Search Results - "Wierenga, Annet F"
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Induction of brain‐infiltrating T‐bet–expressing B cells in multiple sclerosis
Published in Annals of neurology (01-08-2019)“…Objective Results from anti‐CD20 therapies demonstrate that B‐ and T‐cell interaction is a major driver of multiple sclerosis (MS). The local presence of…”
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The association of Epstein‐Barr virus infection with CXCR3+ B‐cell development in multiple sclerosis: impact of immunotherapies
Published in European journal of immunology (01-03-2021)“…Epstein–Barr virus (EBV) infection of B cells is associated with increased multiple sclerosis (MS) susceptibility. Recently, we found that CXCR3‐expressing B…”
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Differential Runx3, Eomes, and T‐bet expression subdivides MS‐associated CD4+ T cells with brain‐homing capacity
Published in European journal of immunology (01-02-2024)“…Multiple sclerosis (MS) is a common and devastating chronic inflammatory disease of the CNS. CD4+ T cells are assumed to be the first to cross the…”
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Chemical and genetic control of IFNγ‐induced MHCII expression
Published in EMBO reports (01-09-2018)“…The cytokine interferon‐γ (IFNγ) can induce expression of MHC class II (MHCII) on many different cell types, leading to antigen presentation to CD4 + T cells…”
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The macrophage migration inhibitory factor pathway in human B cells is tightly controlled and dysregulated in multiple sclerosis
Published in European journal of immunology (01-11-2018)“…In MS, B cells survive peripheral tolerance checkpoints to mediate local inflammation, but the underlying molecular mechanisms are relatively underexplored. In…”
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Surgical excision of CNS-draining lymph nodes reduces relapse severity in chronic-relapsing experimental autoimmune encephalomyelitis
Published in The Journal of pathology (01-03-2009)“…Despite lack of classical lymphatic vessels in the central nervous system (CNS), cells and antigens do reach the CNS-draining lymph nodes. These lymph nodes…”
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Pregnancy-induced effects on memory B-cell development in multiple sclerosis
Published in Scientific reports (09-06-2021)“…In MS, pathogenic memory B cells infiltrate the brain and develop into antibody-secreting cells. Chemokine receptors not only define their brain-infiltrating…”
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Improving Glucocorticoid Sensitivity of Brain-Homing CD4 + T Helper Cells by Steroid Hormone Crosstalk
Published in Frontiers in immunology (26-05-2022)“…In early multiple sclerosis (MS), an IFN-γ GM-CSF IL-17 CD4 T-cell subset termed T helper 17.1 (Th17.1) reveals enhanced capacity to infiltrate the central…”
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Multiple sclerosis-associated CLEC16A controls HLA class II expression via late endosome biogenesis
Published in Brain (London, England : 1878) (01-06-2015)“…C-type lectins are key players in immune regulation by driving distinct functions of antigen-presenting cells. The C-type lectin CLEC16A gene is located at…”
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Myelin ingestion alters macrophage antigen-presenting function in vitro and in vivo
Published in Journal of leukocyte biology (01-07-2011)“…Macrophage myelin ingestion results in a population of macrophages that induces T‐cell proliferation, restricts detrimental Th1 differentiation, and suppresses…”
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Effector T Helper Cells Are Selectively Controlled During Pregnancy and Related to a Postpartum Relapse in Multiple Sclerosis
Published in Frontiers in immunology (15-03-2021)“…Multiple sclerosis (MS) patients are protected from relapses during pregnancy and have an increased relapse risk after delivery. It is unknown how pregnancy…”
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Human T-bet+ B cell development is associated with BTK activity and suppressed by evobrutinib
Published in JCI insight (22-08-2022)“…Recent clinical trials have shown promising results for the next-generation Bruton’s tyrosine kinase (BTK) inhibitor evobrutinib in the treatment of multiple…”
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Distinct Effector Programs of Brain-Homing CD8 + T Cells in Multiple Sclerosis
Published in Cells (Basel, Switzerland) (13-05-2022)“…The effector programs of CD8 memory T cells are influenced by the transcription factors RUNX3, EOMES and T-bet. How these factors define brain-homing CD8…”
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Serum neurofilament light chain in pediatric MS and other acquired demyelinating syndromes
Published in Neurology (03-09-2019)“…OBJECTIVETo explore the correlation between serum and CSF neurofilament light chain (NfL) and the association of NfL levels and future disease activity in…”
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Increased Serum Levels of MRP-8/14 in Type 1 Diabetes Induce an Increased Expression of CD11b and an Enhanced Adhesion of Circulating Monocytes to Fibronectin
Published in Diabetes (New York, N.Y.) (01-08-2004)“…Increased Serum Levels of MRP-8/14 in Type 1 Diabetes Induce an Increased Expression of CD11b and an Enhanced Adhesion of Circulating Monocytes to Fibronectin…”
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T-cell activation marker sCD27 is associated with clinically definite multiple sclerosis in childhood-acquired demyelinating syndromes
Published in Multiple sclerosis (01-11-2018)“…Background: Cerebrospinal fluid (CSF) levels of T-cell activation marker soluble CD27 (sCD27) are associated with subsequent disease activity after a first…”
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T helper 17.1 cells associate with multiple sclerosis disease activity: perspectives for early intervention
Published in Brain (London, England : 1878) (01-05-2018)“…CD4+ T helper 17 (Th17) cells are key regulators of multiple sclerosis disease activity, but functionally heterogeneous. Van Langelaar et al. report that…”
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Role of CD8 regulatory T-cells in multiple sclerosis
Published in Annals of neurology (01-03-2011)“…No abstract is available for this article…”
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Impact of coding risk variant IFNGR2 on the B cell-intrinsic IFN-γ signaling pathway in multiple sclerosis
Published in Journal of autoimmunity (01-09-2024)“…B cells of people with multiple sclerosis (MS) are more responsive to IFN-γ, corresponding to their brain-homing potential. We studied how a coding single…”
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The Role of Autoimmunity-Related Gene CLEC16A in the B Cell Receptor-Mediated HLA Class II Pathway
Published in The Journal of immunology (1950) (15-08-2020)“…C-type lectin is located next to , the master transcription factor of HLA class II (HLA-II), at a susceptibility locus for several autoimmune diseases,…”
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