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Updated: Jun 28, 2025

Tumor Engraftment in a Xenograft Mouse Model of Human Mantle Cell Lymphoma
Published on: March 30, 2018
Mantle Cell Lymphoma Under the Scope of Personalized Medicine: Perspective and Directions
Lara Gallucci Figorelle1, Peterson Tiago Galvão1, Felipe Matheus Ribeiro de Lima2
1Laboratório de Proliferação e Diferenciação Celular, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil; Programa de Pós-graduação em Medicina (Anatomia Patológica), Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Insights
Mantle cell lymphoma (MCL) involves genetic mutations like t(11;14) and SOX11. Understanding these genetic markers and patient-specific traits improves prognosis and risk-adapted treatments for this rare cancer.
Area of Science:
- Hematology
- Oncology
- Genetics
Background:
- Mantle cell lymphoma (MCL) is a rare, incurable non-Hodgkin's lymphoma.
- A hallmark genetic feature is the t(11;14) translocation, causing Cyclin D1 overexpression and uncontrolled cell proliferation.
- SOX11 is a crucial diagnostic marker, present in most MCL cases, including those lacking the t(11;14) abnormality.
Purpose of the Study:
- To review current knowledge on genetic mutations in MCL and their prognostic impact.
- To explore the prognostic value of genetic markers in relation to population-specific traits.
- To emphasize the importance of tailored molecular medicine for predicting outcomes and guiding treatment strategies.
Main Methods:
- Literature review synthesizing current research on MCL genetics.
- Analysis of cytogenetic abnormalities, gene mutations (e.g., ATM, TP53, NOTCH1), and their clinical correlations.
- Examination of prognostic indices like MIPI and histological variants.
Main Results:
- The t(11;14) translocation and SOX11 expression are key diagnostic features.
- TP53 mutations are the sole genetic biomarker with established prognostic value.
- Histologic variants and emerging population-specific mutations offer additional prognostic insights.
Conclusions:
- Genetic mutations significantly impact MCL prognosis and treatment response.
- Personalized management strategies, informed by genetic markers and population traits, are crucial for improving patient outcomes.
- Further research is needed to address challenges in patient stratification and identify novel therapeutic targets for MCL.
Abstract:
Mantle cell lymphoma (MCL) is a rare, incurable non-Hodgkin's lymphoma characterized by naive B cells infiltrating the lymphoid follicle's mantle zone. A key feature of MCL is the cytogenetic abnormality t(11;14) (q13:q14), found in 95% of cases, leading to Cyclin D1 overexpression resulting in uncontrolled cell cycle progression and genetic instability. Occasionally, Cyclin D2 or D3 overexpression can substitute for Cyclin D1, causing similar effects. The transcription factor SOX11 is a hallmark of classical Cyclin D1-positive MCL and also in cases without the typical t(11;14) abnormality, making it an important diagnostic marker. MCL's development necessitates secondary genetic changes, including mutations in the ATM, TP53, and NOTCH1 genes, with the TP53 mutation being the only genetic biomarker with established clinical prognostic value. The Mantle Cell Lymphoma International Prognostic Index (MIPI) score, which considers age, performance status, serum LDH levels, and leukocyte count, stratifies patients into risk groups. Histologic variants of MCL, such as classic, blastoid, and pleomorphic, offer additional prognostic information. Recent research highlights new mutations potentially tied to specific populations among MCL patients, suggesting the benefit of personalized management for better predicting outcomes like progression-free survival. This approach could lead to more effective, risk-adapted treatment strategies. However, challenges remain in patient stratification and in developing new therapeutic targets for MCL. This review synthesizes current knowledge on genetic mutations in MCL and their impact on prognosis. It aims to explore the prognostic value of genetic markers related to population traits, emphasizing the importance of tailored molecular medicine in MCL.
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