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Updated: Jan 26, 2026

Author Spotlight: Isolation and Identification of Mesenchymal Stem Cells Derived from Adipose Tissue of Sprague Dawley Rats
Published on: April 7, 2023
A Novel Endogenous Damage Signal, CSF-2, Activates Multiple Beneficial Functions of Adipose Tissue-Derived
Se-Ra Park1, Ara Cho1, Jae-Wan Kim1
1Department of Health Sciences and Technology, GAIHST, Gachon University, Incheon, 21999, Republic of Korea; Department of Molecular Medicine, School of Medicine, Gachon University, Incheon 406-840, Republic of Korea.
Abstract:
The major challenges of current mesenchymal stem cell (MSC)-based therapeutics are their low differentiation potential into specialized cell types and their homing ability to sites of injury. Therefore, many researchers have directed their efforts toward finding a novel stimulatory factor that can significantly enhance the therapeutic effects of MSCs. Colony-stimulating factor 2 (CSF-2) is previously known as a hematopoietic growth factor involved in the differentiation of various myeloid cells from hematopoietic progenitor cells. In addition to this canonical hematopoietic function, we identified for the first time that CSF-2 is actively secreted by stem cells, in response to various types of injuries, as an endogenous damage signal that promotes the therapeutic effects of MSCs by enhancing their multi-lineage differentiation and migratory capacities, possibly through its receptor CD116. Our results also revealed that CSF-2 exerts its stimulatory effects on MSCs via PI3K/Akt- and/or FAK/ERK1/2-signaling pathways. More importantly, we also found that MSCs stimulated with CSF-2 show markedly enhanced differentiation and migratory capacities and subsequent in vivo therapeutic effects in an endometrial ablation animal model. Collectively, our findings provide compelling evidence for a novel non-hematopoietic function of CSF-2 in promoting multiple beneficial functions of MSCs via a non-canonical mechanism as an endogenous damage signal.
Insights
Colony-stimulating factor 2 (CSF-2) acts as an endogenous damage signal, enhancing mesenchymal stem cell (MSC) differentiation and migration. This discovery offers a novel strategy to improve MSC-based therapeutics for tissue repair.
Area of Science:
- Stem cell biology
- Regenerative medicine
- Cell signaling
Background:
- Mesenchymal stem cells (MSCs) show therapeutic promise but face challenges in differentiation and homing.
- Current research seeks factors to enhance MSC therapeutic efficacy.
- Colony-stimulating factor 2 (CSF-2) is known for its role in myeloid cell differentiation.
Purpose of the Study:
- To investigate the novel function of CSF-2 in MSCs.
- To identify CSF-2 as an endogenous damage signal.
- To explore CSF-2's potential to enhance MSC-based therapeutics.
Main Methods:
- Investigated CSF-2 secretion by stem cells in response to injury.
- Assessed the effects of CSF-2 on MSC multi-lineage differentiation and migration.
- Utilized in vitro and in vivo models, including an endometrial ablation animal model.
- Analyzed signaling pathways including PI3K/Akt and FAK/ERK1/2.
Main Results:
- CSF-2 is secreted by stem cells as an endogenous damage signal.
- CSF-2 enhances MSC multi-lineage differentiation and migratory capacities.
- CSF-2 signaling involves the PI3K/Akt and/or FAK/ERK1/2 pathways.
- CSF-2-stimulated MSCs demonstrated improved in vivo therapeutic effects.
Conclusions:
- CSF-2 possesses a novel non-hematopoietic function.
- CSF-2 acts as an endogenous damage signal to promote MSC therapeutic functions.
- This finding provides a new mechanism for enhancing MSC-based therapies.
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