International audienceThe use of autoantigen-specific regulatory T cells (Tregs) as a cellular therapy for autoimmune diseases is appealing. However, it is challenging to isolate and expand large quantity of Tregs expressing disease-relevant T-cell receptors (TCR). To overcome this problem, we used an approach aiming at redirecting the specificity of polyclonal Tregs through autoreactive TCR gene transfer technology. In this study, we examined whether Tregs engineered through retroviral transduction to express a TCR cross-reactive to two CNS autoantigens, myelin oligodendrocyte glycoprotein (MOG) and neurofilament-medium (NF-M), had a superior protective efficacy compared with Tregs expressing a MOG mono-specific TCR. We observed that engin...
Regulatory T cells (Tregs), expressing the transcription factor Foxp3, form a key component of peri...
Adoptive therapy with polyclonal regulatory T cells (Tregs) has shown efficacy in suppressing detrim...
BackgroundTherapies directed at augmenting regulatory T cell (Treg) activities in vivo as a systemic...
Regulatory T cells (Tregs), expressing the transcription factor Foxp3, form a key component of perip...
The potential use of CD4(+)Foxp3(+) Treg as a cellular therapy for autoimmune disease is of great in...
BACKGROUND: Multiple sclerosis (MS) is an autoimmune disease of the central nervous system (CNS). In...
CD4(+) FOXP3(+) T regulatory cells (Tregs) are currently explored to develop cell therapies against ...
Autoimmune disease affects an estimated 50 million people in the United States. Autoimmune disease ...
Autoimmune disease arises when a breakdown in immunological self-tolerance causes self-reactive tiss...
MS is a debilitating autoimmune disorder in which autoreactive T cells attack and cause the destruct...
Autoimmune diseases are incurable and affect about 6-9 % of the population. Treatments of autoimmune...
Treatment with ex vivo generated regulatory T cells (Treg) has been regarded as highly attractive th...
Regulatory T cells (Treg) are potent inhibitors of autoreactive T cells. The intracellular transcrip...
Autoimmune diseases are often characterized by spontaneous remission followed by relapses. Although ...
Regulatory T cells (Tregs) can suppress a wide range of immune cells, making them an ideal candidate...
Regulatory T cells (Tregs), expressing the transcription factor Foxp3, form a key component of peri...
Adoptive therapy with polyclonal regulatory T cells (Tregs) has shown efficacy in suppressing detrim...
BackgroundTherapies directed at augmenting regulatory T cell (Treg) activities in vivo as a systemic...
Regulatory T cells (Tregs), expressing the transcription factor Foxp3, form a key component of perip...
The potential use of CD4(+)Foxp3(+) Treg as a cellular therapy for autoimmune disease is of great in...
BACKGROUND: Multiple sclerosis (MS) is an autoimmune disease of the central nervous system (CNS). In...
CD4(+) FOXP3(+) T regulatory cells (Tregs) are currently explored to develop cell therapies against ...
Autoimmune disease affects an estimated 50 million people in the United States. Autoimmune disease ...
Autoimmune disease arises when a breakdown in immunological self-tolerance causes self-reactive tiss...
MS is a debilitating autoimmune disorder in which autoreactive T cells attack and cause the destruct...
Autoimmune diseases are incurable and affect about 6-9 % of the population. Treatments of autoimmune...
Treatment with ex vivo generated regulatory T cells (Treg) has been regarded as highly attractive th...
Regulatory T cells (Treg) are potent inhibitors of autoreactive T cells. The intracellular transcrip...
Autoimmune diseases are often characterized by spontaneous remission followed by relapses. Although ...
Regulatory T cells (Tregs) can suppress a wide range of immune cells, making them an ideal candidate...
Regulatory T cells (Tregs), expressing the transcription factor Foxp3, form a key component of peri...
Adoptive therapy with polyclonal regulatory T cells (Tregs) has shown efficacy in suppressing detrim...
BackgroundTherapies directed at augmenting regulatory T cell (Treg) activities in vivo as a systemic...