Persisting molecular remission ten years after donor lymphocyte infusion for hematologic relapse in chronic myeloid leukemia.
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Biomedical subjects
Publications and source records attributed to G Saglio.
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BACKGROUND AND OBJECTIVES: To determine the clinical activity and safety of the combination immunotherapy of the chimeric anti-CD20 antibody, Rituximab, and Interferon (IFN)- alpha 2a DESIGN AND METHODS: Sixty-four patients with relapsed low-grade or follicular B-cell non Hodgkin's lymphoma received 4 infusion of Rituximab (375 mg/m(2) x dose) after priming and simultaneous treatment with IFN- alpha 2a. RESULTS: The overall response rate was 70% with 33% complete responses. Median for duration of response is 19 months, after a median follow-up of 22 months. By univariate analysis none of the most common prognostic factors predicted for response to therapy. After treatment 10 patients become bcl-2 negative in the bone marrow, but no correlation between molecular and clinical response was found. Fifty-three patients (83%) had drug related or unknown origin adverse events. The number of adverse events per patient varied from 1 to 21. Considering all 272 events, 231 (85%) were grade 1 or 2, 36 (13%) grade 3 and 5 (2%) grade 4. Twenty-three patients required reduction in the dose and/or short discontinuation of IFN treatment, either during priming or subsequent treatment. The most frequent adverse events were leukopenia, fever, neutropenia, hypotension and thrombocytopenia. INTERPRETATION AND CONCLUSIONS: this report shows that combination immunotherapy Rituximab + IFN- alpha 2a is active and relatively well tolerated. The overall response rate of 70% and the median duration remission of 19 months compare favorable with the results obtained with Rituximab alone in similar subset of patients. Randomized trials, investigating Rituximab versus combination immunotherapy are needed.
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BCL-6 mutations are accumulated during B-cell transit through the germinal center (GC) and provide a histogenetic marker for B-cell tumors. On the basis of a comprehensive analysis of 308 B-cell neoplasms, we (1) expand the spectrum of tumors associated with BCL-6 mutations; (2) corroborate the notion that mutations cluster with GC and post-GC B-cell neoplasms; and (3) identify heterogeneous mutation frequency among B-lineage diffuse large cell lymphoma (B-DLCL) subsets. Mutations are virtually absent in acute lymphoblastic leukemia (P <.001) and mantle cell lymphoma (P <.05), whereas they occur frequently in GC or post-GC neoplasms, including lymphoplasmacytoid lymphoma, follicular lymphoma, MALT lymphomas, B-DLCL and Burkitt lymphoma. Among B-DLCL, mutations occur frequently in systemic nodal B-DLCL, primary extranodal B-DLCL, CD5(+) B-DLCL, CD30(+) B-DLCL, and primary splenic B-DLCL, suggesting a similar histogenesis of these B-DLCL subsets. Conversely, mutations are rare in primary mediastinal B-DLCL with sclerosis (10.0%; P <.01), supporting a distinct histogenesis for this lymphoma. Longitudinal follow-up of B-DLCL transformed from follicular lymphoma shows that they BCL-6 mutations may accumulate during histologic progression. Mutations also occur in some B-cell chronic lymphocytic leukemias, small lymphocytic lymphomas, and hairy cell leukemias, consistent with the hypothesis that a fraction of these lymphoproliferations are related to GC-like cells. Finally, the molecular pattern of 193 mutational events reinforces the hypothesis that mutations of BCL-6 and immunoglobulin genes are caused by similar mechanisms. (Blood. 2000;95:651-659)
Twenty-five patients (22 adults and 3 infants) with ALL1/AF4-positive acute lymphoblastic leukemia (ALL) were prospectively monitored by reverse transcriptase-polymerase chain reaction (RT-PCR) between January 1992 and July 1999. After high-dose induction and consolidation chemotherapy without bone marrow transplantation, all patients had a complete hematologic remission. Using nested RT-PCR (sensitivity 10(-4)), we observed conversion to PCR negativity in 11 (44%) of the patients. Thirteen of the 14 patients who did not have a molecular remission had a relapse at a median time of 4 months (range, 1 - 20 months). Of the 11 patients who had a conversion to PCR negativity, 5 reconverted to PCR positivity within 1 to 14 months. These 5 patients all progressed to hematologic relapse after 2, 3, 4, 4, and 7 months, respectively. Of the remaining 6 patients, 4 are in persistent hematologic and molecular remission at 12, 14, 88, and 96 months, whereas 2 are early in their follow-up. Actuarial probabilities of relapse and overall survival were 100% and 0% at 14 and 24 months and 67% and 43% at 96 and 100 months, respectively, in patients who had persistent RT-PCR positivity and in those who had a molecular remission. For both relapse and survival, the differences observed between the two groups were significant (P =.003 and P <.005, respectively). This study, which represents the first prospective analysis of residual-disease monitoring carried out in a substantial series of patients with t(4;11)-positive ALL, emphasizes the clinical relevance of RT-PCR-based methods to monitor minimal residual disease in this leukemia subset. (Blood. 2000;95:96-101)
Acquired immunodeficiency syndrome (AIDS)-related non-Hodgkin's lymphomas (AIDS-NHLs) consistently derive from B cells, are histologically heterogeneous, and are associated with distinct molecular pathways depending upon histology. Recently, it has been proposed that inactivating mutations of the bax death agonist may contribute to the pathogenesis of human tumors. In particular, among B-cell malignancies, BAX mutations have been detected at a certain frequency in Burkitt lymphomas. This study is aimed at defining the status of the BAX gene throughout the clinicopathologic spectrum of AIDS-NHL (n = 54), including AIDS-related Burkitt lymphoma (n = 14), AIDS-related Burkitt-like lymphoma (n = 8), AIDS-related diffuse large cell lymphoma (n = 15), AIDS-related primary central nervous system lymphoma (n = 6), and AIDS-related primary effusion lymphoma (n = 11). All 6 BAX exons and flanking sequences were subjected to mutational analysis by polymerase chain reaction-single strand conformation polymorphism followed by DNA direct sequencing of positive cases. Mutations of BAX among AIDS-NHL were restricted to a cell line of AIDS-related primary effusion lymphoma, which harbored a frameshift mutation causing the introduction of a proximal stop codon. All other AIDS-NHL displayed wild-type BAX alleles. In order to investigate whether BAX inactivation in AIDS-NHL may occur through mechanisms other than gene mutation, bax protein expression was investigated by Western blot analysis or immunohistochemistry in selected cases. All AIDS-NHL analyzed expressed normal bax proteins. Overall, this study indicates that deregulation of apoptotic control in AIDS-NHL is not caused by BAX alterations. Genes Chromosomes Cancer 27:177-182, 2000.
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We measured using a competitive quantitative polymerase chain reaction-capillary electrophoresis (PCR-CE)-based assay, the levels of bcr-abl transcripts in 44 patients with chronic myeloid leukemia (CML) after interferon-alpha (IFN-alpha) therapy, who achieved a major (10 patients, MCR group) or complete (34 patients, CCR group) cytogenetic response. All 34 CCR patients had molecular evidence of residual disease detected in bone marrow samples at the time of best karyotypic response. The median number of bcr-abl transcripts of 34 evaluable patients in the CCR group at the time of complete cytogenetic remission was 4/microg RNA (range 3-4600), while the median number of bcr-abl transcripts of 10 patients in the MCR group at the time of best cytogenetic response was 4490/microg RNA (range 600-23 900) (P = 0.000024). In nine CCR and five MCR patients we were able to quantify the amount of bcr-abl transcript both at diagnosis and after interferon therapy: no statistical difference (P = 0.18) was found between the two groups at diagnosis (median bcr-abl transcripts/microg RNA was 30 000 vs. 39 650, respectively). During IFN-alpha therapy, the two groups were evaluable at the time of major karyotypic conversion: at this point, there was a statistical difference of expression of bcr-abl transcript between the CCR group (17 patients) (median 2700; range 76-40 000) and the MCR group (10 patients) (median 4490; range 600-23 900), respectively (P = 0.046). No differences of bcr-abl amount of transcript were found in patients with CCR obtained either by IFN-alpha therapy alone (20 patients) vs. IFN-alpha plus ABMT (13 patients) (P = 0.47). We firstly demonstrated that although the CCR and MCR groups were clinically, cytogenetically and molecularly indistinguishable at diagnosis, the two groups could be recognized successfully during interferon therapy based on the level of bcr-abl transcript.
Primary effusion lymphoma (PEL) selectively involves the serous body cavities, occurs predominantly in immunodeficient patients and is infected consistently by human herpesvirus type-8. PEL is also frequently infected by Epstein-Barr virus (EBV). The precise pathogenetic role of EBV coinfection in PEL is not fully understood. The lymphoma fails to express the EBV transforming proteins EBNA-2 and LMP-1, whereas it expresses EBNA-1 (latency I phenotype). Some studies have hypothesized that other EBV-positive lymphomas expressing the latency I phenotype may associate with specific molecular variants of EBNA-1, although this issue has not been addressed in PEL. On this basis, this study is aimed at a detailed molecular characterization of EBV in PEL. Fifteen EBV positive PEL (12 AIDS-related, one post-transplant, two arising in immunocompetent hosts) were subjected to molecular characterization of the viral genes EBNA-1 and LMP-1, as well as definition of EBV type-1/type-2. The EBNA-1 gene displayed a high degree of heterogeneity in different cases of PEL, with seven distinct recognizable variants and subvariants. A wild-type LMP-1 gene was detected in 10/15 cases, whereas in 5/15 cases the LMP-1 gene harbored a deletion spanning codons 346-355. EBV type-1 occurred in 11/15 PEL whereas EBV type-2 occurred in 4/15 cases. Despite a high degree of genetic variability of the virus in different PEL cases, each single PEL harbored only one EBV variant, consistent with monoclonality of infection and suggesting that infection preceded clonal expansion. Overall, our results indicate that: (1) individual PEL cases consistently harbor a single EBV strain; (2) EBNA-1 displays a high degree of heterogeneity in different PEL cases; (3) no specific EBV genotype preferentially associates with PEL.
Primary effusion lymphoma (PEL) harbors consistent infection by human herpesvirus-8, preferentially develops in immunodeficient patients and selectively localizes to the serous body cavities. Histogenetic analysis has suggested that PEL originates from post-germinal center, pre-terminally differentiated B cells sharing phenotypic features with plasma cells. Here we have investigated the expression status and functional integrity of the Met tyrosine kinase receptor and of its ligand hepatocyte growth factor (HGF). Thirteen PEL (nine cell lines and four primary specimens) were analyzed for Met and HGF expression and function by multiple assays. For comparison, a panel of 34 high grade B cell non-Hodgkin lymphomas (NHL) other than PEL was also investigated. Co-expression of Met and HGF was found in all PEL analyzed, whereas it was restricted to 1/34 B cell NHL other than PEL (P < 0.001; chi2 test). The Met protein expressed by PEL displays biochemical characteristics typical of Met expressed by other cell types and is capable of tyrosine autophosphorylation. By using a combination of immunological and biological assays, production and secretion of a functional HGF species was identified in all PEL cell lines analyzed. HGF stimulation of PEL cells rapidly induces Met tyrosine phosphorylation, demonstrating the functional integrity of the Met/HGF loop. Because of the well known mitogenic and motogenic properties of Met/HGF interactions, these data may bear implications for PEL growth and dissemination. Among B cell neoplasms, Met/HGF co-expression selectively clusters with PEL and, as demonstrated by previous studies, with multiple myeloma plasma cells, thus reinforcing the notion that PEL displays biologic similarities with tumors derived from late stages of B cell differentiation.
We identified a novel BCR-ABL transcript in a chronic myelogenous leukaemia (CML) patient who relapsed after bone marrow transplantation (BMT), containing a fusion between part of BCR exon 3, 44 nucleotides derived from ABL intron 1b and ABL exon 2. The breakpoints were located within BCR exon 3 on chromosome 22 and within the ABL intron 1b on chromosome 9, and the transcript derives from a splicing of ABL exon 2 to a putative splicing acceptor site 44 nucleotides downstream to the breakpoint on chromosome 9. The patient's clinical course strengthens the idea that short forms of BCR-ABL transcripts are associated with a more aggressive disease.
Common-variable immunodeficiency (CVI) patients develop non-Hodgkin's lymphomas (NHL), mainly B-lineage diffuse large-cell lymphomas (DLCL), with a high relative risk. The molecular pathogenesis of CVI-related NHL (CVI-NHL) is unknown. Here we aimed at providing a detailed molecular characterization of CVI-NHL. Rearrangements of BCL-6 were detected in two thirds of CVI-NHL cases examined. All 3 CVI-NHL also harbored point mutations of the BCL-6 5' noncoding regions, which constitute a marker of B-cell transit through the germinal center (GC). The number and molecular pattern of BCL-6 mutations in CVI-NHL were similar to that detected in DLCL of immunocompetent hosts and in DLCL arising in other immunodeficiency settings. Microsatellite instability occurred in one CVI-NHL devoid of a BCL-6 rearrangement. All CVI-NHL scored negative for genetic lesions of BCL-2, p53, c-MYC, REL as well as for viral infection by EBV and HHV-8. Overall, these data indicate that: similarly to other immunodeficiency-related NHL, involvement of BCL6 occurs frequently also in CVI-NHL; and because BCL-6 mutations are acquired by B cells during GC transit, their occurrence in CVI-NHL suggest that these lymphomas are histogenetically related to GC B cells.
AIDS-related non-Hodgkin lymphomas (AIDS-NHL) consistently derive from B-cells and are characterized by extreme clinical aggressiveness. At histological level, AIDS-NHL are classified as AIDS-related Burkitt's lymphoma (AIDS-BL), AIDS-related diffuse large cell lymphoma (AIDS-DLCL) and AIDS-related primary effusion lymphoma (AIDS-PEL). The role of cytokines in the pathogenesis and management of AIDS-NHL has been studied to a certain extent. Production of large quantities of human IL-10 occurs frequently in AIDS-BL and correlates with latent EBV infection of the tumor clone. Lesser amounts of the cytokine are released in EBV negative cases. The pathogenetic role of IL-10 in AIDS-BL is suggested by the observation that IL-10 antisense oligonucleotides inhibit proliferation of the lymphoma. A significant fraction of AIDS-BL cell lines produce TNFbeta. Among AIDS-NHL, the release of TNFbeta appears to be specific for AIDS-BL. The pathogenetic relevance of TNFbeta in lymphomagenesis is suggested by the observation that some BL cell lines use TNFbeta as an autocrine growth factor. Some cases of AIDS-BL, particularly those carrying EBV infection, also secrete IL-6, IL-7 and IL-12. With respect to AIDS-DLCL, many cases express the IL-6R, rendering these cells responsive to the paracrine stimulation by the IL-6 produced by nearby T-cells, macrophages and endothelial cells which are frequently abundant in these tumor samples. The tumor clone itself, however, generally fails to release IL-6. AIDS-PEL is characterized by secretion of large amounts of IL-6 and IL-10. Some PEL cases also release oncostatin M. Apart from human IL-6, PEL also express viral IL-6, which is encoded by the HHV-8 genome. The biological relevance of both IL-6 and IL-10 in PEL proliferation and growth has been recently clarified in vitro and in vivo. Overall, these data suggest that activation of different cytokine loops clusters with different clinico-pathologic categories of AIDS-NHL and may represent the potential target of novel therapeutic strategies.
BACKGROUND AND OBJECTIVE: We further characterized a novel type of chimeric BCR-ABL mRNA transcript detected in a patient with Philadelphia chromosome positive (Ph+) chronic myeloid leukemia (CML). DESIGN AND METHODS: We used reverse-transcription polymerase chain reaction (RT-PCR) and sequence analysis of the fusion region of the amplified cDNA fragment. Western analysis was performed on total protein. RESULTS: Part of exon e8 of the BCR gene was joined to an intronic sequence of ABL intron Ib spliced on exon a2 of the ABL gene, giving rise to an in-frame e8-int-a2 BCR-ABL transcript. Only part of exon 8 of the BCR gene (e8) (intra-exonic break) was retained. The consequent BCR-int-ABL transcript was translated into a BCR-ABL protein of 1804 amino acid residues with a molecular mass of 197.5 kilodaltons (kDa) called p200 BCR-ABL. The 3' part of bcr exon 8 recombined within or alongside Alu elements at the additional sites. Sequence motifs similar to consensus binding sites of the lymphoid-associated TRAX and translisin proteins were present on both participating strands at 22q11 and 9q34 recombination sites, respectively. No differences in clinical or laboratory findings at diagnosis were found between this patient and CML patients with bcr-abl fusion. INTERPRETATION AND CONCLUSIONS: The presence of Alu sequences and of the translisin binding motif on both sides of the breaks in this novel translocation suggests a possible general mechanism of molecular recombination in CML patients.
BACKGROUND AND OBJECTIVE: For purposes of therapeutic decision making, we used quantitative polymerase chain reaction (PCR) for molecular follow-up of 55 patients with chronic myeloid leukemia (CML) in complete remission (CR) after allogeneic bone marrow transplantation (BMT) from HLA compatible donors. DESIGN AND METHODS: A total of 402 bone marrow samples from 40 patients transplanted in chronic phase (group 1) and 15 in accelerated/blastic phase (group 2) were analyzed by qualitative and quantitative PCR. RESULTS: Regarding clinical outcome, 34/40 (85%) group 1 vs. 8/15 (54%) group 2 patients are alive. Only 1/40 (2.5%) group 1 patient relapsed, as against 6/15 (40%) in group 2 (p = 0. 0002). At qualitative PCR, 8/40 (19%) group 1 vs. 9/15 (60%) group 2 patients were positive, with a significantly greater total number of positive samples in group 2 (33/129, 27% vs. 16/273, 5%; p<0.001). The probability of qualitative PCR positivity >1 year after BMT was significantly lower in group 1 patients (4/40 pts, 10% vs. 9/15 pts, 60%; p = 0.01). At quantitative PCR, 4/8 (50%) group 1 patients were positive only once (< 400 transcripts/microg RNA). In group 2, 9/15 (60%) patients had 3 or more positive samples (always with >4,000 copies/mg RNA); therapeutic interventions (cyclosporin A discontinuation, temporary a-interferon or donor lymphocyte infusion) restored molecular remission in 4/9 (44%) cases. INTERPRETATION AND CONCLUSIONS: This study indicates that quantitative PCR could provide practical indications capable of directing therapeutic interventions for transplanted CML patients, especially those transplanted in accelerated/blastic phase, for whom intensive monitoring is required.
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The BCR/ABL hybrid gene plays a central role in the pathogenesis of the chronic phase of chronic myeloid leukemia (CML). We used a very sensitive quantitative reverse transcriptase-polymerase chain reaction to investigate the levels of hybrid BCR/ABL mRNA in bone marrow cells of 20 patients with Philadelphia positive (Ph(+)) CML treated with interferon-alpha (IFN-alpha) as a single agent. Bone marrow samples were collected at diagnosis and at hematologic remission induced by IFN-alpha, or by hydroxyurea in case of resistance to IFN-alpha. The mean levels of BCR/ABL transcripts in bone marrow mononuclear cells of patients who showed a complete hematologic response to IFN-alpha were significantly reduced with respect to those at diagnosis (48 x 10(3) v 168 x 10(3); P <.001), whereas no difference was detected between the values at diagnosis and at hematologic remission in patients resistant to IFN-alpha. In cell culture experiments, IFN-alpha priming significantly reduced the levels of BCR/ABL hybrid transcripts in a dose-dependent manner in Ph+ bone marrow precursors obtained at diagnosis from patients who subsequently responded to IFN-alpha treatment (P < .005). No downmodulation was observed in bone marrow precursors from patients who subsequently proved to be IFN-resistant. These results indicate that downmodulation of BCR/ABL gene expression could be one of the mechanisms involved in the response of CML patients to IFN-alpha treatment.