Selected article for: "activation infection and adaptive immunity"

Author: Kelvin, Alyson A.; Degousee, Norbert; Banner, David; Stefanski, Eva; Leόn, Alberto J.; Angoulvant, Denis; Paquette, Stéphane G.; Huang, Stephen S.H.; Danesh, Ali; Robbins, Clinton S.; Noyan, Hossein; Husain, Mansoor; Lambeau, Gerard; Gelb, Michael; Kelvin, David J.; Rubin, Barry B.
Title: Lack of group X secreted phospholipase A2 increases survival following pandemic H1N1 influenza infection
  • Cord-id: h5g4z8ts
  • Document date: 2014_4_30
  • ID: h5g4z8ts
    Snippet: Abstract The role of Group X secreted phospholipase A2 (GX-sPLA2) during influenza infection has not been previously investigated. We examined the role of GX-sPLA2 during H1N1 pandemic influenza infection in a GX-sPLA2 gene targeted mouse (GX−/−) model and found that survival after infection was significantly greater in GX−/− mice than in GX+/+ mice. Downstream products of GX-sPLA2 activity, PGD2, PGE2, LTB4, cysteinyl leukotrienes and Lipoxin A4 were significantly lower in GX−/− mic
    Document: Abstract The role of Group X secreted phospholipase A2 (GX-sPLA2) during influenza infection has not been previously investigated. We examined the role of GX-sPLA2 during H1N1 pandemic influenza infection in a GX-sPLA2 gene targeted mouse (GX−/−) model and found that survival after infection was significantly greater in GX−/− mice than in GX+/+ mice. Downstream products of GX-sPLA2 activity, PGD2, PGE2, LTB4, cysteinyl leukotrienes and Lipoxin A4 were significantly lower in GX−/− mice BAL fluid. Lung microarray analysis identified an earlier and more robust induction of T and B cell associated genes in GX−/− mice. Based on the central role of sPLA2 enzymes as key initiators of inflammatory processes, we propose that activation of GX-sPLA2 during H1N1pdm infection is an early step of pulmonary inflammation and its inhibition increases adaptive immunity and improves survival. Our findings suggest that GX-sPLA2 may be a potential therapeutic target during influenza.

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