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Updated: Jun 12, 2026

Development and Functional Characterization of Murine Tolerogenic Dendritic Cells
Published on: May 18, 2018
Generation and characterisation of therapeutic tolerogenic dendritic cells for rheumatoid arthritis
Rachel A Harry1, Amy E Anderson, John D Isaacs
1Institute of Cellular Medicine, Newcastle University, Newcastle Upon Tyne, UK.
Objectives:
Tolerogenic dendritic cells (tolDCs) constitute a promising experimental treatment for targeting autoreactive T cells in autoimmune diseases, including rheumatoid arthritis (RA). The authors' goal is to bring tolDC therapy for RA to the clinic. Here the authors address key translational issues related to the manufacturing of tolDCs from RA patients with current good manufacturing practice (cGMP)-compliant reagents, the stability of tolDCs, and the selection of suitable quality control markers.
Methods:
Human monocyte-derived tolDCs were established from RA patients and healthy controls (HCs) using the immunosuppressive drugs dexamethasone and vitamin D₃, and the cGMP-grade immunomodulator, monophosphoryl lipid A, in the cGMP-compliant medium, CellGroDC. The functionality of tolDCs and tolDC-modulated autologous CD4 T cells was determined by flow cytometry, [³H]thymidine incorporation and ELISA.
Results:
Clinical-grade tolDCs established from patients with RA exhibit a typical tolerogenic phenotype of reduced costimulatory molecules, low production of proinflammatory cytokines and impaired stimulation of autologous antigen-specific T cells, comparable to HC tolDCs. Toll-like receptor 2 (TLR-2) was highly expressed by tolDCs but not mature DCs. Furthermore, tolDCs suppressed mature DC-induced T cell proliferation, interferon γ and interleukin 17 production, and rendered T cells hyporesponsive to further stimulation. Importantly, tolDCs were phenotypically stable in the absence of immunosuppressive drugs and were refractory to further challenge with proinflammatory mediators.
Conclusions:
tolDCs established from patients with RA are comparable to those derived from healthy donors. TLR-2 was identified as an ideal marker for quality control of tolDCs. Potently tolerogenic and highly stable, these tolDCs are a promising cellular therapeutic for tailored immunomodulation in the treatment of RA.
Insights
Tolerogenic dendritic cells (tolDCs) derived from rheumatoid arthritis (RA) patients are stable and effective for treating autoimmune diseases. Toll-like receptor 2 (TLR-2) is a key quality control marker for these promising cellular therapies.
Area of Science:
- Immunology
- Cellular Therapy
- Autoimmune Diseases
Background:
- Tolerogenic dendritic cells (tolDCs) show promise for treating autoimmune diseases like rheumatoid arthritis (RA) by targeting autoreactive T cells.
- Translational challenges in manufacturing and quality control of tolDCs for clinical application need to be addressed.
Purpose of the Study:
- To develop clinical-grade tolDCs from RA patients for potential RA therapy.
- To assess the manufacturing, stability, and quality control of these tolDCs.
Main Methods:
- Established human monocyte-derived tolDCs from RA patients and healthy controls (HCs) using cGMP-compliant reagents and cell culture conditions.
- Assessed tolDC phenotype, functionality, and stability using flow cytometry, [³H]thymidine incorporation, and ELISA.
- Identified Toll-like receptor 2 (TLR-2) as a potential quality control marker.
Main Results:
- RA-derived tolDCs exhibited a tolerogenic phenotype comparable to HC-derived tolDCs, with reduced costimulatory molecules and pro-inflammatory cytokine production.
- tolDCs potently suppressed T cell proliferation and cytokine production induced by mature dendritic cells.
- tolDCs demonstrated phenotypic stability without immunosuppressive drugs and were refractory to pro-inflammatory challenges. High TLR-2 expression was noted on tolDCs.
Conclusions:
- Clinical-grade tolDCs manufactured from RA patients are comparable to those from healthy donors and possess potent tolerogenic and stable properties.
- Toll-like receptor 2 (TLR-2) is a suitable marker for quality control of tolDCs.
- These stable, tolerogenic tolDCs represent a promising cellular therapeutic for RA treatment.
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