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Biomedical subjects

S Masuda

Publications and source records attributed to S Masuda.

At least 55 records · Page 3Linked to original sources

[Significance of pyrimidine nucleoside phosphorylase (PyNPase) and dihydropyrimidine dehydrogenase (DPD) in advanced gastric cancers].

We measured pyrimidine nucleoside phosphorylase (PyNPase), a known angiogenetic factor, and dihydropyrimidine dehydrogenase (DPD) in advanced gastric cancers. PyNPase was expressed in cytoplasm of the cancer cells and surrounding interstitial cells. The levels of PyNPase and DPD were significantly higher in cancer tissue. With respect to tumor factors, the level of PyNPase was significantly higher in cases positive for venous invasion. We divided patients into two groups, with high and low activities of IAP and MMP-9. The level of PyNPase was significantly higher in the high IAP activity group. A correlation was suggested between the level of PyNPase and the activity of IAP. 5'-Deoxy-5-fluorouridine (5'-DFUR) is transformed into 5-FU by PyNPase and manifests antitumor effects. DPD is a rate-limiting enzyme in the process of degradation of 5-FU. In the present study, the level of PyNPase/DPD was significantly higher in cancer tissue. PyNPase/DPD suggests not only the malignant potential of the tumor but also the efficiency of chemotherapy using 5-FU, especially 5'-DFUR.

Aged↗

Multispecific substrate recognition of kidney-specific organic anion transporters OAT-K1 and OAT-K2.

We characterized the interactions of various compounds with OAT-K1 and OAT-K2, kidney-specific organic anion transporters. By using Madin-Darby canine kidney cells stably transfected with OAT-K1 or OAT-K2 cDNA, the antitumor drug methotrexate, the mycotoxin ochratoxin A, endogenous organic anions (thyroid hormones, taurocholic acid, and conjugated steroids), and the antiretroviral drug zidovudine were shown to be substrates for these transporters. Although the apparent Michaelis constant (Km) values of methotrexate for OAT-K1 and OAT-K2 were 2.1 and 1.8 microM, respectively, 2.5 mM methotrexate inhibited only 20% of the 125I-thyroid hormones uptake via these transporters. In addition, 100 microM methotrexate did not have any effect on [3H]zidovudine uptake via OAT-K1 or OAT-K2. Similarly, several substrates caused little or no mutual inhibition at concentrations much higher than their Km values for these transporters. Moreover, intracellular methotrexate trans-stimulated the OAT-K1- and OAT-K2-mediated uptake of [3H]folic acid, but not that of other compounds. Organic anion-transporting polypeptide 2 (oatp2), a liver-type homolog of OAT-K1 and OAT-K2, showed similar events. The inhibition constant values of triiodothyronine and taurocholic acid for [3H]digoxin uptake in oatp2-expressing oocytes resulted in 50.4 and 1.48 mM, respectively, which were about 9- and 40-fold higher than their Km values for oatp2, respectively. These findings suggested that several substrates interact with these transporters at different amino acid residue(s). Taken together, these observations suggested that OAT-K1 and OAT-K2 could serve as multispecific transporters, mediating transport of a wide variety of endogenous substances, xenobiotics, and their metabolites in the kidney, presumably via several interaction sites in their molecules.

Animals↗

cDNA cloning and characterization of vascular apoptosis-inducing protein 1.

Hemorrhagic snake venom induces apoptosis in vascular endothelial cells (VEC). In previous reports, we described the purification from crude venom of Crotalus atrox of two vascular apoptosis-inducing proteins (VAP1 and VAP2) that specifically induce apoptosis in vascular endothelial cells. We report here the cDNA cloning and characterization of VAP1. VAP1 cDNA encoded a protein with 610 amino acid residues. The amino acid sequence predicted from the cDNA indicated that VAP1 belongs to the metalloprotease/disintegrin family and that it is a multidomain polypeptide with a proprotein domain, a metalloprotease domain, a disintegrin-like domain, and a cysteine-rich domain. In the disintegrin-like domain, the sequence DECD replaces the RGD sequence that has frequently been found in such domains. We demonstrated that VAP1 has Zn(2+)-dependent metalloprotease activity and degrades fibrinogen. After incubation in the presence of either EDTA or EGTA, VAP1 was hardly able to degrade fibrinogen and to induce apoptosis in VEC. Our results indicated that VAP1 is a new type of snake venom metalloprotease/disintegrin and suggest that the metalloprotease activity of VAP1 might be involved in the induction of apoptosis by VAP1 in VEC.

Amino Acid Sequence↗

Endoscopic surgery for lateral cervical cysts. A report of three cases.

Recently, endoscopic surgery has been applied to cervical exploration. We have developed new techniques for endoscopic neck surgery, and in this paper report our experience with three patients with lateral cervical cysts. A 5- or 10-mm midline trocar for the endoscope and two 5- or 10-mm lateral trocars were inserted from the anterior chest wall and/or both axillary fossae to avoid neck scars. There were no intraoperative complications. Slight subcutaneus emphysema was present postoperatively, but it was limited to the neck and disappeared in a few days. The incisions were completely covered by the patients' undergarments. This is the first report of endoscopic lateral cervical cystectomy.

Adolescent↗

Type I muscle atrophy caused by microgravity-induced decrease of myocyte enhancer factor 2C (MEF2C) protein expression.

To investigate the molecular mechanisms of muscle atrophy under microgravity, the paraspinal muscles of rats after 14 days spaceflight and those of ground-based controls were examined. In the microgravitational environment, expressions of 42 genes changed, and the expressions of heat shock protein 70 and t complex polypeptide 1 increased. In Northern blotting, myocyte-specific enhancer binding factor 2C (MEF2C) and MEF2C-related genes including aldolase A and muscle ankyrin decreased. After 9 days ground recovery, expression of MEF2C increased and it was located mainly on the satellite cells in the muscle regeneration state. MEF2C could be a key transcriptional factor for skeletal muscle atrophy and regeneration under microgravity.

Animals↗

A new biological strategy for high productivity of recombinant proteins in animal cells by the use of hypoxia-response enhancer.

Oxygen supply is one of the major problems in the production of useful proteins by cultured animal cells and therefore it is of importance to devise a system by which a high productivity of human therapeutic recombinant proteins can be maintained or enhanced under low oxygen concentrations. A number of hypoxia-inducible genes have been found in animal cells and the induction in most cases is due to hypoxic activation of the gene transcription. A consensus sequence (HRE = hypoxia-response enhancer) responsible for the hypoxic activation exists in these genes and the binding of a protein, which is widely distributed in animal cells, to this sequence responding to hypoxia activates the promoter activity. The promoter of lactate dehydrogenase A gene is active in Chinese hamster ovary (CHO) cells and the vicinal HRE stimulates the promoter activity efficiently in hypoxia. We have prepared a number of permanent CHO cell lines producing recombinant human erythropoietin (Epo) under control of this promoter/HRE. Epo production was highly hypoxia-inducible when the wild-type of HRE was used but uninducible when the mutant HRE was used. There was little difference in the in vitro and in vivo activities, and glycosylation between Epo produced by the cells cultured in 21% and 2% oxygen. Furthermore, forced expression of hypoxia-inducible factor-1alpha (HIF-1alpha) enhanced Epo production in all oxygen concentrations. These results indicate that a biological strategy based on the hypoxic induction of gene transcription provides a novel system which guarantees a high productivity even uner low oxygen concentrations.

Animals↗

Redox regulation of glutathione S-transferase induction by benzyl isothiocyanate: correlation of enzyme induction with the formation of reactive oxygen intermediates.

Here we report the molecular mechanism underlying the induction of glutathione S-transferase (GST) in rat liver epithelial RL34 cells treated with a cancer chemopreventive isothiocyanate compound, benzylisothiocyanate (BITC). BITC was found to significantly induce GST activity in RL34 cells. Northern and Western blot analyses demonstrated that BITC specifically enhanced the production of the class pi GST isozyme (GSTP1). Our studies demonstrated for the first time that the addition of BITC to the cells resulted in an immediate increase in the reactive oxygen intermediates (ROIs) detected by a fluorescence probe, 2',7'-dichlorofluorescin diacetate. The level of the ROIs in the cells treated with BITC (10 microM) was approximately 50-fold higher than those in the control cells. Furthermore, glutathione depletion by diethyl maleate significantly enhanced BITC-induced ROI production and accelerated the BITC-induced elevation of the GST activity, whereas pretreatment of the cells with glutathione inhibited both the ROI production and GST induction. The structure-activity relationship of the isothiocyanates also indicated that the ROI-producing activities closely correlated with their GST-inducing potencies. Moreover, the GSTP1 enhancer I-containing region was found to be essential for induction of the GSTP1 gene by intracellular ROI inducers such as BITC and diethyl maleate. These data suggest the involvement of the redox regulation on the induction of GSTP1 by BITC.

Animals↗

Aneurysm of the left sinus of Valsalva causing aortic, mitral regurgitation and myocardial ischemia.

An aneurysm of the left sinus of Valsalva producing aortic and mitral regurgitation with myocardial ischemia was treated successfully by reconstructing the left coronary sinus while preserving the aortic cusp combined with coronary artery bypass grafting. Aortic and mitral regurgitation occurred due to distortion of the left aortic cusp by a huge aneurysm that also compressed and obstructed the main trunk of the left coronary artery. The postoperative course was uneventful and follow-up showed aortic and mitral regurgitation to be absent and the coronary graft to be patent. Aortic valve-sparing surgery thus proved to be an appropriate procedure for this case.

Adult↗

Differential localization of organic cation transporters rOCT1 and rOCT2 in the basolateral membrane of rat kidney proximal tubules.

Organic cation transporters play an important role in the secretion of cationic drugs as well as endogenous cationic metabolites in the renal tubules. Immunoblotting showed the presence of organic cation transporter proteins, rOCT1 and rOCT2, in the rat kidney. By immunofluorescence microscopy, rOCT1 was shown to be concentrated in the proximal tubules in the renal cortex. rOCT2, on the other hand, was rich in the proximal tubules in the outer stripe of the outer medulla. Confocal microscopy revealed that both rOCT1 and rOCT2 were localized to the basolateral membranes of these tubule cells. These findings directly show that rOCT1 and rOCT2 are basolateral membrane proteins and are differentially distributed along the proximal tubules.

Animals↗

Generation of HLA-DRB1*1501-restricted p190 minor bcr-abl (e1a2)-specific CD4+ T lymphocytes.

A small population of cells in acute lymphoblastic leukaemia is characterized by a specific translocation of the c-abl oncogene on chromosome 9 to the break point cluster lesion (bcr) on chromosome 22, t(9; 22)(q34; q11) (e1a2). Theoretically, the junction-spanning sequences of oncogene fusion proteins might be ideal targets for immunotherapy because these are not present in normal cells. In this study, we show for the first time that in vitro immunization with a 17-mer e1a2 peptide representing the p190 minor bcr-abl fusion protein resulted in HLA-DRB1*1501-restricted peptide-specific proliferative CD4+ T lymphocytes, using peptide-pulsed monocyte-derived dendritic cells as the antigen-presenting cells.

CD4-Positive T-Lymphocytes↗

Cellular and molecular aspects of drug transport in the kidney.

The kidney plays an important role in the elimination of numerous hydrophilic xenobiotics, including drugs, toxins, and endogenous compounds. It has developed high-capacity transport systems to prevent urinary loss of filtered nutrients, as well as electrolytes, and simultaneously to facilitate tubular secretion of a wide range of organic ions. Transport systems for organic anions and cations are primarily involved in the secretion of drugs in renal tubules. The identification and characterization of organic anion and cation transporters have been progressing at the molecular level. To date, many members of the organic anion transporter (OAT), organic cation transporter (OCT), and organic anion-transporting polypeptide (oatp) gene families have been found to mediate the transport of diverse organic anions and cations. It has also been suggested that ATP-dependent primary active transporters such as MDR1/P-glycoprotein and the multidrug resistance-associated protein (MRP) gene family function as efflux pumps of renal tubular cells for more hydrophobic molecules and anionic conjugates. Tubular reabsorption of peptide-like drugs such as beta-lactam antibiotics across the brush-border membranes appears to be mediated by two distinct H+/peptide cotransporters: PEPT1 and PEPT2. Renal disposition of drugs is the consequence of interaction and/or transport via these diverse secretory and absorptive transporters in renal tubules. Studies of the functional characteristics, such as substrate specificity and transport mechanisms, and of the localization of cloned drug transporters could provide information regarding the cellular network involved in renal handling of drugs. Detailed information concerning molecular and cellular aspects of drug transporters expressed in the kidney has facilitated studies of the mechanisms underlying renal disposition as well as transporter-mediated drug interactions.

Animals↗

Effect of intestinal P-glycoprotein on daily tacrolimus trough level in a living-donor small bowel recipient.

We have examined whether the expression levels of the intestinal absorptive barriers, MDR1 gene product P-glycoprotein and cytochrome P450 IIIA4 (CYP3A4), correlate with the trough levels of orally administered tacrolimus in a recipient of small bowel transplant for 4 months. By using a competitive polymerase chain reaction, the expression of MDR1 messenger RNA (mRNA) and CYP3A4 mRNA by intestinal cells in a part of the mucosa biopsy specimen was evaluated. The average mRNA expression levels of MDR1 and CYP3A4 were 8.6 and 39.6 amol/microg total RNA, respectively. Both the MDR1 and CYP3A4 mRNA levels changed markedly throughout this period. The tacrolimus concentration/dose ratio correlated well with the mRNA expression level of MDR1, but not CYP3A4. These results suggested that intestinal P-glycoprotein rather than CYP3A4 is a good probe to predict the intraindividual variation in the tacrolimus pharmacokinetics during immunosuppressant therapy after small bowel transplantation.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Physiological and pharmacological implications of peptide transporters, PEPT1 and PEPT2.

The H+/peptide co-transporters PEPT1 and PEPT2 mediate the cellular uptake of small peptides and peptide-like drugs from the glomerular filtrates. In the present study, we investigated the physiological and pharmacological implications of both transporters. (i) Comparison of the substrate affinity of PEPT1 and PEPT2 indicated that PEPT2 had higher affinity than PEPT1 for most substrates. (ii) The transport characteristics of beta-lactam antibiotics in the renal brush border membrane vesicles were well correlated with those in a PEPT2-expressing transfectant. These results suggested that PEPT2 predominantly contributed to reabsorption of beta-lactam antibiotics in the kidney at therapeutic concentrations. (iii) In rats with chronic renal failure, glycylsarcosine (Gly-Sar) uptake by the renal brush border membranes vesicles was maintained, whereas Na+-dependent glucose uptake was markedly reduced. It is therefore speculated that the function of peptide transporters is tolerant to chronic renal failure.

Absorption↗

An exfoliative toxin A-converting phage isolated from Staphylococcus aureus strain ZM.

Exfoliative toxin A (ETA) causes staphylococcal scalded-skin syndrome in children. The gene for ETA was believed to be coded by the chromosomal DNA. We isolated temperate phages from an ETA-producing strain, ZM, using a restriction minus strain, 1039, as an indicator. One of the prophages, designated phi-ZM-1 mediated lysogenic conversion of ETA. The polymerase chain reaction assay of the eta gene revealed that phage phi-ZM-1 carries the structural gene for ETA.

Exfoliatins↗

Apoptosis observed in murine peritoneal macrophages treated with interferon gamma through staphylococcal enterotoxin-dependent cell-mediated cytotoxicity.

The concept of superantigens is well-known and widely accepted. In this brief communication, we analyze the behaviour of antigen-presenting cells after T-cell activation by staphylococcal enterotoxin B, a representative superantigen. We tried to activate murine T cells by inflammatory mouse peritoneal macrophage in the presence of staphylococcal enterotoxin B, but no T-cell activation was observed. We, therefore, analyzed surface-specific antigens of the macrophages. They expressed insufficient amounts of MHC class II, CD80 and CD86 molecules on the surface of the cells. On the contrary, increased amounts of MHC class II and CD86 molecules on the cell surfaces were observed after incubation with interferon gamma. Interferon gamma-primed macrophages were found to be competent to activate T cells in the presence of staphylococcal enterotoxin B. To our surprise, these macrophages underwent apoptosis in parallel with T-cell activation.

Animals↗

Acoustical design of the Tokyo Opera City (TOC) concert hall, Japan

The Tokyo Opera City concert hall seats 1632, volume 15 300 m3, and reverberation time, with audience and orchestra, 1.95 s. As part of the design process, measurements on CAD computer and 1:10 wooden models of the hall and full-sized materials samples were conducted over a 5-yr. period. The hall in plan is rectangular. The ceiling is a distorted pyramid, with its peak 28 m above the main floor and nearer the stage than the rear of the hall. This unique shape was analyzed on the models so that all interior surfaces combine to distribute sources on the stage uniformly over the seating areas and to yield optimum values for reverberation time (RT), early decay time (EDT), interaural cross-correlation coefficient (IACCE3), bass ratio (BR), initial-time-delay gap (ITDG), strength (G), and sound diffusion index (SDI) [for definitions see L. Beranek, Concert and Opera Halls: How They Sound (Acoustical Society of America, Woodbury, NY, 1996)]. On the long ceiling facing the stage, Schroeder QRD diffusers provide diffusion, eliminate a possible echo, and strengthen lateral reflections. Performers and critics judge the acoustics excellent.

Journal Article↗