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Updated: Sep 18, 2025

A Three-dimensional Model of Spheroids to Study Colon Cancer Stem Cells
Published on: January 22, 2021
MSC1 Cells Suppress Colorectal Cancer Cell Growth via Metabolic Reprogramming, Laminin-Integrin Adhesion Signaling,
Panagiota-Angeliki Galliou1, Niti Argyri1, Papaioannou Maria1
1Laboratory of Biological Chemistry, School of Medicine, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Abstract:
Background/Objectives: Mesenchymal stem cells (MSCs) possess immunomodulatory properties, tumor-homing, and low immunogenicity, making them attractive for cell-based cancer therapies, but their role in colorectal cancer (CRC) remains controversial. The MSC1 phenotype, a pro-inflammatory, tumor-suppressive state induced by short-term, low-dose LPS activation via TLR4, has shown therapeutic promise but remains poorly characterized in CRC. We aimed to elucidate MSC1's tumor-suppressive mechanisms and validate its activity against CRC cells using an integrated bioinformatics and in vitro approach. Methods: We constructed a high-confidence protein-protein interaction (PPI) network in Wharton's jelly-derived MSCs (WJ-MSCs) following TLR4 activation to uncover enriched signaling pathways, transcriptional regulators, and secreted factors. Functional and transcriptional enrichment analyses pinpointed key mechanisms. We then co-cultured MSC1 cells with CRC cells to assess effects on proliferation and metabolism. Results: Network analysis revealed six tumor-suppressive mechanisms of MSC1 cells: (i) Metabolic reprogramming via enhanced glucose and lipid uptake, phosphoinositide signaling, and membrane/protein recycling, (ii) Robust antioxidant defenses, including SOS signaling and system xc⁻, (iii) Extracellular matrix stabilization and laminin-111-integrin-mediated adhesion, (iv) Secretome with direct anti-cancer effects, (v) Regulation of survival and cancer-associated fibroblasts (CAFs) formation inhibition through balanced proliferation, apoptosis, and epigenetic signals, (vi) Controlled pro-inflammatory signaling with anti-inflammatory feedback. In vitro, MSC1 cells significantly suppressed CRC cell proliferation and metabolic activity versus controls. Conclusions: This study provides the first mechanistic map of MSC1's tumor-suppressive functions in CRC, extending beyond immunomodulation to include metabolic competition, ECM stabilization, and anti-cancer secretome activity. These findings establish MSC1 cells as a novel therapeutic strategy for CRC in cell-based cancer therapies.
Insights
Mesenchymal stem cells (MSCs) in a specific activated state (MSC1) show significant tumor-suppressive effects against colorectal cancer (CRC) by altering cell metabolism and promoting antioxidant defenses. This research reveals novel therapeutic mechanisms for MSC1 cells in CRC treatment.
Area of Science:
- Cell Biology
- Cancer Research
- Immunology
Background:
- Mesenchymal stem cells (MSCs) have potential in cancer therapy due to immunomodulatory and tumor-homing properties.
- The role of MSCs in colorectal cancer (CRC) is debated, necessitating further investigation.
- The MSC1 phenotype, a tumor-suppressive state of MSCs, requires detailed characterization in CRC.
Purpose of the Study:
- To elucidate the tumor-suppressive mechanisms of MSC1 cells in colorectal cancer.
- To validate the therapeutic potential of MSC1 cells against CRC cells.
- To integrate bioinformatics and in vitro approaches for comprehensive analysis.
Main Methods:
- Construction of a high-confidence protein-protein interaction (PPI) network in activated Wharton's jelly-derived MSCs (WJ-MSCs).
- Analysis of enriched signaling pathways, transcriptional regulators, and secreted factors post-TLR4 activation.
- Co-culture of MSC1 cells with CRC cells to assess proliferation and metabolic activity.
Main Results:
- Identified six key tumor-suppressive mechanisms of MSC1 cells, including metabolic reprogramming, enhanced antioxidant defenses, and ECM stabilization.
- Discovered a secretome with direct anti-cancer effects and inhibition of cancer-associated fibroblast formation.
- Demonstrated significant suppression of CRC cell proliferation and metabolic activity in vitro.
Conclusions:
- This study provides the first mechanistic map of MSC1's tumor-suppressive functions in CRC.
- MSC1 cells exhibit multifaceted anti-cancer activities beyond immunomodulation, including metabolic competition and secretome effects.
- MSC1 cells represent a promising novel therapeutic strategy for colorectal cancer.
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