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Cigarette Smoke Impacts Immune Inflammatory Responses to Influenza in Mice

Mingus

Well-known member
[SIZE=-1]http://ajrccm.atsjournals.org/cgi/content/abstract/200604-561OCv1
[/SIZE]
[SIZE=-1]Submitted on April 24, 2006[/SIZE]
[SIZE=-1]Accepted on October 5, 2006[/SIZE]

Cigarette Smoke Impacts Immune Inflammatory Responses to Influenza in Mice

Clinton S Robbins<sup>1</sup>, <wbr>Carla M.T. Bauer<sup>2</sup>, <wbr>Neda Vujicic<sup>2</sup>, <wbr>Gordon J Gaschler<sup>2</sup>, <wbr>Brian D Lichty<sup>2</sup>, <wbr>Earl G Brown<sup>3</sup>, <wbr> and Martin R Stampfli<sup>4</sup><sup>*</sup> <sup>1</sup> Department of Pathology and Molecular Medicine, McMaster University, Centre for Gene Therapeutics, Hamilton, Ontario, Canada; Department of Biology, McMaster University, Hamilton, Ontario, Canada, <sup>2</sup> Department of Pathology and Molecular Medicine, McMaster University, Centre for Gene Therapeutics, Hamilton, Ontario, Canada, <sup>3</sup> Department of Biochemistry, Microbiology and Immunology, University of Ottawa, Ottawa, Ontario, Canada, <sup>4</sup> Department of Pathology and Molecular Medicine, McMaster University, Centre for Gene Therapeutics, Hamilton, Ontario, Canada; Department of Medicine, McMaster University, Hamilton, Ontario, Canada
<sup>*</sup> To whom correspondence should be addressed. E-mail: stampfli@mcmaster.ca<script type="text/javascript"><!-- var u = "stampfli", d = "mcmaster.ca"; document.getElementById("em0").innerHTML = '<a href="mailto:' + u + '@' + d + '">' + u + '@' + d + '<\/a>'//--></script>.
<abs> </abs>
Rationale: Studies have shown that cigarette smoke impacts respiratory<sup> </sup>host defense mechanisms; however, it is poorly understood how<sup> </sup>these smoke-induced changes impact the overall ability of the<sup> </sup>host to deal with pathogenic agents. Objective: The objective<sup> </sup>of this study was to investigate the impact of mainstream cigarette<sup> </sup>smoke exposure on immune inflammatory responses and viral burden<sup> </sup>following respiratory infection with influenza A. Methods:<sup> </sup>C57BL/6 mice were sham- or smoke-exposed for three to five months<sup> </sup>and infected with either 2.5x10<sup>3</sup> pfu (low dose) or 2.5x10<sup>5</sup> pfu<sup> </sup>(high dose) influenza virus. Measurements and Main Results:<sup> </sup>While smoke exposure attenuated the airways inflammatory response<sup> </sup>to low dose infection, we observed increased inflammation in<sup> </sup>smoke- compared to sham-exposed mice following infection with<sup> </sup>high dose influenza, despite a similar rate of viral clearance.<sup> </sup>The heightened inflammatory response was associated with increased<sup> </sup>expression of TNF
agr.gif
, IL-6 and type 1 interferon in the airway,<sup> </sup>and increased mortality. Importantly, smoke exposure did not<sup> </sup>interfere with the development of influenza-specific memory<sup> </sup>responses; sham- and smoke-exposed animals were equally protected<sup> </sup>upon viral re-challenge. Conclusion: Our study suggests that<sup> </sup>in mice cigarette smoke affects primary antiviral immune-inflammatory<sup> </sup>responses, while secondary immune protection remains intact.
<sup> </sup>
Key words: Chronic Obstructive Pulmonary Disease, Immunity, Inflammation, Neutrophils
 
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