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PMID: 15010266 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Intratracheal double-stranded RNA plus interferon-gamma: a model for analysis of the acute phase response to respiratory viral infections.

Life sciences ·Vol. 74 ·No. 20 ·2004-04-02 ·Pages 2563-76

Traynor TR, Majde JA, Bohnet SG, Krueger JM

Abstract

Double-stranded (ds)RNA is made as a by-product of viral replication. Synthetic dsRNA induces virtually all of the same systemic symptoms as acute viral infections, such as fever and malaise. In order to develop a model of respiratory viral infections (such as influenza) suitable for use in gene knockout mice (where the deleted gene may affect viral replication), we examined C57BL/6 mouse body temperature and locomotor activity responses to the synthetic dsRNA polyriboinosinic.polyribocytidylic acid (poly[rI.rC]) introduced via the intratracheal (IT) route. We compared the IT poly[rI.rC] responses to the well-characterized intraperitoneal (IP) poly[rI.rC] responses. IT poly[rI.rC] failed to induce an acute phase response (APR) in mice, in contrast to IP poly[rI.rC]. However, addition of interferon (IFN)gamma to the IT poly[rI.rC] inoculum induced sustained hypothermia and suppressed locomotor activity responses with similar kinetics to those responses seen in acute mouse influenza. We further examined cytokine, antiviral, muscarinic M2 receptor and inducible nitric oxide synthase gene expression at 5 hr in the lungs of IT challenged mice. These studies suggested that priming the lung with IFNgamma could enhance proinflammatory (IL1beta, IL6, TNFalpha) cytokine gene expression and suppress interferon gene expression compared to IT poly[rI.rC] alone. No differences were detected for the other genes examined. While further molecular characterization of the model is required, we demonstrate that IT challenge with combined poly[rI.rC] and IFNgamma closely simulates the APR to an acute respiratory virus, and may serve as a suitable model for analyzing the molecular basis of the viral APR in gene knockout mice.

MeSH Terms
Acute-Phase Reaction Animals Body Temperature Cytokines/genetics,metabolism Disease Models, Animal Gene Expression Regulation Interferon-gamma/metabolism Lung/physiology Male Mice Mice, Inbred C57BL Motor Activity/physiology Poly I-C/administration & dosage,metabolism RNA, Double-Stranded/administration & dosage,metabolism RNA, Viral Respiratory Tract Infections/immunology Time Factors Trachea/virology
Chemicals
Cytokines RNA, Double-Stranded RNA, Viral Interferon-gamma Poly I-C
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Traynor Tim R
Department of VCAPP, College of Veterinary Medicine, Washington State University, PO Box 646520, Pullman, WA 99164-6520, USA.
Majde Jeannine A
Bohnet Stewart G
Krueger James M
Article Info
Journal
Life sciences
Abbr.
Life Sci
ISSN
0024-3205
Published
2004-04-02
Pages
2563-76
Language
English
Region
Netherlands
NLM ID
0375521
Subset
IM
Grants
NICHD NIH HHS · HD 36520 · United States
NINDS NIH HHS · NS 25378 · United States
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