Aug 2026· Antibiotics· Vol 15, pp. 784· 0 citations· 39 references
Medicine
TL;DR
It is demonstrated that achieving an optimal balance between peptide hydrophobicity and cationicity is an effective strategy for enhancing antimicrobial selectivity without compromising antibacterial activity, highlighting A4-3 as a promising lead candidate for the development of novel antimicrobial therapeutics against drug-resistant bacterial infections.
Abstract
Background/Objectives: Antimicrobial peptides (AMPs) have emerged as promising alternatives to conventional antibiotics in response to the escalating global threat of antimicrobial resistance (AMR), owing to their potent antimicrobial activity and low propensity for resistance development. However, their clinical application remains limited by poor selectivity and undesirable toxicity toward mammalian cells. Methods: In this study, the naturally occurring frog-derived AMP Dermaseptin-A4 (A4) was selected as a template for rational design. Guided by the principle that optimising the balance between peptide hydrophobicity and cationicity could improve bacterial membrane targeting while reducing interactions with mammalian membranes, three analogues were designed through the targeted modulation of these physicochemical properties. Results: Among the designed analogues, A4-3 exhibited the best overall biological profile. A4-3 maintained a stable α-helical conformation in membrane-mimicking environments and displayed potent antimicrobial activity against tested Gram-positive and Gram-negative bacteria while exhibiting lower haemolytic and cytotoxic effects than the parent peptide. As a result, A4-3 showed improved selectivity, achieving a selectivity index of up to 34.5. A4-3 rapidly eradicated bacterial cells through a membrane-targeting mechanism, leading to membrane disruption and the loss of cellular integrity, and exhibited a low propensity for resistance development following prolonged exposure. A4-3 also retained its antimicrobial activity under physiologically relevant conditions. Conclusions: Collectively, these findings demonstrate that achieving an optimal balance between peptide hydrophobicity and cationicity is an effective strategy for enhancing antimicrobial selectivity without compromising antibacterial activity, highlighting A4-3 as a promising lead candidate for the development of novel antimicrobial therapeutics against drug-resistant bacterial infections.
Antimicrobial peptides (AMPs) are evolutionarily conserved molecules that play a central role in innate immunity and represent a promising class of candidates against antimicrobial resistance. However, their clinical application is hindered by low stability in physiological conditions, susceptibility to proteolytic deg...
Bruno Amorim-Carmo, Emanuell Santos-Silva, Alessandra Daniele-Silva et al.· Biomedicine & pharmacotherap...· 0 citations
The results suggest that incorporating metal-binding headgroups into amphiphilic scaffolds may engage a distinct mode of action compared to traditional small-molecule AMP mimetics, resulting in increased antimicrobial potency and selectivity over mammalian membranes.
Samuel O. Nitschke, Anteneh Amsalu, Muhammed Awad et al.· European journal of medicina...· 0 citations
This study identified potent AMPs with promising therapeutic potential by constructing and screening a synthetic random peptide library using a bacterial surface display system, and identified WP-4 and WP-6, which showed high antimicrobial activity, good biocompatibility, rapid bactericidal effects, and low propensity...
Shuai-Yang Wang, Shuang Wang, Xiu-Jian Liu et al.· Journal of Medicinal Chemist...· 0 citations
Synthetic mimics of antimicrobial peptides (SMAMPs) have emerged as a promising alternative to conventional antibiotics in the fight against antimicrobial resistance. Here, a new class of poly(diitaconamide)-based SMAMPs featuring facially amphiphilic repeat units is presented. Copolymers with systematically varied hyd...
Lea Sollka, Diana Lorena Guevara Solarte, S. Rau et al.· Journal of materials chemist...· 0 citations
Analysis of reverse-phase high-performance liquid chromatography and circular dichroism spectroscopy demonstrated that incorporation of pentafluorophenylalanines effectively modulates the hydrophobicity and secondary structure of peptides.
Suzuri Miyoshi, K. Obata, Hiroto Murata et al.· ACS Applied Materials and In...· 0 citations
Antimicrobial peptides (AMPs) are a promising solution to antimicrobial resistance, yet generative models for their design cannot control the physicochemical properties and motifs that shape activity and selectivity. Here, we present OmegAMP, a conditional diffusion framework controlling net charge, mean hydrophobicity...
Paulina Szymczak, Marcelo Der Torossian Torres, Diogo Soares et al.· bioRxiv· 0 citations
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