Search PubMed⌕ Search

Biomedical subjects

Ryuzo Ohno

Publications and source records attributed to Ryuzo Ohno.

At least 37 records · Page 2Linked to original sources

A pilot study of imatinib mesylate (STI571) on gastrointestinal stromal tumors in Japanese patients.

BACKGROUND: Gastrointestinal stromal tumor (GIST) is the most common type of nonepithelial tumor in the gastrointestinal tract. The gastrointestinal stromal tumor is defined immunohistologically as a c-Kit-positive tumor. For those GISTs that are malignant, the only effective treatment modality has been surgical. Early clinical reports have shown that imatinib mesylate (STI571) produces substantial anticancer activity in patients with metastatic or unresectable GIST. METHODS: Nine Japanese patients who were found clinically and immunohistochemically to have inoperable GISTs were entered into this study. These patients were given 400 mg STI571 orally once daily. We then evaluated the tumor response and the safety of the drug. RESULTS: Five of the nine patients achieved partial responses, two had stable disease, and two had progressive disease. The main side effects were skin rash, edema, periorbital edema, diarrhea, nausea, and vomiting. Mild anemia, leukocytopenia, and neutropenia were also noted. No patients required dose reduction or cessation because of adverse events. CONCLUSIONS: This study demonstrates that STI571 might be an active agent against malignant GIST in Japanese patients with manageable toxicities. Gastrointestinal stromal tumor (GIST) is the most common type of nonepithelial tumor in the gastrointestinal tract. The gastrointestinal stromal tumor is defined immunohistologically as a c-Kit-positive tumor. For those GISTs that are malignant, the only effective treatment modality has been surgical. Early clinical reports have shown that imatinib mesylate (STI571) produces substantial anticancer activity in patients with metastatic or unresectable GIST.

Adult↗

Phenylarsine oxide (PAO) more intensely induces apoptosis in acute promyelocytic leukemia and As2O3-resistant APL cell lines than As2O3 by activating the mitochondrial pathway.

We studied the cytotoxic effect of an organic arsenical compound, phenylarsine oxide (PAO) on an acute promyelocytic leukemia (APL) cell line (NB4) and an As2O3-resistant NB4 subline (NB4/As). Cell growth was inhibited by 50% (IC50) upon 2-day treatment with As2O3 or PAO at 0.54 and 0.06 microM, respectively in NB4 cells (P = 0.025), and 2.80 and 0.08 microM, respectively in NB4/As (P = 0.030). 0.1 microM PAO increased the proportion of hypodiploid cells (50.3%) by a greater degree than the same dose of As2O3 (3.8%) in NB4 cells. In NB4 cells, 0.1 microM PAO reduced the mitochondrial transmembrane potential (20.5% in a PI(negative)-Rhodamine123(low) fraction) by a greater degree than 1 microM As2O3 (7.1%). Western blotting showed that 0.1 microM PAO downregulated the expression of both Bcl-2 and Bcl-X(L) proteins, whereas I microM As2O3 downregulated only Bcl-2 expression. These results suggest that the cytotoxic effect of PAO on an APL cell line and As2O3-resistant subline is significantly higher than that of As2O3. PAO-induced apoptosis seems to be related to the activation of the mitochondrial pathway and downregulation of both Bcl-2 and Bcl-X(L). PAO is a considerable agent for relapsed/refractory APL and for purging APL cells following stem cell transplantation.

Apoptosis↗

Pharmacokinetics of pegylated recombinant human megakaryocyte growth and development factor in healthy volunteers and patients with hematological disorders.

OBJECTIVES: The purpose of this study is to examine the pharmacokinetics of pegylated recombinant human megakaryocyte growth and development factor (PEG-rHuMGDF) in healthy volunteers with normal hematopoiesis and patients with idiopathic thrombocytopenic purpura (ITP), acute myeloid leukemia (AML), myelodysplastic syndromes (MDS), and aplastic anemia (AA). METHODS: PEG-rHuMGDF was intravenously administered to healthy volunteers and patients with ITP, AML, MDS, and AA. The serum concentration of PEG-rHuMGDF was measured and the pharmacokinetics was investigated using non-linear mixed-effects modeling technique. RESULTS: The systemic clearance (CL) and volume of distribution at steady-state (Vss) consistently decreased in the healthy subjects, when the dose increased. In AML patients, CL and Vss decreased when the dose increased, but the change of CL was not statistically significant. In contrast, no significant dose dependency of these parameter estimates was observed in MDS patients. In AA patients there was no significant change in Vss but the CL of the higher dose groups was slightly smaller than that of the lower dose groups. Relatively smaller CL and Vss in ITP patients than those of healthy volunteers at the same dose were observed. CONCLUSIONS: This saturable pathway of CL may involve the receptor-mediated endocytosis and degradation by megakaryocyte lineage cells and platelets. The saturable distribution space can be also explained by the receptors on hematopoietic cells. The non-saturable distribution space corresponds to the value of plasma and interstitial fluid volume.

Case-Control Studies↗

Multicenter prospective study of interferon alpha versus allogeneic stem cell transplantation for patients with new diagnoses of chronic myelogenous leukemia.

We compared interferon alpha (IFN-alpha) therapy with stem cell transplantation (SCT) for patients with chronic-phase chronic myelogenous leukemia in a multicenter prospective study to investigate the optimal indication and timing of SCT, especially from HLA-matched unrelated donors. Of 257 eligible patients, 145 patients who were younger than 50 years were assigned to the IFN-alpha cohort (n = 87) or the SCT cohort (n = 58), according to family donor availability. In the IFN-alpha cohort, 52 patients received IFN-alpha and chemotherapy (the IFN1 group), and 35 patients received an SCT from an unrelated donor (the U-SCT group). In the SCT cohort, 47 patients received an SCT from a related donor (the R-SCT group). In the IFN1 group, 88% of the patients achieved a complete hematologic response, and 33% achieved a complete cytogenetic response. At a median follow-up period of 53 months, the predicted 6-year survival rate was 72% in the IFN1 group, 81% in the R-SCT group, and 81% in the U-SCT group. When overall survival was evaluated for the IFN-alpha and R-SCT cohorts by intention to treat according to family donor availability, the 6-year survival rates were 76% and 84%, respectively. When the outcomes of the U-SCT and IFN1 groups were compared, the survival rate of U-SCT group patients was significantly better than for IFN1 group patients without a major cytogenetic response and seemed better for IFN1 group patients younger than 35 years. Therefore, U-SCT may be recommendable to patients who fail to achieve a major cytogenetic response in IFN-alpha therapy and to younger patients.

Adult↗

Efficacy and safety of imatinib mesylate for patients in the first chronic phase of chronic myeloid leukemia: results of a Japanese phase II clinical study.

Imatinib mesylate is a relatively new drug that targets the BCR-ABL chimeric protein, the molecular basis of chronic myeloid leukemia (CML). A phase II clinical trial in 39 Japanese patients in the first chronic phase of CML was conducted with imatinib mesylate at a dose of 400 mg/day. Hematologic complete response was obtained in 92.3% of the patients, complete cytogenetic response (CR) was obtained in 43.6%, and major partial CR was obtained in 20.5% of the patients. Although 29 of 39 patients required an adjustment of dosing because of grade 3 or 4 adverse events, most of the events were reversible, and 25 of the 29 patients were able to resume therapy. Between day 15 and day 35, grade 3 or 4 neutropenia and/or leukocytopenia occurred in 13 patients, and grade 3 thrombocytopenia occurred in 5 patients. Overall, nonhematologic grade 3 adverse events occurred in 28.2% of the patients. These data support the use of imatinib mesylate as the treatment of choice for chronic-phase CML patients.

Adult↗

Mutation analysis of SHIP gene in acute leukemia.

The SH2 domain containing inositol 5'-phosphatase (SHIP) was initially described as a 145 kD protein phosphorylated on tyrosines upon growth factor and cytokine stimulation. SHIP is predominately expressed in hematopoietic cells, and is a crucial negative regulator in the development of hematopoietic cells. To evaluate the role of the SHIP gene in human leukemogenesis, expression and mutation of SHIP gene in bone marrow and/or peripheral blood from 32 patients with acute myeloid leukemia (AML), 9 patients with acute lymphoblastic leukemia (ALL), as well as human hematopoietic cell lines were analyzed by reverse transcription-polymerase chain reaction (RT-PCR), single strand conformational polymorphism (SSCP) and sequencing. The RT-PCR showed that all samples expressed SHIP gene. Mutations of SHIP gene were detected in 7 out of 32 AML patients (22%) and one out of 9 ALL patients (12%). Interestingly, two missense mutations that had been observed in one AML patient at diagnosis disappeared after complete remission (CR). In addition, Akt phosphorylation was prolonged and increased following IL-3 stimulation in this patient sample. In conclusion, data of this study demonstrate the mutation of the SHIP gene in acute leukemia for the first time and suggest a possible role of the mutation of this gene in the development of acute leukemia. SHIP serves as a tumor suppressor by negatively regulating the PI3K/Akt signaling pathway in hematopoietic cells.

Cell Line↗

Revised recommendations of the International Working Group for Diagnosis, Standardization of Response Criteria, Treatment Outcomes, and Reporting Standards for Therapeutic Trials in Acute Myeloid Leukemia.

An International Working Group met to revise the diagnostic and response criteria for acute myelogenous leukemia originally published in 1990, as well as to provide definitions of outcomes and reporting standards to improve interpretability of data and comparisons among trials. Since the original publication, there have been major advances in our understanding of the biology and molecular genetics of acute leukemia that are clinically relevant and warrant incorporation into response definitions. Differences from the 1990 recommendations included a category of leukemia-free state, new criteria for complete remission, including cytogenetic and molecular remissions and remission duration. Storage of viable blasts for correlative studies is important for future progress in the therapy of these disorders.

Clinical Trials as Topic↗

Biologic and clinical significance of the FLT3 transcript level in acute myeloid leukemia.

Although FLT3 mutations are essentially found in myeloid-lineage leukemia cells, a high level of FLT3 expression was recently observed in MLL gene-rearranged acute lymphoblastic leukemia without FLT3 mutations. Here, we analyzed the biologic and clinical significance of the FLT3 transcript level in comparison with several gene alterations in 181 de novo acute myeloid leukemia (AML) cases. The mean expression level in AML was higher than that in normal mononuclear cells, whereas the range varied widely. A high level of FLT3 is related to internal tandem duplication of the FLT3 gene (FLT3/ITD), the mutations within the activation loop of FLT3 (FLT3/D835Mt), and tandem duplication of the MLL gene (MLL-TD) but not to p53 or N-RAS gene mutations. Furthermore, a high expression level in AML cases with FLT3 mutations was not related to MLL-TD. Overexpressed FLT3 revealed autophosphorylation and had the same sensitivity to the FLT3 inhibitor as FLT3/ITD. Overexpression of FLT3 (more than 200,000 copies/microgRNA) was an unfavorable prognostic factor for overall survival in 91 AML cases without FLT3/ITD. These results indicated that FLT3 overexpression may distinguish a novel disease entity in AML without FLT3 mutations and serve as a therapeutic target for FLT3 inhibitors.

Adult↗

Prognostic significance of CD7+CD56+ phenotype and chromosome 5 abnormalities for acute myeloid leukemia M0.

Myeloid/natural killer (NK) cell precursor acute leukemia is an entity of acute leukemia characterized by poor prognosis and a CD7+CD56+ myeloid antigen+ phenotype without light-microscopic myeloperoxidase reactivity. This disease shares several clinical characteristics with acute myeloid leukemia (AML) M0. To clarify the relationship between these 2 leukemias, we analyzed 105 cases of AML M0. Among them, 17 were CD7+ and CD56+, 77 were negative for either antigen, and 11 could not be determined. CD7+CD56+ AML M0 showed onset at significantly lower patient age (median 46 versus 63 years, P = .004). The disease localization and the hematological manifestations were significantly different: CD7+CD56+ AML showed more frequent extramedullary involvement, fewer circulating leukemic blasts, less anemia, and less thrombocytopenia than did AML M0. The cytogenetic aberrations were also unique, because no 5q abnormalities were found in CD7+CD56+ M0. The prognosis of CD7+CD56+ M0 was poor in patients younger than 46 years (P = .03). Multivariate analysis showed that the CD7+CD56+ phenotype was a significant prognostic factor for AML M0, as well as age, circulating blast percentage, and chromosome 5 abnormalities These findings suggest that AML M0 consists of heterogeneous subgroups to be managed separately, and CD7+CD56+ M0 constitutes a distinct subtype of AML M0.

Acute Disease↗

Effect of a tyrosine kinase inhibitor STI571 in a patient with hepatic metastases from a duodenal gastrointestinal stromal tumor.

Gastrointestinal stromal tumors (GISTs) are the most common mesenchymal tumors. The molecular etiology is the result of mutations in the c-Kit gene. The mutant c-Kit proteins, which are activated without a stem cell factor, contribute to the tumor development. STI571 selectively inhibits c-Kit, BCR-ABL, and PDGFR tyrosine kinases. Based on this potential to inhibit critical c-Kit function in GISTs, case studies have reported effective outcomes following treatment with STI571. This case report describes a highly effective use of STI571 in a 54-year-old woman with multiple liver metastases from a GIST originating in the duodenum.

Antineoplastic Agents↗

Cytogenetic heterogeneity of acute myeloid leukaemia (AML) with trilineage dysplasia: Japan Adult Leukaemia Study Group-AML 92 study.

Acute myeloid leukaemia (AML) with trilineage dysplasia (AML/TLD) is de novo AML recognized by the morphological dysplasia of three mature cell lines in the presence of leukaemic blasts. We studied the karyotypes of AML/TLD of patients with de novo AML, except for those with the French-American-British classification M3, who were enrolled onto the Japan Adult Leukaemia Study Group (JALSG)-AML 92 trial. Morphological and cytogenetic analyses were performed in 559 patients and TLD phenotype was found in 155 patients (27.7%). The 511 patients with informative morphological and cytogenetic data were classified into three groups according to karyotype: favourable, intermediate and adverse risk groups (92, 375 and 44 patients respectively). Normal karyotype was the most frequent as a total, and among both the non-TLD and TLD patients (164 patients 45.3% and 78 patients 52.7% respectively). All but one patient with AML/TLD was classified into the intermediate or adverse cytogenetic risk group. TLD phenotype was associated with lower remission rate and shorter overall survival but it did not influence disease-free survival. Although we did not find any specific cytogenetic abnormalities for AML/TLD, the rarity of favourable karyotypes among TLD patients indicates the biological difference between AML/TLD and AML/non-TLD.

Acute Disease↗

Prediction of response to imatinib by cDNA microarray analysis.

Clinical introduction of imatinib mesylate (Gleevec) (formerly STI571) has marked a major advance in the treatment of chronic myeloid leukemia (CML), inducing major cytogenetic response in 60% to 80% of patients with chronic-phase disease. Since its remarkable effect has made it difficult to decide the timing for potentially curative but life-threatening stem cell transplantation (SCT), it would be very useful to predict imatinib's effectiveness in individual patients beforehand. We analyzed gene expression profiles of peripheral leukemia cells from 18 CML patients (16 chronic phase, two blast crisis) who were treated with imatinib alone. cDNA microarrays representing 23,040 genes identified 79 genes that were expressed differentially between cytogenetically defined responders and nonresponders to imatinib. We then established a "prediction score" system using 15 or 30 of these genes that could clearly separate the responder group from the nonresponder group. Four additional patients' responses to imatinib were successfully predicted, validating the process. Thus, gene-expression profiles can predict clinical effectiveness of CML to imatinib, and may eventually lead to the achievement of "personalized therapy" for this disease.

Adult↗

Genome-wide analysis of gene-expression profiles in chronic myeloid leukemia cells using a cDNA microarray.

To characterize molecular mechanisms operating in chronic myeloid leukemia (CML) cells with a view toward development of novel therapeutic targets, we analyzed gene-expression profiles of cancer cells from 27 CML patients using a cDNA microarray representing 23,040 human genes. By comparing expression patterns of CML with those of normal cells, we identified 150 genes that were commonly highly up-regulated in CML cells. In addition to 54 genes (34 of them ESTs) whose functions are currently unknown, the up-regulated elements included genes encoding cell-cycle regulators, transcriptional activators, transcriptional factors, and protein kinases as well as proteins already known to be induced in CML, such as some hemoglobins, haptoglobin (HP1), and matrix metalloproteinase 9 (MMP-9), a protein involved in tissue remodeling and tumor invasion. On the other hand, our protocol selected 106 genes, including 13 of unknown function, as being commonly significantly down-regulated in all phases of CML. The results of semiquantitative RT-PCR experiments with 11 representatives of the up-regulated group supported the reliability of our microarray analysis. These data should provide useful information for finding candidate genes whose products might serve as molecular targets for treatment of CML patients.

Adult↗

Mechanism of constitutive activation of FLT3 with internal tandem duplication in the juxtamembrane domain.

Internal tandem duplication (ITD) of the juxtamembrane (JM) domain of FLT3 is the most frequent mutation in human acute myeloid leukemia, and is significantly associated with leukocytosis and a poor prognosis. Previously we reported that FLT3 with ITD (FLT3/ITD) formed a homodimer and was autophosphorylated on tyrosine residues, while the mechanism remains unclear. In this study, we elucidated the role of the JM domain in FLT3 activation. Mutant FLT3 with not only ITD but also an elongating or shortening JM domain transformed murine IL3-dependent myeloid progenitor cell line 32D regardless of the tyrosine residues in the JM domain. These mutant FLT3s were constitutively tyrosine phosphorylated and activated signal-transduction molecules such as SHC, MAP kinase and STAT5a. Notably, co-transfection of the truncated FLT3/ITD lacking kinase and C-terminal domains with the wild type (Wt)-FLT3 into 32D cells resulted in the autonomous proliferation. In these cells, truncated FLT3/ITD generated a hetero-complex with Wt-FLT3 and Wt-FLT3 was constitutively tyrosine phosphorylated. These findings indicate that the FLT3 JM domain plays an important role in receptor activation, and that the length-mutated JM domain induces ligand-independent receptor activation but also activates Wt-FLT3 in a trans-manner.

Amino Acid Sequence↗

Efficacy of granulocyte colony-stimulating factor in the treatment of acute myelogenous leukaemia: a multicentre randomized study.

To investigate the efficacy and safety of granulocyte colony-stimulating factor (G-CSF) in patients with acute myelogenous leukaemia, a multicentre randomized study was performed. From October 1993 to September 1996, 270 patients with newly diagnosed acute myelogenous leukaemia were randomized to G-CSF or control groups after remission induction therapy. The G-CSF group received G-CSF (Filgrastim) from 48 h after the completing chemotherapy until the absolute neutrophil count exceeded 1.5 x 10(9)/l. The control group did not receive G-CSF unless severe infection occurred. There were 245 evaluable patients (120 and 125 in the G-CSF and control groups respectively). The complete remission rate was similar in the G-CSF and control groups (80.8% versus 76.8%), as was the 5-year probability of disease-free survival (34.5% versus 33.6%) and overall survival (42.7% versus 35.6%). Neutrophil recovery was significantly faster in the G-CSF group than in the control group (12 d versus 18 d, P = 0.0001). The median duration of febrile neutropenia was significantly shorter in the G-CSF group than in the control group (3 d versus 4 d, P = 0.0001). In conclusion, prophylactic administration of G-CSF after remission induction therapy for acute myelogenous leukaemia is safe and useful even in patients without infection on completing chemotherapy.

Adolescent↗

Clinicopathological and prognostic characteristics of CD56-negative multiple myeloma.

We analysed CD56 expression in 70 patients with multiple myeloma (MM) to determine its clinicopathological and prognostic significance. Fifty-five (79%) patients were CD56+. CD56- patients (n = 15) had higher beta2 microglobulin levels and a higher incidence of extramedullary disease, Bence Jones protein, renal insufficiency and thrombocytopenia than CD56+ patients. Their myelomas more frequently had a plasmablastic morphology. Overall survival was significantly lower in CD56- than CD56+ patients (22 vs 63 months, P = 0.0002). We conclude that CD56- MM is a discrete entity associated with more aggressive disease. The higher incidence of plasmablastic cases suggested that CD56- MM may develop from a less mature plasma cell than CD56+ MM.

Adult↗

Efficacy of the Shinki bioclean room for preventing infection in neutropenic patients.

AIM OF THE STUDY: To investigate the effectiveness of a new type of bioclean room named Shinki bioclean room (SBCR) for the prevention of infection during neutropenia after intensive chemotherapy in comparison with a standard laminar air flow room (LAFR). BACKGROUND: Recently, a new industrial technology, wherein a dust-free and aseptic environment is created by circulating air containing nanometre order ultra fine water droplets with abundant negative air ions, has been developed in Japan. METHODS: The air cleanliness of SBCR was examined by measuring airborne particles and microorganisms. Bacteriological samples for environment culture were taken by means of exposed settle-plates. In addition, the frequency of pneumonia and fever higher than 38 degrees C were examined in 34 patients with acute leukaemia who received intensive chemotherapy in SBCR or LAFR. RESULTS: The number of airborne particles (> or = 0.5 microm) was 70 particles/ft3, and that of airborne microorganisms was 0.0 colony forming unit/ft3 in SBCR, and neither bacteria nor fungi were detected. The numbers of colonies of bacteria and fungi on air settle-plates were fewer in the SBCR than in the LAFR regardless of the presence of patients or the nurse entering. The frequency of pneumonia during chemotherapy for acute leukaemia was lower in the SBCR group (0%, 0/19 cases) than in the LAFR group (27%, 4/15 cases) (P=0.0294) and the frequency of fever higher than 38 degrees C also tended to be lower in the SBCR group (53%, 10/19 cases) than in the LAFR group (80%, 12/15 cases) (P=0.0973). CONCLUSION: The SBCR is equal or superior to LAFR in preventing infection during neutropenia. Other advantages for SBCR are a low level of noise (40 dB), easy control of temperature and humidity, and efficient removal of odour. In addition to the quiet and comfortable atmosphere, expected favourable effects of negative air ions may give higher quality of life for patients in SBCR than those in LAFR. Further studies will be needed to examine the safety, benefits and effects of the negative ion exposure.

Air Microbiology↗

Rapid screening of leukemia fusion transcripts in acute leukemia by real-time PCR.

We established a real-time PCR method that can simultaneously detect 10 different fusion transcripts (major, minor and micro BCR/ABL, AML1/MTG8, PML/RARalpha, CBFbeta/MYH11, TEL/AML1, E2A/PBX1, MLL/AF4, and MLL/AF9) together with Wilms' tumor gene (WT1) transcripts. This screening method allowed the processing of six specimens concomitantly and required only one working day from RNA extraction to final results. Fifty-seven bone marrow (BM) samples from patients with acute leukemia were retrospectively screened for the presence of fusion and WT1 transcripts without knowledge of the cytogenetic data, and the fusion transcripts were detected in 20 of 57 samples (35.1%). The concordance between the present method and cytogenetic analysis was examined in 38 samples in which the cytogenetic data were available. In 12 of 38 samples, the PCR results agreed with the cytogenetic data, whereas in 4 of the remaining 26 samples, the translocations were detected by real-time PCR alone because of the insufficient number of metaphases obtained and presumably the submicroscopic or masked translocations. The WT1 levels ranged from 400 to 690,000 copies/microg RNA in BM from leukemia patients, whereas 0-470 copies/microg RNA were found in BM cells from BMT donors. This real-time PCR method enables rapid and efficient characterization of acute leukemia in addition to subsequent evaluation of minimal residual diseases.

Acute Disease↗