Quorum sensing signal molecule modulation of immunity: role in host responses to P. aeruginosa lung infection

Funding Activity

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Funded Activity Summary

Pseudomonas aeruginosa is a bacterium that causes serious infections in humans, particularly those with Cystic Fibrosis, or who are immunocompromised, suffering serious burn injuries or have long term catheters. This study will investigate how P. aeruginosa may be able to increase its virulence by producing molecules known as Quorum Sensing Signal Molecules (QSSM). We believe the production of these QSSMs by this bacterium enables them to affect how the host responds by affecting their immune system. We will be investigating how this QSSM may suppress immunity and what influence this has on both the severity of infection and the potential for development of chronic infection. The study will first of all determine where the QSSM exerts its effects (that is, can it escape from the site of infection to affect other host sites) and this will direct us in how we may learn more about the way it can affect the host during an infection. We will investigate the direct affects of QSSM on acute and chronic types of P. aeruginosa lung infection and then from this, determine if the outcome exacerbates a subsequent infection. The work is significant in that a knowledge and understanding of these virulence factors will assist in the design of better therapeutic and prophylactic strategies for both prevention of infection in susceptible individuals and treatment of those that suffer from chronic infection.

Funded Activity Details

Start Date: 01-01-2006

End Date: 01-01-2008

Funding Scheme: NHMRC Project Grants

Funding Amount: $251,014.00

Funder: National Health and Medical Research Council

Research Topics

ANZSRC Field of Research (FoR)

Respiratory Diseases

ANZSRC Socio-Economic Objective (SEO)

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Other Keywords

Chronic infection | Cystic fibrosis | Immunity to infection | Inflammation | host immune responses | inflammation | pathogenesis of Pseudomonas aeruginosis | quarum sensing signal molecules | respiratory infection