Mature B-cell lymphoma encompasses multiple heterogeneous subtypes with diverse morphological and clinical features, making it a diagnostic challenge. The highly variable prognosis and clinical course of B-cell lymphoma make it imperative to pinpoint the correct diagnosis and select the best treatment.
Genetic abnormalities have emerged as important biomarkers in B-cell lymphoma and can aid in diagnosis, inform prognosis, and assist with treatment selection. The detection of single gene alterations and chromosomal abnormalities can facilitate characterization of the various lymphoma subtypes.
Our approach to fluorescence in situ hybridization (FISH) testing is designed to simplify the ordering process by providing diagnostic panels that include all appropriate genes. FISH testing allows for the detection of abnormal genes associated with various chromosome translocations and inversions in B-cell lymphoma.
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Laboratory testing to establish PMBL diagnosis is important to selecting the best treatment. However, accurate identification using traditional tissue immunohistochemistry (IHC) can be difficult due to the challenge of obtaining adequate tissue from difficult biopsy locations, such as the mediastinal area, and the lack of specific immunophenotype. Histologic features are often ambiguous due to cell distortion from crushed biopsies and subtle differences between PMBL and DLBCL samples. To further confound diagnosis, although PMBL occurs primarily in the mediastinum, it has been reported to occur outside the mediastinum while occurrences of DLBCL have been reported within the mediastinum.
The Lymph3Cx test (Mayo ID: PM3CX) is a qualitative gene expression assay performed on RNA extracted from a biopsied tissue sample with a tumor cell content deemed adequate by pathological evaluation. The assay then measures the expression levels of a panel of genes related to lymphoma biology. Finally, the expression levels are analyzed using a mathematical algorithm to determine the likelihood that the tumor is PMBL or DLBCL with a high degree of confidence when the remaining clinical and pathological factors are considered.
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Mature aggressive B-cell neoplasms include several specific disease entities such as diffuse large B-cell lymphoma (DLBCL) and primary mediastinal (thymic) large B-cell lymphoma (PMBL). PMBL occurs primarily in the mediastinum and is one of the few B-cell lymphomas with a slightly higher incidence in young women. Due to differences in treatment options, laboratory testing to establish a specific diagnosis is important to select the best therapy.
Among our test offerings to detect, diagnose, and differentiate B-cell lymphomas is a first-in-class molecular evaluation to distinguish PMBL from DLBCL that overcomes the challenges of traditional testing approaches. We also offer comprehensive fluorescence in situ hybridization (FISH) test options that enable detection of abnormal genes associated with various chromosome translocations and inversions in DLBCL.
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Lisa Rimsza, M.D., explains how Mayo Clinic Laboratories' unique PM3CX test can accurately determine subtypes of large B-cell lymphoma. Precise diagnosis is critical to choosing appropriate chemotherapy.
Molecular profiling of B-cell lymphoma is an evolving approach that allows for detailed characterization of the disease. When deemed clinically necessary, next-generation sequencing (NGS) can supplement standard-of-care morphology, phenotyping, and FISH testing to refine a diagnosis. The genes on our panels were expertly selected for their diagnostic, prognostic, and therapeutic value and provide patient-specific insights across a wide range of B-cell neoplasms.
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