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Biomedical subjects

K Tsuji

Publications and source records attributed to K Tsuji.

At least 19 recordsLinked to original sources

Detection of cancer micrometastases in lymph nodes by reverse transcriptase-polymerase chain reaction.

There are few DNA-based studies that detect cancer micrometastases in lymph nodes. We have assayed for the specific detection of carcinoembryonic antigen (CEA)-expressing carcinoma cells in the lymph nodes of patients with gastrointestinal or breast carcinomas. A CEA-specific nested reverse transcriptase (RT)-PCR assay was optimized using limiting dilutions of a CEA-positive cancer cell line mixed with normal lymphocytes. The expression of CEA mRNA was studied in 100 carcinoma tissues, 75 normal mucosal tissues, and 15 lymph nodes from patients with cholelithiasis. Each of 117 lymph nodes from 13 patients with carcinoma was divided into two pieces: one was used for histological examination and the other for RT-PCR, and the results were compared. The sensitivity ratio was one CEA-expressing cancer cell detected in 1 x 10(5) normal lymphocytes. All carcinoma tissues and normal mucosal tissues expressed CEA mRNA, while no amplification was detected in any control lymph nodes. Thirty of 117 lymph nodes were histologically involved by carcinoma cells, and all of these yielded the expected product by RT-PCR. Of the remaining 87 histologically negative nodes, CEA mRNA was detected in 47 lymph nodes by RT-PCR. The positive rate increased from 26% by histological examination to 66% by RT-PCR. The assay by CEA-specific nested RT-PCR is not only sensitive but widely applicable for the detection of cancer micrometastases in lymph nodes. This method may lead to an earlier diagnosis and treatment of patients with subclinical lymph node metastasis.

Adult

Effect of balloon occluded arterial infusion of anticancer drugs on the prognosis of cervical cancer treated with radiation therapy.

PURPOSE: The effect of local injection of anticancer drugs by balloon catheter, i.e., balloon occluded arterial infusion (BOAI), on the prognosis of cervical cancer treated with radiotherapy were retrospectively estimated. METHODS AND MATERIALS: Sixty-five patients with cervical cancer (Stage I-IV) treated by irradiation were included in the study. Among the 65 cases, 2 were in Stage I, 13 in Stage II, 40 in Stage III, and 10 in Stage IV. Patients who received surgical resection were excluded. Thirty-nine patients received BOAI and 44 received brachytherapy. Twenty-six patients were not indicated for BOAI because of insufficient renal function, hepatic complications, hematological complications, and refusal from the patients. Cisplatin (0.9-1.7 mg/kg), Adriamycin (0.7-0.9 mg/kg), and Pepleomycin (0.4-0.6 mg/kg) were administered simultaneously into the bilateral internal iliac arteries by BOAI. External irradiation was given by 10 MV x-ray. Total dose administered to the regional lymph nodes by the external irradiation was 48.3 +/- 8.7 Gy. Radium was used at brachytherapy. The dose delivered by the brachytherapy at point A was 45.3 +/- 14.9 Gy. Patients without brachytherapy received 26.1 +/- 19.1 Gy of boost irradiation by the external photon beam. The survival probabilities of the patients were calculated by Kaplan-Meier method. RESULTS: The 5-year survival rates of the Stage III patients with and without BOAI were 53 +/- 13% and 24 +/- 18%, respectively (p = 0.036). By multivariate analyses using Cox's proportional hazard model, stage and BOAI were selected as significant predictors of the prognosis. Transient bone marrow suppression was observed in about half of the patients with BOAI. No significant increase of the incidence of the late radiation damage by BOAI in rectum or in urinary bladder was observed. CONCLUSION: Balloon occluded arterial infusion of anticancer drugs may improve the prognosis of the patients with cervical cancer without increasing the incidence of the late radiation damage. A larger scale prospective randomized study is desired.

Actuarial Analysis

Synthesis and biological evaluation of a series of new parenteral optically active 3-[[(N-alkylpyridinium-4'-yl)thio]methyl]-2-oxaisocephems.

The preparation and biological evaluation of a series of 7-[2-(2-aminothiazol-4-yl)-2-(Z)-[(cyclopentyloxy)imino]acetamido] optically active 2-oxaisocephems, substituted at the 3-position with [(N-alkylpyridinium-4'-yl)thio]methyl groups, are described. The resulting family of parenteral compounds displays a broad spectrum of in vitro antibacterial activity. These compounds exhibit increased activity against Gram-positive organisms including methicillin-resistant Staphylococcus aureus and Enterococcus faecalis which are resistant to most cephalosporins with a similar level of Gram-negative activity to that of the third-generation antibiotics. In vivo efficacy of new antibacterial agents in this investigation is excellent against both Gram-positive and Gram-negative bacteria as compared with reference compounds. The in vitro and in vivo antimicrobial activity and the structure-activity relationships are presented.

Animals

Mammalian antioxidant protein complements alkylhydroperoxide reductase (ahpC) mutation in Escherichia coli.

The MER5 [now called the Aop1 (antioxidant protein 1) gene] was cloned as a transiently expressed gene of murine erythroleukaemia (MEL) cell differentiation and its antisense expression inhibited differentiation of MEL cells. We found that the Aop1 gene shows significant nucleotide sequence similarity to the gene coding for the C22 subunit of Salmonella typhimurium alkylhydroperoxide reductase, which is also found in other bacteria, suggesting it functions as an antioxidant protein. Expression of the Aop1 gene product in E. coli deficient in the C22-subunit gene rescued resistance of the bacteria to alkylhydroperoxide. The human and mouse Aop1 genes are highly conserved, and they mapped to the regions syntenic between mouse and human chromosomes. Sequence comparisons with recently cloned mammalian Aop1 homologues suggest that these genes consist of a family that is responsible for regulation of cellular proliferation, differentiation and antioxidant functions.

Animals

gp130 and c-Kit signalings synergize for ex vivo expansion of human primitive hemopoietic progenitor cells.

gp130, a signal-transducing receptor component of interleukin 6 (IL-6), associates with an IL-6 and IL-6 receptor (IL-6) complex and transduces signals. To examine the role of gp130 signaling in the expansion of human hemopoietic progenitor cells, we tested the effects of a recombinant soluble human IL-6 receptor (sIL-6R) and/or IL-6 in combination with other cytokines on purified human umbilical cord blood CD34+ cells, using methylcellulose clonal assay and suspension culture in the presence or absence of serum. A combination of sIL-6R and IL-6 (sIL-6R/IL-6), but not sIL-6R or IL-6 alone, was found to dramatically stimulate expansion of hemopoietic progenitor cells as well as CD34+ cells in the presence of stem cell factor. Significant generation of multipotential hemopoietic progenitors over a period of 3 weeks in suspension culture and efficient formation of colonies, especially multilineage and blast cell colonies, in methylcellulose assay supplemented with a combination of sIL-6R/IL-6 together with stem cell factor were observed in serum-containing and serum-free culture. Addition of anti-gp130 monoclonal antibodies or anti-IL-6R monoclonal antibodies to the above cultures dose-dependently inhibited the expansion of progenitor cells in suspension culture and also completely blocked the formation of multilineage colonies in methylcellulose culture. These findings demonstrated that the significant expansion of human primitive hemopoietic progenitors could be achieved with the gp130 and c-Kit signalings initiated by the sIL-6R/IL-6 complex in the presence of stem cell factor and suggested the possible application of this method for ex vivo expansion of CD34+ cells for bone marrow transplantation.

Antibodies, Monoclonal

10.5-kb homozygote of tumor necrosis factor-beta gene is associated with a better prognosis in gastric cancer patients.

BACKGROUND: In NcoI restriction fragment length polymorphism analysis of tumor necrosis factor-beta (TNF-beta) gene, the frequency of 10.5-kb homozygote is low in patients with lung cancer and is associated with a better prognosis. These results should be examined in other malignancies. METHODS: Using polymerase chain reaction, the authors performed NcoI restriction fragment length polymorphism analysis in 152 patients with gastric cancer, in 69 patients with benign gastric lesion, and in 141 healthy volunteers. RESULTS: In 3-year survival, the 10.5-kb homozygote showed a better prognosis (87.1%) than other alleles (5.5-kb homozygote, 52.5%; heterozygote, 79.1%), and there was a statistically significant difference between the 10.5-kb homozygote and the 5.5-kb homozygote. In 3-year survival for Stages III and IV, the 10.5-kb homozygote also showed a better prognosis (64.9%) than other alleles (5.5-kb homozygote, 16.7%; heterozygote, 41.4%). There were statistically significant differences (10.5-kb homozygote vs. 5.5-kb homozygote, P < 0.01; heterozygote vs. 5.5-kb homozygote, P < 0.05). There was a statistical difference between all patients and Stages III and IV (P < 0.05). CONCLUSIONS: The 10.5-kb homozygote of TNF-beta gene is associated with a prolonged survival in patients with gastric cancer, as has been shown in the patients with lung cancer.

Aged

Acampomelic campomelic syndrome and sex reversal associated with de novo t(12;17) translocation.

The association of rare chromosomal rearrangements involving a specific 17q breakpoint with campomelic syndrome (CMPS) and/or sex reversal (SR) has led to an assignment of the CMPS1/SRA1 locus to 17q24.3-->q25.1. We describe a patient with multiple anomalies and SR, who had a de novo t(12;17) translocation. The phenotype was consistent with that of CMPS except for the lack of lower limb bowing and talipes equinovarus. Chromosome painting indicated that the breakpoints appeared to have occurred at 12q21.32 and 17q24.3 or q25.1. This study suggests that acampomelic CMPD with SR represents a variant of the CMPS1/SRA1 locus disorder. We emphasize the likelihood that CMPS may be a contiguous gene syndrome.

Base Sequence

Major histocompatibility complex class II gene associations with anti-U1 small nuclear ribonucleoprotein antibody. Relationship to immunoreactivity with individual constituent proteins.

OBJECTIVE: To better define immunogenetic associations with the anti-U1 ribonucleoprotein (U1 RNP) autoantibody response. METHODS: HLA class II alleles were determined by genotyping in 49 Japanese rheumatic disease patients with anti-U1 RNP antibody and 43 race-matched healthy controls. Immunoreactivities to U1 RNP constituent proteins (70K, A, B/B', and C) were detected by immunoblots using purified HeLa cell Sm antigen, and antibody titer was determined by passive hemagglutination assay. RESULTS: DQB1*0302 was significantly more frequent in anti-U1 RNP-positive patients than in controls (43% versus 14%; odds ratio [OR] = 4.6, corrected P = 0.03). All anti-U1 RNP-positive patients had either a DQB1*0601, *0602, *0301, *0302, or *0303 allele, which share tyrosine at position 30, and the amino acid sequence Thr, Arg, Ala, Glu, Leu, Asp, and Thr at positions 71-77 in the DQB1 beta 1 domain. In contrast, one of these alleles was found in 81% of the controls (OR = 24, P = 0.002). In addition, anti-U1 RNP antibody was associated with unique DQB1*0302; DRB1*0401 haplotype. Anti-70K reactivity and antibody titer were positively associated with a basic amino acid residue, arginine or histidine, at position 13 (DR2 or DR4) and were negatively associated with the amino acid sequence Ile, Leu, Glu, and Asp at positions 67-70, which was present in some of the DR5-, DR6-, and DR8-associated alleles, in the DRB1 beta 1 domain. Anti-C reactivity was strongly associated with DR2, particularly with DRB1*1502. CONCLUSION: The several shared epitopes located on HLA-DRB1 and DQB1 genes control the anti-U1 RNP autoantibody response.

Amino Acid Sequence

Reliable and sensitive method for determination of microcystins in complicated matrices by frit-fast atom bombardment liquid chromatography/mass spectrometry.

A reliable and sensitive method for determination of hepatotoxic microcystins in complicated matrices by frit-fast atom bombardment liquid chromatography/mass spectrometry (Frit-FAB LC/MS) is described. Immonium ions of constituent amino acids, which were obtained together with molecular ion species by FAB mass spectral analysis of standard microcystins RR, YR, LR, and [D-Asp3] and [Dha7]microcystins LR using flow injection system composed of Frit-FAB probe, showed potential for reliable identification of microcystins by Frit-FAB LC/MS. Frit-FAB LC/MS using a microbore column provided not only the baseline separation of standard microcystins RR, YR, and LR but 200-fold higher sensitivity than that using conventional column. Furthermore, when a selected ion monitoring (SIM) technique was used, the detection limits of microcystins RR, YR, and LR were 300, 350, and 400 pg, respectively, at a signal-to-noise ratio of 5:1, and calibration curves of each microcystin showed a linear relationship from 2 ng to 50 ng. Finally, identification and quantitative analyses of microcystins in water samples were carried out.

Chromatography, Liquid

Transforming growth factor-beta 1 has both promoting and inhibiting effects on induction of DNA synthesis in human fibroblasts.

Growth-arrested human normal fibroblasts, TIG-1, initiated DNA synthesis following addition of epidermal growth factor (EGF). Transforming growth factor-beta 1 (TGF-beta 1) by itself had no effect on induction of DNA synthesis. When EGF and TGF-beta 1 were added simultaneously to growth-arrested TIG-1 cells, induction of DNA synthesis was enhanced compared with that by EGF alone. Contrarily, when TGF-beta 1 was added earlier than 2 h or later than 2 h of EGF addition, induction of DNA synthesis was prevented. Induction of DNA synthesis by EGF was insensitive to pertussis toxin (PT, an inhibitor of Gi protein) and to staurosporine (a protein kinase inhibitor). The promoting effect of TGF-beta 1 on DNA synthesis was PT-insensitive and staurosporine-insensitive. Contrarily, inhibitory activity of TGF-beta 1 on DNA synthesis was PT-sensitive and staurosporine-insensitive. These studies suggest that the effect of TGF-beta 1 is to promote or to inhibit induction of DNA synthesis by EGF expressed through different signal transduction processes in the same cell.

Alkaloids

The breakpoint on 7p in a patient with t(6;7) and craniosynostosis is spanned by a YAC clone containing the D7S503 locus.

We previously reported a patient with an apparently balanced t(6;7) translocation and craniosynostosis. We now demonstrate, by fluorescence in situ hybridization, that the yeast artificial chromosome clone 933-e-1 from the Centre d'Etude du Polymorphisme Humain library harbouring the D7S503 locus spans the breakpoint on distal 7p. Recent reports have defined a candidate region for a Saethre-Chotzen craniosynostosis locus between the loci D7S513 and D7S516, a region that includes the D7S503 locus. Since the translocation carrier shows only some of the symptoms characteristic for the Saethre-Chotzen syndrome, it remains unresolved whether the gene disrupted by the translocation event is the only one causing craniosynostosis in this chromosomal region.

Child, Preschool

A possible mechanism for the hypoxia-hypoglycemia-induced release of excitatory amino acids from cultured hippocampal astrocytes.

In order to elucidate the mechanism of release of excitatory amino acid (EAA) induced by hypoxia-hypoglycemia (in vitro ischemia) from cultured hippocampal astrocytes, we compared the EAA release by in vitro ischemia with those by other treatments. The EAA release induced by in vitro ischemia treatment was rapid and reversible. The amount of released aspartate was comparable to that of glutamate, although the endogenous content of aspartate was one sixth that of glutamate. High-K (100 mM) treatment and the addition of 5 mM NaCN induced a rapid EAA release and the glutamate release was much greater than aspartate. Addition of 5 mM iodoacetate, a glycolysis inhibitor, induced a slow EAA release, and the amount of released aspartate was much higher than that of glutamate. On the other hand, the in vitro ischemia treatment and the addition of 5 mM NaCN induced only 20% reduction in ATP content for initial 5 min, whereas the addition of 5 mM iodoacetate induced a marked reduction. Our data suggest that ischemia-induced EAA release from astrocytes is a complex process in which local energy failure, inhibition of glycolysis, and depolarization of the cell membrane are involved.

Adenosine Triphosphate

HLA and tumor necrosis factor beta gene polymorphisms in Okinawa lung cancer patients: comparative study with mainland Japan lung cancer patients.

The frequencies of HLA class I and II antigens and TNF-beta polymorphism in lung cancer patients were investigated in two areas with different immunogenetic backgrounds, in Okinawa and in mainland Japan (Honshu). In Okinawa frequencies of HLA-Cw3 in squamous cell lung carcinoma patients were higher and those of HLA-DR, both in all lung cancer and in adeno lung carcinoma patients, were lower compared to those of normal controls. Among serologic HLA-DR4-positive individuals, no difference of DRB1*04 gene allele frequency was shown between patients and controls. In Honshu no statistically significant difference of HLA-class I and II alleles frequencies was found; however, the frequency of TNF-beta 10.5-kb homozygote in lung cancer patients was lower than that of controls. For 2-year survival, there was no difference between DR4-positive and -negative individuals and also between each TNF-beta type in Okinawa. In contrast, Honshu patients with 10.5-kb homozygote showed an improved 5-year survival ratio compared to those with heterozygote. We postulate that different immunogenetic backgrounds or environments might have caused the varying HLA or TNF-beta association in the predisposition to or prognosis of lung cancer.

Adenocarcinoma

Microsatellite polymorphism between the tumor necrosis factor and HLA-B genes in Behçet's disease.

Behçet's disease is associated with the HLA-B51 antigen. However, it has not yet been clarified if the HLA-B51 gene itself is the susceptibility gene related to this disease or if it is some other non-HLA gene in linkage disequilibrium with HLA-B51. Therefore, we screened one of the HSP70 genes, HUM70t (HSP70-Hom), around the class III region and the microsatellite sequence located between the HLA-B and TNF genes for genetic polymorphism in BD. A comparison between patients with BD and healthy controls revealed no significant difference in the frequency of the HUM70t polymorphism. In the microsatellite sequence, Tau-a, in the region between the HLA-B and TNF genes, the frequency of 14 repetitions of GT was increased significantly and that of 11 repetitions was decreased significantly in the patient group. Further, the allelic distributions of the B51 antigen-associated microsatellite polymorphism differed significantly between patients and healthy controls, and in the B51 antigen-negative subjects, analysis of the microsatellite polymorphism also revealed a significant difference in the haplotype frequency between the patient and control groups. These results suggest that the HLA-B51 gene may not be the primary locus responsible for BD, and implicate some other gene(s) located between the TNF and HLA-B genes.

Base Sequence

Neurotoxicity of acromelic acid in cultured neurons from rat spinal cord.

Acromelic acid A, which contains the kainic acid structure in its molecule, is known to cause selective damage of interneurons in the rat lower spinal cord. In the present study, the potent neurotoxicity of acromelic acid A was demonstrated in cultured rat spinal neurons in terms of the activity of lactate dehydrogenase that was released from degenerated neurons into the culture medium. Acromelic acid A increased the lactate dehydrogenase activity in time- and concentration-dependent manners, and its EC50 was about 2.5 microM, which was much lower than that of kainic acid (70 microM) and (RS)-alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (EC50; 11 microM). The maximum level of lactate dehydrogenase released by acromelic acid A was quite similar to that by kainic acid, but was about twice the level produced by (RS)-alpha-3-hydroxy-5-methyl-4-isoxazolepropionic acid. Exposure to acromelic acid A caused release of L-glutamate from the cells into the medium; however, the concentration of L-glutamate released was far below the level for inducing the neurotoxic effects. The neurotoxicity of 10 microM acromelic acid A was almost completely inhibited by 30 microM 6-nitro-7-sulphamoylbenzo(F)quinoxaline-2,3-dione and 6-cyano-7-nitroquinoxaline-2,3-dione, potent antagonists for non-N-methyl-D-aspartate receptors, but was partly (35%) reduced by 30 microM dizocilpine maleate. In cultured hippocampal neurons, the toxicity of acromelic acid A was significantly less effective (EC50: 18 microM) than that in spinal neurons, whereas the toxicity of kainic acid was almost the same in both neurons. These results suggest that acromelic acid A directly activates non-N-methyl-D-aspartate receptors on the cultured spinal neurons to induce neuronal death. A new type of non-N-methyl-D-aspartate receptors which is specific to acromelic acid A is suggested to be present at least in spinal neurons.

Amino Acids

Synergistic action of interleukin-10 (IL-10) with IL-3, IL-4 and stem cell factor on colony formation from murine mast cells in culture.

We examined the effects of interleukin-10 (IL-10) on colony formation from two different types of murine mast cells, bone marrow-derived mast cells (BMMC) and serosal mast cells (SMC), using a methylcellulose culture method. IL-10 alone did not induce colony formation from either phenotype. However, BMMC and SMC produced colonies in the presence of IL-10 in combinations with IL-3, IL-4 or stem cell factor (SCF), but they responded in different manners. IL-10 enhanced the IL-3-dependent colony formation from BMMC and induced the colony formation from BMMC synergistically with IL-4 or SCF dose-dependently, although IL-4 and SCF were not active alone. The most significant synergism was observed between IL-10 and IL-4. The addition of IL-10 to the cultures of BMMC in the presence of two or three factors enhanced the colony formation induced by IL-3 plus IL-4, and inhibited the colony formation induced by IL-3 plus SCF or IL-3, IL-4 plus SCF. In the colony formation from SMC, IL-10 synergized with IL-3 but not with IL-4 or SCF. IL-10 in combination with two or three factors enhanced the colony formation from SMC induced by IL-3 plus IL-4, but did not affect the colony formation induced by other combinations among IL-3, IL-4 and SCF. These findings indicate that IL-10 plays an important role in the proliferation of murine mast cells.

Animals

Analysis of survival of allogeneic fetal liver fragments in rats.

The survival of allogeneic fetal liver fragments in the omentum was analyzed in rats. The lymphocyte subsets of the spleen and peripheral blood were also examined. When the fetal liver fragments were transplanted into the omentum, they survived for 2 wk, whereas adult liver fragments survived only 1 wk. In fetal liver fragments transplantation, the CD8 positive lymphocyte percentage in peripheral blood decreased significantly 3 wk after transplantation in comparison with that in adult liver fragment transplantation. The skin graft of the donor party showed a longer median survival time in rats receiving fetal liver fragment transplants than that in recipients of adult liver fragments. Although further study is needed, allogeneic fetal liver fragments survived longer in the omentum than reported elsewhere, and the decrease of CD8 positive peripheral blood lymphocytes may have been the reason for this.

Animals