Literature DB >> 15585869

Innate imprinting by the modified heat-labile toxin of Escherichia coli (LTK63) provides generic protection against lung infectious disease.

Andrew Evan Williams1, Lorna Edwards, Ian Robert Humphreys, Robert Snelgrove, Aaron Rae, Rino Rappuoli, Tracy Hussell.   

Abstract

In a healthy individual, the lung contains few lymphoid cells. However, amplified immune responses, as exemplified during lung infection, can cause extensive tissue damage. We have previously demonstrated that one lung infection modulates the immunopathological outcome to a subsequent unrelated pathogen. Mimicking heterologous immunity may provide a means of enhancing both innate and acquired immunity. We now show that prior lung administration of a modified heat-labile toxin from Escherichia coli (LTK63) enhances immunity to respiratory syncytial virus, influenza virus, and the fungus Cryptococcus neoformans. Treatment with LTK63 decreased lung inflammation and tissue damage and improved the ability to resolve the infection. APCs expressing the activation markers MHC class II, CD80, and CD40 increased in number in the lung. LTK63 treatment increased the pathogen-specific IgA response in the nasal mucosa and simultaneously decreased inflammatory cytokine production (IFN-gamma and TNF-alpha) after infection. The number of activated CD8(+)CD44(+) T cells and the respiratory syncytial virus- or influenza-specific CD8-proliferative responses increased, although the total inflammatory infiltrate was reduced. LTK63 treatment matured lung APCs (LTK63 prevented efficient presentation of whole OVA to DO11.10 cells, whereas OVA peptide presentation was unaffected), enhanced immunity in both a Th1 and Th2 environment, was long lasting, and was not pathogen or host strain specific; the protective effects were partially independent of T and B cells. Innate imprinting by toxin-based immunotherapeutics may provide generic protection against infectious disease in the lung, without the need for coadministered pathogen-specific Ag.

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Year:  2004        PMID: 15585869     DOI: 10.4049/jimmunol.173.12.7435

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  25 in total

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Review 2.  The impact of successive infections on the lung microenvironment.

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Review 3.  The two faces of heterologous immunity: protection or immunopathology.

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4.  Lactobacillus priming of the respiratory tract: Heterologous immunity and protection against lethal pneumovirus infection.

Authors:  Katia E Garcia-Crespo; Calvin C Chan; Stanislaw J Gabryszewski; Caroline M Percopo; Peter Rigaux; Kimberly D Dyer; Joseph B Domachowske; Helene F Rosenberg
Journal:  Antiviral Res       Date:  2012-12-26       Impact factor: 5.970

5.  Stimulation of lung innate immunity protects against lethal pneumococcal pneumonia in mice.

Authors:  Cecilia G Clement; Scott E Evans; Christopher M Evans; David Hawke; Ryuji Kobayashi; Paul R Reynolds; Seyed J Moghaddam; Brenton L Scott; Ernestina Melicoff; Roberto Adachi; Burton F Dickey; Michael J Tuvim
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6.  A novel IL-17-dependent mechanism of cross protection: respiratory infection with mycoplasma protects against a secondary listeria infection.

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7.  Innate immune protection against infectious diseases by pulmonary administration of a phospholipid-conjugated TLR7 ligand.

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Journal:  J Innate Immun       Date:  2013-11-01       Impact factor: 7.349

Review 8.  Respiratory infections: do we ever recover?

Authors:  John Goulding; Robert Snelgrove; José Saldana; Arnaud Didierlaurent; Mary Cavanagh; Emily Gwyer; Jeremy Wales; Erika L Wissinger; Tracy Hussell
Journal:  Proc Am Thorac Soc       Date:  2007-12

9.  Enhancement of protective immune responses by oral vaccination with Saccharomyces cerevisiae expressing recombinant Actinobacillus pleuropneumoniae ApxIA or ApxIIA in mice.

Authors:  Sung Jae Shin; Seung Won Shin; Mi Lan Kang; Deog Yong Lee; Moon-Sik Yang; Yong-Suk Jang; Han Sang Yoo
Journal:  J Vet Sci       Date:  2007-12       Impact factor: 1.672

10.  Prophylactic administration of bacterially derived immunomodulators improves the outcome of influenza virus infection in a murine model.

Authors:  Elizabeth B Norton; John D Clements; Thomas G Voss; Lucia Cárdenas-Freytag
Journal:  J Virol       Date:  2010-01-06       Impact factor: 5.103

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