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Updated: Jan 31, 2026

Regulatory T cells: Therapeutic Potential for Treating Transplant Rejection and Type I Diabetes
Published on: August 20, 2007
Targeting Regulatory T Cells for Transplant Tolerance: New Insights and Future Perspectives
Eman Shaban1,2, George Bayliss1,3, Deepak K Malhotra4
1Division of Kidney Disease and Hypertension, Department of Medicine, Rhode Island Hospital, Alpert Medical School, Brown University, Providence, Rhode Island, USA.
Background:
Organ transplantation is considered the ultimate therapy for end-stage organ disease. While pharmacologic immunosuppression is the mainstay of therapeutic strategies to prolong the survival of the graft, long-term use of immunosuppressive medications carries the risk of organ toxicity, malignancies, serious opportunistic infections, and diabetes. Therapies that promote recipient tolerance in solid organ transplantation are able to improve patient outcomes by eliminating the need for long-term immunosuppression.
Summary:
Establishing tolerance to an allograft has become an area of intense study and would be the ideal therapy in clinical practice. The discovery of a subset of T cells naturally committed to perform immunoregulation has led to further investigation into their role in the immunopathogenesis of transplantation. Evidence suggests that regulatory T cells (Tregs) are fundamentally involved in promoting allograft tolerance. Efforts to characterize specific markers for Tregs, while challenging, have identified Foxp3 gene expression as a crucial step in promoting the tolerance-inducing features of Tregs. A number of approaches, including those based on targeting the glycogen synthase kinase 3β signaling pathway or activating the melanocortinergic pathway, have been tested as a way to promote Treg lineage commitment and maintenance as well as to facilitate immune tolerance. In order to be effective in clinical practice, Tregs must be allospecific and possess a specific phenotype to avoid suppression of other aspects of the immune system or increasing the risk of malignancy or infections. Multiple experimental and clinical studies have demonstrated the impact of currently used immunosuppressants on the immunoregulatory activities of Tregs and their Foxp3 expression status. Pharmacological induction of tolerogenic Tregs for inducing transplant tolerance, including epigenetic therapies, is in the ascendant.
Key Messages:
Therapies that promote Treg function and survival may represent a novel strategy for achieving immune tolerance in transplant patients.
Insights
Regulatory T cells (Tregs) are key to promoting transplant tolerance. Therapies targeting Treg function offer a promising new strategy to improve outcomes for organ transplant recipients by reducing immunosuppression needs.
Area of Science:
- Immunology
- Transplantation Biology
- Cellular Therapy
Background:
- Organ transplantation is a vital treatment for end-stage organ disease.
- Current immunosuppression strategies carry risks like toxicity, infections, and malignancies.
- Promoting recipient tolerance can improve outcomes by reducing reliance on long-term immunosuppression.
Purpose of the Study:
- To explore the role of regulatory T cells (Tregs) in achieving transplant tolerance.
- To investigate methods for enhancing Treg function and commitment for therapeutic benefit.
Main Methods:
- Investigated the involvement of Tregs in allograft tolerance.
- Examined Foxp3 gene expression as a marker for Treg function.
- Reviewed approaches targeting signaling pathways (e.g., GSK3β, melanocortinergic) to promote Tregs.
- Analyzed the impact of immunosuppressants on Treg activity.
Main Results:
- Regulatory T cells (Tregs) are crucial for promoting allograft tolerance.
- Foxp3 gene expression is essential for Treg-mediated tolerance.
- Targeting specific pathways can enhance Treg lineage commitment and maintenance.
- Current immunosuppressants affect Treg function and Foxp3 expression.
Conclusions:
- Establishing transplant tolerance via Tregs is an ideal therapeutic goal.
- Therapies that enhance Treg function and survival represent a novel strategy for transplant tolerance.
- Allospecific Tregs with defined phenotypes are necessary for safe and effective clinical application.
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