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  4. Epithelial HMGB1 Delays Skin Wound Healing and Drives Tumor Initiation by Priming Neutrophils for NET Formation
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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
FUENTES BUSTOS, MARIA IGNACIA  
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Francis Palisson  
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
Scopus ID
2-s2.0-85075512558
WoS ID
WOS:000499377000014
DOI
10.1016/j.celrep.2019.10.104
URL
https://investigadores.udd.cl/handle/123456789/2383
URL Institutional Repository
http://hdl.handle.net/11447/3205
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
Project(s)
Investigating the role of skin microbiome, host immunity and infection in epidermolysis bullosa wound healing  
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
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