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Ruuls, L.

Publications and source records attributed to Ruuls, L..

2 recordsLinked to original sources

Flagellin nebulization enhances respiratory immune responses in the porcine model

Respiratory delivery of the Toll-like receptor 5 agonist FLAMOD, a recombinant flagellin, offers a promising approach for treating bacterial pneumonia. FLAMOD stimulates the airway epithelium, mobilizing and activating immune cells and effectors to combat infections. While previous evidences were obtained in mouse models, this study represents the first comprehensive assessment of FLAMOD delivered by nebulization in pigs. Our results demonstrate that a single nebulization of FLAMOD did not cause any adverse effects on clinical parameters. Histological analysis supported that FLAMOD treatment led to immune cell infiltration in the lung tissue, indicative of an active immune response. Flow cytometry confirmed granulocyte recruitment in conducting airways. RNA sequencing established immune activation across the respiratory tract, from the nose, trachea, bronchi to the lungs, highlighting innate immunity, bacterial defense, cytokine and chemokine signaling, and granulocyte chemotaxis as key biological pathways. These findings demonstrated the capacity of FLAMOD to induce a robust and common immune response throughout the porcine respiratory system as well as specific compartmentalized immune signatures. This study establishes FLAMOD as a potent activator of innate immunity, providing a proof-of-concept for inhalation-based therapeutic strategies to combat bacterial pneumonia in the clinical setting.

immunology↗

Flagellin aerosol administration improves the efficacy of antibiotic treatment in Actinobacillus pleuropneumoniae infected pigs

Swine infections with Actinobacillus pleuropneumoniae (App), the causative agent of porcine pleuropneumonia, lead to significant production losses. Surviving pigs may harbor antibiotic-resistant bacteria, highlighting the need for alternatives to reduce antimicrobial use. Stimulation of respiratory innate immunity via Toll-like receptor 5 (TLR5) agonists such as FLAMOD (a recombinant flagellin), has emerged as a promising strategy for combating bacterial lung infections. In a recent study, aerosolized administration of FLAMOD was found to elicit respiratory immune responses in pigs. This study assessed FLAMODs protective effects against App, either as a prophylactic intervention or as an adjunct to antibiotic therapy. Prophylactic administration of aerosolized FLAMOD via nebulization before App challenge failed to confer protection. However, in a therapeutic setting, where pigs were infected with App and treated with either a subtherapeutic dose of penicillin G (PenG) alone or a combination of PenG and aerosolized FLAMOD. Notably, the FLAMOD and PenG combination significantly improved bacterial clearance from the lungs. Moreover, FLAMOD-PenG treated pigs exhibited a trend toward increased weight gain and fewer lung lesions compared to those receiving PenG alone. These findings provide proof for the concept that FLAMOD enhances antibiotic efficacy, potentially lowering the required antibiotic dose and contributing to antimicrobial resistance mitigation in pigs.

immunology↗