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C Schoch

Publications and source records attributed to C Schoch.

At least 91 records · Page 5Linked to original sources

MLL and CALM are fused to AF10 in morphologically distinct subsets of acute leukemia with translocation t(10;11): both rearrangements are associated with a poor prognosis.

The translocation t(10;11)(p13;q14) has been observed in acute lymphoblastic leukemia (ALL) as well as acute myeloid leukemia (AML). A recent study showed a MLL/AF10 fusion in all cases of AML with t(10;11) and various breakpoints on chromosome 11 ranging from q13 to q23. We recently cloned CALM (Clathrin Assembly Lymphoid Myeloid leukemia gene), the fusion partner of AF10 at 11q14 in the monocytic cell line U937. To further define the role of these genes in acute leukemias, 10 cases (9 AML and 1 ALL) with cytogenetically proven t(10;11)(p12-14;q13-21) and well-characterized morphology, immunophenotype, and clinical course were analyzed. Interphase fluorescence in situ hybridization (FISH) was performed with 2 YACs flanking the CALM region, a YAC contig of the MLL region, and a YAC spanning the AF10 breakpoint. Rearrangement of at least one of these genes was detected in all cases with balanced t(10;11). In 4 cases, including 3 AML with immature morphology (1 AML-M0 and 2 AML-M1) and 1 ALL, the signals of the CALM YACS were separated in interphase cells, indicating a translocation breakpoint within the CALM region. MLL was rearranged in 3 AML with myelomonocytic differentiation (2 AML-M2 and 1 AML-M5), including 1 secondary AML. In all 3 cases, a characteristic immunophenotype was identified (CD4+, CD13-, CD33+, CD65s+). AF-10 was involved in 5 of 6 evaluable cases, including 1 case without detectable CALM or MLL rearrangement. In 2 complex translocations, none of the three genes was rearranged. All cases had a remarkably poor prognosis, with a mean survival of 9.6 +/- 6.6 months. For the 7 AML cases that were uniformly treated according to the AMLCG86/92 protocols, disease-free and overall survival was significantly worse than for the overall study group (P = .03 and P = .01, respectively). We conclude that the t(10;11)(p13;q14) indicates CALM and MLL rearrangements in morphologically distinct subsets of acute leukemia and may be associated with a poor prognosis.

Acute Disease↗

Intensive therapy for high-risk myelodysplastic syndromes and the biological significance of karyotype abnormalities.

Therapy for myelodysplastic syndromes (MDS) has been less than effective when based on low-dose treatment or supportive measures only, including hematopoietic growth factors. Recently, based on the percentage of bone marrow blasts, the number of cytopenic cell lines and cytogenetics, clinical risk groups have been defined more precisely. Recent studies applying intensive acute myeloid leukemia (AML)-type therapy to high-risk MDS have produced remissions ranging from 45 to 79%. Advances in the understanding of the biology of MDS clearly point to cytogenetics rather than morphologic subtype as being of prognostic relevance. Hence, new treatments need to be developed for patients with unfavorable karyotypes and complex abnormalities in particular. These MDS subtypes are characterized by low spontaneous proliferative activity and low autocrine production of hematopoietic growth factors. The subtypes are, however, highly sensitive to external stimulation by granulocyte-colony stimulating factor (G-CSF) and granulocyte macrophage-colony stimulating factor (GM-CSF). New therapies could emerge from these findings, for example, priming high-risk MDS patients with hematopoietic growth factors in combination with intensive AML-type treatment. Recent studies suggest that incorporating high-dose AraC into an intensive drug combination could further improve the outcome of high-risk MDS.

Chromosome Aberrations↗

Cell lineage specific involvement in acute promyelocytic leukaemia (APL) using a combination of May-Grünwald-Giemsa staining and fluorescence in situ hybridization techniques for the detection of the translocation t(15;17)(q22;q12).

Acute promyelocytic leukaemia (APL) is strongly associated with the translocation t(15;17) which therefore provides a reliable marker to assess the potential involvement of different cell lineages. Six cases with morphologically, cytogenetically and molecularly proven APL were analysed at diagnosis or relapse by combining fluorescence in situ hybridization (FISH) with standard May-Grünwald-Giemsa (MGG) staining at the single cell level on bone marrow and blood smears. With the FICTION technique, combining immunophenotyping with FISH, haemopoietic precursor cells were identified using monoclonal antibodies against CD34, B- and T-lymphocytes could be identified with CD19 and CD3. In addition, HLA-DR-positive cells were studied for the presence of t(15;17). Morphologically identified myeloblasts were relocated on the smear after FISH and were found to be PML/RARA positive in 91%, abnormal promyelocytes in 97%. In contrast, a positive signal was obtained in only 18% of PMN. Erythroblasts, lymphocytes and plasma cells did not show a PML/RARA rearrangement. Accordingly, all cells expressing CD3 or CD19 were PML/RARA negative. CD34 positive precursor cells identified by FICTION were PML/RARA positive in 97%. HLA-DR-positive cells contained a PML/RARA rearrangement in 24% of cells in one case and were negative in the two other cases investigated. These data indicate that APL appears to originate from a level of haemopoietic precursor cells but is restricted to the myeloid lineage. The low proportion of PML/RARA-positive PMN points to the impairment of blast cell differentiation beyond the promyelocyte stage but also emphasizes the existence of normal residual haemopoietic stem cells from which PML/RARA-negative PMN must be derived.

Adult↗

Induction of a hematological and cytogenetic remission in a patient with a myelodysplastic syndrome secondary to Fanconi's anemia employing the S-HAM regimen.

We report on a patient with Fanconi's anemia (FA) who developed a myelodysplastic syndrome (RAEB-T) with complex karyotypic abnormalities (trp 1q23q42, monosomy 20, trisomy 13) at the age of 28. The patient achieved a complete hematological and cytogenetic remission after treatment with sequential high-dose cytosine arabinoside/mitoxantrone followed by G-CSF (5 micrograms/kg). Bone marrow hypoplasia was prolonged with 38 days of granulocytopenia < 500/microliters and 62 days of platelet transfusion dependency. Nonhematological toxicity did not exceed that of patients without underlying FA. Remission duration was 7 months. This observation shows the feasibility of high-dose Ara C treatment in patients with FA and MDS. Although hematopoiesis remained clonal in remission, the suppression of the cytogenetically abnormal clones transiently reversed the antecedent long-lasting pancytopenia.

Adult↗

Cytogenetic analysis of CD34+ subpopulations in AML and MDS characterized by the expression of CD38 and CD117.

It has been supposed in de novo AML that malignant transformation occurs at the level of committed progenitors. Recent data of our group and others provide evidence that in AML malignant transformation may regularly occur at the level of stem cells. These cells can be discriminated by function and specific surface molecules. CD34, a glycophosphoprotein, is a cellular surface antigen characteristically expressed by stem cells. CD34+ stem cells can be further subdivided by the expression of additional surface molecules like CD38 and CD117. In this article we present results from cytogenetic examinations of FACS-isolated stem cell subpopulations in eight patients (four AML and four MDS). Six of them displayed clonal karyotype abnormalities at the time of first diagnoses in the native bone marrow (5q-; 5q- and complex abnormalities; +8; inv(16) and +8; i(17q) and -21; i(21q)). We used CD117, the receptor for the stem cell factor (also KIT oncogene) as a new cellular surface marker. CD34+/CD117+/- stem cell subpopulations were examined in two patients with AML and three patients with MDS. We found leukemic stem cells in every type of stem cell subpopulation examined (CD34+/CD38-, CD34+/CD38+, CD34+/CD117-, CD34+/CD117+). Secondary, progression-associated chromosome abnormalities likewise were demonstrable in CD34+ cells. In three patients a mosaic of normal and abnormal metaphases was found in the highly purified stem cell subpopulations. We conclude that in AML and MDS stem cells are the target of leukemogenic genetic defects. CD117 as a new marker to isolate different CD34+ subpopulations was not sufficient to discriminate between normal and leukemic stem cells. Our findings have implications for autologous stem cell transplantation, high-dose chemotherapy and the pathogenetic concept of leukemogenesis.

ADP-ribosyl Cyclase↗

New insights into the biology of Philadelphia-chromosome-positive acute lymphoblastic leukaemia using a combination of May-Grünwald-Giemsa staining and fluorescence in situ hybridization techniques at the single cell level.

It is sometimes difficult to discriminate chronic myeloid leukaemia (CML) in lymphatic blast crisis from Ph-chromosome positive acute lymphoblastic leukaemia (ALL). Previous studies have suggested that ALL is restricted to the lymphatic lineage only, whereas CML involves all cell lineages. In four cases of Ph-positive ALL we combined the standard May-Grünwald-Giemsa staining with FISH at the single cell level and were able to demonstrate that > or = 98% of lymphatic blasts carried the Philadelphia chromosome. Erythropoiesis was not involved when this technique was applied. Using immunological identification of single cells (FICTION), we detected the t(9;22) in 100% of CD19-positive B lymphoblasts in all four cases, in some CD3-positive T cells in two patients, and in > or = 98% of CD34-positive precursor cells. However, in two out of four patients the myeloid cell compartment was involved in the malignant transformation, unequivocally demonstrated not only by the combination of MGG and FISH but also by FICTION using the antibodies CD13 and CD33. The observation that both patients with myeloid cell lineage involvement had a myeloid co-expression on their blasts and a better survival supports the concept of a separate, biologically determined subgroup in Ph-positive ALL, leading to further investigations, and individually tailored treatment strategies.

Adult↗

The significance of trisomy 8 in de novo acute myeloid leukaemia: the accompanying chromosome aberrations determine the prognosis. German AML Cooperative Study Group.

Trisomy 8 is the most frequent numerical chromosome aberration in acute myeloid leukaemia (AML). It occurs either as the sole anomaly or together with other clonal chromosome aberrations. We investigated whether accompanying chromosome anomalies influence the clinical outcome in patients with trisomy 8 and de novo AML. Since 1986, in 713 AML cases treated according to the protocols of the German AMLCG trials, chromosome analyses have been successfully performed. The overall incidence of trisomy 8 was 7.6%. Complete clinical follow-up data were available for 51 patients who were divided into three different categories: group 1: trisomy 8 as the sole cytogenetic anomaly (n = 20); group 2: trisomy 8 in addition to favourable chromosome aberrations (t(8;21)(q22;q22), t(15;17)(q22;q21), inv(16)(p13q22)) (n = 10); and group 3: trisomy 8 accompanied by other anomalies, in most cases of complex type (n = 21). Complete remission (CR) rates were 70%, 90% and 67% for groups 1, 2 and 3, respectively. Event-free survival (EFS) at 3 years differed significantly between patients with trisomy 8 only (37.5%), patients with trisomy 8 in combination with favourable aberrations (55.0%) and patients with trisomy 8 and other accompanying anomalies, mostly complex chromosome aberrations (9.0%) (group 1 v group 2: P=0.12; group 1 v group 3: P=0.005; group 2 v group 3: P=0.05). In this study patients with +8 as the sole cytogenetic anomaly had an intermediate prognosis, patients with +8 in addition to favourable chromosome aberrations maintained a good clinical outcome, and patients with +8 in combination with other abnormalities showed the worst prognosis.

Acute Disease↗

Which compartments are involved in Philadelphia-chromosome positive chronic myeloid leukaemia? An answer at the single cell level by combining May-Grünwald-Giemsa staining and fluorescence in situ hybridization techniques.

Chronic myeloid leukaemia (CML) is believed to represent a stem cell disorder involving all three cell lineages. The typical chromosomal aberration, the Philadelphia chromosome, is the translocation (9;22)(q34;q11). Several studies with cytogenetics, fluorescence in situ hybridization (FISH), or polymerase chain reaction have investigated the presence of the t(9;22) in different cell compartments. However, questions still remain. In six cases of CML we combined the standard May-Grünwald-Giemsa staining with FISH at the single-cell level and were able to demonstrate that not only all maturation stages of granulopoiesis, erythropoiesis, and megakaryocytes, but also plasma cells, eosinophils, basophils and monocytes carried the Philadelphia chromosome in 53-98% of samples. Using immunological identification of single cells we were able to demonstrate that the t(9;22) is detectable in 34% of CD3-positive T lymphocytes, in 32% of CD19-positive B lymphocytes, and in 82% of CD34-positive precursor cells. The results give new insight into the biology of CML and may have implications for future therapeutic strategies.

Adult↗

A case of atypical myelodysplastic syndrome with micromegakaryocytes, normal platelet count, and t(3;12)(q21;p13) with inv(3)(q21q26).

A 49-year-old woman patient with atypical myelodysplastic syndrome (MDS) showing a der(3)t(3;12)(q21;p13), and der(12)t(3;12)(q21;p13)inv(3)(q21q26) as an acquired chromosomal abnormality in the bone marrow is described. The chromosomal breakpoints of the presented complex aberration with combination of the inv(3)(q21q26) and t(3;12)(q21;p13) were defined by fluorescence in situ hybridization (FISH) with yeast artificial chromosomes (YACs). The inv(3) is a relatively frequent chromosomal rearrangement in patients with myeloid malignancies and dysmegakaryopoiesis and t(3;12)(q26;p13) has also been reported as a recurrent abnormality in MDS and in blast crisis of chronic myelogenous leukemia (CML). Whereas the t(3;12), inv(3), and t(3;3) are associated with a very poor prognosis, our patient surprisingly had a mild clinical course.

Chromosome Banding↗

Peripheral blood mononuclear cells of a patient with advanced Hodgkin's lymphoma give rise to permanently growing Hodgkin-Reed Sternberg cells.

A novel Hodgkin's disease (HD) derived cell line, L1236, was established from the peripheral blood of a patient with advanced Hodgkin's disease. Analysis of immunoglobulin (Ig) gene rearrangements revealed a biallelic Ig heavy chain and a monoallelic Ig kappa light chain gene rearrangement, pointing to a B-lymphoid origin of these cells. No DNA of Epstein-Barr virus was detected in L1236. The cells expressed the HD-associated surface antigens CD30 and CD15 as well as the transferrin receptor (CD71). Cytogenetic analysis of early passages of L1236 cells revealed a grossly disordered karyotype including cytogenetic aberrations described previously in other HD-derived cell lines. The Hodgkin/Reed-Sternberg (H-RS) cell origin of L1236 cells is further confirmed by Kanzler et al (Blood 87:3429, 1996), who found identical Ig gene rearrangement sequences in L1236 cells and H-RS cells of the same patient's bone marrow. L1236 cells expressed antigens necessary for efficient antigen presentation to T cells including HLA class I and II, B7.1 and B7.2, as well as adhesion molecules ICAM 1 and LFA 3. The cells secreted the interleukins (IL)-6, -8, -10, tumor necrosis factor (TNF) alpha, interferon (IFN) gamma, transforming growth factor (TGF) beta, and the granulocyte-macrophage colony stimulating factor (GM-CSF). After subcutaneous inoculation into SCID mice, a necrotic regression of initially growing tumors at the injection site was followed by disseminated intralymphatic growth. Our findings, together with the results of Kanzler et al, demonstrate that H-RS cells of B-lymphoid origin were present in the peripheral blood of a patient with advanced HD. These cells exerted a malignant phenotype with regard to their in vitro and in vivo characteristics.

Adult↗

The abnormal eosinophils are part of the leukemic cell population in acute myelomonocytic leukemia with abnormal eosinophils (AML M4Eo) and carry the pericentric inversion 16: a combination of May-Grünwald-Giemsa staining and fluorescence in situ hybridization.

The French-American-British subtype acute myelomonocytic leukemia with abnormal eosinophils (FAB AML M4Eo) with pericentric inversion of chromosome 16 is cytomorphologically defined by a myelomonoblastic blast population and abnormal eosinophils. Until now, it remained an open question whether these abnormal eosinophils are part of the malignant clone or an epiphenomenon. We analyzed five cases of AML M4Eo with inv(16) and combined May-Grünwald-Giemsa staining with fluorescence in situ hybridization using yeast artificial chromosome clone 854E2, which spans the inv(16) breakpoint on 16p. In the case of inv(16), three instead of the normal two hybridization signals can be observed both on metaphase spreads and in interphase cells. With this approach, we were able to show inversion 16 in abnormal eosinophils and, therefore, identified them as a part of the leukemic cell population.

Adult↗

Incidence and implication of additional chromosome aberrations in acute promyelocytic leukaemia with translocation t(15;17)(q22;q21): a report on 50 patients.

Acute promyelocytic leukaemia (APL) is characterized by the translocation t(15;17)(q22;q21). Usually t(15;17) is the sole cytogenetic abnormality, but some patients show other chromosome aberrations in addition to t(15;17). The influence of additional chromosome aberrations on the clinical outcome of patients with t(15;17) is unclear. We have analysed 50 cases of APL carrying the translocation t(15;17). Additional chromosome aberrations were observed in 17/47 patients (36%) studied at initial diagnosis and in all three patients studied at relapse. In nine cases (18%) an additional chromosome 8 and in six cases (12%) an isochromosome of the long arm of the derivative chromosome 17 was observed. Various structural rearrangements in addition to t(15;17) were detected in nine patients (18%). Clinical follow-up data were available for 44 patients studied at diagnosis. A complete remission (CR) was achieved in 34 patients (77%). 10 patients (23%) died within 1 month after diagnosis due to infection or bleeding, eight (24%) relapsed within 10-18 months after initial diagnosis. 28 patients are alive 2-93 months after diagnosis (25 in first CR, two in second and one in third CR) (median follow-up 18.5 months). Bone marrow transplantation was performed in six patients (three in first CR, two in second CR, one in third CR), all are alive and in CR. An influence of secondary chromosome anomalies on prognosis was not observed. However, if a higher rate of long-term remission can be reached, specific secondary chromosome aberrations might turn out to be of prognostic value.

Adolescent↗

Acute myeloid leukemia with translocation (8;21). Cytomorphology, dysplasia and prognostic factors in 41 cases. AML Cooperative Group and ECOG.

The translocation t(8;21) is one of the most common structural aberrations in acute myeloid leukemia (AML). Excellent response rates and a better relapse-free survival have been described. We analyzed specific morphologic and cytochemical features including dysplasia and other prognostic factors in 41 patients with AML and t(8;21) who underwent aggressive chemotherapy in two national cooperative group studies. Five patients were classified as AML M1 and 36 as AML M2 according to the FAB criteria. Auer rods were detected in 28 patients (68%), however in only 16 patients were they "thin and elongated" as has been described as typical for t(8;21). The presence or absence of Auer rods did not appear to be associated with disease-free survival in this sample. Dysgranulopoiesis was detected in 31/41 patients (90%); five of these patients additionally had dyserythropoiesis (12%). In six cases (15%), dysmegakaryopoiesis was seen in combination with dysgranulopoiesis. Only one patient had trilineage dysplasia. Dysplastic features had no influence on prognosis. Additional cytogenetic abnormalities were detected in 24/41 patients. Twelve male (48%) and four female (25%) had a loss of a sex chromosome. This was correlated with a better disease-free survival (p = 0.039). The complete remission rate (CR) to chemotherapy was 90%. The early death rate was 10%. Disease-free survival of the complete responders was 60% at two years with no relapses observed in ten patients with 2-6 years of follow up. This favorable disease-free survival was observed with a variety of post-induction regimens and t(8;21) had been detected as an independent factor for good prognosis. The need for very intensive therapy, such as bone marrow transplantation, is unanswered at this time.

Adult↗

De novo AML with dysplastic hematopoiesis: cytogenetic and prognostic significance.

Dysplastic hematopoiesis is the morphological hallmark of myelodysplastic syndromes. Dysplastic features in one or more lineages are also found frequently in bone marrow aspirates from patients with de novo AML and have been associated with an unfavorable prognosis. We asked whether dyshematopoiesis is an independent prognostic factor or an indicator of unrecognized secondary leukemia, identified by characteristic chromosomal abnormalities. Bone marrow aspirates from 102 patients with newly diagnosed AML were analyzed. Morphological analysis was obtained in all patients, flow cytometric analysis in 96 and successful cytogenetic analysis in 65 bone marrow aspirates. Dysgranulopoiesis (DysG) was found in 55, dysmegakaryopoiesis (DysM) in 32 and dyserythropoiesis (DysE) in 23 patients. Decreased side scatter signals of neutrophils in the flow cytometric analysis (DysS) were detected in 32 patients. DysG and DysS showed a highly significant correlation (P = 0.0005). DysG was an adverse negative prognostic factor for remission rate and event-free survival (P = 0.04, P = 0.02). An unfavorable karyotype was associated with a significantly lower chance for event-free survival (P = 0.002). The incidence of an unfavorable karyotype was significantly higher in patients with DysG (P = 0.01), DysM (P = 0.02) and DysS (P = 0.01). In patients with an unfavorable karyotype, dysplasia had no additional prognostic influence, however, in patients with a normal, favorable or prognostically uncertain karyotype DysG remained a predictor of lower remission rate (P = 0.03). We conclude that dysgranulopoiesis, dysmegakaryopoiesis and decreased side scatter signals of neutrophils are indicators of secondary leukemias in bone marrow aspirates from patients with de novo AML.

Bone Marrow↗

Fifty-one patients with acute myeloid leukemia and translocation t(8;21)(q22;q22): an additional deletion in 9q is an adverse prognostic factor.

The translocation t(8;21)(q22;q22) occurs in 6 to 12 percent of patients with AML, and usually predicts a good response to chemotherapy with a high remission rate and a relatively long median survival. The influence of additional chromosome aberrations on the clinical outcome of patients with t(8;21) is unclear. We analyzed 51 cases of acute myeloid leukemia carrying a translocation t(8;21)(q22;q22); 23 female and 28 male patients. The complete remission rate was 92 percent and median overall survival was 52.4 months. The median overall survival of female patients was significantly worse than of male patients (37.2 months vs not reached, P = 0.025). Additional chromosome aberrations were detected in 41 patients at diagnosis (80 percent), 31 (61 percent) had lost a sex chromosome, seven (14 percent) showed a partial deletion of the long arm of chromosome 9 and in three patients (6 percent) a gain of chromosome 8 was observed. Whereas the loss of a sex chromosome had no influence on prognosis, a partial deletion of the long arm of chromosome 9 was an unfavorable prognostic factor. The median overall survival of the seven patients with del(9q) was only 12.5 months and thus significantly shorter than in patients with only t(8;21) or with t(8;21) and additional sex chromosome loss (median survival not reached: P = 0.0010).

Acute Disease↗

Twenty-three cases of acute lymphoblastic leukemia with translocation t(4;11)(q21;q23): the implication of additional chromosomal aberrations.

The translocation t(4;11)(q21;q23) is one of the most common specific chromosomal aberrations in acute lymphoblastic leukemia (ALL), occurring in 2% of childhood and in 5-6% of adult cases. Especially in adults, the t(4;11) is associated with a poor prognosis. In order to determine the significance of clonal chromosome aberrations that occur in addition to t(4;11), we studied the karyotypes and clinical courses of 23 patients with acute lymphoblastic leukemia and a translocation t(4;11)(q21;q23). Additional clonal chromosome aberrations were found in ten patients. An isochromosome i(7)(q10) and a trisomy 6 were observed most frequently as secondary anomalies. Clonal evolution was detected in four of six patients analyzed at diagnosis as well as at relapse. With treatment carried out according to modern risk-adapted therapy protocols, no difference in outcome was observed between patients with clonal chromosome aberrations in addition to t(4;11) at diagnosis and those without.

Adolescent↗

17p anomalies in lymphoid malignancies: diagnostic and prognostic implications.

Eighteen patients with lymphoid malignancies and abnormalities of the short arm of chromosome 17 were evaluated, in order to analyse whether this anomaly was associated with a particular subgroup of lymphoid malignancies. The patients suffered from acute lymphoblastic leukemia, high-grade non-Hodgkin's lymphoma or plasma cell leukemia. No 17p anomaly was found in any patient with chronic lymphocytic leukemia or low-grade non-Hodgkin's lymphoma. In four cases the aberration of the short arm of chromosome 17 was the sole cytogenetic abnormality, in fourteen patients additional chromosomal aberrations were found. Five out of 18 cases were Burkitt's lymphoma/leukemia showing the typical rearrangement of 8q24. In cases with a karyotype evolution the 17p anomaly was always a late event. Concerning the clinical outcome of the patients with abnormalities of the short arm of chromosome 17 eight of nineteen patients died within 90 days after the diagnosis of the 17p anomaly only three were alive at the last follow up (26 months to 40 months after diagnosis of a 17p aberration). Rearrangements of 17p, especially as secondary cytogenetic events, seem to be associated with a poor clinical outcome in lymphoid malignancies.

Adolescent↗