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Updated: Aug 25, 2026

Isolation and Th17 Differentiation of Naïve CD4 T Lymphocytes
Published on: September 26, 2013
Metabolic switch: lymphocytes and the onset of T-cell-mediated autoimmunity
Andisheh Mosaffa Jahromi1, Fatemeh Mirzaei1, Sara Mirzazadeh1
1Department of Immunology, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran.
Abstract:
T cell-mediated autoimmune diseases, including multiple sclerosis (MS), rheumatoid arthritis (RA), and type 1 diabetes (T1D), are being increasingly recognized as disorders driven not only by immune dysregulation but also by profound metabolic reprogramming in lymphocytes. Emerging evidence from the field of immunometabolism reveals that altering the balance between oxidative phosphorylation (OXPHOS) and aerobic glycolysis, along with enhancing fatty acid synthesis and dysregulated glutamine metabolism, critically shapes lymphocyte activation, differentiation, and pathogenicity. Here, we review the metabolic pathways that regulate T cells and B cells. We discuss how changes in glucose, lipid, and mitochondrial metabolism influence immune responses that lead to chronic inflammation and autoimmunity in MS, RA, and T1D. Interestingly, similar immunometabolic changes, such as increased glycolysis, mitochondrial dysfunction, and mTOR signaling, have been identified in another autoimmune disorder, systemic lupus erythematosus (SLE). Connecting metabolic dysregulation to immune tolerance failure, this review highlights immunometabolism as a key mechanism in autoimmunity. Immunometabolic pathways represent a new avenue for precision immunotherapy, although challenges persist in targeting cells specifically without systemic toxicity. Understanding these metabolic adaptations and epigenetic-metabolic crosstalk will be essential for translating these insights into next-generation therapies.
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