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Antimicrobial peptides for topical treatment of bacterial wound infections
Örebro universitet, Institutionen för medicinska vetenskaper.ORCID-id: 0009-0006-1439-6407
2025 (Engelska)Doktorsavhandling, sammanläggning (Övrigt vetenskapligt)
Abstract [en]

Modern medicine relies on the access to effective antibiotics. They are not only necessary to treat infections but enable the invasive therapies and surgeries to which we are accustomed today. Hence, the significant rise of bacterial resistance towards antibiotics threatens to topple a large part of global health care. This thesis investigates the potential of two antimicrobial peptides (AMPs), namely the bacteriocin Plantaricin NC8 ∝β (PLNC8 ∝β), and a novel synthetic lipopeptide derived from PLNC8 β termed 6-C5-N, for the topical treatment of infected wounds. Through a series of studies, the effectiveness and broad-spectrum activity of both these AMPs in vitro is demonstrated, and their influence on human cells in regard to toxicity, inflammation and survival is evaluated. Both AMPs exhibit low cytotoxicity in vitro and modulate important cytokines and growth factors in relation to infection and wound healing. Furthermore, utilizing ex vivo and in vivo models, it is demonstrated that 6-C5-N is an interesting candidate for the topical treatment of infected wounds. Additionally, a possible explanation of the complex problem with bacterial resistance to AMPs is presented, by demonstrating how extracellular divalent cations can be utilized by gram negative bacteria as protection against positively charged antibacterial peptides. In conclusion, PLNC8 ∝β and its derivative lipopeptide 6-C5-N are promising candidates for topical treatment of infected tissues and could play a role in the struggle against the development of antimicrobial resistance.

Ort, förlag, år, upplaga, sidor
Örebro: Örebro University , 2025. , s. 91
Serie
Örebro Studies in Medicine, ISSN 1652-4063 ; 333
Nyckelord [en]
Antibiotic resistance, antimicrobial peptides, bacteriocin, plantaricin, lipopeptides, ESKAPE, pathogens, chronic wounds, wound healing
Nationell ämneskategori
Andra medicinska och farmaceutiska grundvetenskaper
Identifikatorer
URN: urn:nbn:se:oru:diva-121277ISBN: 9789175296845 (tryckt)ISBN: 9789175296852 (digital)OAI: oai:DiVA.org:oru-121277DiVA, id: diva2:1961692
Disputation
2025-09-26, Örebro universitet, Campus USÖ, Tidefeltsalen, Södra Grev Rosengatan 32, Örebro, 09:15 (Svenska)
Opponent
Handledare
Tillgänglig från: 2025-05-27 Skapad: 2025-05-27 Senast uppdaterad: 2025-08-29Bibliografiskt granskad
Delarbeten
1. Plantaricin NC8 αβ prevents Staphylococcus aureus-mediated cytotoxicity and inflammatory responses of human keratinocytes
Öppna denna publikation i ny flik eller fönster >>Plantaricin NC8 αβ prevents Staphylococcus aureus-mediated cytotoxicity and inflammatory responses of human keratinocytes
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2021 (Engelska)Ingår i: Scientific Reports, E-ISSN 2045-2322, Vol. 11, nr 1, artikel-id 12514Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Multidrug resistance bacteria constitue an increasing global health problem and the development of novel therapeutic strategies to face this challenge is urgent. Antimicrobial peptides have been proven as potent agents against pathogenic bacteria shown by promising in vitro results. The aim of this study was to characterize the antimicrobial effects of PLNC8 αβ on cell signaling pathways and inflammatory responses of human keratinocytes infected with S. aureus. PLNC8 αβ did not affect the viability of human keratinocytes but upregulated several cytokines (IL-1β, IL-6, CXCL8), MMPs (MMP1, MMP2, MMP9, MMP10) and growth factors (VEGF and PDGF-AA), which are essential in cell regeneration. S. aureus induced the expression of several inflammatory mediators at the gene and protein level and PLNC8 αβ was able to significantly suppress these effects. Intracellular signaling events involved primarily c-Jun via JNK, c-Fos and NFκB, suggesting their essential role in the initiation of inflammatory responses in human keratinocytes. PLNC8 αβ was shown to modulate early keratinocyte responses, without affecting their viability. The peptides have high selectivity towards S. aureus and were efficient at eliminating the bacteria and counteracting their inflammatory and cytotoxic effects, alone and in combination with low concentrations of gentamicin. We propose that PLNC8 αβ may be developed to combat infections caused by Staphylococcus spp.

Ort, förlag, år, upplaga, sidor
Nature Publishing Group, 2021
Nationell ämneskategori
Mikrobiologi inom det medicinska området
Identifikatorer
urn:nbn:se:oru:diva-92410 (URN)10.1038/s41598-021-91682-6 (DOI)000664657500009 ()34131160 (PubMedID)2-s2.0-85108146841 (Scopus ID)
Forskningsfinansiär
KK-stiftelsen, 20180148Stiftelsen för strategisk forskning (SSF), RMX18-0039
Tillgänglig från: 2021-06-17 Skapad: 2021-06-17 Senast uppdaterad: 2025-08-27Bibliografiskt granskad
2. Development of novel broad-spectrum antimicrobial lipopeptides derived from plantaricin NC8 β
Öppna denna publikation i ny flik eller fönster >>Development of novel broad-spectrum antimicrobial lipopeptides derived from plantaricin NC8 β
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2023 (Engelska)Ingår i: Scientific Reports, E-ISSN 2045-2322, Vol. 13, nr 1, artikel-id 4104Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Bacterial resistance towards antibiotics is a major global health issue. Very few novel antimicrobial agents and therapies have been made available for clinical use during the past decades, despite an increasing need. Antimicrobial peptides have been intensely studied, many of which have shown great promise in vitro. We have previously demonstrated that the bacteriocin Plantaricin NC8 αβ (PLNC8 αβ) from Lactobacillus plantarum effectively inhibits Staphylococcus spp., and shows little to no cytotoxicity towards human keratinocytes. However, due to its limitations in inhibiting gram-negative species, the aim of the present study was to identify novel antimicrobial peptidomimetic compounds with an enhanced spectrum of activity, derived from the β peptide of PLNC8 αβ. We have rationally designed and synthesized a small library of lipopeptides with significantly improved antimicrobial activity towards both gram-positive and gram-negative bacteria, including the ESKAPE pathogens. The lipopeptides consist of 16 amino acids with a terminal fatty acid chain and assemble into micelles that effectively inhibit and kill bacteria by permeabilizing their cell membranes. They demonstrate low hemolytic activity and liposome model systems further confirm selectivity for bacterial lipid membranes. The combination of lipopeptides with different antibiotics enhanced the effects in a synergistic or additive manner. Our data suggest that the novel lipopeptides are promising as future antimicrobial agents, however additional experiments using relevant animal models are necessary to further validate their in vivo efficacy.

Ort, förlag, år, upplaga, sidor
Springer Nature, 2023
Nationell ämneskategori
Mikrobiologi
Identifikatorer
urn:nbn:se:oru:diva-104967 (URN)10.1038/s41598-023-31185-8 (DOI)000988825800016 ()36914718 (PubMedID)2-s2.0-85150098922 (Scopus ID)
Forskningsfinansiär
Stiftelsen för strategisk forskning (SSF), RMX18 0039KK-stiftelsen, 20180148
Tillgänglig från: 2023-03-15 Skapad: 2023-03-15 Senast uppdaterad: 2025-08-27Bibliografiskt granskad
3. The antibacterial lipopeptide 6-C5-N effectively combats Staphylococcus aureus, counteracts bacterial cytotoxicity and promotes wound healing
Öppna denna publikation i ny flik eller fönster >>The antibacterial lipopeptide 6-C5-N effectively combats Staphylococcus aureus, counteracts bacterial cytotoxicity and promotes wound healing
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(Engelska)Manuskript (preprint) (Övrigt vetenskapligt)
Nationell ämneskategori
Andra medicinska och farmaceutiska grundvetenskaper
Identifikatorer
urn:nbn:se:oru:diva-123108 (URN)
Tillgänglig från: 2025-08-27 Skapad: 2025-08-27 Senast uppdaterad: 2025-08-27Bibliografiskt granskad
4. Gram negative bacteria utilize extracellular divalent cations as a defence mechanism against positively charged antimicrobial peptides
Öppna denna publikation i ny flik eller fönster >>Gram negative bacteria utilize extracellular divalent cations as a defence mechanism against positively charged antimicrobial peptides
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(Engelska)Manuskript (preprint) (Övrigt vetenskapligt)
Nationell ämneskategori
Andra medicinska och farmaceutiska grundvetenskaper
Identifikatorer
urn:nbn:se:oru:diva-123110 (URN)
Tillgänglig från: 2025-08-27 Skapad: 2025-08-27 Senast uppdaterad: 2025-08-27Bibliografiskt granskad

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