ArticleHaematologica2024
Pro-inflammatory cells sustain leukemic clonal expansion in T-cell large granular lymphocyte leukemia.
Article in Haematologica, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Article
- Immunological features of acquired pure red cell aplasia: Specific human leucocyte antigen alleles, signal transducer and activator of transcription 3 mutations and a unique T-cell receptor beta motif.British journal of haematology · 2026Article
- Models for T-large granular lymphocytic leukemia: how to mimic the cellular interplays in malignant autoimmunity.Leukemia · 2025Review
- Clinical features and influencing factors analysis of T-cell large granular lymphocytic leukemia complicated with pure red cell aplasia.Frontiers in immunology · 2025Article
- T-cell clones of uncertain significance. When is the rogue clone dangerous?Haematologica · 2025Review
- HSP and CD279 gene expression as candidate biomarkers in symptomatic LGLL patients.Discover oncology · 2024Article
- Large granular lymphocyte leukemia: a clonal disorder with autoimmune manifestations.Hematology. American Society of Hematology. Education Program · 2024Review
- The constitutive activation of STAT3 gene and its mutations are at the crossroad between LGL leukemia and autoimmune disorders.Blood cancer journal · 2024Review
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Authors and funding
12 authors.
Funding
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Abstract
T-cell large granular lymphocyte leukemia (T-LGLL) is a chronic lymphoproliferative disorder characterized by the clonal expansion of T-cell large granular lymphocytes (T-LGL). Immunophenotypic and genotypic features contribute to discriminate symptomatic (CD8+ STAT3-mutated T-LGLL) from clinically indolent patients, this latter group including CD8+ wildtype (wt), CD4+ STAT5B-mutated and wt cases. T-LGL lymphoproliferation is sustained both by somatic gain-offunction mutations (i.e., STAT3 and STAT5B) and by pro-inflammatory cytokines, but little information is available on the activity of T-LGLL non-leukemic cells. In this study, we characterized pro-inflammatory cells in the peripheral blood of T-LGLL patients and analyzed their role in supporting the leukemic growth. In symptomatic patients we found that cell populations not belonging to the leukemic component showed a discrete pro-inflammatory pattern. In particular, CD8+ STAT3-mutated cases showed a skewed Th17/Treg ratio and an abnormal distribution of monocyte populations characterized by increased intermediate and non-classical monocytes. We also demonstrated that monocytes released high levels of interleukin-6 after CCL5 stimulation, a chemokine specifically expressed only by leukemic LGL. Conversely, in asymptomatic cases an altered distribution of monocyte populations was not detected. Moreover, T-LGLL patients' monocytes showed abnormal activation of signaling pathways, further supporting the different pathogenic role of monocytes in patients in discrete clinical settings. Altogether, our data contribute to deepening the knowledge on the different cell subtypes in T-LGLL, focusing particularly on non-leukemic cell populations and thus offering the rationale for new therapeutic strategies.
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