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Biomedical subjects

Christa Fonatsch

Publications and source records attributed to Christa Fonatsch.

At least 19 recordsLinked to original sources

MYC-containing double minutes in hematologic malignancies: evidence in favor of the episome model and exclusion of MYC as the target gene.

Double minutes (dmin)-circular, extra-chromosomal amplifications of specific acentric DNA fragments-are relatively frequent in malignant disorders, particularly in solid tumors. In acute myeloid leukemia (AML) and myelodysplastic syndromes (MDS), dmin are observed in approximately 1% of the cases. Most of them consist of an amplified segment from chromosome band 8q24, always including the MYC gene. Besides this information, little is known about their internal structure. We have characterized in detail the genomic organization of 32 AML and two MDS cases with MYC-containing dmin. The minimally amplified region was shown to be 4.26 Mb in size, harboring five known genes, with the proximal and the distal amplicon breakpoints clustering in two regions of approximately 500 and 600 kb, respectively. Interestingly, in 23 (68%) of the studied cases, the amplified region was deleted in one of the chromosome 8 homologs at 8q24, suggesting excision of a DNA segment from the original chromosomal location according to the 'episome model'. In one case, sequencing of both the dmin and del(8q) junctions was achieved and provided definitive evidence in favor of the episome model for the formation of dmin. Expression status of the TRIB1 and MYC genes, encompassed by the minimally amplified region, was assessed by northern blot analysis. The TRIB1 gene was found over-expressed in only a subset of the AML/MDS cases, whereas MYC, contrary to expectations, was always silent. The present study, therefore, strongly suggests that MYC is not the target gene of the 8q24 amplifications.

Adult↗

GAB2 is a novel target of 11q amplification in AML/MDS.

Chromosome arm 11q amplifications involving the mixed lineage leukemia gene (MLL) locus are rare but recurrent aberrations in acute myeloid leukemia (AML) and myelodysplastic syndrome (MDS). We have recently shown that in addition to the MLL core amplicon, independent sequences in 11q23-24 and/or 11q13.5 are coamplified within the same cytogenetic markers in 90% and 60% of patients, respectively. Here we further narrow down the minimal amplicon in 11q13.5 to 1.17 Mb by means of semi-quantitative PCR and FISH analyses. The newly defined amplicon contains seven genes, including the GRB2-associated binding protein 2 (GAB2). Using real-time RT-PCR we show a significant transcriptional upregulation of GAB2 in the patients who have GAB2 coamplified with MLL. Thus, the adaptor molecule GAB2 that has already been shown to enhance oncogenic signaling in other neoplasias appears as a novel target of 11q amplification in AML/MDS.

Adaptor Proteins, Signal Transducing↗

Myelomastocytic leukemia: evidence for the origin of mast cells from the leukemic clone and eradication by allogeneic stem cell transplantation.

PURPOSE: Myelomastocytic leukemia is a term used for patients with advanced myeloid neoplasms, in whom elevated numbers of immature atypical mast cells are found, but criteria for a primary mast cell disease are not met. The origin of mast cells in these patients is presently unknown. PATIENT AND METHODS: We have analyzed clonality of mast cells in an 18-year-old patient suffering from acute myeloid leukemia with a complex karyotype including a t(8;21) and mastocytic transformation with a huge increase in immature mast cells and elevated serum tryptase level, but no evidence for a primary mast cell disease/mastocytosis. RESULTS: As assessed by in situ fluorescence hybridization combined with tryptase staining, both the tryptase-negative blast cells and the tryptase-positive mast cells were found to contain the t(8;21)-specific AML1/ETO fusion gene. Myeloablative stem cell transplantation resulted in complete remission with consecutive disappearance of AML1/ETO transcripts, decrease of serum tryptase to normal range, and disappearance of neoplastic mast cells. CONCLUSION: These data suggest that mast cells directly derive from the leukemic clone in patients with myelomastocytic leukemia.

Adolescent↗

CD10- pre-B acute lymphoblastic leukemia (ALL) is a distinct high-risk subgroup of adult ALL associated with a high frequency of MLL aberrations: results of the German Multicenter Trials for Adult ALL (GMALL).

Immunophenotyping disclosed CD10 negativity in 70 of 2408 cases of B-lineage acute lymphoblastic leukemia (ALL), although other criteria followed classification of pre-B ALL (eg, cytoplasmic immunoglobulin positivity). These blasts showed high myeloid antigen expression (60% CD65 positivity) and reacted with antibody 7.1 in 95% of the cases. MLL-AF4 fusion transcripts or an 11q23/MLL rearrangement or both were evident in 46 of 56 samples (82%). Although 83% of the patients achieved complete remission, the remission duration remained remarkably low: 141 days for MLL rearrangement-positive and 245 days for MLL rearrangement-negative CD10(-) pre-B ALL. Thus, the overall survival probability 3 years after diagnosis was 0.34 +/- 0.20 SE in MLL-rearrangement-negative versus 0.12 +/- 0.06 SE in MLL rearrangement-positive CD10- pre-B ALL. Our data identify CD10- cytoplasmic immunoglobulin-positive pre-B ALL as a rare (2.2%) but distinct immuno-subtype of adult ALL that is characterized by a high MLL rearrangement rate and a worse outcome.

Adolescent↗

High dose intermittent ARA-C (HiDAC) for consolidation of patients with de novo AML: a single center experience.

High dose intermittent ARA-C (2x3 g/m(2) i.v., days 1, 3, 5)=HiDAC was introduced as consolidation in AML by the CALGB-group in 1994. We treated 44 de novo AML patients in CR with up to four cycles of HiDAC (four cycles: 56.8%; three cycles: 22.7%; two cycles: 6.8%; one cycle: 13.7%). Median duration of aplasia (ANC<0.5x10(9)/l) was 12 days. Neutropenic fever occurred in 38.6% of the patients during the first, 52.6% during the second, 45.7% during the third, and in 40% during the fourth cycle. Non-hematologic toxicity was tolerable. The median overall- and disease-free survival were 19.3 and 11.3 months, respectively. The best outcome was seen in patients aged <40 years. These results confirm that HiDAC is a safe and effective consolidation in AML.

Adolescent↗

[Tumor cytogenetics].

Cytogenetic analysis by classical chromosome banding, in combination with different fluorescence in situ hybridization (FISH) based methods, including comparative genomic hybridization and multicolour FISH, provides important information concerning the diagnosis, staging and prognosis of, as well as the planning of therapeutic intervention against, leukemias, malignant lymphomas and solid tumors, and may be helpful in monitoring the course of the disease. Cytogenetic methods identify primary chromosome anomalies that are causally involved in the emergence of the disease and its histopathological subtype, as well as secondary anomalies which have an effect upon the course of the disease and the responsiveness to therapy. Tumor cytogenetics is an independent discipline, and by no means only a diagnostic service for, or subdiscipline of, haematological, oncological and pathological fields. It is important, however, to point out that tumor cytogenetics is a cooperation-orientated and interdisciplinary science that deals with its own original questions in collaboration with clinicians, pathologists and molecular geneticists.

Cell Transformation, Neoplastic↗

An unusual case of myelodysplastic syndrome with prolonged clonal stability, indolent clinical course over a decade, and spontaneous regression of AML in the terminal phase.

An unusual case of secondary acute myeloid leukemia (AML) with indolent clinical course is described. The patient, a 67-yr-old female, had first been diagnosed to suffer from low-risk myelodysplastic syndrome, subtype refractory anemia with ringed sideroblasts, in 1992. In 2001, transformation to secondary AML with an increase in bone marrow blasts (>20%) and thrombocytopenia, was found. The patient did not require cytoreductive drugs. Rather, during the following months, spontaneous improvement of peripheral blood cells with normalization of platelets and decrease in the red cell transfusion frequency, were noted. In October 2002, she even became transfusion independent. However, the bone marrow still showed AML with >20% blasts. These blast cells exhibited a monoclonal pattern in the human androgen receptor (HUMARA) assay. However, no chromosomal defects occurred during a total observation period of 14 yr. We hypothesize that clonal stability may have contributed to the indolent course of the disease in this patient. The exact mechanisms underlying clinical and genetic stability remain unknown, however.

Bone Marrow↗

Silver-Russell syndrome-like features in a patient carrying a novel NF1 mutation.

Mutations in the NF1 gene (17q11.2) cause neurofibromatosis type 1 (NF1), a pleiotropic and progressive autosomal dominant disorder with marked variability of clinical expression. Clinical diagnosis is usually readily achieved in most adult and adolescent patients due to the presence of at least two of the classic signs of NF1. However, the absence of many of the disease-defining features in young children frequently renders definite diagnosis impossible in this age group. Particularly, clinical diagnosis is challenging in young patients whose phenotypical presentation does not lie within the common spectrum of "typical" NF1 features. Sensitive and reliable molecular genetic testing can be of great help in these cases. Here, we report clinical and molecular findings in a 2-year-old boy with features of NF1. Severe growth retardation together with other dysmorphic features was also suggestive for Silver-Russell syndrome (SRS) in this patient. Molecular genetic testing identified a novel NF1 mutation and, thus, enabled a confident NF1 diagnosis despite the unusual phenotypical presentation in this patient.

Abnormalities, Multiple↗

Highly refractory acute myeloid leukemia.

In this study we evaluated 103 patients suffering from acute myeloid leukemia (AML) who did not respond to induction chemotherapy and defined a sub-group of patients with highly refractory disease characterized by a persistence of more than 1 G/L blast cells in the peripheral blood between days 12 and 16 of the first induction cycle. Only seven patients (one female, six males) met these criteria. Their median age was 65 years (range 41-82 years). Four had de novo AML and three secondary AML. Cytogenetic analysis was performed in six patients: complex aberrations were detected in four patients and, unexpectedly, normal karyotypes were found in the other two. Analysis of multidrug-resistance factors revealed high co-expression of P-glycoprotein (P-gp) and lung resistance protein (LRP) in all four patients with highly refractory disease tested a finding in only 6% of patients with refractory disease and 3% of patients who achieved complete remission (CR) of disease. Furthermore, patients with highly refractory AML had substantially higher leukocyte counts than patients with refractory AML or CR, although this was not significant statistically. Overall, patients with highly refractory AML are characterized by a high incidence of complex cytogenetic aberrations and marked expression of drug transporters.

ATP Binding Cassette Transporter, Subfamily B↗

A novel effective and safe consolidation for patients over 60 years with acute myeloid leukemia: intermediate dose cytarabine (2 x 1 g/m2 on days 1, 3, and 5).

PURPOSE: High-dose intermittent cytarabine is an effective postremission treatment for patients with acute myeloid leukemia (AML). This regimen is a safe approach in patients < 60 years but produced severe neurotoxicity in the elderly. EXPERIMENTAL DESIGN: We have established a dose-reduced age-adapted consolidation using intermediate dose (IDAC; 2 x 1 g/m(2) i.v., days 1, 3, and 5) for AML patients >/= 60 years. Forty-seven de novo AML patients in complete remission (CR; median age, 70 years) were scheduled to receive four consolidation cycles of IDAC. RESULTS: In 25 of 47 patients (53%), all four cycles were administered: 9 (19%) received three cycles; 7 (15%) received two cycles; and 6 patients (12%) one cycle. Treatment was well tolerated without neurotoxicity. The median number of days with severe neutropenia (absolute neutrophil count < 500/microl) was 9. Neutropenic fever occurred in 22 of 47 patients (49%) during the first cycle, in 24 of 41 (60%) during the second, in 15 of 34 (44%) during the third, and in 18 of 25 (72%) during the fourth cycle. Only 1 patient died during consolidation (cardiac failure). The median overall survival, disease-free survival, and continuous CR were 10.6, 15.5, and 15.9 months, respectively. The probability of overall survival, disease-free survival, and continuous CR at 5 years were 18, 22, and 30%, respectively. CONCLUSIONS: IDAC is a safe and effective postremission therapy for elderly patients with AML.

Aged↗

Amplification and overexpression of the IGF2 regulator PLAG1 in hepatoblastoma.

There is evidence that 8q amplification is associated with poor prognosis in hepatoblastoma. A previous comparative genomic hybridization analysis identified a critical region in chromosomal bands 8q11.2-q13. Using restriction landmark genomic scanning in combination with a virtual genome scan, we showed that this region is delineated by sequences within contig NT_008183 of chromosomal subbands 8q11.22-q11.23. A real-time PCR-based genomic copy number assay of 20 hepatoblastomas revealed gain or amplification in this critical chromosomal region in eight tumors. The expression of four genes and expressed sequence tags (ESTs) within this newly defined region was assayed by real-time reverse transcriptase polymerase chain reaction (RT-PCR) in four tumors with and six tumors without gain or amplification. The PLAG1 oncogene was found to be highly expressed in all but one tumor compared to normal liver tissue. Furthermore, quantitative RT-PCR revealed that the expression level of the developmentally regulated transcription factor PLAG1 was 3-12 times greater in hepatoblastoma tumors and cell lines compared to age-matched normal liver and comparable to the expression in fetal liver tissue. PLAG1 has been shown be a transcriptional activator of IGF2 in other tumor types. Using luciferase reporter assays, we demonstrated that PLAG1 transactivates transcription from the embryonic IGF2 promoter P3, also in hepatoblastoma cell lines. Thus, our results provide evidence that PLAG1 overexpression may be responsible for the frequently observed up-regulation of IGF2 in hepatoblastoma and therefore may be implicated in the molecular pathogenesis of this childhood neoplasia.

Adult↗

Distinct sequences on 11q13.5 and 11q23-24 are frequently coamplified with MLL in complexly organized 11q amplicons in AML/MDS patients.

Amplification within chromosome arm 11q involving the mixed-lineage leukemia gene (MLL) locus is a rare but recurrent aberration in acute myeloid leukemia and myelodysplastic syndrome (AML/MDS). We and others have observed that 11q amplifications in most AML/MDS cases have not been restricted to the chromosomal region surrounding the MLL gene. Therefore, we implemented a strategy to characterize comprehensively 11q amplicons in a series of 13 AML/MDS patients with MLL amplification. Analysis of 4 of the 13 cases by restriction landmark genomic scanning in combination with virtual genome scan and by matrix-based comparative genomic hybridization demonstrated that the 11q amplicon in these four cases consisted of at least three discontinuous sequences derived from different regions of the long arm of chromosome 11. We defined a maximally 700-kb sequence around the MLL gene that was amplified in all cases. Apart from the core MLL amplicon, we detected two additional 11q regions that were coamplified. Using fluorescence in situ hybridization (FISH) analysis, we demonstrated that sequences in 11q13.5 and 11q23-24 were amplified in 8 of 13 and 10 of 12 AML/MDS cases, respectively. Both regions harbor a number of potentially oncogenic genes. In all 13 cases, either one or both of these regions were coamplified with the MLL amplicon. Thus, we demonstrated that 11q amplicons in AML/MDS patients display a complex organization and have provided evidence for coamplification of two additional regions on the long arm of chromosome 11 that may harbor candidate target genes.

Acute Disease↗

Disruption of exonic splicing enhancer elements is the principal cause of exon skipping associated with seven nonsense or missense alleles of NF1.

Nonsense, missense, and even silent mutation-associated exon skipping is recognized in an increasing number of genes as a novel form of splicing mutation. The analysis of individual mutations of this kind can shed light on basic pre-mRNA splicing mechanisms. Using cDNA-based mutation detection analysis, we have identified one missense and six nonsense mutations that lead to different extents of exon-lacking transcripts in neurofibromatosis type 1 (NF1) patients. We confirmed mutation-associated exon skipping in a heterologous hybrid minigene context. There is evidence that the disruption of functional exonic splicing enhancer (ESE) sequences is frequently the mechanism underlying mutation-associated exon skipping. Therefore, we examined the wild-type and mutant NF1 sequences with two available ESE-prediction programs. Either or both programs predicted the disruption of ESE motifs in six out of the seven analyzed mutations. To ascertain the function of the predicted ESEs, we quantitatively measured their ability to rescue splicing of an enhancer-dependent exon, and found that all seven mutant ESEs had reduced splicing enhancement activity compared to the wild-type sequences. Our results suggest that the wild-type sequences function as ESE elements, whose disruption is responsible for the mutation-associated exon skipping observed in the NF1 patients. Further, this study illustrates the utility of ESE-prediction programs for delineating candidate sequences that may serve as ESE elements. However, until more refined prediction algorithms have been developed, experimental data, preferably from patient tissues, remain indispensable to assess the clinical significance, particularly of missense and silent mutations, and to understand the structure-function relationship in the corresponding protein.

Alleles↗

Normal bone marrow function over 6 years in a patient with dysplastic hematopoiesis and a complex karyotype.

Myelodysplasia associated with a complex karyotype is usually associated with advanced stage myelodysplastic syndrome (MDS) and an enhanced risk to develop secondary leukemia. We report on a 36-year-old female patient who was first presented in 1997 because of 'Pseudo Pelger-Huet' neutrophils. The remaining blood and differential counts were normal. Bone marrow examination revealed dysplasia in the erythroid and granulocytic series, no increase in blasts, and a karyotype with complex aberrations involving chromosomes 7, 13, 20 and 22. Almost all metaphases examined appeared to be affected. During the next few months, the patient was closely monitored and considered as candidate for bone marrow transplantation. However, blood counts remained stable without occurrence of significant cytopenias or an increase in blasts. Re-examinations of the bone marrow in 1998 and 1999 disclosed identical results compared to that obtained in 1997. After a total follow up of 6 years, the patient is still in good health with normal blood counts and persisting 'Pseudo Pelger-Huet' neutrophils. This exceptional case supports the notion that complex chromosomes are not invariably associated with rapid disease evolution in MDS.

Adult↗

Molecular disease eradication is a prerequisite for long-term remission in patients with t(8;21) positive acute myeloid leukemia: a single center study.

Association of long-term clinical remission and molecular disease-eradication is well established in acute myeloid leukemia (AML) patients with t(15;17) and inv(16). In patients with t(8;21) positive AML no consensus exists over the disappearance of the AML1/ETO fusion transcript during the course of disease and most studies reported reverse transcriptase polymerase chain reaction (RT-PCR) positivity as a common finding after consolidation chemotherapy, autologous and allogeneic stem cell transplantation (alloSCT). In our single center study, we performed RT-PCR monitoring in 14 patients with t(8;21) in CR1 (n = 13) and/or CR2 (n = 4). The median number of bone marrow (BM) and/or peripheral blood (PB) samples per patient was 18 (range, 2-43). In 5 out of 6 cases relapse occurred after persistence of minimal residual disease (MRD) in CR for 4-14 months. The sixth patient relapsed despite molecular remission (MR) in BM and PB for 3 months, molecular relapse preceded hematological relapse for 7 months. Eleven patients with a median follow-up of 7.8 (range, 1.5-15.4) years are in persistent CR and MR after consolidation chemotherapy (n = 7). mainly with repetitive cycles of high-dose Ara-C, autologous (n = 1) or myeloablative allogeneic (n = 3) stem cell transplantation. Molecular remission was attained immediately after alloSCT, but after 6-26 months in CR in patients with consolidation chemotherapy. In 7 patients, MRD was only studied in long-term remission. In conclusion, long-term CR was associated with persistent molecular disease-eradication. In our patients, molecular remission was a prerequisite but not a guarantee for long-term disease-free survival. Hematological relapse never occurred without prior molecular relapse. Due to the slow kinetics of AML1/ETO after consolidation chemotherapy the value of qualitative RT-PCR to predict early relapse is limited. In this situation quantitative RT-PCR might help to define individual relapse risk and to improve as well as facilitate clinical decision-making.

Acute Disease↗

6-Thioguanine, cytarabine, and daunorubicin (TAD) and high-dose cytarabine and mitoxantrone (HAM) for induction, TAD for consolidation, and either prolonged maintenance by reduced monthly TAD or TAD-HAM-TAD and one course of intensive consolidation by sequential HAM in adult patients at all ages with de novo acute myeloid leukemia (AML): a randomized trial of the German AML Cooperative Group.

PURPOSE: To examine the efficacy of prolonged maintenance chemotherapy versus intensified consolidation therapy for patients with acute myeloid leukemia (AML). MATERIALS AND METHODS: Eight hundred thirty-two patients (median age, 54 years; range, 16 to 82 years) with de novo AML were randomly assigned to receive 6-thioguanine, cytarabine, and daunorubicin (TAD) plus cytarabine and mitoxantrone (HAM; cytarabine 3 g/m2 [age < 60 years] or 1 g/m2 [age > or = 60 years] x 6) induction, TAD consolidation, and monthly modified TAD maintenance for 3 years, or TAD-HAM-TAD and one course of intensive consolidation with sequential HAM (S-HAM) with cytarabine 1 g/m2 (age < 60 years) or 0.5 g/m2 (age > or = 60 years) x 8 instead of maintenance. RESULTS: A total of 69.2% patients went into complete remission (CR). Median relapse-free survival (RFS) was 19 months for patients on the maintenance arm, with 31.4% of patients relapse-free at 5 years, versus 12 months for patients on the S-HAM arm, with 24.7% of patients relapse-free at 5 years (P =.0118). RFS from maintenance was superior in patients with poor risk by unfavorable karyotype, age > or = 60 years, lactate dehydrogenase level greater than 700 U/L, or day 16 bone marrow blasts greater than 40% (P =.0061) but not in patients with good risk by complete absence of any poor risk factors. Although a survival benefit in the CR patients is not significant (P =.085), more surviving patients in the maintenance than in the S-HAM arm remain in first CR (P =.026). CONCLUSION: We conclude that TAD-HAM-TAD-maintenance first-line treatment has a higher curative potential than TAD-HAM-TAD-S-HAM and improves prognosis even among patients with poor prognosis.

Adolescent↗