Human haematopoietic stem cells remember inflammatory stress

A Andy G. X. Zeng M Murtaza S. Nagree N Niels Asger Jakobsen S Sayyam Shah A Angelica Varesi J Jasmine Ryu Won Kang A Alex Murison J Jin-Gyu Cheong S Sven Turkalj X Xuan Zhang F Felix A. Radtke T Tsega-Ab Abera I Isabel N. X. Lim L Liqing Jin J Joana Araújo A Alicia G. Aguilar-Navarro D Darrien Parris J Jessica McLeod H Hyerin Kim H Ho Seok Lee L Lin Zhang M Mason Boulanger E Elyssa Bader E Elias Gbeha C Christopher N. Parkhurst E Elvin Wagenblast E Eugenia Flores-Figueroa B Bo Wang G Gregory W. Schwartz L Leonard D. Shultz A Anna S. Nam H H. Leighton Grimes S Steven Z. Josefowicz P Philip Awadalla P Paresh Vyas J John E. Dick S Stephanie Z. Xie

Abstract

Abstract Inflammation activates blood cells, contributing to ageing and malignancy 1–3 . Haematopoietic stem cells (HSCs) survive a lifetime of infection to sustain life-long haematopoiesis 1–9 , but how human HSCs respond and adapt to inflammatory stress is largely unknown. Here, to empirically understand this adaptation, we developed xenograft inflammation–recovery models and performed single-cell multiomics on xenografted human HSCs. Two transcriptionally and epigenetically distinct HSC subsets were identified with one, termed HSC inflammatory memory (HSC-iM), retaining a molecular memory of previous inflammatory treatments. The HSC-iM subset exhibited quiescence and restrained haematopoietic output. Molecularly, the HSC-iM program was enriched in HSCs from adult and paediatric samples across conditions ranging from COVID-19 recovery, sickle cell disease, ageing and clonal haematopoiesis, establishing both the validity of our xenograft models and the physiological relevance of HSC-iM. Clonal haematopoiesis mutations in HSC-iM attenuated the effects of inflammatory stress by promoting HSC activation and differentiation. Moreover, transmission of the pro-inflammatory HSC-iM transcriptional program to differentiated immune progeny was demonstrated in xenograft and physiological settings. Finally, HSC-iM program enrichment in circulating blood cells was associated with a heightened risk score for all-cause mortality in population cohort analyses, underscoring the clinical relevance of this newly identified HSC subset in characterizing heterogeneous health outcomes across a lifetime.

Article Details

Journal Nature
Volume / Issue Vol. 655, Issue 8122
Published July 09, 2026
Pages 458-467
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (37)

A

Andy G. X. Zeng

M

Murtaza S. Nagree

N

Niels Asger Jakobsen

S

Sayyam Shah

A

Angelica Varesi

J

Jasmine Ryu Won Kang

A

Alex Murison

J

Jin-Gyu Cheong

S

Sven Turkalj

X

Xuan Zhang

F

Felix A. Radtke

T

Tsega-Ab Abera

I

Isabel N. X. Lim

L

Liqing Jin

J

Joana Araújo

A

Alicia G. Aguilar-Navarro

D

Darrien Parris

J

Jessica McLeod

H

Hyerin Kim

H

Ho Seok Lee

L

Lin Zhang

M

Mason Boulanger

E

Elyssa Bader

E

Elias Gbeha

C

Christopher N. Parkhurst

E

Elvin Wagenblast

E

Eugenia Flores-Figueroa

B

Bo Wang

G

Gregory W. Schwartz

L

Leonard D. Shultz

A

Anna S. Nam

H

H. Leighton Grimes

S

Steven Z. Josefowicz

P

Philip Awadalla

P

Paresh Vyas

J

John E. Dick

S

Stephanie Z. Xie