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N Smadja

Publications and source records attributed to N Smadja.

At least 19 recordsLinked to original sources

Plasma cell leukaemia mimicking acute monocytic leukaemia in the course of multiple myeloma.

We report a case of acute leukaemia occurring early in the course of IgA multiple myeloma. Ultrastructural studies, immunophenotyping and karyotyping were required to identify the origin and clonality of the leukaemic cells. Although ultrastructural examination of the blast cells revealed both monocytoid and plasma cell features, all cells expressed the CD 38 antigen and intracytoplasmic kappa light chains, while karyotyping revealed a clone with numerous abnormalities, leading to the diagnosis of clonal plasma cell disease. The occurrence of leukaemia in multiple myeloma is discussed.

Aged↗

Cytogenetic study in a bone marrow metastatic Merkel cell carcinoma.

We report an additional cytogenetic study of a metastatic Merkel cell carcinoma. Even though the cells analyzed were from a metastatic lesion, chromosomal abnormalities were not complex. Similarities between cytogenetic findings described in small-cell lung carcinoma and the present case are observed. However, further studies are needed to define the relationship between these two neuroendocrine small-cell malignancies.

Adult↗

Similar cytogenetic abnormalities in two cases of plasma cell leukemia.

Plasma cell leukemia (PCL) is a very rare disease. We report two cases of PCL with complex chromosomal abnormalities: long arm trisomy and short arm partial monosomy of chromosome 1, a marker derived from chromosome 8, and monosomy 13 were found in both cases; other additional chromosome abnormalities were also present in each case. Bastard et al. reports two similar cases in this issue. Cytogenetic studies in PCL have seldom been reported in the literature: chromosomal abnormalities are most often complex: chromosomes 1, 8, 11, 13, and 14 are those most frequently involved. Such cytogenetic findings are observed in advanced multiple myeloma. Cytogenetic, clinical, and immunological findings observed in PCL and the advanced stage of multiple myeloma are arguments for the single origin of pathogenesis.

Adult↗

The role of methylcellulose on colony growth of human myeloid leukemic progenitors (AML-CFU).

The use of a semisolid support like methylcellulose (MC) in a clonogenic assay prevents cell migration and nonspecific aggregation. However, the inhibitory effect of MC on myeloid cell lines has been reported. To assess the effect of MC on human leukemic progenitor cell growth (acute myeloblastic leukemia colony-forming units, AML-CFU), increasing concentrations of MC (0.36%, 0.72%, and 1.44%) were added in a double-feeder culture system. T-lymphocyte-depleted leukemic cells from 12 patients with AML were cultured in the presence of 2.5% phytohemagglutinin (PHA) in a liquid and a semisolid (MC) medium over a leukocyte feeder layer. The leukemic nature of the colonies was confirmed by cytogenetic studies. The median cloning efficiency in the optimal MC assay system was significantly higher (217 leukemic colony-forming units [CFU-L]/5 x 10(4) cells) than the one obtained in the liquid assay system (72.5 CFU-L/5 x 10(4) cells). However, three patterns of growth were observed: 1) colony formation was significantly better in MC than in the liquid assay system (seven of ten cases), 2) there was no difference in growth response (three of ten cases), and 3) colony formation was significantly better in the liquid assay system (one of ten cases). In the semisolid assay system, colony growth was dependent on MC concentration and varied among individual patients. A striking feature was the partial reduction of AML-CFU growth at 1.44% MC, with complete inhibition in 4/11 cases. This phenomenon was not observed for normal progenitors cultured under the same conditions. Cytological evaluation of AML-CFU showed an incomplete maturation to the myelocyte state, accompanied occasionally by macrophagic differentiation. In contrast, maturation of the granulocyte-macrophage colony-forming unit (CFU-GM) clones was harmonious, resulting in greater than 40% polynuclear cells, even from a 7-day culture. Despite a variable clonal response of leukemic progenitors from individual patients, we conclude that 0.72% MC is the optimal concentration of MC in our system, allowing clonal growth of AML-CFU.

Cell Division↗

Refractory anemia with excess of blasts in transformation. Clinical, hematologic, and cytogenetic findings in nine patients.

Clinical, hematologic, and cytogenetic data of nine patients with refractory anemia with excess of blasts in transformation (RAEB-t), classified according to the French-American-British Cooperative Group for myelodysplastic syndrome (MDS), are reported. At diagnosis, eight out of nine cases, had chromosomal abnormalities and three out of nine developed acute leukemia. Karyotype studies allowed individualization of two groups of patients: five with nonrandom major karyotype abnormalities (MAKA) including hypodiploidy, chromosomes 5 and 7 involvement, at least four other abnormalities, and a poor prognosis (survival always under 3.5 months); and four patients with either normal karyotypes or minor karyotype abnormalities (MIKA) (no more than three abnormalities) and a better prognosis (survival from 14 to 38 months). Karyotype appears to be a major prognostic factor among RAEB-t.

Acute Disease↗

Cytogenetic and molecular studies of the Philadelphia translocation t(9;22) observed in a patient with myelodysplastic syndrome.

We report here the case of a patient with refractory anemia with excess of blasts (RAEB) which evolved into RAEB in transformation. The standard Philadelphia (Ph) chromosome was found by cytogenetic study at diagnosis and during evolution. Southern blot analysis showed breakpoint cluster region (bcr) rearrangement as observed in chronic myelogenous leukemia (CML).

Aged↗

Cytogenetic and molecular analysis in Philadelphia negative CML.

We studied the clinical, hematologic, cytogenetic and molecular biologic features in four patients with Philadelphia (Ph) negative chronic myeloid leukemia (CML). In all four cases the clinical and hematologic characteristics were indistinguishable from Ph positive CML. Cytogenetic analysis showed a normal karyotype in two patients and chromosomal translocations apparently not affecting chromosome 22 in the other two cases. Southern blot analysis using probes of the bcr region, demonstrated a bcr break-point in all four patients. In situ hybridization with bcr, c-abl, and c-sis probes showed unusual hybridization sites for 5'-bcr and c-abl indicating complex chromosomal rearrangements affecting three different chromosomes in the four patients investigated. Using polymerase chain reaction (PCR) followed by hybridization to oligonucleotide probes specific for the bcr-abl fusion region, the expression of a chimeric bcr-abl mRNA was detected. In these patients we demonstrated that (a) CML with a breakpoint in the bcr region without cytogenetically detectable Ph chromosome is characterized by the same genomic recombination of 5'-bcr and c-abl as CML with standard Ph translocation and (b) unusual localization of 5'-bcr and c-abl sequences caused by complex Ph translocation does not interfere with transcription of the bcr-abl fusion gene.

Adult↗

Sequential karyotype study on Ph-positive chronic myelocytic leukemia. Significance of additional chromosomal abnormalities during disease evolution.

Twenty-eight patients with Ph-positive chronic myelocytic leukemia (CML), who all died of the disease, had cytogenetic studies throughout the progression of the disease: at diagnosis, during chronic phase (CP), accelerated phase (AP), and blastic transformation (BT). The aim of this sequential study was to appreciate the frequency and the significance of additional chromosomal abnormalities (ACA) during CML evolution, especially in the CP. In our series ACA were rare (five of 28 patients) and simple (four of five) in CP. They were much more frequent and complex in AP (11 of 16) and in BT (22 of 24) with complex abnormalities (13 of 24). In CP, ACA predictive value for metamorphosis was poor: only three of 13 patients had ACA within 1 year before BT, and only two of 11 within 1 year before AP. ACA were mainly observed during the last period before BT: ten of 17 patients studied within 6 months prior BT had ACA, but by then two of three were in AP. ACA, especially when complex, appear to be a hallmark of CML metamorphosis.

Adult↗

Erythrocyte mean corpuscular volume during cytotoxic therapy is a predictive parameter of secondary leukemia in Hodgkin's disease.

Mean corpuscular volume (MCV) evolution during cytotoxic therapy was studied in 32 patients with Hodgkin's disease (HD) who developed therapy-related acute nonlymphocytic leukemia (t-ANLL) and in 64 HD controls matched for age, therapy duration, and MOPP (mechlorethamine, vincristine, procarbazine, and prednisone) administration. Maximum MCV during therapy reached 108.3 +/- 8.2 fl in t-ANLL patients and 103.4 +/- 9.1 fl in the controls (P = 0.001). Maximum MCV increase was 26.7 +/- 8.3 fl in t-ANLL patients and 16.6 +/- 8.3 fl in the controls (P = 10(-9). The greatest 3-month increase observed during therapy was 14.8 +/- 6 fl in the t-ANLL patients and 10.1 +/- 4.8 fl in the controls (P = 0.0001). During initial MOPP therapy, the greatest 3-month increase reached 14.1 +/- 5.3 fl in t-ANLL patients and 9.8 +/- 4.5 fl in the controls (P = 0.01). The relative risk of developing t-ANLL was 9 for a MCV maximum increase over 24 fl during therapy, which was observed in 71% of the patients with t-ANLL and in only 22% of the controls. For the greatest 3-month MCV increase over 15 fl observed in 57% of the t-ANLL patients and in 17% of the controls, the relative risk reached 15. This suggests that there is at least one factor, independent from therapy, which predisposes to t-ANLL. MCV evolution during therapy appears useful in determining which HD patients have a high risk of developing t-ANLL.

Antineoplastic Combined Chemotherapy Protocols↗

Cytogenetic studies in twelve patients with primary myelofibrosis and myeloid metaplasia.

Chromosome studies on bone marrow and/or peripheral blood cells without phytohemagglutinin were performed on 12 patients with primary myelofibrosis with myeloid meta-plasia (PMMM) between 1980 and 1984. Abnormal clones were found in six patients (50%). In five cases the abnormal clone involved the long arm of chromosome #7, two of which also had partial trisomy of chromosome #1 and trisomy of 9. Additional abnormalities involving chromosomes #3, #5, #11, #13, #15, and #21 were each found once. Review of the literature showed few studies on the cytogenetics of PMMM. No specific chromosomal pattern can be established; however, abnormalities described are nonrandom.

Aged↗

Preleukemic changes in cases of nonlymphocytic leukemia secondary to cytotoxic therapy. Analysis of 105 cases.

Peripheral blood changes preceding therapy-related leukemia were studied in 105 patients who had received cytotoxic therapy, 53 for Hodgkin's disease and 52 for other cancers. Preleukemic anomalies were observed in 74.3% of the cases, appearing after a mean interval of 68.7 months after diagnosis of the initial cancer. This interval was only 57.5 months in patients aged 50 years or older and only 42.3 months in patients with Hodgkin's disease having received cytotoxic therapy for 6 months or less. The first changes most frequently observed were pancytopenia (24.8%) and isolated erythrocyte abnormalities such as anemia or macrocytosis (18.1%). Involvement of two cell lines, isolated thrombocytopenia or leukopenia, circulating immature cells, monocytosis, leukocytosis, or thrombocytosis were also observed. Therapy-related myelodysplastic syndrome was recognized in 19 patients and myelofibrosis in 3. Median duration of the preleukemic phase was 6 months; 9 months in cases of isolated erythrocyte involvement and 5 months in the other cases. Myelomonocytic or monoblastic leukemia appeared less frequently when the first sign involved erythrocytes only. Hematological surveillance thus appears necessary in all patients having received cytotoxic therapy. Bone marrow study with cytogenetic examination should be performed in cases of persistent peripheral blood abnormalities.

Adolescent↗

Spontaneous regression of cytogenetic and haematologic anomalies in Ph1-positive chronic myelogenous leukaemia.

We report a case of a 27-year-old man with Ph1-positive chronic myelogenous leukaemia (CML). At the time of diagnosis 100% Ph1-positive cells were found with a trisomy 8 in 50% of them. In absence of therapy, his haematological status remained stable for 3 years. Subsequently a progressive regression of haematologic and cytogenetic data was observed. Eight years after diagnosis the karyotype showed only 37% Ph1-positive cells and the trisomy 8 had disappeared.

Adult↗

Acute leukemia after treatment for ovarian cancer. Report of four cases and review of the literature.

Four cases of acute nonlymphocytic leukemia (ANLL) following ovarian cancer are reported. All patients received alkylating agents and had a preleukemic phase. Seventy-nine additional cases of ANLL following therapy found in the literature are also reviewed. All but 2 patients received alkylating or alkylating-related agents alone or in combination. Mean duration of chemotherapy was 31.4 +/- 19.4 months. Eighty-eight percent of the patients presented with preleukemia with a mean duration of 10 +/- 10 months. Mean interval between cancer and ANLL was 57.3 +/- 26 months. Cytogenetic abnormalities were found in 71% among patients who had a karyotype. Long-term alkylating agent therapy seems to have a significant role in the development of ANLL and should be avoided in ovarian cancer.

Aged↗