Back to Search Start Over

An unrestrained proinflammatory M1 macrophage population induced by iron impairs wound healing in humans and mice

Authors :
Anca Sindrilaru
Andrea Schlecht
Cord Sunderkötter
Stefan Wieschalka
Meinhard Wlaschek
Adelheid Hainzl
Johannes M. Weiss
Thorsten Peters
Yu Qi
Susanne Schatz
Karin Scharffetter-Kochanek
Adrian Baican
Corina Baican
Henriette Peter
Source :
Journal of Clinical Investigation. 121:985-997
Publication Year :
2011
Publisher :
American Society for Clinical Investigation, 2011.

Abstract

Uncontrolled macrophage activation is now considered to be a critical event in the pathogenesis of chronic inflammatory diseases such as atherosclerosis, multiple sclerosis, and chronic venous leg ulcers. However, it is still unclear which environmental cues induce persistent activation of macrophages in vivo and how macrophage-derived effector molecules maintain chronic inflammation and affect resident fibroblasts essential for tissue homeostasis and repair. We used a complementary approach studying human subjects with chronic venous leg ulcers, a model disease for macrophage-driven chronic inflammation, while establishing a mouse model closely reflecting its pathogenesis. Here, we have shown that iron overloading of macrophages--as was found to occur in human chronic venous leg ulcers and the mouse model--induced a macrophage population in situ with an unrestrained proinflammatory M1 activation state. Via enhanced TNF-α and hydroxyl radical release, this macrophage population perpetuated inflammation and induced a p16(INK4a)-dependent senescence program in resident fibroblasts, eventually leading to impaired wound healing. This study provides insight into the role of what we believe to be a previously undescribed iron-induced macrophage population in vivo. Targeting this population may hold promise for the development of novel therapies for chronic inflammatory diseases such as chronic venous leg ulcers.

Details

ISSN :
00219738
Volume :
121
Database :
OpenAIRE
Journal :
Journal of Clinical Investigation
Accession number :
edsair.doi.dedup.....8ed9b108531d6374472795fc54accafb
Full Text :
https://doi.org/10.1172/jci44490