Inflammation perturbs hematopoiesis by remodeling specific compartments of the bone marrow niche

J James W. Swann (1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY) R Ruiyuan Zhang E Evgenia V. Verovskaya (1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY) F Fernando J. Calero-Nieto X Xiaonan Wang M Melissa A. Proven (1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY) H Hiroyuki Hirakawa (4Department of Rehabilitation and Regenerative Medicine, Columbia Stem Cell Initiative, Columbia University, New York, NY) B Brian P. Heubel (1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY) P Peter T. Shyu (6Department of Biomedical Engineering, Columbia University, New York, NY) X X. Edward Guo (6Department of Biomedical Engineering, Columbia University, New York, NY) L Lei Ding B Berthold Göttgens E Emmanuelle Passegué (1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY)

Abstract

Abstract Hematopoietic stem and progenitor cells are regulated by interactions with stromal cells in the bone marrow (BM) cavity, which can be segregated into 2 spatially defined central marrow (CM) and endosteal (Endo) compartments. However, the importance of this spatial compartmentalization for BM responses to complex conditions such as inflammation remains largely unknown. Here, we extensively validate a combination of single-cell RNA sequencing profiling and matching flow cytometry isolation that reproducibly identifies 7 key CM and Endo populations and accurately surveys both niche locations. We demonstrate that inflammatory perturbations exert specific effects on different cellular compartments, with type I interferon responses causing leptin receptor–expressing mesenchymal stromal cells to abandon their normal stromal functions and instead adopt an inflammatory phenotype associated with overproduction of chemokines that modulate local monocyte dynamics in the surrounding microenvironment. Our results provide a comprehensive method for molecular and functional stromal characterization and highlight the importance of altered stomal cell activity in regulating hematopoietic responses to inflammatory challenges.

Article Details

Journal Blood
Volume / Issue Vol. 147, Issue 7
Published February 12, 2026
Pages 739-754
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (13)

J

James W. Swann

1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY

R

Ruiyuan Zhang

E

Evgenia V. Verovskaya

1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY

F

Fernando J. Calero-Nieto

X

Xiaonan Wang

M

Melissa A. Proven

1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY

H

Hiroyuki Hirakawa

4Department of Rehabilitation and Regenerative Medicine, Columbia Stem Cell Initiative, Columbia University, New York, NY

B

Brian P. Heubel

1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY

P

Peter T. Shyu

6Department of Biomedical Engineering, Columbia University, New York, NY

X

X. Edward Guo

6Department of Biomedical Engineering, Columbia University, New York, NY

L

Lei Ding

B

Berthold Göttgens

E

Emmanuelle Passegué

1Department of Genetics and Development, Columbia Stem Cell Initiative, Columbia University, New York, NY