Report of the European Task Force on Lymphomas: workshop on peripheral T-cell lymphomas.
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Biomedical subjects
Publications and source records attributed to G Delsol.
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Kaposi's sarcoma-associated herpesvirus (KSHV) is suspected to play a role in the aetiology of multiple myeloma. Because of similarities in the pathophysiology of multiple myeloma and Waldenstrom's macroglobulinaemia (WM), we investigated DNA samples from 20 bone marrow biopsies with WM for the detection of KSHV by PCR (KS330/ORF26). We performed two rounds of amplification and found that only 1/20 of the DNA samples obtained from biopsies had a detectable KSHV sequence. The positive patient was also infected by the human immunodeficiency virus (HIV). Our data provide evidence that KSHV cannot be implicated in the pathogenesis of WM.
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Despite advances in immunohistochemistry and molecular biology, the distinction between classical Hodgkin's lymphoma and related diseases such as nodular lymphocyte-predominant Hodgkin's disease, T-cell rich large B-cell lymphoma or anaplastic large cell lymphoma has remained difficult in rare cases. Lack of clear-cut diagnostic criteria represents a problem for both the pathologist and the clinician. To delineate this 'grey zone' between classical Hodgkin's lymphoma and non-Hodgkin's lymphoma (NHL) and to develop criteria for classification of such cases, 12 expert hematopathologists each submitted one to five borderline cases to a workshop. Cases were reviewed and classified at a multiheaded microscope and criteria were established for the diagnosis of questionable cases. Well established entities such as classical Hodgkin's lymphoma, anaplastic large-cell lymphoma and TCRBCL were defined more strictly and cases with unusual morphology or antigen expression could be identified. A distinctive subset of cases representing mediastinal large B-cell lymphomas with features of Hodgkin's lymphoma was identified.
Telomerase activity has been demonstrated at low levels in peripheral blood lymphocytes but at high levels in germinal centre B cells and thymocyte subpopulations. This study shows that telomerase is activated in the normal human thymus at different times of life. Telomerase activity was detected in thymic protein extracts from two newborn babies and from a 12 year old boy, as well as in extracts from two of six adult patients. The two positive cases were patients aged 54 and 66 years. These results suggest strongly that the thymus can remain functional despite involution in elderly patients.
AIMS/BACKGROUND: To assess the presence of bcl-2/JH rearrangements in bone marrow and peripheral blood lymphocytes from patients affected by diseases other than malignant lymphomas. The t(14;18) (q32;q21) translocation, which juxtaposes the bcl-2 oncogene on chromosome 18 and the JH segment of the immunoglobulin heavy chain (IgH) genes on chromosome 14, is found frequently in follicular lymphomas. METHODS: A sensitive semi-nested polymerase chain reaction (PCR) was used to detect t(14;18) translocation in bone marrow aspirates and peripheral blood lymphocytes from 48 patients. In 137 additional individuals peripheral blood lymphocytes only were tested. RESULTS: Cells carrying bcl-2/JH rearrangements were detected in about a quarter of the bone marrow samples and half of the peripheral blood lymphocyte samples. In seven patients, t(14;18) positive cells were found in both the bone marrow and peripheral blood lymphocyte samples. The size of the PCR products and bcl-2/JH DNA sequence analysis showed that the same t(14;18) carrying clone was present in the bone marrow and the corresponding peripheral blood lymphocyte samples in three of these seven patients. Some patients had more than one bcl-2/JH rearrangement. There was no significant correlation between age and the translocation incidence. Cells carrying the t(14;18) translocation were present in peripheral blood lymphocyte samples with a similar incidence--between 47% and 52% in all age groups from 20 to 79 years. Patients older than 80 years had a lower (37%) but not significantly different incidence. CONCLUSIONS: These findings suggest that patients affected by non-lymphoid diseases may have several t(14;18) carrying cells and some of them undergo a clonal expansion. Whether individuals with t(14;18) positive cells are at a higher risk of lymphoid malignancies remains unanswered and further epidemiological studies are required.
Telomerase activity has been demonstrated in various types of cancers including lymphoid neoplasms. The tumour specificity of telomerase activity has been a subject of debate since the description of detectable enzymatic activity in non neoplastic tissues. We and others have demonstrated that such activity was present in non Hodgkin's lymphomas as well as in reactive hyperplastic lymph nodes and tonsils. However, we at the same time were surprised by the absence of telomerase activity in most cases of Hodgkin's disease. We have extended our previous study by adding additional cases and confirm that in the majority of cases, Hodgkin and Reed-Sternberg cells lack telomerase activity (only 2 cases positive out of 20). These results may indicate that the tumour cells of Hodgkin's disease evolve different pathways for maintaining the length of their telomeres during the process of becoming immortal.
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Follicular lymphoma constitutes 30-40% of non-Hodgkin's lymphomas. Most patients have widespread disease at diagnosis. The clinical course is generally indolent, and it is not usually curable with available treatment. The source of relapse in patients who achieve complete clinical remission is residual neoplastic cells that are present below the limits of detection using standard techniques. With the development of PCR technology, the presence of these residual malignant cells [Minimal Residual Disease (MRD)] has been demonstrated clearly. Recently, an association of high-dose chemotherapy with autologous bone marrow or peripheral blood progenitor cell autograft appeared promising in the treatment of these lymphomas. In the search of clonal markers for the detection of MRD in follicular lymphomas, two strategies can be used. In the cases associated with the t(14;18) (q32;q21) chromosomal translocation, the bcl-2/JH junctional regions are amplified by PCR in approximately equal to 50% of cases and then sequenced in order to synthesize an anti-junction oligonucleotide probe specific for each patient's malignant clone (clonospecific probe). In the cases negative for this translocation, an alternative strategy consists in the amplification of immunoglobulin high chain (IgH) gene rearrangement (approximately equal to 75% of cases). The present review highlights the value of molecular markers such as bcl-2/JH and VH/JH rearrangements to follow the neoplastic clone and to detect MRD in patients with follicular lymphomas.
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BACKGROUND: The atypical cells of nodular lymphocyte-predominant Hodgkin's disease, designated lymphocytic and histiocytic (L&H) cells, have a B-cell phenotype. To clarify the clonality of these cells, we studied rearranged immunoglobulin genes for the variable region of the heavy chain (V[H] genes) in individual L&H cells from 11 patients with nodular lymphocyte-predominant Hodgkin's disease. We also studied the expression of immunoglobulin light chains by those cells in six of the same patients. METHODS: Single CD20+ L&H cells were isolated from frozen sections by a technique of micromanipulation. The rearranged V(H) genes of these cells were amplified by the polymerase chain reaction (PCR), sequenced, and compared with germ-line V(H) genes. Immunoglobulin light-chain messenger RNA (mRNA) was detected by in situ hybridization. RESULTS: Of 615 L&H cells isolated from all the frozen sections, 160 yielded PCR products. In each of the 11 patients, the L&H cells that could be evaluated had identically rearranged V(H) genes, whether they were isolated from the same nodule, different nodules, or different blocks of tissue. All the V(H) sequences derived from the L&H cells were highly mutated (7.5 to 27.2 percent). In two cases the coding capacity of the V(H) genes was completely or partially disrupted by mutations. Intraclonal diversity was found in six cases, and monotypic immunoglobulin light-chain mRNA was found in six. CONCLUSIONS: The L&H cells of nodular lymphocyte-predominant Hodgkin's disease represent a monoclonal expansion of B cells. The high load of V(H) gene mutations and signs of intraclonal diversity suggest a relation between L&H cells and germinal-center B cells at the centroblastic stage of differentiation.
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Epstein-Barr virus (EBV) has been frequently documented in the putative neoplastic Hodgkin-Reed-Sternberg (HRS) cells, in lymph nodes from patients with Hodgkin's disease (HD). This association varies in different geographic areas and between industrialized and developing countries, as does the epidemiological pattern of the disease. In the present study of 106 cases of HD from the Soroka Medical Center in Beer-Sheva, which serves as the only hospital for most of the southern part of Israel, we found an association with EBV expression in only 30% of the patients; 45% of mixed cellularity (MC) cases compared with 21% of nodular sclerosis (NS) cases were positive for EBV. The number of patients in the 0-14-year-old age group was limited; however, 8 of these II children were EBV positive. This low association rate of HD with the presence of EBV sequences is probably related to the small number of children in our series. A low proportion of EBV-associated disease in older adults may be contributory. Other factors may be involved.
Seven cases of large B-cell lymphoma which define a previously unrecognized subgroup are reported. Morphologically they are comprised of monomorphic large immunoblast-like cells, containing large central nucleoli, which tend to invade lymphatic sinuses. Superficially they resemble anaplastic large cell lymphoma (ALCL) but they lack CD30. These lymphomas express epithelial membrane antigen (as do ALCL), but also contain intracytoplasmic IgA of a single light chain type (five cases) and an endoplasmic reticulum-associated marker detected by antibody VS38. They lack lineage-associated leukocyte antigens with the exception of CD4 (5 of 5 cases) and CD57 (5 of 7 cases). They are labeled by antibodies detecting both the intracytoplasmic and extracellular regions of the ALK receptor kinase, suggesting that they express the full-length form of this molecule. This was confirmed by Western blotting (in the one case tested) which showed a band of 200 kD in tumor cell lysates, and by polymerase chain reaction (PCR) amplification of mRNA encoding intracellular and extracellular ALK sequences (in the two cases tested). There was no evidence by cytogenetics (one case analyzed) or reverse transcriptase-PCR (three cases tested) of the 2; 5 translocation or the resultant NPM-ALK gene, as is commonly found in ALCL. All but one of the patients were male and all but one were adults, and in all but the latter case the disease followed an aggressive course.