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Updated: Jan 26, 2026

Derivation of Hematopoietic Stem Cells from Murine Embryonic Stem Cells
Published on: February 25, 2007
Aged marrow macrophages expand platelet-biased hematopoietic stem cells via Interleukin1B
Benjamin J Frisch1,2, Corey M Hoffman1,2,3, Sarah E Latchney1,2
1Department of Medicine.
Abstract:
The bone marrow microenvironment (BMME) contributes to the regulation of hematopoietic stem cell (HSC) function, though its role in age-associated lineage skewing is poorly understood. Here we show that dysfunction of aged marrow macrophages (Mφs) directs HSC platelet-bias. Mφs from the marrow of aged mice and humans exhibited an activated phenotype, with increased expression of inflammatory signals. Aged marrow Mφs also displayed decreased phagocytic function. Senescent neutrophils, typically cleared by marrow Mφs, were markedly increased in aged mice, consistent with functional defects in Mφ phagocytosis and efferocytosis. In aged mice, Interleukin 1B (IL1B) was elevated in the bone marrow and caspase 1 activity, which can process pro-IL1B, was increased in marrow Mφs and neutrophils. Mechanistically, IL1B signaling was necessary and sufficient to induce a platelet bias in HSCs. In young mice, depletion of phagocytic cell populations or loss of the efferocytic receptor Axl expanded platelet-biased HSCs. Our data support a model wherein increased inflammatory signals and decreased phagocytic function of aged marrow Mφs induce the acquisition of platelet bias in aged HSCs. This work highlights the instructive role of Mφs and IL1B in the age-associated lineage-skewing of HSCs, and reveals the therapeutic potential of their manipulation as antigeronic targets.
Insights
Dysfunctional aged macrophages in the bone marrow microenvironment drive hematopoietic stem cell (HSC) platelet bias through inflammation and impaired phagocytosis, offering potential anti-aging therapeutic targets.
Area of Science:
- Hematology
- Immunology
- Aging Research
Background:
- The bone marrow microenvironment (BMME) regulates hematopoietic stem cell (HSC) function.
- The role of BMME in age-associated HSC lineage skewing is not well understood.
Purpose of the Study:
- To investigate the role of aged marrow macrophages (Mφs) in HSC lineage skewing.
- To elucidate the mechanisms by which Mφ dysfunction contributes to platelet bias in HSCs.
Main Methods:
- Analysis of aged mouse and human marrow Mφs for phenotype, inflammatory signals, and phagocytic function.
- Assessment of senescent neutrophils and Interleukin 1B (IL1B) levels in aged mice.
- Investigation of IL1B signaling and efferocytic receptor Axl in HSC platelet bias.
Main Results:
- Aged Mφs exhibit an activated phenotype, increased inflammation, and reduced phagocytosis.
- Senescent neutrophils accumulate in aged mice due to Mφ dysfunction.
- Elevated IL1B and caspase 1 activity in aged bone marrow Mφs and neutrophils.
- IL1B signaling induces HSC platelet bias; loss of phagocytic cells or Axl receptor also expands platelet-biased HSCs.
Conclusions:
- Dysfunctional aged marrow Mφs, characterized by inflammation and impaired phagocytosis, drive HSC platelet bias.
- IL1B signaling plays a critical role in age-associated HSC lineage skewing.
- Targeting Mφs and IL1B presents a potential therapeutic strategy for age-related hematological changes.
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