Innate immune pathway activation to modulate mesenchymal stromal cell (MSC) interactions with synovium and cartilage
Peter Linde1, Lyndah Chow1, Isabella Sabino1
1Department of Clinical Sciences, College of Veterinary Medicine and Biomedical Sciences, Colorado State University, Fort Collins, CO, United States.
Introduction:
Mesenchymal stromal cells (MSCs) have been evaluated as a local therapeutic option to treat osteoarthritis (OA) with conflicting clinical results. Our previous studies have evaluated immune licensing of MSC through activation of Toll-like receptor and cytosolic cGAS-STING pathways, with demonstrated improvement in functional and structural outcomes in a rodent model of OA. The objective of this study was to investigate impact of MSC activation on their interaction with relevant joint target cells to better understand the mechanisms by which pre-activation improves MSC activity for treatment of osteoarthritis.
Methods:
Equine bone-marrow-derived MSCs (passage 2-3) from 3 healthy donors were stimulated with a TLR3-pathway agonist (polyinosinic:polycytidylic acid) or STING pathway agonist (2'3'-cGAMP) (10 μg/mL, 2 h, 2 × 106 cells/mL in suspension). Cells were plated (100,000 cells/well, 24-well plates) and conditioned media (CM) collected at 24 h. Equine monocyte-derived macrophages, synovial cells, and chondrocytes were stimulated with IL-1ß/TNF-α (20 ng/mL, 2 h), washed and treated 24 h with MSC-CM, TLR-MSC-CM or STING-MSC-CM, washed and cultured 24 h. CM was examined for cytokine secretion by multiplex immunoassay and ELISA (25 cytokines). Bulk RNA sequencing was performed on MSC and joint cell lines via an Illumina based platform.
Results:
TLR-MSC-CM decreased IL-1β (p = 0.02), IL-6 (p = 0.02) secretion by synoviocytes and IL-18 secretion by activated chondrocytes (p = 0.002). STING-MSC-CM decreased IL-6, IL-8 secretion (p = 0.08) by synoviocytes, decreased IL-8 (p = 0.05) by activated chondrocytes, increased G-CSF (p = 0.01), IL-4 (p = 0.01) and decreased IL-5 (p = 0.01) by activated macrophages. Transcriptomic analyses indicated differential gene expression in each cell line following CM treatment varied by cell line. STING-MSC-CM vs TLR-MSC-CM induced 38 significantly altered DEGs in synoviocytes, 20 in chondrocytes, and 47 in macrophages.
Discussion:
These findings indicate that joint cells respond differently to factors secreted by TLR or STING pathway activated MSC. The pathways altered were different for each target cell type and no clear pattern of responses was apparent. These results indicate that in vitro modeling of target cell responses to "licensed" MSC can provide new information on the MSC and target cell interactions, though ultimately the functional impacts of activated MSC need to be evaluated using in vivo models.
Insights
Activating mesenchymal stromal cells (MSCs) via Toll-like receptor (TLR) or STING pathways alters their interaction with joint cells. This pre-activation influences cytokine secretion and gene expression in macrophages, synoviocytes, and chondrocytes, suggesting cell-specific responses to MSC therapy for osteoarthritis.
Area of Science:
- Immunology and Regenerative Medicine
- Cell Biology and Molecular Mechanisms
Background:
- Mesenchymal stromal cells (MSCs) show variable clinical efficacy for osteoarthritis (OA) treatment.
- Previous research demonstrated that immune licensing of MSCs via Toll-like receptor (TLR) and cGAS-STING pathways improves outcomes in OA rodent models.
- Understanding the interaction between activated MSCs and joint target cells is crucial for elucidating therapeutic mechanisms.
Purpose of the Study:
- To investigate the impact of MSC activation through TLR and STING pathways on their interactions with equine macrophages, synovial cells, and chondrocytes.
- To elucidate the underlying mechanisms by which pre-activated MSCs enhance therapeutic potential for osteoarthritis.
Main Methods:
- Equine bone-marrow-derived MSCs were stimulated with TLR3 or STING agonists.
- Conditioned media (CM) from activated MSCs were collected and applied to IL-1β/TNF-α stimulated equine macrophages, synovial cells, and chondrocytes.
- Cytokine secretion was analyzed using multiplex immunoassay and ELISA; differential gene expression was assessed via bulk RNA sequencing.
Main Results:
- TLR-activated MSC CM significantly reduced pro-inflammatory cytokine secretion (IL-1β, IL-6, IL-18) by synoviocytes and chondrocytes.
- STING-activated MSC CM modulated cytokine profiles in macrophages (increased G-CSF, IL-4; decreased IL-5) and reduced IL-8 in chondrocytes.
- Transcriptomic analysis revealed distinct differential gene expression patterns in each joint cell type following treatment with TLR-MSC-CM or STING-MSC-CM.
Conclusions:
- Joint cells exhibit differential responses to factors secreted by TLR- or STING-activated MSCs, with distinct pathway alterations observed for each cell type.
- In vitro modeling of target cell responses to 'licensed' MSCs provides insights into MSC-target cell interactions.
- Further in vivo evaluation is necessary to determine the functional impacts of activated MSCs in osteoarthritis treatment.
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