Haptoglobin Genotype-Dependent Anti-Inflammatory Signaling in CD163(+) Macrophages.
Author(s)
Landis, RC
Philippidis, P
Domin, J
Boyle, JJ
Haskard, DO
Type
Journal Article
Abstract
Intraplaque hemorrhage causes adaptive remodelling of macrophages towards a protective phenotype specialized towards handling iron and lipid overload, denoted Mhem. The Mhem phenotype expresses elevated levels of hemoglobin (Hb) scavenger receptor, CD163, capable of endocytosing pro-oxidant free Hb complexed to acute phase protein haptoglobin (Hp). It is notable that individuals homozygous for the Hp 2 allele (a poorer antioxidant) are at increased risk of cardiovascular disease compared to the Hp 1 allele. In this study, we examined whether scavenging of polymorphic Hp:Hb complexes differentially generated downstream anti-inflammatory signals in cultured human macrophages culminating in interleukin (IL)-10 secretion. We describe an anti-inflammatory signalling pathway involving phosphatidylinositol-3-kinase activation upstream of Akt phosphorylation (pSer473Akt) and IL-10 secretion. The pathway is mediated specifically through CD163 and is blocked by anti-CD163 antibody or phagocytosis inhibitor. However, levels of pSer473Akt and IL-10 were significantly diminished when scavenging polymorphic Hp2-2:Hb complexes compared to Hp1-1:Hb complexes (P < 0.05). Impaired anti-inflammatory macrophage signaling through a CD163/pAkt/IL-10 axis may thus represent a possible Hp2-2 disease mechanism in atherosclerosis.
Date Issued
2013-04-03
Date Acceptance
2013-04-03
Citation
International Journal of Inflammation, 2013, 2013
ISSN
2042-0099
Publisher
Hindawi Publishing Corporation
Journal / Book Title
International Journal of Inflammation
Volume
2013
Copyright Statement
Copyright © 2013 R. Clive Landis et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
License URL
Sponsor
British Heart Foundation
Grant Number
FS/13/12/30037
Publication Status
Published
Article Number
980327