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Herein, we report a pair of paenipeptin C'-based antimicrobial linear lipopeptides that significantly enhance bacterial inhibition through conjugation to antibiotics. When co-incubated with or , these peptides induce bacterial death. The antimicrobial peptides target negatively charged bacterial membranes electrostatic interactions, subsequently disrupting membrane integrity through aggregation and insertion, leading to membrane rupture and cytoplasmic leakage, as evidenced by bacterial morphology studies. Lipopeptides with longer alkyl chains penetrate deeper into the membrane structure, demonstrating stronger antibacterial effects. Additionally, the conjugated antibiotics may enhance bactericidal activity by inhibiting intracellular DNA gyrase. Therapeutic efficacy was further validated in a murine infected wound model. This work not only develops a class of broad-spectrum antimicrobial lipopeptides but also provides a novel strategy for developing antibiotic-conjugated antimicrobial peptides to enhance multiple antibacterial inhibition with minimal side effects.
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http://dx.doi.org/10.1039/d5ra02932e | DOI Listing |
Toxicon
September 2025
Instituto Nacional de Pesquisas da Amazônia - INPA.
Social wasps make up a significant part to the diversity of the Hymenoptera order, one of the most varied insect groups. Beyond their ecological importance, these insects use their venom for defense, protecting their colonies. The venom of social wasps are rich in biologically active substances, including biogenic amines, peptides, proteins, enzymes, allergens, and volatile compounds.
View Article and Find Full Text PDFMicrobiol Res
August 2025
Microbial Processes and Interactions (MiPI), TERRA Teaching and Research Centre, Joint Research Unit 1158 BioEcoAgro, Gembloux Agro-Bio Tech, University of Liège, Gembloux 5030, Belgium. Electronic address:
The biocontrol fungus Purpureocillium lilacinum PLBJ-1 produces leucinostatins, a class of non-ribosomal peptides (NRPs) with broad-spectrum antimicrobial activities. However, the molecular mechanisms underlying the optimization of culture conditions for leucinostatin production remain unexplored. Previous research showed that PLBJ-1 synthesizes leucinostatins more effectively in hand-made Potato Dextrose Broth (PDB-M) than in commercially available PDB (PDB-C).
View Article and Find Full Text PDFMol Immunol
September 2025
Cytogenetics Laboratory, Department of Zoology, Banaras Hindu University, 221005, India. Electronic address:
The innate immune response is a double-edged sword in insects, comprising the humoral and cellular mechanisms to fight and eliminate pathogens. The humoral response is achieved by the production of antimicrobial peptides, which are secreted in the hemolymph. The cellular responses are mediated by phagocytosis, encapsulation and melanization.
View Article and Find Full Text PDFAllergol Int
September 2025
Atopy (Allergy) Research Center, Juntendo University Graduate School of Medicine, Tokyo, Japan; Faculty of International Liberal Arts, Juntendo University, Tokyo, Japan. Electronic address:
The epidermal immune microenvironment is a multifaceted system in which the interplay between the skin microbiome and antimicrobial peptides plays a pivotal role in sustaining skin homeostasis and preventing dysbiosis. Disruption of these interactions can lead to inflammatory skin conditions such as atopic dermatitis. This review aims to explore the complex mechanisms by which antimicrobial peptides and the skin microbiome communicate within the epidermal immune microenvironment, emphasizing causal dynamics and the dual role of antimicrobial peptides.
View Article and Find Full Text PDFMicrob Pathog
September 2025
Central Research Laboratory and Molecular Diagnostics, School of Allied Health Sciences, Datta Meghe Institute of Higher Education and Research, Sawangi (Meghe), Postal code 442001, Wardha, Maharashtra, India.
Concerningly, multidrug-resistant bacteria have emerged as a prime worldwide trouble, obstructing the treatment of infectious diseases and causing doubts about the therapeutic accidentalness of presently existing drugs. Novel antimicrobial interventions deserve development as conventional antibiotics are incapable of keeping pace with bacteria evolution. Various promising approaches to combat MDR infections are discussed in this review.
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