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Biomedical subjects

M F Fey

Publications and source records attributed to M F Fey.

At least 73 records · Page 4Linked to original sources

Post-remission therapy of adult acute myeloid leukaemia: one cycle of high-dose versus standard-dose cytarabine. Leukaemia Project Group of the Swiss Group for Clinical Cancer Research (SAKK).

BACKGROUND: Intensification of post-remission therapy improves the cure rate of acute myeloid leukemia (AML) but is often accompanied by unacceptable toxicity. From 1985 to 1992 the Swiss Group for Clinical Cancer Research (SAKK) performed a randomized phase III trial to evaluate the effectiveness of one single postremission course of high-dose cytarabine (HDAC) in terms of leukaemia-free and overall survival in adults with de novo AML. PATIENTS AND METHODS: Adult (15-65 years) AML patients in remission after two induction courses were randomly assigned to one consolidation course either with standard (SDAC: 100 mg/sqm 24 hours infusion over seven days) or with high-dose cytarabine (HDAC: 3000 mg/sqm every 12 hours as one-hour-infusion for six days). In addition, both arms included daunorubicin (45 mg/sqm daily on days 1 to 3). Thereafter, patients were observed without maintenance until relapse. RESULTS: After two induction courses 208/276 eligible patients achieved remission (CR: 169, 61%, PR: 39, 14%), 41 were resistant (15%) and 20 died early (7%). Seventy-one patients in remission were not randomized. One hundred thirty-seven were randomized in CR/PR (67 SDAC, 70 HDAC). 4/70 patients randomized to HDAC did not receive it. Treatment-related mortality in HDAC was 1.4% (1/66). WHO grade 3-4 toxicities occurred in 14/67 SDAC and in 38/66 HDAC patients (P < 0.0001). The median event free survival was 10.8 (SDAC) vs. 12.2 months (HDAC; P = 0.18). The median overall survival was 24.6 (SDAC) vs. 32.6 months (HDAC; P = 0.07). Although statistically uncertain, HDAC reduced the hazard of progression (hazard ratio: 0.69, P = 0.08) and of death (hazard ratio: 0.70, P = 0.13). For 112 patients stratified as CR the estimated four-year disease-free survival was 25% (+/-6%) with SDAC and 37% (+/-6%) with HDAC (P = 0.09). The overall survival rates at four years were 38% (+7%) and 48% (+7%), respectively (P = 0.10). In multivariate analysis HDAC significantly reduced the hazard of relapse by 39% compared to SDAC (hazard ratio = 0.61, 95% CI: 0.37-0.99; P = 0.049). CONCLUSIONS: We conclude that early consolidation of adult AML in CR with a single course of HDAC is superior in terms of outcome to one cycle of SDAC. The results of our intensive, single course HDAC group compare favourably with less intensive, repetitive HDAC cycles, suggesting that Ara-C dose intensity may be more important than total dosage. In addition, our treatment strategy is much less toxic and less expensive.

Acute Disease↗

Up-regulation of p21WAF1 expression in myeloid cells is activated by the protein kinase C pathway.

Phorbol-12-myristate-13-acetate (PMA) induces p21WAF-1 expression in human myeloid leukaemic HL-60 cells. We show that this induction is specifically mediated by protein kinase C (PKC). In addition, the PKC inhibitor Ro 31-8220 with predominant PKC-alpha isoform specificity almost completely inhibited PMA-induced up-regulation of p21WAF1 in HL-60 cells as well as in the myelomonocytic leukaemic U937 cells. Pretreatment of HL-60 cells with Ro 31-8220 also inhibited PMA-induced activation of c-raf-1, a known PKC alpha target. In the phorbol ester-tolerant HL-60 subline (PET) with PKC-beta isoform deficiency PMA or bryostatin-1 induced p21WAF1 expression, but to a lesser extent than in wild-type HL-60 cells. In PET cells, Ro 31-8220 also inhibited PMA and bryostatin-1-induced up-regulation of p21WAF1 expression. Our findings indicate that at least in HL-60 cells up-regulation of p21WAF-1 is specifically activated by PKC. We suggest that PKC isoforms other than beta, presumably the PKC-alpha isoform, are involved in this process.

Cyclin-Dependent Kinase Inhibitor p21↗

Expression and regulation of G1 cell-cycle inhibitors (p16INK4A, p15INK4B, p18INK4C, p19INK4D) in human acute myeloid leukemia and normal myeloid cells.

In hematological malignancies, structural alterations of genes for G1-specific cyclin-dependent kinases inhibitors (CKIs) have been extensively investigated. G1-CKIs might play an important role not only as tumor suppressor genes but also in cellular differentiation. We examined constitutive and differentiation-induced expression and regulation of the four members of the G1-CKI family p16INK4A, p15INK4B, p18INK4C and p19INK4D in acute myeloid leukemia as well as their expression in normal granulocytes and monocytes. p18INK4C and p19INK4D mRNA were expressed constitutively at high levels in seven myeloid cell lines and 16 AML patient samples, whereas expression of p15INK4B mRNA was very low and only detectable by nested RT-PCR analysis. During phorbol ester-induced monocytic differentiation of leukemic HL-60 cells expression of particular G1-CKIs was disparately regulated. This process was associated with growth arrest of the majority of the cells (> or = 80%) in G1/G0, and in parallel p15INK4B were upregulated whereas p18INK4C and p19INK4D expression was downregulated. In contrast, granulocytic differentiation induced by DMSO was accompanied by an increase of p18INK4C and p19INK4D expression only. PMA treatment of blast cells from two AML patients confirmed these cell line results. Disparate regulation of p15INK4B and p18INK4C mRNA was dependent on intermediary protein synthesis and occurred at the post-transcriptional level as shown by nuclear run-on analysis and mRNA half-life studies. In normal granulocytes and monocytes low constitutive p15INK4B and p18INK4C mRNA expression was detectable by RT-PCR only, but p19INK4D transcripts were noted by Northern blotting in both cell types. Disparate expression of G1-specific cell cycle inhibitors indicates complex and divergent roles of particular CKIs during normal and leukemic myeloid hematopoiesis.

Acute Disease↗

Cladribine (2-CDA) given as subcutaneous bolus injections is active in pretreated Waldenström's macroglobulinaemia. Swiss Group for Clinical Cancer Research (SAKK).

Clinical trials with intravenous cladribine infusions in pretreated patients with Waldenström's macroglobulinaemia have shown a response rate of 40%. Our pharmacokinetic studies revealed that the bioavailability of subcutaneous cladribine is complete but that the concentration-time profile is very different from intravenous administration. We designed this phase II multi-institutional trial to study the activity and toxicity of cladribine given as s.c. bolus injections in patients with symptomatic Waldenström's macroglobulinaemia. Between May 1993 and October 1995, 25 patients were accrued: male/female 18/7, median age 65 years (range 44-85). All except one patient had been pretreated with more than one regimen (median 2, range 0-10). 18 patients had progressed under previous therapy and six were in relapse. All patients received cladribine for a total dose of 0.5 mg/kg per cycle as s.c. bolus injections divided over 5 d at > or = 4 week intervals, for a maximum of six cycles. All 25 patients were evaluable for toxicity and response. A total of 67 cycles were administered (median 3 cycles, range 1-6). Overall response rate including disease stabilization which had been progressive under previous therapy was 68%. 10 patients (40%, 95% CI 21-61%) achieved a partial remission. Seven responders had been progressive under previous therapy. Maximum responses were reached no later than the third cycle. Median time to treatment failure and remission duration were 4.4 (range 0.5-33) and 8 months (5-29), respectively. Four patients (16%) suffered from infections W.H.O. grade > or = 2 (pneumonia grade 2, Staphylococcus septicaemia grade 3, viral encephalitis and pneumonia, both grade 4 with complete resolution). No other severe adverse events were observed. Cladribine given as s.c. 5 d bolus injections was found to be active in pretreated Waldenström's macroglobulinaemia and resulted in durable remissions.

Adult↗

Comparative detection and quantitation of human CDK inhibitor mRNA expression of p15INK4B, p16INK4A, p16beta, p18INK4C, p19INK4D, p21WAF1, p27KIP1 and p57KIP2 by RT-PCR using a polycompetitive internal standard.

For comparative and quantitative analysis of human cyclin-dependent kinase inhibitor gene expression (CKI; p15INK4B, p16INK4A, p16beta, p18INK4C, p19INK4D, p21WAF1, p27KIP1 and p57KIP2) we set up an RT-PCR assay with a construct termed pCKIquant producing polycompetitive RNA as an internal standard. We demonstrated the reproducibility, accuracy and high sensitivity of the assay in the in vitro model of myeloid leukaemic HL-60 cells. We also showed that the pCKIquant CKI assay is an excellent tool for the assessment of CKI mRNA expression in clinical samples, e.g. single cryostat sections of lymphoma biopsies.

Blotting, Northern↗

Value of different modalities of granulocyte-macrophage colony-stimulating factor applied during or after induction therapy of acute myeloid leukemia.

PURPOSE: The hematopoietic growth factors (HGFs) introduced into induction chemotherapy (CT) of acute myeloid leukemia (AML) might be of benefit to treatment outcome by at least two mechanisms. HGFs given on days simultaneously with CT might sensitize the leukemic cells and enhance their susceptibility to CT. HGFs applied after CT might hasten hematopoietic recovery and reduce morbidity or mortality. MATERIALS AND METHODS: We set out to evaluate the use of granulocyte-macrophage colony-stimulating factor (GM-CSF; 5 microg/kg) in a prospective randomized study of factorial design (yes or no GM-CSF during CT, and yes or no GM-CSF after CT) in patients aged 15 to 60 years (mean, 42) with newly diagnosed AML. GM-CSF was applied as follows: during CT only (+/-, n = 64 assessable patients), GM-CSF during and following CT (+/+, n = 66), no GM-CSF (-/-, n = 63), or GM-CSF after CT only (-/+, n = 60). RESULTS: The complete response (CR) rate was 77%. At a median follow-up time of 42 months, probabilities of overall survival (OS) and disease-free survival (DFS) at 3 years were 38% and 37% in all patients. CR rates, OS, and DFS did not differ between the treatment groups (intention-to-treat analysis). Neutrophil recovery (1.0 x 10(9)/L) and monocyte recovery were significantly faster in patients who received GM-CSF after CT (26 days v 30 days; neutrophils, P < .001; monocytes, P < .005). Platelet regeneration, transfusion requirements, use of antibiotics, frequency of infections, and duration of hospitalization did not vary as a function of any of the therapeutic GM-CSF modalities. More frequent side effects (eg, fever and fluid retention) were noted in GM-CSF-treated patients predominantly related to the use of GM-CSF during CT. CONCLUSION: Priming of AML cells to the cytotoxic effects of CT by the use of GM-CSF during CT or accelerating myeloid recovery by the use of GM-CSF after CT does not significantly improve treatment outcome of young and middle-aged adults with newly diagnosed AML.

Acute Disease↗

Microsatellite markers in leukaemia and lymphoma: comments on a timely topic.

Microsatellites are unique highly polymorphic and informative genetic markers dispersed in the human genome. Their detection by PCR is rapid and a wide variety of DNA sources including archival material are available for diagnostic purposes. Microsatellite typing of haematological neoplasms may be applied to the search for loss of heterozygosity at loci possibly harbouring tumour suppressor genes, for example in acute lymphoblastic leukaemia. The technique may detect submicroscopical chromosomal deletions which are not visible in the leukaemic karyotype. RER+ tumours exhibiting microsatellite instability appear to be rare among haematological cancers with the possible exception of lymphoid tumours in immunosuppressed patients and lymphomas derived from mucosa-associated lymphoid tissue. An X-chromosomal microsatellite near the human androgen receptor gene (HUMARA) may be used for clonal X-inactivation analysis. Microsatellites therefore represent a collection of powerful genetic markers suitable to tackle questions relevant to basic research and clinical problems in leukaemia and lymphoma.

Biomarkers, Tumor↗

Five putative drug resistance parameters (MDR1/P-glycoprotein, MDR-associated protein, glutathione-S-transferase, bcl-2 and topoisomerase IIalpha) in 57 newly diagnosed acute myeloid leukaemias. Swiss Group for Clinical Cancer Research (SAKK).

UNLABELLED: Using a modified quantitative reverse transcriptase (RT) PCR assay in 57 patients with acute myeloid leukaemia (AML) from a Swiss Phase III multicentre study (SAKK 30/85), we measured the m-RNA expression of the genes from the multidrug resistance gene 1 (MDR1), the multidrug resistance associated protein (MRP), glutathione-S-transferase (GST) pi, bcl-2 and topoisomerase (topo) IIalpha. P-glycoprotein (p-gp) was measured by Western blot, and GST activity by functional assays. To analyse progression-free (PFS) and overall survival (OS), parameters were prospectively divided into "low" and "high" groups, according to their median values (exceptions: MDR1 and p-gp). Median follow-up was 60 months. RESULTS: MDR1- and MRP mRNA levels correlated with each other (r=0.54, Spearman), FABM4/M5 and extramedullary disease. "Low" bcl-2-mRNA predicted longer PFS: 22 months vs. 7 months (median,p=0.02, log rank), and longer OS: 64 months vs. 14 months (p=0.06). "Low" topo IIalpha predicted poorer outcome: median PFS 9 vs. 19 months (p=0.03); median survival 12 months vs. "not reached" (p=0.03). An improved outcome tendency, albeit nonsignificant, was seen in p-gp-negative patients. In a Cox model adjusted for age, performance status, presence of Auer rods, FAB type and clinical response, bcl-2 and topo IIalpha mRNA levels retained their predictive values.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Frequent clonal loss of heterozygosity but scarcity of microsatellite instability at chromosomal breakpoint cluster regions in adult leukemias.

Microsatellites are important highly polymorphic genetic markers dispersed in the human genome. Using a panel of 22 (CA)n repeat microsatellite markers mapped to recurrent breakpoint cluster regions specifically involved in leukemia, we investigated 114 adult leukemias (25 acute lymphocytic leukemia [ALL], 32 acute myeloid leukemia [AML], 36 chronic lymphocytic leukemia [CLL], and 21 chronic myeloid leukemia [CML] in chronic phase) for somatic mutations at these loci. In each patient, DNA from fresh leukemia samples was analyzed alongside normal constitutive DNA from buccal epithelium. We detected loss of heterozygosity (LOH) in 81 of 114 patients (ALL 16/25, AML 25/32, CLL 30/36, CML 10/21). Deletions were most often seen in ALL at 11q23 and 19p13; in AML at 8q22 and 11q23; in CLL at 13q14.3, 11q13, and 11q23; and in CML at 3q26. Only six deletions were reported in 74 karyotypes analyzed, whereas in these same cases, 91 LOH events were detected by microsatellites. Of 26 leukemias with a normal karyotype, 16 nevertheless showed at least one LOH by microsatellite analysis. Replication errors were found in 10 of 114 patients (8.8%). Thus, microsatellite instability is rare in leukemia in contrast to many solid tumors. Our findings suggest that in adult leukemia, LOH may be an important genetic event in addition to typical chromosomal translocations. LOH may point to the existence of tumor suppressor genes involved in leukemogenesis to a degree that has hitherto been underestimated.

Adult↗

[Chemotherapy of gastrointestinal carcinomas and non-small-cell pulmonary carcinoma: a controversy].

Patients with metastatic gastrointestinal cancers and metastatic non-small cell lung cancer present an important challenge in medical oncology and palliative care. Symptoms caused by tumor progression should undoubtedly be treated. The management of asymptomatic patients, however, is still controversial. A clinical decision on whether an asymptomatic patient should be treated with chemotherapy at an early or at a late stage in the evolution of the disease must often be reached on an individual basis. Ongoing clinical research to improve treatment results is still urgently needed. Research programs should aim at (a) evaluating new drugs and (b) testing new multi-modal treatment strategies.

Antineoplastic Agents↗

Complete structure of the murine p36 (annexin II) gene. Identification of mRNAs for both the murine and the human gene with alternatively spliced 5' noncoding exons.

p36 (also termed annexin II) is a 39 kDa Ca2+/phospholipid-binding, membrane-associated protein that is a protein-tyrosine kinase substrate. We report here studies of the noncoding exons of p36, which combined with our earlier studies of the coding exons, allow us to conclude that the murine p36 gene is 34 kb in length with 14 exons. Comparison of the genes coding for mouse and human p36 (annexin II) and mouse, rat and human p35 (annexin I) and pigeon cp35 (an annexin I-related protein) shows strong genomic structural conservation supporting the hypothesis that these genes had a common ancestor. Both human and murine p36 mRNAs were found to be alternatively spliced in their 5' noncoding region. In both cases exon 2 is a cassette exon, which is present in a small fraction of p36 mRNAs. In type 1 mouse p36 mRNA the first noncoding 44 base exon 1 is joined to exon 3, the first of the 12 coding exons. In type 2 mRNA a 70 base noncoding exon (exon 2) is inserted between exon 1 and exon 3. Type 1 mRNA was present in all cell types studied as revealed by Northern analysis and primer extension, whereas type 2 mRNA could only be detected by RACE or PCR, indicating that it is of very low abundance. The major transcription start site of the mouse p36 gene was mapped by primer extension to be 61 bp upstream of the AUG initiation codon, which corresponds to type 1 mRNA, The murine p36 gene enhancer/promoter region contains a putative TATA box and several other potential regulatory sequences. The two alternatively-spliced human p36 mRNAs differ by the presence or absence of a noncoding 81 base exon (exon 2) inserted after exon 1, with exon 2-containing mRNAs representing approximately 10% of total p36 mRNA. The 300 bp spanning the promoter and exons 1-3 of the human and murine p36 genes show strong sequence homology immediately before and after the major transcription start site except in the region corresponding to exon 2, where homology is more limited.

3T3 Cells↗

Detection of microsatellite markers in leukaemia using DNA from archival bone marrow smears.

We describe a simple PCR method to detect highly polymorphic repetitive DNA markers (microsatellites) in leukaemia using DNA from fresh and archival bone marrow smears. Neither the period of storage nor staining of the slides affected microsatellite PCR. Comparison of slide DNA with constitutive DNA from buccal epithelium revealed loss of heterozygosity (LOH) with at least one marker in four of 11 leukaemias. Marrow smears offer an attractive archival source of DNA for the detection of microsatellite markers. Applications include detection of LOH or tracing the origin of cell populations, e.g. in bone marrow transplant recipients.

Bone Marrow↗

[Questions and answers on adjuvant systemic therapy in breast carcinoma].

We review controversial issues taken from the vast literature on adjuvant treatment of early breast cancer. We conclude that the role of tamoxifen in premenopausal women is still controversial and that ovariectomy in this patient population cannot be routinely recommended outside clinical trials. The current literature certainly supports the use of anthracyclines in adjuvant chemotherapy regimens, but we feel that high dose chemotherapy with peripheral blood stem cell support should still be restricted to randomized clinical trials. Finally, we would like to emphasize that the current standard of adjuvant treatment of early breast cancer are prospectively randomized clinical trials which provide a stronghold of good patient care and will allow to tackle and answer important controversial issues regarding this frequent cancer.

Adult↗