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Immunomodulatory and Anti-Inflammatory Activities of Chicken Cathelicidin-2 Derived Peptides: e0147919
by
Bokhoven, L MTjeerdsma-van
, Dijk, Albert van
, Zoete, Marcel Rde
, Bikker, Floris J
, Haagsman, Henk P
, Eldik, Mandy van
, Veldhuizen, Edwin JA
2016
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Immunomodulatory and Anti-Inflammatory Activities of Chicken Cathelicidin-2 Derived Peptides: e0147919
by
Bokhoven, L MTjeerdsma-van
, Dijk, Albert van
, Zoete, Marcel Rde
, Bikker, Floris J
, Haagsman, Henk P
, Eldik, Mandy van
, Veldhuizen, Edwin JA
2016
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Immunomodulatory and Anti-Inflammatory Activities of Chicken Cathelicidin-2 Derived Peptides: e0147919
Journal Article
Immunomodulatory and Anti-Inflammatory Activities of Chicken Cathelicidin-2 Derived Peptides: e0147919
2016
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Overview
Host Defence Peptides and derived peptides are promising classes of antimicrobial and immunomodulatory lead compounds. For this purpose we examined whether chicken cathelicidin-2 (CATH-2)-derived peptides modulate the function and inflammatory response of avian immune cells. Using a chicken macrophage cell line (HD11) we found that full-length CATH-2 dose-dependently induced transcription of chemokines CXCLi2/IL-8, MCP-3 and CCLi4/RANTES, but not of pro-inflammatory cytokine IL-1[Beta]. In addition, CATH-2 efficiently inhibited IL-1[Beta] and nitric oxide production by HD11 cells induced by different sources of lipopolysaccharides (LPS). N-terminal truncated CATH-2 derived peptides maintained the capacity to selectively induce chemokine transcription, but despite their high LPS affinity several analogs lacked LPS-neutralizing capacity. Substitution of phenylalanine residues by tryptophan introduced endotoxin neutralization capacity in inactive truncated CATH-2 derived peptides. In contrast, amino acid substitution of phenylalanine by tyrosine abrogated endotoxin neutralization activity of CATH-2 analogs. These findings support a pivotal role for aromatic residues in peptide-mediated endotoxin neutralization by CATH-2 analogs and were shown to be independent of LPS affinity. The capacity to modulate chemokine production and dampen endotoxin-induced pro-inflammatory responses in chicken immune cells implicates that small CATH-2 based peptides could serve as leads for the design of CATH-2 based immunomodulatory anti-infectives.
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