human β-defensin analogs, which are salt-resistant, and hence active also under high salt concentrations as, for instance, in cystic fibrosis. Herein, we describe the design, synthesis, and major features of a new 21 aa long molecule, peptide γ2. The latter derives from the γ-core of the β-defensin natural molecules, a small fragment of these molecules still bearing high antibacterial activity. We found that peptide γ2, which contains only one disulphide bond, recapitulates most of the biological properties of natural human β-defensins and can also counteract both Gram-positive and Gram-negative MDR bacterial strains and biofilm formation. Moreover, it has great stability in human serum thereby enhancing its antibacterial presence and activity without cytotoxicity in human cells. In conclusion, peptide γ2 is a promising new weapon also in the battle against intractable infectious diseases.
Insights
A novel peptide, gamma2, shows potent antibacterial activity against multidrug-resistant strains and biofilms. This human beta-defensin analog offers a promising new therapeutic option for intractable infectious diseases.
Area of Science:
- Biochemistry
- Microbiology
- Drug Discovery
Background:
- Antibiotic resistance poses a significant threat to treating infectious diseases associated with various chronic conditions.
- Existing antimicrobial peptides have shown limited efficacy against multidrug-resistant (MDR) bacterial strains.
Purpose of the Study:
- To design, synthesize, and characterize a novel peptide with enhanced antimicrobial properties.
- To evaluate the efficacy of the new peptide against MDR bacteria and biofilms.
Main Methods:
- Design and synthesis of a 21-amino acid peptide (gamma2) based on human beta-defensin structure.
- Assessment of antibacterial activity against Gram-positive and Gram-negative MDR strains.
- Evaluation of biofilm inhibition and stability in human serum.
Main Results:
- Peptide gamma2 demonstrated broad-spectrum activity against MDR bacterial strains.
- The peptide effectively inhibited biofilm formation.
- Peptide gamma2 exhibited high stability in human serum without cytotoxicity to human cells.
Conclusions:
- Peptide gamma2, a human beta-defensin analog, effectively combats MDR bacteria and biofilms.
- Its stability and lack of cytotoxicity make it a promising candidate for treating challenging infections.
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