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Characterization of Novel Plantaricin-Derived Antiviral Peptides Against Flaviviruses
Örebro University, School of Medical Sciences.ORCID iD: 0000-0002-0351-976X
School of Medical Sciences, Faculty of Medicine and Health, Örebro University, Örebro, Sweden.ORCID iD: 0000-0003-3514-8999
Division of Biophysics and Bioengineering, Department of Physics, Chemistry and Biology, Linköping University, 581 83 Linköping, Sweden.
Örebro University, School of Medical Sciences.
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2025 (English)In: International Journal of Molecular Sciences, ISSN 1661-6596, E-ISSN 1422-0067, Vol. 26, no 3, article id 1038Article in journal (Refereed) Published
Abstract [en]

Flaviviruses, including West Nile virus, Zika virus, and Dengue virus, pose global health challenges due to their distribution, pathogenicity, and lack of effective treatments or vaccines. This study investigated the antiviral activity of novel truncated peptides derived from the two-peptide plantaricins PLNC8 αβ, PlnEF, PlnJK, and PlnA. The antiviral potential was predicted using machine learning tools, followed by in vitro evaluation against the Kunjin virus using plaque reduction assays in Vero cells. Molecular docking assessed peptide interactions with KUNV and ZIKV. Full-length and truncated peptides from PlnA, PlnE, PlnF, PlnJ, and PlnK demonstrated limited antiviral efficacy against KUNV in vitro, despite in silico predictions suggesting antiviral potential for PlnA, PlnE, and PlnJ. Large discrepancies were observed between the predicted and experimentally determined activities. However, complementary two-peptide plantaricins PlnEF and PlnJK exhibited significant synergistic effects. Furthermore, the truncated peptides PLNC8 α1-15 and PLNC8 β1-20 reduced KUNV viral load by over 90%, outperforming their full-length counterparts. Molecular docking revealed interactions of PLNC8 α and PLNC8 β, and their truncated variants, with KUNV and ZIKV, suggesting a mechanism involving viral envelope disruption. These findings highlight the potential of plantaricin-derived peptides as promising antiviral candidates against flaviviruses, warranting further investigation into their mechanisms and applications.

Place, publisher, year, edition, pages
MDPI, 2025. Vol. 26, no 3, article id 1038
Keywords [en]
West Nile virus, antiviral, flaviviruses, molecular docking, plantaricin, zika virus
National Category
Microbiology in the medical area Infectious Medicine
Identifiers
URN: urn:nbn:se:oru:diva-119306DOI: 10.3390/ijms26031038ISI: 001418636700001PubMedID: 39940807Scopus ID: 2-s2.0-85217735848OAI: oai:DiVA.org:oru-119306DiVA, id: diva2:1937960
Funder
Knowledge Foundation, 20180148Available from: 2025-02-17 Created: 2025-02-17 Last updated: 2025-05-12Bibliographically approved
In thesis
1. Development and Characterization of Novel Antiviral Compounds Based on Plantaricins
Open this publication in new window or tab >>Development and Characterization of Novel Antiviral Compounds Based on Plantaricins
2025 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

The development of novel broad-spectrum antiviral agents is essential for addressing therapeutic gaps in managing common viral infections and the persistent threat of emerging and re-emerging pathogens. This thesis project investigated the antiviral properties of the antimicrobial peptides plantaricins. Study I demonstrated the broad-spectrum activityof PLNC8 ∝β, which disrupted viral envelopes and markedly reduced infectivity, with peptide’s efficacy depending on viral membrane composition. Study II further explored PLNC8 ∝β in a flavivirus infection model, revealing its ability to lower viral loads, attenuate infection-induced cytotoxicity, and modulate inflammation in alveolar epithelial cells. Study III assessed additional plantaricins, identifying truncated variants PLNC8 ∝1-15 and PLNC8 β1-20 as potent antiviral candidates. Synergistic activity was observed in certain complementary two-peptide combinations. Study IV evaluated PLNC8 ∝β’s safety in murine models, demonstrating good local tolerance and a favorable therapeutic window. Intranasal administration was well tolerated, while systemic toxicity occurred at high intravenous doses, highlighting the importance of optimized delivery strategies. Preliminary data on virus–bacteria co-infections indicated that PLNC8 ∝β exerted variable antiviral and antibacterial effects and reduced infection-induced cytotoxicity. Notably, keratinocytes exhibited resistance to the flavivirus Kunjin, suggesting intrinsic viral restriction and underscoring the need for further investigation using advanced models to clarify the role of PLNC8 ∝β in co-infections. Overall, this research supports plantaricins as promising broad-spectrum antiviral candidates. Future studies should focus on optimizing delivery and dosing regimens, exploring synergistic combinations, and applying advanced models to better understand their effects in the context of virus–bacteria co-infections.

Place, publisher, year, edition, pages
Örebro: Örebro University, 2025. p. 93
Series
Örebro Studies in Medicine, ISSN 1652-4063 ; 327
Keywords
Antimicrobial Peptides, Plantaricins, PLNC8 αβ, broadspectrum antivirals, emerging and re-emerging viruses, flaviviruses, Viral infections, inflammation, virus–bacteria co-infections
National Category
Other Basic Medicine
Identifiers
urn:nbn:se:oru:diva-120191 (URN)9789175296630 (ISBN)9789175296647 (ISBN)
Public defence
2025-06-04, Örebro universitet, Campus USÖ, Tidefeltsalen (X2502), Södra Grev Rosengatan 32, Örebro, 09:00 (English)
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Supervisors
Available from: 2025-03-25 Created: 2025-03-25 Last updated: 2025-05-20Bibliographically approved

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Omer, AbubakrBengtsson, TorbjörnKhalaf, Hazem

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