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Y Hatta

Publications and source records attributed to Y Hatta.

At least 37 records · Page 2Linked to original sources

[Pulmonary function at the early stage after bone marrow transplantation].

Twenty-one patients, aged 16-41 years, were prospectively followed for pulmonary function prior to and up to nine months after bone marrow transplantation (BMT). All patients had normal radiographs and no clinical signs of pulmonary disease. The FEV1.0%, V25, and of V50/V25 were within the normal ranges for all patients. Percent vital capacity (%VC) and percent diffusing capacity of lung for CO (% DLco) dropped progressively in most of the patients up to 9 months following BMT. Pulmonary function decreased earlier in patients with GVHD as well as patients who received total body irradiation either at a high dose rate (10 cGy/min) or a high lung dose (12 Gy). These asymptomatic declines in pulmonary function were measured by frequent tests of lung function.

Adolescent↗

Frequent loss of heterozygosity in the region of the D7S523 locus in advanced ovarian cancer.

Loss of heterozygosity (LOH) of the long arm of chromosome 7 occurs frequently in many types of primary cancers. We analyzed 22 primary ovarian cancers for LOH of chromosome arm 7q using a set of 16 microsatellite markers in order to determine the location of a putative tumor suppressor gene (TSG). Eleven samples (50%) showed LOH at least at one locus on chromosome arm 7q. We identified the smallest commonly deleted region to be at 7q31.1, which includes D7S523. LOH of chromosome arm 7q was more frequent in advanced stages (III-IV) (7/9, 78%) than in early stages (I-II) (4/13.31%) of ovarian cancer (P < 0.05). These data suggest that alteration of a TSG at 7q31.1 gene plays an important role in advanced ovarian cancer.

Chromosome Deletion↗

Ovarian cancer has frequent loss of heterozygosity at chromosome 12p12.3-13.1 (region of TEL and Kip1 loci) and chromosome 12q23-ter: evidence for two new tumour-suppressor genes.

Identification of the key genetic alterations leading to ovarian cancer is in its infancy. Polymerase chain reaction (PCR)-based analysis of loss of heterozygosity (LOH) is a powerful method for detecting regions of altered tumour-suppressor genes. Focusing on chromosome 12, we examined 23 ovarian cancer samples for LOH using 31 highly polymorphic microsatellite markers and found the chromosomal localization of two putative tumour-suppressor genes. Two commonly deleted regions were 12p12.3-13.1 in 6/23 (26%) and 12q23-ter in 7/23 (30%) samples. LOH on chromosome 12 was more common in late-stage ovarian carcinomas. The region of LOH at 12p12.3-13.1 includes the genes that code for the ETS-family transcriptional factor, known as TEL, and the cyclin-dependent kinase inhibitor, known as p27Kip1. Mutational analysis of both TEL and p27Kip1 using single-strand conformation polymorphism (SSCP) showed no abnormalities, suggesting that the altered gene in this region is neither of these genes. Taken together, our data suggest that new tumour-suppressor genes in the region of chromosomes 12p12.3-13.1 and 12q23-ter may be involved in the development of ovarian cancer.

Adenocarcinoma↗

Extensive analysis of the retinoblastoma gene in adult T cell leukemia/lymphoma (ATL).

The retinoblastoma susceptibility gene (Rb) plays a key role in regulating the cell cycle in association with cyclins and cyclin-dependent kinases (CDKs). Alteration of the Rb gene as well as CDK inhibitors (CDKIs) leads to deregulated cellular growth which promotes cancer formation. We examined the genomic configuration of the entire Rb gene in 40 primary adult T cell leukemias/lymphomas (ATL) and two ATL cell lines by Southern blotting and also by polymerase chain reaction-single strand conformation polymorphism (PCR-SSCP) analyses. Homozygous loss of exon 1 was identified in one of 21 acute ATL, one of 15 chronic ATL, and none of four lymphomatous ATL samples. No point mutations were identified. Previously, we found that 10 of these same ATL samples had alterations of either p16(INK4A) (homozygous deletion) or p27(kip1) (homozygous deletion or point mutation). Although the numbers are very low, none of the samples with an aberrant Rb gene had an altered CDKI and vice versa, suggesting that both genes probably operate in a common pathway and alteration of either can provide these cells with a growth advantage.

Carrier Proteins↗

Microsatellite instability and other molecular abnormalities in childhood acute lymphoblastic leukaemia.

Microsatellite instability (MSI) has been considered to represent the defect of DNA mismatch repair systems and has been implicated in the tumourigenesis of several human malignancies. To investigate the possible presence of microsatellite instability in childhood acute lymphoblastic leukaemia (ALL), we examined 48 primary ALL samples. Instability was determined at 85 different microsatellite loci localized to 12 different chromosome arms. Microsatellite instability was detected in five (10%) samples. Interestingly, the instability was found at chromosomal regions associated with frequent alterations. Two samples had instability at the microsatellite marker within the TEL gene on chromosome arm 12p. Two other samples had instability at a microsatellite marker close to CDKN2/p16 on 9p; one of these samples had a homozygous deletion at 9p21. The fifth sample had instability at the microsatellite marker on 6q, which we have found is a frequent region of loss of heterozygosity in childhood ALL. Taken together, instability was rare in childhood ALL, but was localized to the three most frequently deleted chromosome regions in childhood ALL, suggesting that localized microsatellite instability may identify a fragile chromosomal region which could result in alteration of surrounding target genes and lead to leukaemia.

Blotting, Southern↗

Analysis of p18INK4C in adult T-cell leukaemia and non-Hodgkin's lymphoma.

p18INK4C, a cyclin-dependent kinase inhibitor, is a homologue of p15INK4B and p16INK4A which are frequently altered in a variety of malignancies. We searched for structural alterations of the p18INK4C gene in 44 adult T-cell leukaemias (ATLs), 101 non-Hodgkin's lymphomas (NHLs), two polyclonal B-cell proliferations, seven ATL cell lines and seven leukaemia/lymphoma cell lines, by Southern blot and polymerase chain reaction-single-strand conformation polymorphism (PCR-SSCP) analyses. No genomic alterations of the p18INK4C gene were found in any of the samples. By RT-PCR, p18INK4C was not expressed in three of five ATL cell lines, whereas it was expressed in all the non-ATL leukaemia/lymphoma cell lines. Tax did not inhibit the expression of p18INK4C in tax-expressing Jurkat cells.

Adult↗

Deletions of p15 and/or p16 genes as a poor-prognosis factor in adult T-cell leukemia.

PURPOSE: To determine the frequency of the deletions of p15/p16 genes in adult T-cell leukemia (ATL) cells and to evaluate their value in the diagnosis of clinical subtypes of ATL patients and the prediction of their clinical outcome. MATERIALS AND METHODS: Peripheral-blood samples from 114 patients with ATL were examined by Southern blot analysis. In five chronic-type patients who showed disease progression to acute type, serial samples also were examined. RESULTS: Among 114 patients, 28 (24.6%) showed the deletions of p15 and/or p16 genes. The results were well correlated with the clinical subtypes. Patients with deleted p15 and/or p16 genes had significantly shorter survival times than the patients in whom both genes were preserved (P < .0001). A similar decline in survival time was observed in the analyses within the same subtypes. In multivariate analysis using the Cox proportional hazard model, the deletions of p15 and/or p16 genes emerged as an independent prognostic indicator. Moreover, three of the five chronic-type patients who progressed to acute type lost the p16 gene alone or both the p15 and p16 genes at their exacerbation phase. CONCLUSION: The results suggest the following: (1) that the deletions of p15 and/or p16 genes play a key role in the progression of ATL; and (2) that these deletions are reliable prognostic factors that predict shortened survival times.

Adult↗

Infrequent microsatellite instability during the evolution of myelodysplastic syndrome to acute myelocytic leukemia.

Microsatellites are highly polymorphic, short-tandem repeat sequences dispersed throughout the genome. Instability of these repeat sequences at multiple gentic loci may result from mismatch repair errors and occur in hereditary nonpolyposis colorectal cancer and several other sporadic cancers, including chronic myelocytic leukemia as it progresses to blastic crisis. We investigated whether genetic instability occurred as myelodysplasia progressed to acute myelocytic leukemia. To this end, we studied microsatellite instability in 20 patients with myelodysplastic syndrome (MDS). These included five patients with refractory anemia (RA), three with refractory anemia with ringed sideroblast (RARS), nine with refractory anemia with excess blasts (RAEB) and three with chronic myelomonocytic leukemia (CMML). All of these patients transformed to acute myelocytic leukemia (AML) of various subtypes: three patients with M1, 11 with M2 and six patients with M4 (according to FAB classification). The DNA from both the MDS and AML phases of their disease was analyzed at 16 loci, and only four microsatellite instabilities were found in the 240 paired samples (1.6%) analyzed. These results indicate that mismatch repair errors such as microsatellite instability are not important in the evolution of MDS to AML.

Adult↗

Alterations of the cyclin-dependent kinase inhibitor p19 (INK4D) is rare in hematopoietic malignancies.

Cyclin-dependent kinase inhibitors (CDKIs) can be classified into two groups based on the structure of the proteins. One group includes the p21 (CIP1, WAF1, CAP20), p27 (Kip1), and p57 (Kip2) CDKIs, which contain a homologous amino-terminal cyclin-dependent kinase (cdk) inhibitory domain. The p16 (INK4A), p15 (INK4B), and p18 (INK4C) CDKIs, which have an ankyrin repeat motifs, belong to the other group. The p16 and p15 CDKI genes are very frequently altered in a variety of cancers including hematopoietic malignancies. The p19 (INK4D) gene is a newly cloned CDKI which belongs to the latter group. To determine if p19 genetic alterations play a role in hematopoietic malignancies, we examined DNA from 45 childhood newly diagnosed acute lymphocytic leukemias (ALLs), 30 acute myeloblastic leukemias (AMLs), 10 chronic myelocytic leukemias (CMLs), 45 adult T cell leukemias (ATLs), 70 non-Hodgkin's lymphomas (NHLs), and 20 multiple myelomas (MM) as well as 14 ALL, 20 AML, two ATL, and five lymphoma cell lines. Using Southern blot analysis, one homozygous deletion of the p19 gene was detected in a human immunodeficiency virus (HIV)-related Burkitt-like lymphoma sample. No point mutations in any of the samples were found by polymerase chain reaction-single strand conformation polymorphism (PCR-SSCP) analysis. Our investigation suggests that alterations of p19 do not play an important role in the development of most hematopoietic malignancies.

Base Sequence↗

Allelotype analysis of childhood acute lymphoblastic leukemia.

To identify the genetic events that may play an important role in leukemogenesis of childhood ALL, we report for the first time the allelotyping of childhood ALL. Twenty-four cases of childhood ALL were screened for loss of heterozygosity (LOH) using 101 highly polymorphic microsatellite markers, which are distributed among all autosomal chromosomes. For LOH analysis on both chromosomes 9 and 12, 54 childhood ALL samples were examined. The most frequent allelic loss was found on chromosomal arm 9p, where 20 of 50 (40%) informative samples showed LOH. Moreover, nearly 30% of samples that did not have either homozygous deletions or point mutations of the putative tumor suppressor genes CDKN2/INK4A/p16 and INK4B/p15 on chromosomal arm 9p had LOH at D9S171. Loss of chromosomal arm 12p was also frequent (26%). Mutational analysis suggested that the altered gene on 12p is not the cyclin-dependent kinase inhibitor p27/Kip1, which is also on 12p. Several other regions that had LOH included 1p, 4q, 5p, 6q, 7p, 8p, 9q, 10q, 13q, 17p, 17q, 18q, 19q, and 22q. Of 24 patients, 19 (79%) showed allelic loss on at least one chromosomal arm. Samples of two patients (8%) showed LOH on almost all chromosomes. Fractional allelic loss, calculated for each sample as the total number of chromosomal arms lost/total number of arms with information, showed a median value of 0.04 and a mean of 0.123 (range, 0 to 0.95). This fractional allelic loss is lower than those reported for many solid tumors. This analysis shows the extreme power of LOH analysis using microsatellite markers in childhood ALL.

Adolescent↗

Alterations of the p27KIP1 gene in non-Hodgkin's lymphomas and adult T-cell leukemia/lymphoma.

The protein p27KIP1 belongs to a recently identified family of proteins termed cyclin-dependent kinase inhibitors (CDKIs). These proteins play an important role in regulating cell-cycle progression and loss of their function has been implicated in tumorigenesis. Transforming growth factor beta (TGF-beta) may induce cell growth arrest through p27 activation. TGF-beta often loses its ability to arrest growth of transformed cells; this could potentially occur through a defect in p27. To determine the role of p27 in tumorigenesis, we examined its mutational status in 74 non-Hodgkin's lymphomas (NHLs) (52 of B-cell phenotype, 22 of T-cell phenotype), 5 lymphoma cell lines, and 42 adult T-cell leukemias/lymphomas (ATLs) using polymerase chain reaction-single strand conformational polymorphism (PCR-SSCP) and Southern blot analyses. A nonsense mutation (stop codon) that could result in expression of a truncated nonfunctional p27 protein was detected at codon 76 in one case of acute lymphomatous ATL, but not in matched normal tissues. Previously undescribed polymorphisms were also identified at codon 109 in the lymphomas and at codon 55 in the ATLs. Two homozygous deletions of the p27 gene were detected in one case of B-immunoblastic NHL and in one case of acute ATL by Southern blot hybridization. These results indicate that p27 gene alterations are rare events in NHLs and ATLs, but may play an important role in the pathogenesis of some hematologic malignancies.

Base Sequence↗

Molecular analysis of the cyclin-dependent kinase inhibitor gene p27/Kip1 in human malignancies.

Cyclin and cyclin-dependent kinase (CDK) complexes play important roles in controlling the cell cycle. The CDK inhibitors (CDKIs) inhibit the kinase activities of the complexes and block transitions of the cell cycle. Recently several CDKI genes have been cloned, and evidence suggests that at least a couple of these may be tumor suppressor genes. In this study, the partial structure of a CDKI gene, p27/Kip1, was determined. In addition, a large number of human cancers (432 cases) and cancer cell lines (20 lines) were analyzed for alterations of the p27/Kip1 gene by Southern blot analysis and PCR/single-strand conformation polymorphism. The coding region of the p27/Kip1 gene consists of at least two exons and an intron of about 600 bp. In 140 tumors of various tissues and 18 transformed cell lines, no deletions or rearrangements of the gene were detected by Southern blot analysis using a part of the coding sequence as a probe. One polymorphism and one silent mutation were detected by PCR/single-strand conformation polymoprhism. The polymorphism was a nucleotide substitution of guanine for thymine (GTC-->GGC) at codon 109, resulting in an amino acid substitution of glycine for valine (Val-->Gly). In summary, no abnormalities of the p27/Kip1 gene were detected in human malignancies. Now, two groups of CDKIs are classified based on the structure of the proteins. One group includes the p15, p16, and p18 CDKIs, which have ankyrin repeat motifs. The p15 and p16 CDKI genes are very frequently mutated in a variety of cancers. The p27/Kip1 and p21 CDKIs belong to the other group. We reported previously that abnormalities of the p21 gene were very rare. The latter group of the CDKIs, including p27/Kip1 and p21, are rarely mutated in human malignancies.

Base Sequence↗

Homozygous deletions of the p15 (MTS2) and p16 (CDKN2/MTS1) genes in adult T-cell leukemia.

Adult T-cell leukemia (ATL) is associated with prior infection with human T-cell leukemia virus type I (HTLV-I). Twenty to 40 years often elapse from viral infection to overt ATL, suggesting that other genetic events must occur to produce frank leukemia. The p15 (MTS2) and p16 (CDKN2/MTS1) genes located on chromosome 9p have been implicated as candidate tumor-suppressor genes in several types of tumors. We examined for alterations of these genes in ATL using Southern blot and polymerase chain reaction-single-strand conformation polymorphism analyses. Both p15 and p16 genes were homozygously deleted in 4 of 23 acute/lymphomatous ATL (17%). An additional 3 (13%) and 4 (17%) acute/lymphomatous samples had hemizygous deletions in at least one exon of p15 and p16, respectively. One of 14 chronic ATL samples had a homozygously deleted p16 gene and another had a hemizygous deletion of p16. Neither homozygous nor hemizygous deletions of the p15 gene were found in chronic ATL. In total, 10 of 37 (27%) ATL samples had loss of the p15 and/or p16 genes. No point mutations of the p15 and p16 genes were found. The ATL patient with a homozygously deleted p16 in the chronic phase rapidly progressed to acute ATL and died within 6 months of the initial diagnosis. One instructive patient had no detectable deletion of the p15 and p16 genes during the chronic phase of ATL but had a homozygous deletions of both genes when she progressed to acute ATL. Our results suggest an association of p15/p16 deletions with development of acute ATL.

Acute Disease↗

Changes in immunoreactive insulin, C-peptide immunoreactivity, and immunoreactive glucagon in acute viral hepatitis.

Insulin and glucagon are thought to play important roles as hepatotrophic factors in acute viral hepatitis (AVH); however, few reports have investigated the responses and relationships of each of these hormones to liver damage in detail. We studied insulin and glucagon responses during the acute and recovery phases of AVH. We performed a glucose tolerance test (GTT) and an insulin sensitivity test (IST) in each phase in 11 patients with AVH. In 8 additional patients in the acute phase (total n = 19), were compared immunoreactive insulin (IRI) and C-peptide immunoreactivity (CPR) levels with transaminase levels. In the acute phase, IRI concentrations were normal from fasting to 60 min, despite an increased CPR level. In the recovery phase, IRI and CPR levels increased significantly. Immunoreactive glucagon levels in both phases did not differ significantly from those in controls. During the IST, the insulin sensitivity index in both phases was significantly lower than that in the controls. Fasting IRI and sigma IRI showed significant negative correlations with transaminase levels. We found enhanced insulin secretion and a decrease in plasma insulin in the acute phase of AVH. The discrepancy between IRI and CPR responses in the acute phase suggests an increase in the degradation or consumption of insulin in the liver.

Acute Disease↗

Complete remission in a patient with hypoplastic acute lymphoblastic leukemia induced by granulocyte-colony-stimulating factor.

We report here a case of hypoplastic leukemia with T cell markers in whom complete remission was obtained with granulocyte-colony-stimulating factor (G-CSF) alone. A 23-year-old male was diagnosed with hypoplastic leukemia: Hb 2.6 g/dl, platelet count 29.0 x 10(9)/l after transfusion, WBC 2.9 x 10(9)/l, hypocellular bone marrow with 70.7% blasts. He was given G-CSF 300 micrograms/day by intravenous drip infusion without antileukemic agents for severe pneumonia. After the administration of G-CSF for 15 days, hematological examination and bone marrow findings had improved to normal, and complete remission was obtained. However, the patient relapsed 45 days after discontinuation of G-CSF. The characteristics of the relapsed leukemia cells were similar to those on admission: negative for myeloperoxidase and positive for T cell markers (CD2 and CD7). The possibilities for the differentiation of leukemic cells and the recovery of normal hematopoiesis with G-CSF are discussed.

Adult↗

Alterations of the p16 (MTS1) gene in testicular, ovarian, and endometrial malignancies.

PURPOSE: The p16 (MTS1) gene codes for a cyclin-dependent kinase inhibitor and may be a new tumor suppressor gene. It is frequently mutated in a variety of cell lines established from tumors. This is the first report of screening for alteration of the p16 gene in testicular, ovarian and endometrial malignancies. MATERIALS AND METHODS: We examined alterations of p16 in 78 primary genital tumors (42 testicular, 21 ovarian and 15 endometrial cancers) and mononuclear cells from 2 patients with Lynch syndrome II as well as 5 testicular tumor cell lines by single-strand conformation polymorphism (SSCP) and Southern blot hybridization. RESULTS: The DNA from the p16 gene of 2 testicular tumors (5%), an ovarian cancer (4%) and a testicular tumor cell line (20%) had altered migration in gel electrophoresis as shown by SSCP. Analysis of DNA sequence of these samples revealed a polymorphism at codon 140. Southern blot hybridization detected neither deletions nor rearrangements of the p16 gene in any of the samples. CONCLUSIONS: Taken together, these results suggest that p16 alterations probably are not important for tumorigenesis of testicular, ovarian and endometrial tumors.

Base Sequence↗

[Aspergillus lumbar discitis in a patient with acute lymphoblastic leukemia following induction therapy].

A 47-year-old female was admitted in October 1988 because of anemia and lymphoblastic cells in peripheral blood. A bone marrow aspirate was hypercellular with 93.9% lymphoblasts negative for peroxidase staining. The case was diagnosed as ALL (L2), and treated with JALSG ALL-87 regimen. She developed spiky fever and endotoxin shock due to bacteremia caused by pseudomonas aeruginosa, then was treated with several antibiotics. With the recovery of leukocytes, the chest X-ray showed an infiltrative shadow and a cavity forming lung abscess resembling aspergilloma in her left lung. The cavity improved of transbronchial infusion following amphotericin B (AMPH-B). Although she achieved complete remission, she felt severe lumbago accompanied by a marked erosion of the vertebral body with disc space narrowing on her X-ray. Then she underwent surgery to remove a disc abscess, and 1 colony of the aspergillus species was cultured from the specimen. She was treated with intravenous AMPH-B, and post remission therapies were performed under the injection of anti-fungal agents. No remarkable symptoms of complications were recognized during the chemotherapy. AMPH-B is useful and safe for the management of aspergillus discitis.

Antineoplastic Combined Chemotherapy Protocols↗

Cytotoxic effect of extracellular ATP on L1210 leukemic cells and normal hemopoietic stem cells.

The cytotoxic effect of extracellular adenosine triphosphate (ATP) was examined on normal murine hemopoietic stem cells and a representative leukemic cell line (L1210). After L1210 cells were incubated with 4 mM ATP for 3 h, 3H-thymidine incorporation was almost completely inhibited. The number of viable L1210 cells was also significantly decreased and L1210 colony formation was suppressed to approximately 30% of the control level after treatment. The CFU-GM survival rate was reduced to 70%, however, CFU-S and marrow nucleated cell numbers were not changed after the same treatment with ATP. All mice that were injected with the untreated mixture of normal marrow cells (3.3 x 10(4)) and L1210 cells (3.3 x 10(3)) died of leukemia within 18 days. On the contrary, 85% of the recipients given ATP-treated grafts survived more than 70 days. These findings indicate that ATP extra vivo treatment is useful for purging the residual leukemic cells in autologous bone marrow transplantation.

Adenosine Diphosphate↗