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Tumor Engraftment in a Xenograft Mouse Model of Human Mantle Cell Lymphoma
Published on: March 30, 2018
Resistance mechanisms and clonal dynamics in mantle cell lymphoma treated with sequential BTKi and venetoclax therapy
Tamás László1,2, László Imre Pinczés3,4, Bence Bátai1,2,5
1HCEMM-SE Molecular Oncohematology Research Group, Department of Pathology and Experimental Cancer Research, Semmelweis University, Budapest, Hungary.
Abstract:
In recent years, targeted therapies have become the standard of care for refractory/relapsed mantle cell lymphoma (MCL). Although the mutational profile of MCL has been extensively studied, there is a lack of understanding of resistance mechanisms and genetic factors that impact the response to novel treatments. Since patients relapsing on targeted treatment experience poor clinical outcomes, understanding the genetic foundation of resistance mechanisms in MCL is essential. In this study, we aimed to scrutinize the copy number profile and clonal dynamics of double-resistant MCL patients treated sequentially with Bruton's tyrosine kinase inhibitor (BTKi) and venetoclax using low-coverage whole genome sequencing (lcWGS). Samples obtained after systemic therapy showed more copy number alterations (CNAs) (p = 0.039; Wilcoxon) compared to samples collected before treatment initiation. Patients showing early progression on BTKi demonstrated CNAs affecting cytobands encompassing the coding regions of NOTCH1, TRAF2, BIRC2, BIRC3, and ATM. A deletion in chromosome 9p21.3 was identified in two out of three venetoclax-resistant patients. For patient MCL2, progressing on ibrutinib but showing venetoclax resistance, a 9p21.3 deletion was found throughout the disease course, with acquired SMARCA4-del(19)(p13.3-q13.11) and DLC1-del(8)(p23.2-q11.1) observed at relapse, highlighting their role in disease progression and therapy resistance. Using lcWGS, an innovative genome-wide approach, this study revealed novel putative primary and acquired resistance mechanisms in BTKi and venetoclax double-resistant MCL patients. © 2025 The Author(s). The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.
Insights
This study reveals genetic factors driving resistance to targeted therapies in mantle cell lymphoma (MCL). Understanding these mechanisms is crucial for improving outcomes in relapsed MCL patients receiving Bruton's tyrosine kinase inhibitors (BTKi) and venetoclax.
Area of Science:
- Hematology
- Oncology
- Genomics
Background:
- Targeted therapies are standard for relapsed/refractory mantle cell lymphoma (MCL).
- Mechanisms of resistance to novel agents like Bruton's tyrosine kinase inhibitors (BTKi) and venetoclax are not fully understood.
- Understanding resistance is critical due to poor outcomes in patients relapsing on targeted treatments.
Purpose of the Study:
- To investigate copy number profiles and clonal dynamics in MCL patients resistant to sequential BTKi and venetoclax therapy.
- To identify genetic factors contributing to primary and acquired resistance in MCL.
Main Methods:
- Low-coverage whole genome sequencing (lcWGS) was employed.
- Copy number alterations (CNAs) and clonal dynamics were analyzed in sequential samples from double-resistant MCL patients.
- Genomic profiles were compared between pre-treatment and post-therapy samples.
Main Results:
- Post-treatment samples exhibited significantly more CNAs than pre-treatment samples.
- Early progression on BTKi was associated with CNAs in NOTCH1, TRAF2, BIRC2, BIRC3, and ATM.
- A 9p21.3 deletion was observed in venetoclax-resistant patients, with acquired SMARCA4 and DLC1 deletions noted at relapse in one case.
Conclusions:
- lcWGS identified novel putative primary and acquired resistance mechanisms in BTKi and venetoclax double-resistant MCL.
- Specific CNAs and deletions correlate with resistance to sequential targeted therapies in MCL.
- This research provides insights into the genetic basis of therapy resistance in MCL.
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