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D Catovsky

Publications and source records attributed to D Catovsky.

At least 145 records · Page 8Linked to original sources

Quantitative flow cytometry can distinguish between normal and leukaemic B-cell precursors.

The immunological detection of minimal residual disease in B-lineage acute lymphoblastic leukaemia (ALL) has been hampered by the fact that the leukaemic cells represent the malignant counterparts of normal haemopoietic precursors expressing terminal deoxynucleotidyl transferase (TdT), CD10 and CD19. We have used quantitative double-labelling flow cytometry with standard fluorescent beads to convert the mean fluorescence to the number of antigen molecules per cell. The number of TdT, CD10 and CD19 molecules per cell was determined in normal B-cell precursors from 22 healthy donors and eight regenerating marrows from patients with various malignancies and in 20 cases of B-lineage ALL. In normal bone marrow we characterized two different B-cell populations: TdT+/CD10+/CD19+ and TdT-/CD10+/CD19+. We demonstrated a major difference in the level of expression of TdT, CD10 and CD19 between normal bone marrow and B-lineage ALL blasts. Normal TdT+ precursors have significantly higher number of TdT (> 100 x 10(3)) and lower number of CD10 (< 50 x 10(3)) and CD19 (< 10 x 10(3)) molecules per cell than B-lineage ALL blasts (< 100, > 50, > 10 x 10(3) molecules per cell respectively); these differences were statistically highly significant. Furthermore, regenerating marrows had a significantly higher percentage of B-cell precursors than healthy donors. This increase was at the expense of the TdT-/CD10+/CD19+ population which, in the context of B-lineage ALL, could be wrongly interpreted as evidence of relapse if TdT is not included in the analysis. Therefore the quantitative analysis of TdT combined with CD10 and CD19 may allow a clear distinction between normal precursors and minimal residual leukaemia in B-lineage ALL and avoid the pitfall of misinterpreting regenerating B-cells as evidence of relapse.

Adolescent↗

The first report of familial adult T-cell leukaemia lymphoma in the United Kingdom.

We describe two siblings who developed adult T-cell leukaemia lymphoma (ATLL) within 4 years. Both were black of Afro-Caribbean extraction, but one had been born in the United Kingdom and had visited the Caribbean only once. Both patients were HTLV-1 seropositive, as was their mother; their father and brother were negative. The older sibling had the lymphoma form of ATLL, whilst the younger had chronic ATLL. The former was unresponsive to chemotherapy and died of progressive disease; the latter experienced transient responses to various treatments and is alive 5 years after presentation. Immunophenotyping showed a CD4+, CD25+ phenotype; Southern blot demonstrated a monoclonal integration of HTLV-I in the tissues involved. This report, of the first familial ATLL in the U.K., supports the suggestion of transmission of HTLV-I from mother to child and documents the development of ATLL in second-generation Caribbean immigrants.

Adult↗

Circulating Ki67 positive lymphocytes in multiple myeloma and benign monoclonal gammopathy.

AIMS: To estimate the proportion and nature of the proliferating (Ki67+) circulating lymphocytes in a series of patients with multiple myeloma and monoclonal gammopathy of unknown significance (MGUS) and to correlate this with other clinical and laboratory parameters, using blood from healthy adults as a control. To investigate the extent to which the B and T lymphoid components are involved in progression and/or control of disease. METHODS: Blood lymphocytes from 15 patients with multiple myeloma, 10 patients with MGUS and 10 healthy adults were analysed using a sequential double immunoenzymatic staining technique. Antibodies directed against Ki67 were used to detect cells in cycle, CD3, CD4, and CD8 to identify T cells, HLA-Dr as a marker for B cells and activated T cells, and CD11b as a marker for natural killer cells. Polyclonal antibodies directed against the kappa and lambda immunoglobulin light chains were also used to detect B cells. RESULTS: The proportion of proliferating (Ki67+) lymphocytes was significantly higher in patients with multiple myeloma (6.8 +/- 2.6) and MGUS (3.5 +/- 1.1) compared with the normal controls (1.69 +/- 0.3); this was also true when multiple myeloma and MGUS cases were compared. In multiple myeloma and MGUS over 50% of the Ki67+ cells were activated T lymphocytes (CD3+/HLA-Dr+); a minority (11%) were non-clonal B lymphocytes. In contrast to controls (6.7 +/- 1.9), in patients with multiple myeloma and MGUS the proportion of proliferating T cells expressing CD8 (23.6 +/- 12.5 and 15.3 +/- 7.7, respectively) and CD11b (13 +/- 8.7 and 11.6 +/- 3.9, respectively) was higher. In multiple myeloma there was a positive correlation between the proportion of Ki67+ lymphocytes, beta-2-microglobulin concentrations and disease stage. CONCLUSIONS: Although the number of patients investigated is small, this study suggests that Ki67 expression in blood lymphocytes from patients with multiple myeloma may be a good prognostic indicator for aggressive disease and may help to distinguish multiple myeloma from MGUS. The activated proliferating T cells in these diseases may represent an immunological reaction against the tumour.

Adult↗

Methylprednisolone in advanced chronic lymphocytic leukaemia: rationale for, and effectiveness of treatment suggested by DiSC assay.

The effect of methylprednisolone on fresh cells from patients with chronic lymphocytic leukaemia (CLL) has been studied using the differential staining cytotoxicity (DiSC) assay resulting in LC90s of < or = 0.2 to 2,000 micrograms/ml. Cells from previously treated patients were, on average, significantly more sensitive to methylprednisolone than those from untreated patients (mean LC90 = 5.7 micrograms/ml, n = 61 vs 31.0 micrograms/ml, n = 17, respectively; p < 0.05). Twelve patients with advanced disease were given high-dose methylprednisolone (1 g/m2/day i.v. x 5 days). In 7 cases, > or = 3 courses were given; 3 patients did not respond (2 achieved palliation) and 4 (57%) achieved a good partial response. These latter 4 patients were all clinically resistant to chlorambucil and anthracyclines and 2 were resistant to fludarabine. In 5 cases, 1 or 2 courses were given but no patients responded. The 8 nonresponders survived a median of 3.5 months whilst the responders have survived a median of 28.5+ months (3 of 4 still alive). This work suggests a rationale for why CLL patients resistant to standard chemotherapy may benefit from high-dose methylprednisolone therapy. Due to cost and toxicity associated with therapy, the decision to treat would be best made on the basis of a DiSC assay result. This pilot study requires confirmation with a well-designed controlled clinical trial.

Adult↗

Evaluation of the efficacy of the VEEP regimen in adult Hodgkin's disease with assessment of gonadal and cardiac toxicity.

PURPOSE: The aim of this phase II study was to investigate the potential of the vincristine, epirubicin, etoposide, and prednisolone (VEEP) regimen to reduce the risks of long-term sequelae of chemotherapy such as sterility, cardiopulmonary damage, and second malignancies, while maintaining efficacy in terms of response and survival. PATIENTS AND METHODS: Eighty-five adult patients with newly diagnosed and previously untreated stage II to IV Hodgkin's disease (HD) were entered and monitored for a minimum of 1 year. Patients were treated to maximum response plus two further courses, and if they had not attained a complete response (CR) or CR-unconfirmed/uncertain [CR(u)] were changed to second-line chemotherapy. Adjuvant radiotherapy was administered to patients with bulky disease and those with postchemotherapy residual masses. Measurements of left ventricular ejection fraction (LVEF), gonadotropins in females, and sperm count in males were taken both before and after treatment with VEEP. RESULTS: The maximum rates of response were as follows: CR, 32%; CR(u), 47%; and PR, 21% [CR + CR(u), 79%]. The median follow-up duration is 45 months, with a 5-year overall survival (OS) rate of 89% and failure-free survival (FFS) rate of 62%. Patients in CR at the end of chemotherapy had a higher FFS at 5 years compared with patients in CR(u) (88% v 56%). Acute toxicity was mild, with no pulmonary toxicity or treatment-related deaths. The median LVEF was 62% before VEEP and 57% after VEEP. Gonadal function tests following treatment were normal in 92% of males and 100% of females. No second malignancies have been observed. CONCLUSION: VEEP is an active combination with tolerable acute toxicity that preserves fertility and cardiopulmonary function. The efficacy of VEEP is comparable to that of established regimens, but a definitive evaluation of its potential to reduce second malignancies will require a longer follow-up duration.

Adolescent↗

Immunoblastic transformation of a Sezary syndrome in a black Caribbean patient without evidence of HTLV-I.

We describe an unusual case of Sezary syndrome which transformed into a large T-cell non Hodgkin's lymphoma (immunoblastic) in a black man of Caribbean descent with negative HTLV-I serology and no evidence of HTLV-I infection by DNA analysis using sensitive techniques. The disease presented as a small-cell Sezary syndrome and transformed in an inguinal lymph node one year from diagnosis. Immunological markers in the small and large cells showed a mature T-cell phenotype CD4+, CD8- with expression of T-cell activation markers and a high proliferative rate. Ultrastructural analysis confirmed small Sezary cells with serpentine nucleus in the peripheral blood and immunoblasts in the lymph node. Cytogenetics demonstrated complex clonal chromosome abnormalities with involvement of 7q35, the locus for the beta chain of the T-cell receptor (TCR). Southern-blot analysis showed the same rearrangement of the TCR beta, gamma, delta chain genes in lymph node and peripheral blood cells. Antibodies to HTLV-I were not detected in the serum by ELISA and particle agglutination (PA) nor HTLV-I specific sequences were demonstrated by nested polymerase chain reaction with primers to the envelope proteins, LTR and tax/rex of HTLV-I in both tissues, blood and lymph node. The disease had an aggressive course and was refractory to therapy; the patient died of progressive disease 28 months from presentation. Two unusual features characterised this patient's illness: immunoblastic transformation of a Sezary syndrome in a patient of Afro-Caribbean origin without evidence of HTLV-I DNA sequences and negative HTLV-I serology and the atypical lymph node histology resembling ATLL.

Base Sequence↗

Induction of latent membrane protein expression in in vitro Epstein-Barr virus-infected leukaemic B lymphocytes by interleukin 4 and antibodies to CD40.

Chronic lymphocytic leukaemia (CLL) B cells are clones representing the mature B cell phenotype. On infection with Epstein-Barr virus (EBV) CLL cells express the EB nuclear antigen (EBNA) complex but unlike EBV-infected normal B cells they do not express LMP nor do they proliferate or immortalize. Furthermore, EBV-CLL rapidly die by apoptosis in culture. In the present study we have used the B cell growth factors interleukin 4 and antibodies to CD40 to induce activation and proliferation of EBV-infected CLL cells. Although cell numbers did not significantly increase, apoptosis was partially inhibited in CLL cells which expressed increased levels of CD23 and were activated to immunoglobulin-secreting lymphoblasts. Expression of LMP was induced by interleukin (IL)-4 and anti-CD40 in all five EBV-infected CLL samples examined. However, this did not enhance cell proliferation or induce immortalization. Further analysis showed that LMP could be detected 4-5 days after EBV infection, and that both IL-4 and anti-CD40 could independently induce LMP but that their effect was additive. These results indicate that LMP expression is dependent on B cell activation processes and that in some circumstances full latent viral gene expression is not sufficient to cause B cell immortalization.

Antibodies↗

Expression of c-myc oncoprotein in chronic T cell leukemias.

T cell clones in patients with ataxia telangiectasia (AT) and T cell prolymphocytic leukemia (T-PLL) have identical chromosome abnormalities, namely inv(14)(q11q32), t(14;14)(q11;q32) and t(X;14)(q27;q11). In T-PLL and AT developing T cell leukemia, the above abnormalities occur frequently together with trisomy for 8q. We postulated that the additional abnormalities of chromosome 8, where the c-myc oncogene is mapped to 8q24, may play a role in the development of overt leukemia. DNA analysis using the CD1A c-myc probe did not reveal rearrangements of the c-myc gene by Southern blotting. We have used a monoclonal antibody for the c-myc protein to investigate the level of expression in 11 patients with T-PLL and two with Sezary cell leukemia and compared it with levels seen in normal lymphocytes. Significantly higher levels were observed in patients compared with controls (P < 0.0001). The highest levels of c-myc were seen in eight cases with trisomy for 8q resulting from an i(8q). One patient was investigated before and after treatment. In the active state, c-myc showed a level of 64.36 units (range 20-200). After treatment a residual population of malignant cells showed a c-myc level of 155 (range 90-280). This study suggests that the increased expression of c-myc as a result of trisomy for 8q may have a role in the pathogenesis of de novo T-PLL and T cell leukemia supervening AT and that there may be a correlation between c-myc levels and resistance to therapy.

Adult↗

Molecular cytogenetics of chronic myeloid leukemia with atypical t(6;9) (p23;q34) translocation.

We report the molecular cytogenetic analysis of a case of Philadelphia (Ph)-negative, BCR-positive chronic myeloid leukemia (CML) which appeared by conventional cytogenetics to have a t(6;9)(p23;q34) as the sole cytogenetic abnormality. Neither conventional nor pulse-field Southern blots detected any rearrangement of the DEK or CAN genes which are often fused in acute myeloid leukemia (AML) with t(6;9)(p23;q34). However, rearrangements of both BCR and ABL genes were detected. The breakpoint in BCR was located in the major translocation cluster region between exons b1 and b3. ABL rearrangements were detected with an ABL exon 1B probe and with a probe located 5' of the entire ABL gene. Comigration between the rearranged fragments obtained with M-bcr-5' and ABL exon 1B probes was observed, implying that the entire ABL gene was fused to the 5' part of the BCR gene. Fluorescence in situ hybridization (FISH) analyses using BCR and ABL probes showed that in 20% of metaphases BCR and ABL signals were present on one chromosome 6 at 6p23, whilst in 80% of metaphases BCR and ABL signals were identified on both copies of chromosome 6. Furthermore, FISH analysis with a whole-chromosome 22 paint demonstrated that chromosome 22 material was present on both copies of chromosome 6. These data indicate a complex Philadelphia translocation involving chromosome band 6p23 and duplication of the whole aberrant chromosome. The nature of the gene locus on 6p23, involved in this rearrangement, remains unknown. A similar translocation has been previously reported in a case of CML, which also lacked DEK and CAN gene rearrangements implying that abnormalities of 6p23 involving genes other than DEK may be a recurrent abnormality in CML.

Blotting, Southern↗

The sensitivity of leukemic bone marrow to simvastatin is lost at remission: a potential purging agent for autologous bone marrow transplantation.

BACKGROUND: Autologous bone marrow transplantation (ABMT) is frequently used in the treatment of malignant disease but carries the risk of reintroducing tumor cells into the patient. Methods are required for removing malignant cells from harvested bone marrow (BM) without impairing hematopoietic reconstitution. We have shown that simvastatin is toxic to leukemic progenitor cells at a concentration that conserves normal BM progenitors and may be of use clinically as a novel BM purging agent. METHODS: A two-stage culture system was used to compare the effects of simvastatin on both normal BM progenitor and primary acute myeloid leukemia (AML) cells. AML cells and normal BM mononuclear cells were incubated for 18 hours in suspension culture with 10 micrograms per mL simvastatin and the numbers of surviving clonogenic progenitor cells assayed in semisolid agar culture. RESULTS: Following simvastatin treatment of 18 AML cell populations, the mean surviving fraction of progenitor cells was 21.3 +/- 4.8% ( +/- standard error of the mean [SEM]). In contrast, the mean survival of normal BM progenitors from 16 donors was 89.6 +/- 8.6% ( +/- SEM). Samples were taken from 6 AML patients before treatment and after remission of disease had been induced by chemotherapy. In 5 of these cases the AML sample was significantly more sensitive to simvastatin than the remission sample, 4 of the 5 showed > 80% difference in progenitor cell survival. CONCLUSIONS: AML progenitor cells are sensitive to a short-term exposure to simvastatin that spares normal BM hematopoietic progenitor cells. We conclude that simvastatin may be an effective in vitro purging agent in ABMT for AML.

Acute Disease↗

Chronic lymphoproliferative disorders.

There have been important advances in the diagnosis and treatment of chronic lymphoproliferative disorders. Three diseases stand out as examples of progress: chronic lymphocytic leukemia (CLL), hairy-cell leukemia (HCL), and adult T-cell leukemia-lymphoma. Improvements in diagnosis are the result of greater attention to cell morphology and the routine use of monoclonal antibodies, which in turn help define composite phenotypes that are specific for CLL and HCL. The combination of morphology and immunophenotype allowed the characterization of a new disorder, splenic lymphoma with villous lymphocytes, which was confused in the past with both CLL and HCL. The most important treatment developments stem from the availability of three nucleoside analogues: fludarabine, deoxycoformycin, and chlorodeoxyadenosine which, when used as single agents, are responsible for major improvements in remission rates in CLL (fludarabine, chlorodeoxyadenosine), HCL (deoxycoformycin, chlorodeoxyadenosine) and prolonged periods of disease-free survival. Adult T-cell leukemia-lymphoma remains a unique leukemia model, and interest in the worldwide distribution of the causative retrovirus, human T-cell lymphotropic virus I, continues with emphasis on epidemiologic and prevention studies.

Adult↗

Differential TdT expression in acute leukemia by flow cytometry: a quantitative study.

Terminal deoxynucleotidyl transferase (TdT) has long been considered a diagnostic marker for acute lymphoblastic leukemia. Reports of TdT-positive cells in acute myeloid leukemia have lately questioned its diagnostic value. TDT has been detected mainly by microscopy methods: immunofluorescence and immunocytochemistry. The aim of this study was to reevaluate the diagnostic importance of TdT in acute leukemia by using flow cytometry with a method that allows quantitative analysis. Fifty-eight cases of acute leukemia were studied and TdT expression was quantified using calibrated fluorescent beads. The highest TdT values were found in B lineage acute lymphoblastic leukemia (ALL) while acute myeloid leukemia (AML) had the lowest values, even in cases with a high percentage of TdT-positive cells. Biphenotypic leukemia had intermediate values between B-lineage and T-lineage acute leukemia. The difference between these groups was statistically significant (P < 0.0001). The TdT assay by flow cytometry was more precise than immunocytochemistry because it recognizes quantitative differences between ALL and AML. It is also valuable in better defining the maturation stages in pre-B ALL and T-ALL. We conclude that quantitative flow cytometry of TdT re-establishes the diagnostic value of this enzyme and has potential applications for the study of minimal residual disease.

Acute Disease↗

[Phenotypical diagnosis of Japanese chronic lymphocytic leukemia--an international cooperative study based on the French-American-British classification of mature B-cell leukemias].

To better understand the accuracy in the diagnosis of chronic lymphocytic leukemia (CLL) and characterize the clinical features of CLL in Japan, where the disease is extremely rare, an international cooperative study was conducted by hematologists between Japan and UK. Blood and bone marrow films from 36 patients with a possible-diagnosis of CLL were referred to two laboratories of Nagasaki University Hospital (Nagasaki) and Royal Marsden Hospital (London). According to the FAB criteria, typical CLL 16 and CLL/PL 2, a subtype of atypical CLL, were completely accordant in diagnosis. However, phenotypical diagnosis of CLL mixed, the other of atypical CLL, and intermediate lymphocytic leukemia (ILL) in leukemic phase often gave inconsistent results. Especially, 8 cases of atypical CLL designated as likely CLL were equivocal between CLL and ILL, suggesting clinical feature more close to typical CLL than ILL. This indicates the presence of a relatively high incidence of atypical CLL in Japan which dose not exactly fit with the FAB Criteria. Finally, we would like to emphasize that an international cooperative study allows improvement of accuracy in diagnosis and better understanding of the disease entity of lymphoid malignancies, having on ethnically different morbidity.

Aged↗

The histopathology of splenic lymphoma with villous lymphocytes.

Whereas the hematologic, immunophenotypic, and molecular characteristics of splenic lymphoma with villous lymphocytes (SLVL) have been well documented, the histologic features of the spleen and lymph nodes remain uncharacterized. We have reviewed the histopathology of the spleen in 37 cases of SLVL and of involved splenic hilar lymph nodes in 6 cases. Tissue immunophenotyping was performed in 24 cases, 6 of which had frozen tissue available, and the results were compared with the membrane immunophenotype of the circulating villous lymphocytes and cells extracted from spleen and lymph nodes. In the spleen, SLVL is characterized by involvement of the white pulp follicles, which may be surrounded or replaced by the lymphoma cells. In the red pulp, the cells form small nodules and infiltrate diffusely with sinusoidal invasion. The cytologic appearance of the neoplastic cells varies from a resemblance to small mantle-zone--like lymphocytes to that of marginal-zone cells and there are scattered blast forms. In involved lymph nodes, the infiltrate again centers on the follicles that are usually replaced, but occasionally show preservation of follicle centers; sinuses are often preserved. The tissue immunophenotype is similar to that of marginal-zone B cells. Membrane immunophenotyping may give different results in some cases and may vary depending on the compartment from which the cells are obtained. SLVL in the peripheral blood is a histologically homogeneous entity identical to the condition previously characterised by histopathologists as splenic marginal-zone lymphoma.

Adult↗

Adult T-cell leukemia/lymphoma: a working point-score classification for epidemiological studies.

Adult T-cell leukemia/lymphoma (ATL) is a malignancy that occurs most frequently in south-western Japan and the Caribbean basin. The primary etiologic agent for this disease, human T-lymphotropic virus type I (HTLV-I), is endemic in these areas. Only a small percentage of individuals infected with HTLV-I develop ATL. The factors that determine the development of malignant disease as an outcome of HTLV-I infection in an individual are unknown. ATL is histopathologically heterogeneous and firm diagnosis is made on the contribution of clinical, laboratory and histopathologic features. The wide variety of laboratory assays available to geographically diverse populations has led to a need to standardize the criteria for determining the diagnosis of this disease for epidemiologic studies. This report summarizes current information regarding ATL and proposes a classification facilitating comparison of case series in geographically and ethnically different populations.

Adult↗

Splenic lymphoma with villous lymphocytes: analysis of BCL-1 rearrangements and expression of the cyclin D1 gene.

The translocation t(11;14)(q13;q32) occurs in about 15% of patients with splenic lymphoma with villous lymphocytes (SLVL) or the closely related disorder lymphoplasmacytic lymphoma (LPL). To characterize the nature and frequency of rearrangements of the BCL-1 locus in SLVL/LPL and to document the effect of these genetic alterations on the expression of the cyclin D1 gene, we analyzed 22 cases of SLVL/LPL with defined cytogenetic abnormalities by both conventional electrophoresis (CE) and pulse-field gel electrophoresis (PFGE) and by Northern blotting. Four SLVL/LPL cases showed rearrangement of the BCL-1 locus. In two cases with t(11;14)(q13;q32), different breakpoints were identified; one mapped adjacent to the major translocation cluster (MTC) and the other within a 28-kb region telomeric of it. In a third case of SLVL with no cytogenetic abnormality of 11q13, a novel breakpoint approximately 100 kb centromeric of MTC was detected by PFGE. The fourth case, which had a normal karyotype, demonstrated rearrangement with a BCL-1 probe immediately telomeric of MTC. This case may have had a small deletion of 0.5 kb from within the BCL-1 locus. No rearrangement of the BCL-1 locus or within the cyclin D1 gene was detected by CE or PFGE in any of the remaining 18 SLVL/LPL samples. Northern blot analysis showed expression of a normal-sized cyclin D1 transcript in the two SLVL/LPL cases with t(11;14)(q13;q32). In cases that lacked a cytogenetically demonstrable t(11;14) translocation, no cyclin D1 transcript was detected. Analysis of the BCL-1 locus was also performed in three other cases of B-cell disorders with t(11;14)(q13;q32) detected cytogenetically. Two cases were analyzed by Southern blot and showed rearrangement of the BCL-1 locus. Expression of high-level normal-sized and/or truncated cyclin D1 transcript was also detected in these cases. These data show the importance of PFGE in the detection of rearrangements in the BCL-1 locus and show further the complexity of rearrangements in this locus.

Chromosomes, Human, Pair 11↗