Naive regulatory T cells: a novel subpopulation defined by resistance toward CD95L-mediated cell death.
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Summary
A clear functional difference between naive and memory T(regs) that could result in different survival rates of those 2 cell populations in vivo is shown.
- Type
- article
- Published
- 2006-11-15
- Cited by
- 185
- References
- 44
- OpenAlex
- https://openalex.org/W1996465395
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3041923
Keywords
FOXP3, CD28, IL-2 receptor, Naive T cell, Immunology
References
- P. Rambotti Lecture. Human naive and memory T cells revisited: new markers (CD31 and CD27) that help define CD4+ T cell subsets.
- Regulatory T-cell therapy: is it ready for the clinic?
- CD95's deadly mission in the immune system
- Preferential Recognition of Self Antigens Despite Normal Thymic Deletion of CD4+CD25+ Regulatory T Cells1
- Evidence that Mls-2 antigens which delete V beta 3+ T cells are controlled by multiple genes.
- Resistance of Short Term Activated T Cells to CD95-Mediated Apoptosis Correlates with De Novo Protein Synthesis of c-FLIPshort1
- Flow cytometric characterisation of the “false naive” (CD45RA+, CD45R0-, CD29 bright+) peripheral blood T -lymphocytes in health and in rheumatoid arthritis
- Analysis of FOXP3 protein expression in human CD4+CD25+ regulatory T cells at the single‐cell level
- Functional analysis of highly defined, FACS-isolated populations of human regulatory CD4+CD25+ T cells.
- Naturally arising Foxp3-expressing CD25+CD4+ regulatory T cells in immunological tolerance to self and non-self
- Ontogeny of CD4+CD25+ regulatory/suppressor T cells in human fetuses.
- Reduced suppressive effect of CD4+CD25high regulatory T cells on the T cell immune response against myelin oligodendrocyte glycoprotein in patients with multiple sclerosis
- Development and activation of regulatory T cells in the human fetus
- CCR6 expression defines regulatory effector/memory-like cells within the CD25(+)CD4+ T-cell subset.
- CD4+CD25+FOXP3+ regulatory T cells from human thymus and cord blood suppress antigen‐specific T cell responses
- Transforming growth factor β induced FoxP3+ regulatory T cells suppress Th1 mediated experimental colitis
- Expression of FOXP3 mRNA is not confined to CD4+CD25+ T regulatory cells in humans.
- Increased induction of allogeneic-specific cord blood CD4+CD25+ regulatory T (Treg) cells: a comparative study of naïve and antigenic-specific cord blood Treg cells.
- Inducing and expanding regulatory T cell populations by foreign antigen
- CD25+CD4+ T cells in human cord blood: an immunoregulatory subset with naive phenotype and specific expression of forkhead box p3 (Foxp3) gene.
Cited by
- Understanding Recurrent Disease: A Dynamical Systems Approach
- Role and specificity of regulatory T cells during retroviral infection
- Oxidative stress and lymphocyte persistence: implications in immunotherapy.
- Rôle des lymphocytes T régulateurs dans un nouveau modèle murin de myopathie inflammatoire et implications dans la physiopathologie et la thérapie de la Myosite à Inclusions
- Third party approach using cord blood Tregs in allo-transplantation
- The characterisation of human regulatory T cell subsets in ageing and atopy
- Immune regulation by dendritic cells and T cells--basic science, diagnostic, and clinical application.
- In vitro generation of human FOXP3+ regulatory T cells
- Allergen-induced regulatory properties of the CD4+CD25+ subset in cord blood and possible implications on the post-natal tolerance induction
- Study of immunomics and immune regulation in ovarian cancer
- Many checkpoints on the road to cell death: regulation of Fas-FasL interactions and Fas signaling in peripheral immune responses
- Neonatal immune tolerance for hemophilia: can we ‘tolerate’ new paradigms for gene therapy trials?
- Regulatory T cells in the central nervous system
- Human FoxP3+CD4+ regulatory T cells: their knowns and unknowns
- Neutrophilic myeloid‐derived suppressor cells in cord blood modulate innate and adaptive immune responses
- Regulating regulatory T cells to achieve transplant tolerance.
- Differential Sensitivity of Regulatory and Effector T Cells to Cell Death: A Prerequisite for Transplant Tolerance
- Regulatory T cells : molecular and clinical aspects
- Cutting Edge: Responder T Cells Regulate Human DR+ Effector Regulatory T Cell Activity via Granzyme B1
- Prevalence of Newly Generated Naive Regulatory T Cells (Treg) Is Critical for Treg Suppressive Function and Determines Treg Dysfunction in Multiple Sclerosis1
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