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Heuze-Vourch, N.

Publications and source records attributed to Heuze-Vourch, N..

2 recordsLinked to original sources

Local tolerance and innate immune activation of primary human respiratory cells exposed to flagellin

Antibiotic-resistant respiratory infections can lead to treatment failure, highlighting the need for alternative strategies. FLAMOD, a recombinant flagellin, stimulates innate immunity via Toll-like receptor 5 when delivered intranasally. In mice, FLAMOD protects against bacterial pneumonia. The protection is associated with activation of airway epithelial cells. This study aimed to assess the tolerance of human primary respiratory epithelium to FLAMOD administered apically as liquid droplets or by nebulization, to measure the innate immune response, and the pharmacokinetics of FLAMOD. We used epithelia reconstituted from human nasal and bronchial (MucilAir), small airways (SmallAir) and alveolar (AlveolAir) primary epithelial cells, cultured at the air-liquid interface. We report that daily administration of escalating doses of FLAMOD for 5 days was well tolerated by epithelia as barrier integrity, cilia motion and cell viability were not affected. FLAMOD was rapidly degraded without leakage into the basal compartment. Each epithelial model exhibited responses involving pathways of innate defense and immune cell infiltration, which were dose-dependent, with an effective concentration of FLAMOD in the picomolar range. Similar tolerance profile and immune responses were obtained with airway epithelium from cystic fibrosis and chronic obstructive pulmonary disease patients. In conclusion, this study supports the stimulation of epithelial Toll-like receptor 5 signaling to fight against infections of vulnerable patients.

cell biology↗

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↗