Literature DB >> 18206870

Poly (ADP) ribose synthetase inhibition in alveolar macrophages undergoing hypoxia and reoxygenation.

Anton S McCourtie1, Alexander S Farivar, Steven M Woolley, Heather E Merry, Patrick S Wolf, Csaba Szabo, Michael S Mulligan.   

Abstract

BACKGROUND: Inhibition of the nuclear enzyme poly ribose synthetase (PARS) protects against in vivo lung ischemia reperfusion injury (LIRI). The effectiveness of intratracheal treatment suggests that PARS inhibition may primarily modulate alveolar macrophage (AM) activation. These studies attempted to characterize the effects of PARS on AM activation in response to oxidative stress.
METHODS: Primary cultures of AM were rendered hypoxic for 2 h and reoxygenated for up to 4 h. Cells were preincubated with INO-1001, a specific PARS inhibitor 1 h prior to hypoxia. Gel shift assays characterized nuclear factor kappa B (NFkappaB), and enzyme linked immunosorbent assay quantitated chemokine/cytokine protein secretion.
RESULTS: Hypoxia and reoxygenation resulted in an increase in the early nuclear translocation of NFkappaB, and an increase in the secretion of the cytokine tumor necrosis factor-alpha (TNF-alpha), chemokines macrophage inflammatory protein (MIP-1alpha), monocyte chemoattractant protein one (MCP-1) and cytokine induced neutrophil chemoattractant (CINC). Pretreatment of AM with INO-1001 decreased both the early translocation of NFkappaB and the production of TNF-alpha (p<0.05) and MIP-1alpha p=0.02, but did not affect CINC or MCP-1 production.
CONCLUSIONS: These findings indicate that PARS inhibition in the AM blunts their response to oxidative stress and may help explain the protective effects of intratracheal PARS inhibition in LIRI.

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Year:  2007        PMID: 18206870     DOI: 10.1016/j.yexmp.2007.11.005

Source DB:  PubMed          Journal:  Exp Mol Pathol        ISSN: 0014-4800            Impact factor:   3.362


  5 in total

1.  Poly(ADP-ribose) polymerase-1-induced NAD(+) depletion promotes nuclear factor-κB transcriptional activity by preventing p65 de-acetylation.

Authors:  Tiina M Kauppinen; Li Gan; Raymond A Swanson
Journal:  Biochim Biophys Acta       Date:  2013-04-15

2.  The systemic inflammation of alveolar hypoxia is initiated by alveolar macrophage-borne mediator(s).

Authors:  Jie Chao; John G Wood; Victor Gustavo Blanco; Norberto C Gonzalez
Journal:  Am J Respir Cell Mol Biol       Date:  2009-02-24       Impact factor: 6.914

3.  Alveolar macrophage secretory products effect type 2 pneumocytes undergoing hypoxia-reoxygenation.

Authors:  Anton S McCourtie; Alexander S Farivar; Steven M Woolley; Heather E Merry; Patrick S Wolf; Brendan Mackinnon-Patterson; John C Keech; Elizabeth Fitzsullivan; Michael S Mulligan
Journal:  Ann Thorac Surg       Date:  2008-12       Impact factor: 4.330

4.  Induction of homeostatic biological parameters in reward deficiency as a function of an iron-free multi-nutrient complex: Promoting hemoglobinization, aerobic metabolism, viral immuno-competence, and neuroinflammatory regulation.

Authors:  Kenneth Blum; Bernard W Downs; Manashi Bagchi; Steve Kushner; Bruce S Morrison; Jeffrey Galvin; Kourtney Randsdorp; Justin Randsdorp; Rajendra D Badgaiyan; Eric R Braverman; Debasis Bagchi
Journal:  J Syst Integr Neurosci       Date:  2020-06-29

Review 5.  Alveolar hypoxia, alveolar macrophages, and systemic inflammation.

Authors:  Jie Chao; John G Wood; Norberto C Gonzalez
Journal:  Respir Res       Date:  2009-06-22
  5 in total

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