Literature DB >> 16817774

Differential expression of ovine innate immune genes by preterm and neonatal lung epithelia infected with respiratory syncytial virus.

Kenji Kawashima1, David K Meyerholz, Jack M Gallup, Branka Grubor, Tatjana Lazic, Howard D Lehmkuhl, Mark R Ackermann.   

Abstract

Preterm infants have increased susceptibility to severe manifestations of respiratory syncytial virus (RSV) infection. The cause(s) for this age-dependent vulnerability is/are not well-defined, but alterations in innate immune products have been implicated. In sheep, RSV disease severity has similar age-dependent characteristics and sheep have several related innate molecules for study during pulmonary infection including surfactant protein A (SP-A), surfactant protein D (SP-D), sheep beta defensin 1 (SBD1), monocyte chemotactic protein 1 (MCP1), and Toll-like receptor 4 (TLR4). However, the in vivo cellular gene expression as a response to RSV infection is poorly understood. In this study, the effect of RSV infection on expression of these innate immune genes was determined for bovine RSV-infected (bRSV+ fluorescence) epithelial cells, adjacent cells lacking bRSV antigen (adjoining cells lacking fluorescence), and control cells from non-infected lung using laser capture microdissection (LCM) and real-time RT-PCR. Control lambs had increased expression of innate immune molecules in full term (term) compared to preterm epithelia with statistical significance in SBD1, SP-D, and TLR4 mRNA. Infected cells (bRSV+ fluorescent cells) had consistently higher mRNA levels of SP-A (preterm and term), MCP1 (preterm and term), and SP-D (preterm). Interestingly, bRSV- cells of infected term lambs had significantly reduced SP-D mRNA expression compared to bRSV+ and control epithelia, suggesting that RSV infected cells may regulate the adjacent epithelial SP-D expression. This study defines specific innate immune components (e.g., SBD1, SP-D, and TLR4) that have differential age-dependent expression in the airway epithelia. Furthermore, cellular bRSV infection enhanced certain innate immune components while suppressing adjacent cellular SP-D expression in term animals. These in vivo gene expression results provide a framework for future studies on age-dependent susceptibility to RSV and RSV pathogenesis.

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Year:  2006        PMID: 16817774      PMCID: PMC2791066          DOI: 10.1089/vim.2006.19.316

Source DB:  PubMed          Journal:  Viral Immunol        ISSN: 0882-8245            Impact factor:   2.257


  33 in total

1.  Rehospitalization for respiratory illness in infants of less than 32 weeks' gestation.

Authors:  C K Cunningham; J A McMillan; S J Gross
Journal:  Pediatrics       Date:  1991-09       Impact factor: 7.124

2.  Cell-specific expression of RANTES, MCP-1, and MIP-1alpha by lower airway epithelial cells and eosinophils infected with respiratory syncytial virus.

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Journal:  J Virol       Date:  1998-06       Impact factor: 5.103

3.  Experimentally induced respiratory syncytial viral infection in lambs.

Authors:  H D Lehmkuhl; R C Cutlip
Journal:  Am J Vet Res       Date:  1979-04       Impact factor: 1.156

Review 4.  Experimental respiratory syncytial virus infection in calves and lambs.

Authors:  E B Belknap; D K Ciszewski; J C Baker
Journal:  J Vet Diagn Invest       Date:  1995-04       Impact factor: 1.279

Review 5.  Risk factors for severe respiratory syncytial virus infection in infants.

Authors:  Y Aujard; B Fauroux
Journal:  Respir Med       Date:  2002-04       Impact factor: 3.415

6.  Effects of RSV infection on pulmonary surfactant protein SP-A in cultured human type II cells: contrasting consequences on SP-A mRNA and protein.

Authors:  Joseph L Alcorn; James M Stark; Constance L Chiappetta; Gaye Jenkins; Giuseppe N Colasurdo
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2005-07-29       Impact factor: 5.464

7.  A comparison of epidemiologic and immunologic features of bronchiolitis caused by influenza virus and respiratory syncytial virus.

Authors:  Roberto P Garofalo; Karen H Hintz; Vanessa Hill; John Patti; Pearay L Ogra; Robert C Welliver
Journal:  J Med Virol       Date:  2005-02       Impact factor: 2.327

8.  Differential expression of sheep beta-defensin-1 and -2 and interleukin 8 during acute Mannheimia haemolytica pneumonia.

Authors:  Mark R Ackermann; Jack M Gallup; Joseph Zabner; Richard B Evans; Charles W Brockus; David K Meyerholz; Branka Grubor; Kim A Brogden
Journal:  Microb Pathog       Date:  2004-07       Impact factor: 3.738

9.  IL-4 induces production of the lung collectin surfactant protein-D.

Authors:  Yang Cao; Jian-Qin Tao; Sandra R Bates; Michael F Beers; Angela Haczku
Journal:  J Allergy Clin Immunol       Date:  2004-03       Impact factor: 10.793

10.  New quick method for isolating RNA from laser captured cells stained by immunofluorescent immunohistochemistry; RNA suitable for direct use in fluorogenic TaqMan one-step real-time RT-PCR.

Authors:  Jack M Gallup; Kenji Kawashima; Ginger Lucero; Mark R Ackermann
Journal:  Biol Proced Online       Date:  2005-05-30       Impact factor: 3.244

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  21 in total

1.  Addressing fluorogenic real-time qPCR inhibition using the novel custom Excel file system 'FocusField2-6GallupqPCRSet-upTool-001' to attain consistently high fidelity qPCR reactions.

Authors:  Jack M Gallup; Mark R Ackermann
Journal:  Biol Proced Online       Date:  2006-09-15       Impact factor: 3.244

2.  Depletion of alveolar glycogen corresponds with immunohistochemical development of CD208 antigen expression in perinatal lamb lung.

Authors:  David K Meyerholz; James A DeGraaff; Jack M Gallup; Alicia K Olivier; Mark R Ackermann
Journal:  J Histochem Cytochem       Date:  2006-08-09       Impact factor: 2.479

3.  Increased concentration of iodide in airway secretions is associated with reduced respiratory syncytial virus disease severity.

Authors:  Rachel J Derscheid; Albert van Geelen; Abigail R Berkebile; Jack M Gallup; Shannon J Hostetter; Botond Banfi; Paul B McCray; Mark R Ackermann
Journal:  Am J Respir Cell Mol Biol       Date:  2014-02       Impact factor: 6.914

4.  Ontogeny of the immune response in the ovine lung.

Authors:  Fatoumata B Sow; Jack M Gallup; Rachel Derscheid; Subramaniam Krishnan; Mark R Ackermann
Journal:  Immunol Invest       Date:  2011-11-28       Impact factor: 3.657

5.  Differential expression of cytokine transcripts in neonatal and adult ovine alveolar macrophages in response to respiratory syncytial virus or toll-like receptor ligation.

Authors:  Sasha J Fach; Alicia Olivier; Jack M Gallup; Theresa E Waters; Mark R Ackermann; Howard D Lehmkuhl; Randy E Sacco
Journal:  Vet Immunol Immunopathol       Date:  2010-02-13       Impact factor: 2.046

Review 6.  Lamb model of respiratory syncytial virus-associated lung disease: insights to pathogenesis and novel treatments.

Authors:  Mark R Ackermann
Journal:  ILAR J       Date:  2014

7.  Laser Capture Microdissection Revisited as a Tool for Transcriptomic Analysis: Application of an Excel-Based qPCR Preparation Software (PREXCEL-Q).

Authors:  Fatoumata B Sow; Jack M Gallup; Randy E Sacco; Mark R Ackermann
Journal:  Int J Biomed Sci       Date:  2009-06-01

8.  Maternal alcohol ingestion reduces surfactant protein A expression by preterm fetal lung epithelia.

Authors:  Tatjana Lazic; Todd A Wyatt; Milan Matic; David K Meyerholz; Branka Grubor; Jack M Gallup; Karl W Kersting; Paula M Imerman; Marcia Almeida-De-Macedo; Mark R Ackermann
Journal:  Alcohol       Date:  2007-08       Impact factor: 2.405

9.  Human respiratory syncytial virus A2 strain replicates and induces innate immune responses by respiratory epithelia of neonatal lambs.

Authors:  Alicia Olivier; Jack Gallup; Marcia M M A de Macedo; Steven M Varga; Mark Ackermann
Journal:  Int J Exp Pathol       Date:  2009-08       Impact factor: 1.925

10.  Neonatal ovine pulmonary dendritic cells support bovine respiratory syncytial virus replication with enhanced interleukin (IL)-4 And IL-10 gene transcripts.

Authors:  Sasha J Fach; David K Meyerholz; Jack M Gallup; Mark R Ackermann; Howard D Lehmkuhl; Randy E Sacco
Journal:  Viral Immunol       Date:  2007       Impact factor: 2.257

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