Hypoxic-ischemic brain injury in neonatal mice sequentially recruits neutrophils with dichotomous phenotype and function

M Mathis Richter E Eva Diesterbeck E Ekaterina Pylaeva N Nicole Labusek C Christian Köster D Dennis Nagel L Laura Karsch A Alexa Josephine Fischer M Marah Sous M Marcel Jung R Raphael Chevre N Nina Hagemann E Erik Axel Andersson C C. Joakim Ek V Vikramjeet Singh D Dirk M. Hermann M Matthias Gunzer (Leibniz-Institut für Analytische Wissenschaften) J Jadwiga Jablonska U Ursula Felderhoff-Müser I Ivo Bendix O Oliver Soehnlein J Josephine Herz

Abstract

Abstract Neonatal encephalopathy caused by hypoxia-ischemia (HI) leads to a strong neutrophil infiltration. The long-held assumption that neutrophils act exclusively as tissue-damaging cells, is challenged by increasing evidence of a profound neutrophil heterogeneity. Here, we uncovered a pronounced phenotypical and functional diversification of neutrophils in neonatal mice depending on the disease stage. Neutrophil infiltration was biphasic, peaking 1 and 7 days after HI. Early brain-infiltrating neutrophils displayed a hyperactivated phenotype, whereas neutrophils at day 7 exhibited an angiogenic phenotype with high Siglec-F expression. Acute neutrophil depletion protected against neural cell death, associated with decreased hyperactivity in adolescent animals. Delayed neutrophil depletion impaired vascular and oligodendrocyte regeneration, resulting in exacerbated alterations of anxiety-related behavior and myelination deficits. These findings suggest a divergent function of neutrophils, with early neutrophils aggravating tissue damage and late neutrophils contributing to neurological recovery. The disease stage-dependent neutrophil diversification offers new possibilities to identify disease-stage-specific therapeutic targets.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 03, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (22)

M

Mathis Richter

E

Eva Diesterbeck

E

Ekaterina Pylaeva

N

Nicole Labusek

C

Christian Köster

D

Dennis Nagel

L

Laura Karsch

A

Alexa Josephine Fischer

M

Marah Sous

M

Marcel Jung

R

Raphael Chevre

N

Nina Hagemann

E

Erik Axel Andersson

C

C. Joakim Ek

V

Vikramjeet Singh

D

Dirk M. Hermann

M

Matthias Gunzer

Leibniz-Institut für Analytische Wissenschaften

J

Jadwiga Jablonska

U

Ursula Felderhoff-Müser

I

Ivo Bendix

O

Oliver Soehnlein

J

Josephine Herz