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Estella Matutes

Publications and source records attributed to Estella Matutes.

53 records · Page 3Linked to original sources

Gene abnormalities in multiple myeloma; the relevance of TP53, MDM2, and CDKN2A.

BACKGROUND AND OBJECTIVES: Disruption of either the p14ARF- mdm2- p53 or p16INK4A- Rb1 pathways produces a breakdown of regulatory mechanisms and creates a gateway for tumorigenesis. Since the incidence and clinical implications of abnormalities of TP53, CDKN2A (encoding for p16 and p14) and MDM2 genes (chromosome 12) in multiple myeloma (MM) is not clear, we investigated allelic loss at the former two loci and gain at the latter locus in a series of 82 MM patients. DESIGN AND METHODS: Dual color fluorescence in situ hybridization (FISH) was applied to bone marrow samples to establish the incidence of changes at the above mentioned loci. The CDKN2A locus was tested using a probe which hybridizes to 9p21 and also targets the p15INK4B gene. RESULTS: FISH analysis revealed the presence of monoallelic TP53 deletions in 12% of patients. Ten percent of patients had hemizygous deletion at 9p21, while a further 8% had loss of 1 of 3 loci in the presence of trisomy 9. MDM2 amplification in the face of chromosome 12 diploidy was seen in 8%, while another 8% had trisomy 12 with an equivalent increase in signals for MDM2. Clinical correlations revealed that allelic loss of TP53 was the only factor associated with resistance to chemotherapy. The presence of 9p21 deletion was associated with an IgA isotype but none of the abnormalities had a significant influence on overall or event-free survival. INTERPRETATIONS AND CONCLUSIONS: P53 and CDKN2A (9p21) allelic loss and amplifications of the MDM2 gene are infrequent events in myeloma. The incidence of the latter two events was, however, higher than previously reported. Deletion of the TP53 gene predicted resistance to chemotherapy, highlighting its importance in this disease process.

Adult↗

[Chronic lymphoproliferative syndromes in Chile. A prospective study in 132 patients].

BACKGROUND: Chronic lymphoproliferative disorders include a variety of diseases which are often a diagnostic problem for clinical hematologists. AIM: To study prospectively the distribution and incidence of chronic lymphoproliferative disorders in Chile and compare them with those of other Western, Latin American and Oriental countries. PATIENTS AND METHODS: A group of 132 patients were studied in a 36 months period (1999-2001), with a panel of monoclonal antibodies. A score for chronic lymphocytic leukemia was employed to differentiate it from other B-cell disorders. RESULTS: The median age was 63 years old (range 32-94). Most patients had B-cell tumors (109) and the rest (23), T-cell tumors (82% vs 18%). Forty five percent of patients with B-cell tumors had a chronic lymphocytic leukemia (CLL), while the others were disseminated lymphomas. The incidence of T-cell tumors was slightly higher than that of other Western countries. Noteworthy is that the most common of these disorders was adult T cell leukemia/lymphoma (ATLL), in concordance with the high HTLV-1 seroprevalence in Chile. CONCLUSIONS: A morphologic, immunophenotypic and pathological study in a large number of patients with chronic lymphoproliferative disorders in Chile, shows a relatively low incidence of CLL when compared to other chronic B-cell tumors and a high representation of ATLL associated to HTLV-1 infection, compared with other Western countries. The lower incidence of CLL in our study might be due to patient's selection and/or underdiagnosis of this disease as a substantial proportion of CLL are asymptomatic.

Adult↗

Inherited predisposition to CLL is detectable as subclinical monoclonal B-lymphocyte expansion.

Monoclonal chronic lymphocytic leukemia (CLL)-phenotype cells are detectable in 3.5% of otherwise healthy persons using flow cytometric analysis of CD5/CD20/CD79b expression on CD19-gated B cells. To determine whether detection of such CLL-phenotype cells is indicative of an inherited predisposition, we examined 59 healthy, first-degree relatives of patients from 21 families with CLL. CLL-phenotype cells were detected in 8 of 59 (13.5%) relatives, representing a highly significant increase in risk (P =.00002). CLL-phenotype cell levels were stable with time and had the characteristics of indolent CLL. Indolent and aggressive clinical forms were found in family members, suggesting that initiation and proliferation involves distinct factors. The detection of CLL-phenotype cells provides a surrogate marker of carrier status, potentially facilitating gene identification through mapping in families and direct analysis of isolated CLL-phenotype cells.

Adult↗

ATM mutations are rare in familial chronic lymphocytic leukemia.

It is now recognized that a subset of B-cell chronic lymphocytic leukemia (CLL) is familial. The genetic basis of familial CLL is poorly understood, but recently germ line mutations in the Ataxia Telangiectasia (ATM) gene have been proposed to confer susceptibility to CLL. The evidence for this notion is, however, not unequivocal. To examine this proposition further we have screened the ATM gene for mutations in CLLs from 61 individuals in 29 families. Truncating ATM mutations, including a known ATM mutation, were detected in 2 affected individuals, but the mutations did not cosegregate with CLL in the families. In addition, 3 novel ATM missense mutations were detected. Common ATM missense mutations were not overrepresented. The data support previous observations that ATM mutation is associated with B-CLL. However, ATM mutations do not account for familial clustering of the disease.

Adult↗

Relationship between glutathione S-transferase M1, T1, and P1 polymorphisms and chronic lymphocytic leukemia.

Interindividual differences in susceptibility to hematologic malignancies may be mediated in part through polymorphic variability in the bioactivation and detoxification of carcinogens. The glutathione S-transferases (GSTs) have been implicated as susceptibility genes in this context for a number of cancers. The aim of this study was to examine whether polymorphic variation in GSTs confers susceptibility to chronic lymphocytic leukemia (CLL). GSTM1, GSTT1, and GSTP1 genotypes were determined in 138 patients and 280 healthy individuals. The frequency of both GSTM1 and GSTT1 null genotypes and the GSTP1-Ile allele was higher in cases than in controls. There was evidence of a trend in increasing risk with the number of putative "high-risk" alleles of the GST family carried (P =.04). The risk of CLL associated with possession of all 3 "high-risk" genotypes was increased 2.8-fold (OR = 2.8, 95% confidence interval: 1.1-6.9). Our findings suggest that heritable GST status may influence the risk of developing CLL.

Female↗

Breakpoints in the ataxia telangiectasia gene arise at the RGYW somatic hypermutation motif.

The mature sporadic T-cell malignancy, T-cell prolymphocytic leukemia (T-PLL) is remarkable for frequently harbouring somatic mutations of the Ataxia Telangiectasia (A-T) gene, ATM. Because some data suggest ATM is frequently rearranged in T-PLL, it was decided to investigate such rearrangements in detail by cloning breakpoints. Among 17 T-PLL tumour samples, three rearrangements were detected by Southern blotting. Two cases harboured a unique type of intragenic duplication in which breakpoints arose at the consensus sequence RGYW/WRCY. The third case harboured a large deletion terminating within the ATM gene. Also, 13 T-cell acute lymphoblastic leukemia (T-ALL) samples were examined and one sample harboured a deletion- insertion with the RGYW motif at the breakpoint in ATM. This is the first known deleterious mutation detected in ATM in T-ALL. Interestingly, the RGYW motif is the signal for a cell-cycle regulated DNA double strand break (DSB) that initiates somatic hypermutation of immunoglobulin and, probably, T-cell receptor genes. The structures of the ATM duplications suggest they may arise from an error in somatic hypermutation. We suggest that aberrant components of somatic hypermutation may contribute to the defective DSB repair characteristic of cancer.

Adolescent↗

Unusual case of leukemic mantle cell lymphoma with amplified CCND1/IGH fusion gene.

We describe a case of leukemic mantle cell lymphoma (MCL) with complex karyotype and amplification of the CCND1/IGH fusion gene. Testing for the presence of t(11;14), the hallmark of MCL, revealed multiple copies of the fusion signals. We therefore conducted extensive molecular cytogenetic studies to delineate the nature and consequences of such an abnormality. We localized the amplification to the der(14)t(11;14) and to a der(2) chromosome in a form of interspersed chromosome 11 and 14 material. This resulted in high expression of cyclin D1 mRNA and the protein expressed independently of the cell cycle phase. CGH analysis revealed that the overrepresentation on chromosome 11 included chromosomal band 11q23 in addition to the CCND1 locus at 11q13. The band 11q23 harbors the ataxia telangiectasia mutated (ATM) gene recently proposed to be involved in the pathogenesis of MCL with high incidence of deletions in this locus. Using YAC 801e11, containing the ATM gene, we demonstrated several hybridization signals, suggesting that this region also formed part of the amplicon. This case also showed TP53 gene abnormalities: protein expression, monoallelic deletion, and a mutation in exon 5. The clinical course was aggressive, and the patient died within 6 months of presentation. This is to our knowledge the first description of amplification of the CCND1/IGH fusion gene in a human neoplasm, which may have played a role in the fulminating course of the disease in this patient.

Cyclin D1↗

CD34 and CD117 are overexpressed in AML and may be valuable to detect minimal residual disease.

We estimated by quantitative flow cytometry (FC) the expression of CD13, CD33, CD34 and CD117 antigens in cells from 64 patients with acute myeloid leukaemia (AML) and 22 normal bone marrows (BMs). The method converts fluorescence intensity into number of antigen molecules per cell, measured by antibody binding capacity (ABC). The number of molecules per cell in normal BM was 9.5+/-5.7 for CD13, 7+/-2.3 for CD33, 6+/-0.7 for CD34, and 6.3+/-1.5x10(3) for CD117. AML blasts expressed 11.4+/-12.4 molecules per cell for CD13, 9.5+/-9.7 for CD33, 74+/-2328.5 for CD34 and 12.5+/-33 x 10(3) for CD117. The number of CD34 and CD117 molecules were significantly higher in AML than in normals (P<0.0001 and P<0.05, respectively) while only in a few cases, CD13 and CD33 were abnormally expressed in myeloblasts. Our results indicate that quantitative analysis of CD34 and CD117 may be useful to detect minimal residual disease (MRD) and could be tested in a future to monitor therapy in AML.

Adolescent↗

Splenectomy in mantle cell lymphoma with leukaemia: a comparison with chronic lymphocytic leukaemia.

We reviewed data on 63 patients with mantle cell lymphoma (MCL) with leukaemia (n = 16) and chronic lymphocytic leukaemia (CLL, n = 47), splenectomized over a 10-year period. Primary indications for surgery were cytopenia(s) or autoimmune phenomena and progressive or refractory disease with splenomegaly. The spleens removed were on average larger in MCL (median 2.6 kg) than in CLL (1.0 kg). Splenectomy improved the blood counts in 62% of patients with MCL and 47% with stage C CLL, both with cytopenias. The MCL patients showed a decrease in the leucocytosis (medians 60.3-29.1 x 10(9)/l before and after splenectomy), whereas there was an increase in the leucocytosis in CLL (medians 24.2-44 x 10(9)/l). With a median follow up post splenectomy of 10 months (range: < 1-128), 18 patients (four MCL and 14 CLL) have not required further therapy for up to 66 months. We conclude that splenectomy is a useful treatment in MCL and advanced CLL for the correction of cytopenias, reducing the leucocyte count and allowing prolonged periods of clinical remission without therapy. Differences seen between MCL and CLL in spleen size, and in response of the leucocytosis suggest a central role for the spleen in the evolution of MCL with leukaemia.

Adult↗

Intraclonal diversity in a Sezary syndrome with a differential response to 2-deoxycoformycin of the two lymphoma cell populations.

We report a case of Sezary syndrome with two abnormal CD4+ T-cell populations detected in the peripheral blood by flow cytometry immunophenotyping and DNA cell content, suggesting a biclonal T-cell lymphoproliferative disorder. Despite these findings, molecular analysis of the T-cell receptor genes was consistent with a monoclonal T-cell proliferation, supporting the existence of intraclonal diversity rather than a true biclonal disease. The patient achieved a transient response with 2-deoxycoformycin, with a selective decrease of the larger/hyperploid T-cell population; later on, an increased representation of this T-cell population was observed concomitantly with clinical relapse.

Aged↗

Instability of CAG-trinucleotide repeats in chronic lymphocytic leukemia.

Anticipation--earlier onset and more severe disease in the offspring generation--is a well documented feature of familial chronic lymphocytic leukaemia (CLL). In a number of Mendelian diseases, anticipation is caused by expansion of contiguous triplets of nucleotides. The severity of disease expression and penetrance is related to the extent of the triplet expansion. To investigate whether repeat nucleotide repeat expansion is a feature of CLL, the repeat expansion detection (RED) technique was applied to samples from 17 patients with familial disease and 32 patients with early-onset CLL disease. No potentially pathological CAG expansions were detected. We conclude that unstable CAG repeat expansion is not a feature of CLL and that other processes are likely to be involved in generating anticipation in familial forms of the disease.

Adult↗

Alemtuzumab in T-cell malignancies.

Alemtuzumab is a humanized monoclonal antibody directed against the CD52 antigen, which is abundantly expressed on all normal and most malignant T-lymphocytes. We summarize the results of our experience using alemtuzumab to treat a range of clinically aggressive, mature, post-thymic, T-cell malignancies, including T-cell prolymphocytic leukemia (T-PLL), cutaneous T-cell lymphoma (CTCL), T-cell large granular lymphocyte (T-LGL) leukemia, and human T-cell lymphotropic virus I (HTLV-I) associated adult T-cell leukemia-lymphoma (ATLL). Alemtuzumab was administered at a dose of 30 mg, three times a week until maximum response. Apart from first-dose reactions, which were common, treatment was well tolerated, the main complication being infection and viral reactivation associated with the prolonged lymphopenia. Overall response rates were 76% (60% complete response) in 39 patients with T-PLL and 100% in 3 patients with CTCL, of duration up to 4 yr. Experience in T-LGL and ATLL is limited to single cases only and further studies are required to better define the role of alemtuzumab in these subgroups. Our results indicate that alemtuzumab has activity in T-cell malignancies, particularly in T-PLL and in patients with predominantly blood and bone marrow disease. It may be possible to prolong response duration by the use of high-dose therapy and stem cell transplantation. Alemtuzumab may also have a role in purging minimal residual disease following other chemotherapy and prior to transplantation. We conclude that treatment with alemtuzumab may offer new hope to patients who otherwise have a bleak prognosis.

Aged↗

Translocation t(2;7)(p12;q21-22) with dysregulation of the CDK6 gene mapping to 7q21-22 in a non-Hodgkin's lymphoma with leukemia.

BACKGROUND AND OBJECTIVES: A female patient presented with splenomegaly and lymphocytosis with atypical lymphoid cell morphology. We identified t(2;7)(p12;q21) prompting studies of the translocation breakpoint and its consequences on protein expression to confirm or otherwise the recently reported involvement of CDK6 and IG k genes in the t(2;7) leading to over-expression of CDK6 protein. DESIGN AND METHODS: A variety of clinical and laboratory techniques including cell marker, cytogenetic and histologic studies were applied in order to establish the diagnosis. Fluorescence in situ hybridization (FISH) and Southern blotting were used for mapping the translocation breakpoint and Western blotting for assessing protein expression. RESULTS: Immunophenotyping showed the presence of a B-cell population with strong expression of FMC7, CD22, CD79b, CD5 and k restricted surface immunoglobulins. Based on morphology and immunophenotypic markers the diagnosis of B-cell non-Hodgkin's lymphoma was made. Karyotyping revealed a clone with t(2;7)(p12;q21-22). Evidence for clonal evolution with additional abnormalities including a deletion of the TP53 was present. We established by FISH and Southern blotting that the breakpoint on 7q21-22 fell in a region 66kb telomeric to the previously reported breakpoint for the t(2;7) and was the same as that observed in a t(7;21). CDK6 protein was over-expressed. The patient received alkylating agents and splenectomy and is alive but the lymphocytosis persists with evidence of disease progression. INTERPRETATIONS AND CONCLUSIONS: We have demonstrated that CDK6 expression is dysregulated even when the breakpoint on 7q21-22 is located 66kb upstream from the coding region. Interestingly, the precise assignment of the lymphoma type in our case was not possible even when the splenic histology was analyzed.

Aged↗

p53 and mdm2 in mantle cell lymphoma in leukemic phase.

BACKGROUND AND OBJECTIVES: In mantle cell lymphoma (MCL), abnormalities additional to t(11;14) including those affecting genes involved in the p53 pathway, are important for disease development and progression. This study aimed to assess the frequency, relationship and impact of p53 abnormalities and those of its inhibitor mdm2 in blastoid and non-blastoid MCL in leukemic phase. DESIGN AND METHODS: Isolated blood lymphocytes from 21 patients with MCL in leukemic phase, characterized by the presence of t(11;14), were analyzed by flow cytometry and by fluorescent in situ hybridization in order to investigate whether there is a correlation between overexpression and deletion of p53, overexpression of mdm2 and gain of chromosome 12. Results were also correlated with morphologic subtypes, proliferative activity assessed by expression of Ki67 and clinical outcome. RESULTS: Cells from 2/21 (10%) and 7/21 (33%) patients overexpressed p53 and mdm2, respectively. No single case expressed both proteins. Ten out of 19 (53%) patients had a hemizygous loss of 17p (p53) including the 2 patients (11%) overexpressing p53. Gains of chromosome 12 (mdm2) were found in only 2 cases with expression of mdm2 in one of them. Overall, p53 deletion and/or overexpression of mdm2 was found in 71% of cases. Ten of 19 patients had a blastoid MCL, including all 5 patients who were Ki67 positive, 6 of the 7 patients expressing mdm2 and one of the 2 patients expressing p53. There was no correlation between p53 deletion and morphologic subtypes. All patients with blastoid MCL have died after a median time of 25 months. INTERPRETATION AND CONCLUSIONS: In MCL in leukemic phase there is a high frequency of p53 deletion and/or overexpression of mdm2. In contrast, over expression of p53 is relatively rare. Overexpression of mdm2 is seen predominantly in blastoid MCL, the latter being characterized by a short median survival, and seems unrelated to a numerical gain of chromosome 12. It does not reflect a high proliferative rate but might indicate an alternative mechanism of inactivating p53 in prognostically adverse types of MCL.

Adult↗