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Isolating Human Peripheral Blood Mononuclear Cells and CD4+ T cells from Sézary Syndrome Patients for Transcriptomic Profiling
Published on: October 14, 2021
Sézary syndrome: old enigmas, new targets
Jan P Nicolay1,2, Moritz Felcht1, Kai Schledzewski1
1Department of Dermatology, Venereology and Allergology, University Medical Center and Medical Faculty Mannheim, University of Heidelberg, Mannheim, Germany.
Abstract:
Sézary syndrome, the leukemic variant of cutaneous T-cell lymphoma, is still an enigmatic disease with a fatal prognosis. Recent research, however, has identified a multitude of dysregulated molecular pathways that contribute to malignant transformation and therapy resistance of Sézary cells (SC). With respect to T-cell development, SC either represent naive T cells, T effector memory or T central memory cells. Functionally, SC may differentiate into Th2, Treg, or even Th17 cells. Despite their plasticity, SC express characteristic diagnostic marker proteins including CD158k, CD164, FcRL3, and PD-1 as well as skin-homing receptors such as CLA and CCR4. Already tested in (pre)clinical trials, CD158k, PD-1, CTLA-4, and CCR4 also represent promising therapeutic targets. Molecular alterations in SC include transcription factors such as STAT3, 4, and 5, as well as TWIST1 and TOX. TWIST1 induces expression of DNM3os containing the miR-199a2/214 cluster, a key hub controlling multiple cancer networks. In addition, activation of NFκB and the MAPK pathway as well as altered TCR signaling cause apoptosis resistance. Recently, whole genome and exome sequencing has revealed somatic copy number variations as predominant mutations in SC, primarily affecting apoptosis, NFκB signaling, DNA integrity, and T-cell activation. In order to facilitate development of novel therapies, improved in vivo models, which better reflect the pathogenesis and clinical course of Sézary syndrome, are currently being generated.
Insights
Sézary syndrome, a leukemic cutaneous T-cell lymphoma, involves molecular changes driving malignancy and resistance. New research targets these pathways and mutations for improved therapies and models.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Sézary syndrome (SC) is a fatal leukemic variant of cutaneous T-cell lymphoma.
- SC pathogenesis involves dysregulated molecular pathways contributing to malignancy and therapy resistance.
- SC cells exhibit plasticity, differentiating into various T-cell subtypes and expressing specific markers.
Purpose of the Study:
- To elucidate the molecular underpinnings of Sézary syndrome.
- To identify potential therapeutic targets and improve in vivo models for Sézary syndrome research.
Main Methods:
- Analysis of molecular alterations in Sézary cells, including transcription factors and signaling pathways.
- Whole genome and exome sequencing to identify somatic copy number variations.
- Review of diagnostic markers and potential therapeutic targets in (pre)clinical trials.
Main Results:
- Key molecular alterations include transcription factors (STAT3/4/5, TWIST1, TOX) and signaling pathways (NFκB, MAPK).
- TWIST1 influences miR-199a2/214 cluster, impacting cancer networks.
- Somatic copy number variations predominantly affect apoptosis, NFκB signaling, DNA integrity, and T-cell activation.
Conclusions:
- Understanding molecular pathways and mutations in Sézary syndrome is crucial for developing novel therapies.
- Targeting specific markers (CD158k, PD-1, CTLA-4, CCR4) shows therapeutic promise.
- Development of improved in vivo models is essential for advancing Sézary syndrome treatment.
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