Literature DB >> 18988662

Mannose-binding lectin is present in the infected airway: a possible pulmonary defence mechanism.

K J Fidler1, T N Hilliard, A Bush, M Johnson, D M Geddes, M W Turner, E W F W Alton, N J Klein, J C Davies.   

Abstract

BACKGROUND: Mannose-binding lectin (MBL) deficiency has been associated with infections of the respiratory tract and with increased disease severity in cystic fibrosis (CF). The mechanism is uncertain, and could relate either to systemic or local effects. The aim of this study was to determine, in a large cohort of children, whether MBL is present on the airway surface in health or disease.
METHODS: Bronchoalveolar lavage (BAL) fluid from children with and without respiratory infection (some with underlying disease) was analysed for MBL and neutrophil elastase (NE). Levels were compared between groups, and correlations were examined with local and systemic inflammatory markers, infective organisms and load.
RESULTS: 85 children were recruited to the study. MBL was absent in the lavage of all 7 children without lung infection but present in 62% (8/13) of those with acute pneumonia/pneumonitis, 23% (5/22) with recurrent respiratory tract infections, 17% (1/6) with primary ciliary dyskinesia and 8% (3/37) with CF (p<0.01). Children with acute pneumonia/pneumonitis had significantly higher levels than those in the other groups. There was no relationship with organisms cultured or systemic markers of inflammation, although in the group with detectable MBL in the BAL fluid, the levels correlated positively with levels of NE.
CONCLUSIONS: MBL is undetectable in the non-infected airway but is present in a significant number of samples from children with lung infection. The levels found in the BAL fluid could be physiologically active and the protein may therefore be playing a role in host defence.

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Year:  2008        PMID: 18988662     DOI: 10.1136/thx.2008.100073

Source DB:  PubMed          Journal:  Thorax        ISSN: 0040-6376            Impact factor:   9.139


  21 in total

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4.  Enhancement of antiviral activity of collectin trimers through cross-linking and mutagenesis of the carbohydrate recognition domain.

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5.  Differential Interactions of Serum and Bronchoalveolar Lavage Fluid Complement Proteins with Conidia of Airborne Fungal Pathogen Aspergillus fumigatus.

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6.  Early expression of mannose-binding lectin 2 during Aspergillus fumigatus infection in human corneal epithelial cells.

Authors:  Cheng-Ye Che; Jing-Fen Zhang; Ji-Eun Lee; Jing Lin; Li-Ting Hu; Nan Jiang; Qian Wang; Qiang Xu; Gui-Qiu Zhao
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7.  Serum amyloid P is a sialylated glycoprotein inhibitor of influenza A viruses.

Authors:  Emma R Job; Barbara Bottazzi; Brad Gilbertson; Kathryn M Edenborough; Lorena E Brown; Alberto Mantovani; Andrew G Brooks; Patrick C Reading
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8.  Near-planar solution structures of mannose-binding lectin oligomers provide insight on activation of lectin pathway of complement.

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Review 9.  Soluble host defense lectins in innate immunity to influenza virus.

Authors:  Wy Ching Ng; Michelle D Tate; Andrew G Brooks; Patrick C Reading
Journal:  J Biomed Biotechnol       Date:  2012-05-16

10.  Mannose-binding lectin binds to amyloid β protein and modulates inflammation.

Authors:  Mykol Larvie; Timothy Shoup; Wei-Chuan Chang; Lorencia Chigweshe; Kevan Hartshorn; Mitchell R White; Gregory L Stahl; David R Elmaleh; Kazue Takahashi
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