Many autoimmune diseases develop as a consequence of an altered balance between autoreactive immune cells and suppressive FOXP3+ Treg. Restoring this balance through amplification of Treg represents a promising strategy to treat disease. However, FOXP3+ Treg might become unstable especially under certain inflammatory conditions, and might transform into proinflammatory cytokine-producing cells. The issue of heterogeneity and instability of Treg has caused considerable debate in the field and has important implications for Treg-based immunotherapy. In this review, we discuss how Treg stability is defined and what the molecular mechanisms underlying the maintenance of FOXP3 expression and the regulation of Treg stability are. Also, we elabora...
SummaryStable Foxp3 expression is crucial for regulatory T (Treg) cell function. We observed that an...
peer reviewedRegulatory T cells (Tregs) are critical for peripheral immune tolerance and homeostasis...
A balanced immune response requires tight control of immune activation at various levels, which cruc...
Item does not contain fulltextMany autoimmune diseases develop as a consequence of an altered balanc...
CD4+FOXP3+ Regulatory T cells (Treg) are indispensable for immune balance. In patients with autoimmu...
CD4+FOXP3+ Regulatory T cells (Treg) are indispensable for immune balance. In patients with autoimmu...
Accumulating evidence suggests that defective regulation is an essential underlying cause of autoimm...
Foxp3 + regulatory T cells (Tregs) maintain immune tolerance, prevent autoimmunity and modulate immu...
Regulatory T (Treg) cells, possess a strategic role in the maintenance of immune homeostasis, and th...
Regulatory T (Treg) cells play an essential role in maintaining immunological tolerance. The discove...
Autoimmune disease affects an estimated 50 million people in the United States. Autoimmune disease ...
"Autoimmune disease affects an estimated 50 million people in the United States. Autoimmune disease...
Maintenance of lymphoid homeostasis in a number of immunological and inflammatory contexts is served...
Regulatory T-cells (TREG) are diverse populations of lymphocytes that regulate the adaptive immune r...
Regulatory T-cells (TREG) are diverse populations of lymphocytes that regulate the adaptive immune r...
SummaryStable Foxp3 expression is crucial for regulatory T (Treg) cell function. We observed that an...
peer reviewedRegulatory T cells (Tregs) are critical for peripheral immune tolerance and homeostasis...
A balanced immune response requires tight control of immune activation at various levels, which cruc...
Item does not contain fulltextMany autoimmune diseases develop as a consequence of an altered balanc...
CD4+FOXP3+ Regulatory T cells (Treg) are indispensable for immune balance. In patients with autoimmu...
CD4+FOXP3+ Regulatory T cells (Treg) are indispensable for immune balance. In patients with autoimmu...
Accumulating evidence suggests that defective regulation is an essential underlying cause of autoimm...
Foxp3 + regulatory T cells (Tregs) maintain immune tolerance, prevent autoimmunity and modulate immu...
Regulatory T (Treg) cells, possess a strategic role in the maintenance of immune homeostasis, and th...
Regulatory T (Treg) cells play an essential role in maintaining immunological tolerance. The discove...
Autoimmune disease affects an estimated 50 million people in the United States. Autoimmune disease ...
"Autoimmune disease affects an estimated 50 million people in the United States. Autoimmune disease...
Maintenance of lymphoid homeostasis in a number of immunological and inflammatory contexts is served...
Regulatory T-cells (TREG) are diverse populations of lymphocytes that regulate the adaptive immune r...
Regulatory T-cells (TREG) are diverse populations of lymphocytes that regulate the adaptive immune r...
SummaryStable Foxp3 expression is crucial for regulatory T (Treg) cell function. We observed that an...
peer reviewedRegulatory T cells (Tregs) are critical for peripheral immune tolerance and homeostasis...
A balanced immune response requires tight control of immune activation at various levels, which cruc...