Treatment of red cell aplasia in CLL with fludarabine.
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Publications and source records attributed to D Catovsky.
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T cell prolymphocytic leukaemia (T-PLL) is a chronic mature T cell malignancy with many random cytogenetic abnormalities. These imply that maintenance of genomic integrity is impaired. This is supported by the recent finding that the ataxia telangiectasia gene, ATM, which contributes to maintaining genomic integrity, is frequently mutated in this disease. To evaluate in T-PLL the role of other genes with comparable function, a fluorescence-based semi-automated assay was developed for BAT-25 and BAT-26. These markers contain sequences that are particularly unstable in cells with DNA mismatch repair defects. Application of the assay to 20 T-PLL cases found no evidence for such defects.
Splenic lymphoma with villous lymphocytes (SLVL) is a low-grade B-cell lymphoproliferative disorder characterized by splenomegaly and circulating villous lymphocytes. The relationship between SLVL and splenic marginal zone lymphoma (SMZL), a disorder with identical splenic histology to SLVL, is not clear. Previous studies have failed to show a consistent karyotypic abnormality in SLVL whereas trisomy 3 has been reported in patients with SMZL. The presence of trisomy 3 in SMZL and its absence in SLVL has been viewed as evidence that these are different diseases. However, it is possible that the frequency of trisomy 3 in SLVL has been underestimated because previous studies have relied on conventional cytogenetics. We have therefore used interphase fluorescence in situ hybridization (FISH) to re-assess the frequency of trisomy 3 in SLVL. We studied 70 patients, who were stratified into four groups according to the percentage of circulating villous lymphocytes. Trisomy 3 was found overall in 17% of patients. In particular, trisomy 3 was detected in 13% of cases with >50% of villous lymphocytes and which were considered typical of SLVL. In conclusion, we have demonstrated that some patients with SLVL have circulating cells with trisomy 3, which does not support the view that SLVL and SMZL are different diseases on the basis of the incidence of trisomy 3.
We report the long-term follow-up results on two groups of patients with hairy cell leukaemia (HCL) treated with either pentostatin (deoxycoformycin) or cladribine (2-chlorodeoxyadenosine). 165 HCL patients received treatment with pentostatin (between 1986 and 1994), and 45 were treated with cladribine (between 1992 and 1997). Age and sex characteristics were similar in the two groups. 38 patients in the pentostatin group and 12 in the cladribine group were previously untreated. 22 patients in the cladribine group had received prior treatment with pentostatin; four were resistant, 17 had relapsed following partial (four) or complete (13) responses, and one was not evaluable for response. The response rates were the same in the two groups: 82% complete response (CR), 15% partial response (PR) for pentostatin and 84% CR, 16% PR for cladribine. Relapse rates were 24% for pentostatin and 29% for cladribine after median follow-up of 71 and 45 months respectively. At 45 months, however, the relapse rate for pentostatin was only 9.7%. We found a statistically significant difference in the disease-free interval (DFI) between the two groups suggesting that patients may relapse more quickly after cladribine. The majority of relapsed patients achieved second remissions following further therapy with either pentostatin or cladribine, with no evidence of cross resistance between the two agents. The 5-year survival for all patients was 97% and treatment- related toxicity was low. We conclude that both pentostatin and cladribine induce durable remissions in the majority of HCL patients. Longer follow-up is required to establish whether some patients are cured as there is no plateau in DFI, and which of these two agents may be the treatment of choice.
A number of phenotypic and functional alterations have been described in T cells of cancer patients. These changes are believed to reflect an impaired T-cell mediated immunity, which in turn, may result in a decreased capacity to generate an effective antitumor response. Several mechanisms have been proposed to explain depressed immunity in cancer patients including tumor-derived suppressor factors, abnormal cytokine production, deletion or inactivation of tumor-reactive T-cells. To investigate the mechanism underlying the immunodeficiency in Hodgkin's disease (HD) we studied the expression of T cell receptor zeta chain, which plays a vital role in the cascade of events leading to T and NK cell activation. The expression of the zeta chain of the T cell receptor/CD3 complex was analyzed by dual colour immunofluorescence on peripheral blood T lymphocytes: CD3+, CD4+, CD8+ and NK-cells (CD56+) in patients in different phases of the disease. Zeta chain was significantly reduced on CD3, CD4, CD8, and CD56 positive cells from patients in active phase of the disease compared with normal controls (p=0.05). In patients tested in complete clinical remission the values were normal except for the subpopulation of CD8+ cells in which the expression of zeta chain remained significantly reduced compared with controls. Downregulation of CD3/zeta-chain in PBLs and NK cells in active phase of HD- and to a lesser extent in clinical remission may contribute to immunodeficiency associated with the disease.
We treated 14 patients with advanced, resistant chronic lymphocytic leukaemia (CLL) including three with >10% prolymphocytes (CLL/PL) with high dose methyl prednisolone (HDMP). All patients had stage C CLL or bulky stage B disease. There were 11 males and 3 females with a median age of 58.5 years (range: 49-69). Six out of eleven CLL patients had a partial response as defined by the NCI guidelines, no patient had a complete remission. The mean duration of PR was 19.6 months with a median of 8 months (range 6-78). Seven patients have died including the 5 non-responders. None of the 3 patients with CLL/PL had a measurable response. Previous treatments included chlorambucil, fludarabine, deoxycoformycin, anthracycline containing regimens such as CHOP and Campath-1H. HDMP was given at a dose of 1 g/m2 for five days, at monthly intervals for one to seven courses depending on the response. H2 antagonists and antimicrobial prophylaxis were given concurrently. Acyclovir prophylaxis was given if there was a recent history of herpes infection. HDMP was generally well tolerated. Side effects included fluid retention, hyperglycaemia, bradycardia (1 patient), herpes simplex (1), and pneumonia (1) in a patient with a previous history of recurrent chest infection and pneumonia. These results suggest that HDMP may be beneficial in the treatment of refractory CLL but is of no value in CLL/PL.
Erythroid leukemia is an uncommon form of acute myeloid leukemia (AML) which has previously been associated with a poor prognosis. We present the outcome of 27 patients with AML-M6 (19 de novo and 8 secondary) treated with intensive regimens including bone marrow transplantation (BMT). In the de novo group, median age was 30 years (2-72); 5 cases were under 15 years. Remission rate after induction chemotherapy was 95%. Consolidation in those achieving remission with BMT was 82%. Transplant related mortality was 36%. Median survival for de novo M6 was 2.9 years which was not significantly different to matched controls with AML (non M6). Overall relapse rate was 35%. In contrast, patients with secondary disease had a poor prognosis with lower remission rates (57%) and higher relapse rates (75% of those achieving remission after induction chemotherapy). In our series, the prognosis of patients with AML-M6 was most closely related to age and disease status at presentation (de novo or secondary). The disease is sensitive to AML induction regimens and long-term survival can be achieved with BMT in first complete remission.
Splenic lymphoma with villous lymphocytes (SLVL) represents a low-grade B-cell non-Hodgkin's lymphoma (NHL) that histologically is indistinguishable from splenic marginal-zone lymphoma (SMZL). Characteristic features of SLVL are splenomegaly, moderate lymphocytosis, nodular and intrasinusoidal pattern of bone marrow infiltration, serum monoclonal band, slow benign course, and response to splenectomy. The diagnosis is made by the morphology of the circulating villous cells and their immunophenotype, which is distinct from that of chronic lymphocytic leukemia (CLL) and hairy-cell leukemia (HCL), diseases with which SLVL may be confused. When treatment is indicated, splenectomy is the treatment of choice, but some patients may require additional chemotherapy to control progression. In those circumstances, fludarabine may be the agent of choice. Despite its unique features, which, compounded, suggest that SLVL is a clinicopathologic entity, there are no specific chromosome abnormalities and problems of differential diagnosis with other B-cell NHLs, chiefly mantle-cell lymphoma (MCL), remain in a minority of patients.
BACKGROUND AND OBJECTIVE: Although biphenotypic leukemia is now a defined entity, outcome of this rare form of acute leukemia has not been well documented. We present the first comprehensive study analyzing induction and consolidation therapy of biphenotypic leukemia and correlate outcome to prognostic factors. DESIGN AND METHODS: In this retrospective study, the incidence of biphenotypic leukemia was found to be 3.6% from 693 adult and pediatric acute leukemias referred to our center for treatment over the last 8 years. Of these, 15 were B-lymphoid/myeloid, 8 were T-lymphoid/myeloid, one was T/B lymphoid and one had trilineage differentiation. RESULTS: Induction of remission in de novo cases was achieved in 70% of patients and relapse of disease occurred in 15%. The use of combined lymphoid and myeloid drugs for induction resulted in a high incidence of early deaths (25%). The overall probability of survival at 2 years was 39.4%. Patients with secondary disease had a uniformly poor outcome with low remission rates and high relapse rates. INTERPRETATION AND CONCLUSIONS: Prognosis was most strongly related to the presence of the Philadelphia chromosome (p=0.03) and age under 15 years (p=0.01). We conclude that patients with biphenotypic leukemia should have risk stratification with treatment tailored to their prognostic factors.
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The ATM gene deficient in ataxia-telangiectasia, a recessive multisystem disease associated with a high risk of lymphomas and leukemias, was found previously to be inactivated in a rare sporadic malignancy, T-cell prolymphocytic leukemia (T-PLL), which is often associated with cytogenetic aberrations of chromosome 14. The ATM gene was shown to sustain frequent loss-of-function mutations in T-PLL tumor cells, consistent with functioning as a tumor suppressor gene in this leukemia. To investigate the possibility of nonmutational or nonrecombinational mechanisms of T-PLL development, we have used bisulfite genomic sequencing to analyze DNA methylation in the putative bidirectional promoter region of the closely linked ATM and NPAT/E14 genes within the CpG island at 11q22-q23. We show that this region is completely demethylated in lymphocytes expressing ATM; however, no extensive hypermethylation was found in 9 T-PLL tumor DNA samples without evidence of ATM/p53 mutations. Because acute T-cell lymphoblastic leukemias (T-ALL) were also observed in ataxia-telangiectasia patients and T-ALL tumor cells contain chromosome 14 abnormalities, 19 presentation samples of T-ALL patients were analyzed for ATM mutations. Although T-ALL patients exhibited rare nucleotide substitutions not previously found in ATM, all were identified in the germ-line, indicating constitutional polymorphisms, potentially confined to ethnic subpopulations. The absence of somatic nucleotide changes in ATM in T-ALL as compared with T-PLL suggests a distinct pattern of genetic events in the development of the two leukemias.
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Structural abnormalities of chromosome 13q are one of the most frequent genetic aberrations in human tumors. 13q rearrangements are, however, infrequent in splenic lymphoma with villous lymphocytes (SLVL) by karyotype analysis. We have investigated the incidence of 13q14 deletions in a series of 74 SLVL cases by interphase fluorescence in situ hybridization using unique sequence probes for the RB1 and the D13S25 loci, which are frequently deleted in chronic lymphocytic leukemia. Chromosome 12 was also evaluated by fluorescence in situ hybridization using a pericentromeric DNA probe. 13q14 deletion was detected in 37 of 74 (50%) tumors. Thirty-five cases (47%) exhibited monoallelic loss of RB1, and 9 (12%) showed hemizygous D13S25 deletion. Seven cases displayed coexistence of RB1 and D13S25 deletion. Trisomy 12 was detected in 2 of 74 (3%) tumors. G-banding analysis in 40 tumors showed no interstitial deletion of 13q14 in any case. In contrast with the molecular findings observed in chronic lymphocytic leukemia, our results indicate that trisomy 12 is an uncommon chromosomal aberration in SLVLs, and microdeletion of 13q14 at the RB1 locus but not D13S25 is a frequent and specific genetic event in this disease, suggesting that allelic loss of the RB1 gene may play a role in the pathogenesis of SLVL.
Abnormalities of chromosome 1q21 are common in B-cell malignancies and have been associated with a poor response to therapy. The nature of the involved gene(s) on chromosome 1q21 remains unknown. A cell line (CEMO-1) has recently been established from a patient with precursor-B-cell acute lymphoblastic leukemia (ALL), which exhibited a t(1;14)(q21;q32). To identify the gene involved in this translocation, we have cloned both rearranged IGHJ alleles using long-distance inverse polymerase chain reaction (LDI-PCR). Two IGHJ fragments were amplified from CEMO-1 DNA and sequenced. One allele showed novel sequences upstream of JH5 with no homology to either IGH or any other sequences on the databases. Using a single-copy Xho I fragment immediately 5' of JH5, PAC clones were isolated and mapped to chromosome 1q21 on normal metaphases by fluorescence in situ hybridization (FISH), confirming that this allele represented the t(1;14)(q21;q32) breakpoint. Sequence analysis of the 1q21 Xho I fragment showed identity with an expressed sequence tag (EST), and this probe was therefore used to probe Northern blots. Two transcripts of 6.3 kb and 4.2 kb expressed at low level in mRNA from all tissues were detected: a third transcript of 1.6 kb was expressed only in thymus, spleen, and small intestine. Full-length BCL9 cDNA clones were obtained from a normal human fetal brain cDNA library supplemented by 5' and 3' RACE. Sequence analysis predicted a protein of 1394 amino acids containing 18% proline, 11% glycine, 11% serine, and 6% methionine, but no recognizable protein motifs or significant homologies to any other known proteins. The CEMO-1 1q21 breakpoint fell within the 3' UTR of the BCL9 gene. Low-level expression of BCL9 was detected in Epstein-Barr virus-transformed normal B cells by Northern blot; in contrast, abundant BCL9 expression was observed in CEMO-1, indicating that deregulated expression of this gene was one pathological consequence of the translocation. Screening of a panel of 39 B-cell malignancies with 1q abnormalities by Southern blot showed one additional case with a breakpoint in the 3' UTR of BCL9, indicating that this was a recurrent breakpoint. FISH analysis using an 850-kb YAC spanning BCL9 identified a further case with t(1;22)(q21;q11) causing juxtaposition of BCL9 to the IGlambda locus. Other breakpoints were heterogeneous, falling both centromeric (10 cases) and telomeric (10 cases) of the BCL9 gene. These data suggest that BCL9 may be the target of translocation in some B-cell malignancies with abnormalities of 1q21 and that deregulated BCL9 expression may be important in their pathogenesis.
T-prolymphocytic leukaemia (T-PLL) is a rare, sporadic leukaemia similar to a mature T-cell leukaemia seen in some patients with Ataxia Telangiectasia (A-T), a recessive multisystem disorder caused by mutations of the ATM gene at chromosome 11q23. ATM sequence mutations have been reported in 46% of T-PLL cases, but some cases also have karyotypic abnormalities at 11q, including 11q23. This led us to investigate the structure of the ATM locus in a panel of eight cases, two of which had 11q23 abnormalities. As expected, nucleotide changes were detected in some samples. Two remission samples were wild type. To test for structural lesions, DNA fibres were hybridized with a contig of four labelled cosmids spanning the ATM locus. In all samples there were structural lesions and in four samples both alleles were affected. This provides strong evidence for our suggestion that ATM acts as a tumour suppressor during T-PLL tumorigenesis. Some additional role for ATM during T-PLL tumorigenesis is possible since nucleotide changes were present in addition to structural lesions disrupting both alleles. The mechanism of inactivation appeared to be unusual because multiple structural lesions on one allele were often observed.
The CD52 antigen is expressed on most normal and neoplastic lymphoid cells. The reshaped humanized IgG1 anti-CD52 monoclonal antibody (Campath-1H) has been used in the treatment of hemopoietic and non-hemopoietic diseases for its ability to induce lymphocyte depletion both in vitro and in vivo. Good activity has been shown in patients with chronic T and B cell leukemias, in particular T-prolymphocytic leukemia (T-PLL). However, the response to treatment is not uniform and this variability may depend on differences in the level of antigen expression on the leukemic cells. To test this hypothesis, we used quantitative flow cytometry to investigate the intensity of the expression of CD52 in 45 cases of lymphoid leukemia, 24 with B-cell chronic lymphocytic leukemia (CLL), 21 with T-PLL and 12 normal controls. Normal T lymphocytes expressed higher CD52 antigen than B lymphocytes (p < 0.005) and the antigen was also significantly higher in T-PLL compared to CLL (p < 0.001). Moreover, the differences in CD52 expression were somewhat higher in Campath-1H treated patients who responded than in non responders. Although other factors may play a role in the response to Campath-1H in vivo, the quantitative estimation of CD52 expression may provide a rationale for the greater response in T-PLL and help select those patients with a higher probability of responding to this therapy.
Twenty-one patients with T-prolymphocytic leukemia (T-PLL) were studied by FISH to characterize abnormalities of chromosomes 8, 11, 14, and X. A higher percentage of abnormalities of these chromosomes was detected by FISH than by cytogenetics. Seventy-one percent had inv(14) (q11q32)/t(14;14)(q11;q32). Four patients had abnormalities involving Xq28 (MTCP-1 locus) resulting from t(X;14)(q28;q11) or t(X;7)(q28;q35). These abnormalities have also been described in persistent expanding pre-malignant T-cell clones in patients with ataxia telangiectasia (AT). We have previously reported that in T-PLL and AT developing T-cell leukemia, the above abnormalities occur with additional abnormalities, mainly trisomy for 8q resulting predominantly from an i(8)(q10) and an increased expression of MYC. In this series, 81% of cases had chromosome 8 abnormalities including i(8)(q10)[43%]/t(8;8)(p12;q11)[14%], + 8[14%], and 8p + [14%]. The use of probes for MYC (8q24) and chromosome 8 centromere on metaphase chromosomes revealed that cases with i(8)(q10) were dicentric and t(8;8) monocentric. These abnormalities are not only associated with increase in dosage of 8q and the MYC gene, but also involved 8p. 8p is known to have several suppressor genes associated with solid tumors. Our findings suggest that the possible loss of a tumor suppressor gene plus the increased dosage of the q arm and/or the high expression of TCL-1/MTCP-1, which results from inv(14)/t(14;14), allows the malignant phenotype to emerge.
The purpose of this study was to determine the efficacy and toxicity of pentostatin (2'-deoxycoformycin) administered in a five day schedule every 28 days to patients with B-cell chronic lymphocytic leukaemia (B-CLL) relapsed from or refractory to at least one line of prior chemotherapy. The initial dose level of 2 mg/m2/day was adjusted up or down by 0.5 mg/m2 in subsequent cycles on the basis of haematological and non-haematological toxicities. The five day schedule was selected because published pharmacokinetic studies had indicated that although pentostatin had an elimination half-life of approximately six hours and could inhibit plasma adenosine deaminase activity for 24 hours, recovery of enzyme activity rapidly took place and accumulation of dATP which has a toxic effect on non-replicating lymphoid cells could be increased by repeated dosing. Twenty-nine patients were entered into the study and dose-escalation was possible in nine, while dose reductions were required for five patients. Of the 24 patients evaluable for response, complete responses were achieved in two and partial responses in five for an overall response rate of 29.2%. Toxicity consisted of myelosuppression, infection, nausea and vomiting and hepatotoxicity but was experienced at acceptable levels considering the heavily pre-treated nature of the patient population. Pentostatin in this schedule has salvage activity in previously treated or resistant patients with B-CLL.