Epithelial HMGB1 Delays Skin Wound Healing and Drives Tumor Initiation by Priming Neutrophils for NET Formation
Journal
Cell Reports
ISSN
2211-1247
Date Issued
2019
Author(s)
Esther Hoste
Christian Maueröder
Lisette van Hove
Leen Catrysse
Hanna-Kaisa Vikkula
Mozes Sze
Bastiaan Maes
Dyah Karjosukarso
Liesbet Martens
Amanda Gonçalves
Eef Parthoens
Ria Roelandt
Wim Declercq
Sergio Gonzalez
Julio C. Salas-Alanis
Louis Boon
Peter Huebener
Klaas Willem Mulder
Kodi Ravichandran
Yvan Saeys
Robert Felix Schwabe
Geert van Loo
Type
Resource Types::text::journal::journal article
URL Institutional Repository
Cite this document
Hoste, E., Maueröder, C., Van Hove, L., Catrysse, L., Vikkula, H.-K., Sze, M., Maes, B., Karjosukarso, D., Martens, L., Gonçalves, A., Parthoens, E., Roelandt, R., Declercq, W., Fuentes, I., Palisson, F., Gonzalez, S., Salas-Alanis, J. C., Boon, L., Huebener, P., … Van Loo, G. (2019). Epithelial hmgb1 delays skin wound healing and drives tumor initiation by priming neutrophils for net formation. Cell Reports, 29(9), 2689-2701.e4. https://doi.org/10.1016/j.celrep.2019.10.104
Subjects
group box 1
;
extracellular trap formation
;
epidermal-cells
;
necrosis-factor
;
stem-cells
;
mice
;
expression
;
receptor
;
release
;
netosis
;
extracellular traps
;
hmgb1 protein
;
humans
;
neutrophils
;
skin
;
tumor microenvironment
;
wound healing
;
high mobility group b1 protein
;
protein kinase
;
protein ripk1
;
tumor necrosis factor
;
unclassified drug
;
high mobility group b1 protein
;
animal cell
;
animal experiment
;
animal model
;
animal tissue
;
article
;
blister
;
cancer susceptibility
;
carcinogenicity
;
controlled study
;
epidermolysis bullosa dystrophica
;
extracellular trap
;
female
;
human
;
human cell
;
keratinocyte
;
male
;
molecular mechanics
;
mouse
;
nonhuman
;
priority journal
;
protein function
;
protein targeting
;
regulatory mechanism
;
skin carcinogenesis
;
skin epithelium
;
skin tumor
;
tumor microenvironment
;
wound healing impairment
;
extracellular trap
;
metabolism
;
neutrophil
;
pathology
;
skin
;
wound healing