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Biomedical subjects

Y Matsuda

Publications and source records attributed to Y Matsuda.

At least 271 records · Page 15Linked to original sources

Effect of geometrical cement size on in vitro and in vivo indomethacin release from self-setting apatite cement.

The relationship between in vitro and in vivo indomethacin (IMC) release from a self-setting bioactive apatite cement and cement size were investigated. Differently sized apatite cements (total weight, 500 mg); either 64 of the small size (2 mm diameter x 2 mm thickness), sixteen of the medium size (4 mm x 2 mm) or one of the large size (15 mm x 2 mm) were obtained from cement bulk powder containing tetracalcium phosphate, dicalcium phosphate dihydrate and hydroxyapatite. In vitro IMC release from the 1, 2 and 5% drug-loaded apatite cement systems in simulated body fluid (SBF) (pH 7.25) at 37 degrees C increased with increasing concentrations of IMC and with decreasing geometrical size of the cement. The plots of in vitro IMC release per unit area against the square root of time increased with increasing IMC concentrations, but not with decreasing geometrical size of the cement. After subcutaneous (s.c.) implantation of differently sized 1% IMC-loaded cements in male Wistar rats, the plasma IMC concentration and the area under the curve increased with decreasing cement diameter. The in vivo IMC release profiles of the cement were deconvoluted from the plasma IMC profiles after s.c. administration of IMC solution. The plots of in vivo IMC release per unit area against the square root of time suggested that the initial release from all 1% drug-loaded cements was very rapid, slowed after one day, but continued for over two weeks. The relationship between the in vitro release in SBF and the in vivo release in rats of IMC-loaded cements was linear.

Animals↗

Altered expression of alpha-actin, smooth muscle myosin heavy chain-1 and calponin in cultured smooth muscle cells by oxidized low density lipoproteins.

The expression of the contractile proteins, alpha-actin, smooth muscle myosin heavy chain-1 (SM1) and calponin present in smooth muscle cells (SMC) in the presence of oxidized low density lipoproteins (oxLDL) was investigated in two different cell cultures: the mouse smooth muscle cell line SVSC and rat smooth muscle cells (RSMC). Exposure of the cells to 187 microg protein/ml oxLDL for 24 h reduced the expression of all three contractile proteins in both cell cultures when compared to cells incubated in the presence of native LDL. This investigation of the response of SMC contractile proteins to oxLDL may provide further insights into the mechanisms by which oxidatively modified LDL is atherogenic and suggests that oxLDL may contribute to the regulation of the expression of the genes responsible for the synthesis of smooth muscle cell contractile proteins.

Actins↗

Percutaneous autologous bone marrow transplantation for nonunion of the femur.

Percutaneous bone marrow injections were performed on 7 nonunions of the femur. There were 6 hypervascular nonunions and one avascular nonunion. Two nonunions presented with active infections. One other patient had a history of infection which had subsided. One nonunion received the injection twice. After the site of nonunion was curetted and the bone surface was scored, 150 ml of bone marrow aspirated from the iliac bone was injected. Complete union occurred in 4 patients within 9 months; all of them were uninfected hypervascular nonunions following intramedullary nail fixation. One nonunion with a bone defect united partially leaving a 1 x 1 cm defect. The two infected femoral nonunions failed to unite. The results show that percutaneous autologous bone marrow injection for femoral nonunions can be considered for uninfected hypervascular nonunions following intramedullary nail fixation. In these cases stimulation of healing processes of fracture leading to consolidation can be expected from bone marrow injection. However, femoral nonunion with an active infection and loss of fixation is considered to be a contraindication for this technique.

Adult↗

Calcium ions potentiate lipoxygenase activity of cytochrome c at the physiological pH.

Cytochrome c oxidized linoleic acid, with lipoxygenase-like activity, to 9-hydroperoxy-10,12-octadecadienoic acid (9-HpODE), 13-hydroperoxy-9,11-octadecadienoic acid (13-HpODE), 13-keto-9,11-octadecadienoic acid (13-KODE), and hydroxy-epoxy-octadecenoic acids (HEPOs) in the presence of calcium chloride at the physiological pH of 7.5. In the absence of calcium, the reaction was remarkably reduced. Statistically significant increase of 13-KODE was observed 1 min after the reaction was started by adding calcium. Calcium chloride at concentrations as low as 30 microM caused statistically significant increase of 13-KODE production in the presence of 1 microM cytochrome c, and cytochrome c at concentrations as low as 10 nM caused statistically significant increase of 13-KODE production in the presence of 2 mM calcium. The addition of bleomycin enhanced the reaction, and the addition of adriamycin attenuated the reaction. The same oxidized linoleic acid products were found in the submitochondrial particles which were hydrolyzed by phospholipase-A2 in the presence of calcium. Lipoxygenase activity potentiated by calcium may be involved in the lipid peroxidation in the submitochondrial particles hydrolyzed by phospholipase-A2.

Animals↗

Association of tyrosine phosphatases SHP-1 and SHP-2, inositol 5-phosphatase SHIP with gp49B1, and chromosomal assignment of the gene.

We have analyzed the molecules participating in the inhibitory function of gp49B1, a murine type I transmembrane glycoprotein expressed on mast cells and natural killer cells, as well as the chromosomal location of its gene. As assessed by SDS-polyacrylamide gel electrophoresis and immunoblot analysis, tyrosine-phosphorylated, but not nonphosphorylated, synthetic peptides matching each of the two immunoreceptor tyrosine-based inhibitory motif (ITIM)-like sequences found in the cytoplasmic portion of gp49B1 associated with the approximately 65-kDa tyrosine phosphatase SHP-1 and approximately 70-kDa SHP-2 derived from RBL-2H3 cells. In addition, the phosphotyrosyl peptide matching the second ITIM-like sequence also bound the approximately 145-kDa inositol polyphosphate 5-phosphatase SHIP. Thus, it has been strongly suggested that the inhibitory nature of gp49B involves the recruitment of SHP-1, SHP-2, and SHIP for the delivery of inhibitory signal to the cell interior upon phosphorylation of tyrosine residues in their ITIMs. The gp49B gene has been found to be in the juxtaposition of its cognate gene, gp49A. The gene pair was shown to locate in the B4 band of mouse chromosome 10. In this region, no conserved linkage homology to human chromosome 19, where the genes for killer cell inhibitory receptors are found, has been identified.

Animals↗

Identification of sperm-bearing female-specific chromosome in the sex-reversed chicken.

Sexual differentiation in the female chick embryo was phenotypically reversed to the male sex by injection of an aromatase inhibitor (Fadrozole, 0.1 mg/egg) into the embryo at day 5 of incubation. The birds were raised to 10 months of age, and the morphology of the gonads of sex-reversed hens were examined by the light-microscopic morphology, and the presence of the W chromosome gene was determined by fluorescence in situ hybridization (FISH) technique and used for PCR analysis of a single isolated sperm. The sex-reversed hens possessed two testes with a fully developed oviduct on the left side. The testes contained essentially the same cellular components as those of normal testes, although sperm counts were low. FISH analysis revealed numerous spermatids and several sperm bearing W-chromosomes, indicating that the second meiosis occurred normally but that the transformation from the spermatid to the spermatozoon is partially impaired. PCR analysis using the DNA of a single sperm also indicates that sperm-carrying the W chromosome were produced.

Animals↗

Motoneuron apoptosis is blocked by CEP-1347 (KT 7515), a novel inhibitor of the JNK signaling pathway.

Neurons undergoing apoptosis can be rescued by trophic factors that simultaneously increase the activity of extracellular signal-regulated kinase (ERK) and decrease c-Jun N-terminal kinase (JNK) and p38. We identified a molecule, CEP-1347 (KT7515), that rescues motoneurons undergoing apoptosis and investigated its effect on ERK1 and JNK1 activity. Cultured rat embryonic motoneurons, in the absence of trophic factor, began to die 24-48 hr after plating. During the first 24 hr ERK1 activity was unchanged, whereas JNK1 activity increased fourfold. CEP-1347 completely rescued motoneurons for at least 72 hr with an EC50 of 20 +/- 2 nM. CEP-1347 did not alter ERK1 activity but rapidly inhibited JNK1 activation. The IC50 of CEP-1347 for JNK1 activation was the same as the EC50 for motoneuron survival. Inhibition of JNK1 activation by CEP-1347 was not selective to motoneurons. CEP-1347 also inhibited JNK1 activity in Cos7 cells under conditions of ultraviolet irradiation, osmotic shock, and inhibition of glycosylation. Inhibition by CEP-1347 of the JNK1 signaling pathway appeared to be selective, because CEP-1347 did not inhibit p38-regulated mitogen-activated protein kinase-activated protein kinase-2 (MAPKAP2) activity in Cos7 cells subjected to osmotic shock. The direct molecular target of CEP-1347 was not JNK1, because CEP-1347 did not inhibit JNK1 activity in Cos7 cells cotransfected with MEKK1 and JNK1 cDNA constructs. This is the first demonstration of a small organic molecule that promotes motoneuron survival and that simultaneously inhibits the JNK1 signaling cascade.

Animals↗

Altered regulation of Src tyrosine kinase by transforming growth factor beta1 in a human hepatoma cell line.

Transforming growth factor betas (TGF-betas) are the potent growth inhibitors for various cell types. Certain transformed cells, however, show poor response to TGF-beta-induced growth inhibition, which contributes to their uncontrolled proliferation. Recently, we have reported that TGF-beta1 induces degradation of activated Src tyrosine kinase in rat fibroblasts. To elucidate the alteration in TGF-beta signaling pathway in tumor cells that cannot respond to the cytokine, we compared the effects of TGF-beta1 on Src kinase in two human hepatoma cell lines, TGF-beta1-insensitive Mahlavu cells and TGF-beta1-sensitive HepG2 cells. TGF-beta1 decreased Src kinase activity in HepG2 cells, but increased cellular Src levels and Src kinase activity in Mahlavu cells. Co-incubation of Mahlavu cells with TGF-beta1 and 12-O-tetradecanoyl phorbol 13-acetate (TPA) decreased Src protein levels and Src kinase activity, inducing TGF-beta1 sensitivity. TGF-beta1 induced tyrosine dephosphorylation of Ras guanosine triphosphatase-activating protein (Ras-GAP) and Ras inactivation in HepG2 cells, but induced Ras-GAP phosphorylation and Ras activation in Mahlavu cells. The Src kinase inhibitor abolished the increase of Src kinase activity in TGF-beta1-treated Mahlavu cells, and induced TGF-beta1 sensitivity. These findings suggest that regulation of Src kinase by TGF-beta1 is altered in Mahlavu cells. The altered regulation of Src may contribute to TGF-beta1 insensitivity in this cell line, at least in part through activation of Ras.

Animals↗

Protein kinase C-independent selective induction of nitric oxide synthase activity in rat alveolar macrophages by staurosporine.

The purpose of this study was to characterize the effect of the K-252a family of protein kinase inhibitors with emphasis on staurosporine (ST), on stimulation of the inducible nitric oxide synthase activity in rat alveolar NR8383 macrophages. We found that ST, but not K-252a, K-252b, KT-5720, and KT-5823, selectively enhanced the basal or the lipopolysaccharide (LPS)-induced nitric oxide production. ST-induced NO production was blocked by L-NAME, K-252a, and phosphatase inhibitors and could not be mimicked by other protein kinase C (PKC) inhibitors such as calphostine. An additive effect between ST and PMA on NO production was observed. LPS and PMA but not ST induced PKCbeta translocation from the cytosol to the membrane fraction. ST may induce and affect the state of phosphorylation of iNOS via PKC-independent mechanisms. ST provides an important pharmacological tool to investigate PKC-independent signal transduction pathways which regulate iNOS, induction, and activity in rat NR8383 macrophages.

Animals↗

Detection of the sarin hydrolysis product in formalin-fixed brain tissues of victims of the Tokyo subway terrorist attack.

One of the hydrolysis products of sarin (isopropyl methylphosphonofluoridate) was detected in formalin-fixed brain tissues of victims poisoned in the Tokyo subway terrorist attack. Part of this procedure, used for the detection of sarin hydrolysis products in erythrocytes of sarin victims, has been described previously. The test materials were four individual cerebellums, which had been stored in formalin fixative for about 2 years. Sarin-bound acetylcholinesterase (AChE) was solubilized from these cerebellums, purified by immunoaffinity chromatography, and digested with trypsin. Then the sarin hydrolysis products bound to AChE were released by alkaline phosphatase digestion, subjected to trimethylsilyl derivatization (TMS), and detected by gas chromatography-mass spectrometry. Peaks at m/z 225 and m/z 240, which are indicative of TMS-methylphosphonic acid, were observed within the retention time range of authentic methylphosphonic acid. However, no isopropyl methylphosphonic acid was detected in the formalin-fixed cerebellums of these 4 sarin victims, probably because the isopropoxy group of isopropyl methylphosphonic acid underwent chemical hydrolysis during storage. This procedure will be useful for the forensic diagnosis of poisoning by protein-bound, highly toxic agents, such as sarin, which are easily hydrolysed. This appears to be the first time that intoxication by a nerve agent has been demonstrated by analyzing formalin-fixed brains obtained at autopsy.

Acetylcholinesterase↗

rim2 (recombination-induced mutation 2) is a new allele of pearl and a mouse model of human Hermansky-Pudlak syndrome (HPS): genetic and physical mapping.

A mouse mutation, rim2, is one of a series of spontaneous mutations that arose from the intra-MHC recombinants between Japanese wild mouse-derived wm7 and laboratory MHC haplotypes. This mutation is single recessive and characterized by diluted coat color and hypo-pigmentation of the eyes. We mapped the rim2 gene close to an old coat color mutation, pearl (pe), on Chromosome (Chr) 13 by the high-density linkage analysis. The pearl mutant is known to have abnormalities similar to Hermansky-Pudlak syndrome (HPS), a human hemorrhagic disorder, characterized by albinism and storage pool deficiency (SPD) of dense granules in platelets. A mating cross of C57BL10/Slc-rim2/rim2 and C57BL/6J-pe/pe showed no complementation of coat color. Additionally, characteristics similar to SPD were also observed in rim2. Thus, rim2 appeared to be a new allele of the pe locus and serves as a mouse model for human HPS. We have made a YAC contig covering the rim2/pe locus toward positional cloning of the causative gene.

Albinism, Oculocutaneous↗

Cloning and mapping of Np95 gene which encodes a novel nuclear protein associated with cell proliferation.

We previously obtained a monoclonal antibody (Th-10a mAb) that recognizes a single 95-kDa mouse nuclear protein (NP95). Immunostaining analyses revealed that the NP95 was specifically stained in the S phase of normal mouse thymocytes. In contrast, mouse T cell lymphoma cells exhibited a constantly high level of NP95 accumulation irrespective of cell stages during the cell cycle. In the present study, we isolated the cDNA encoding the NP95 from a lambdagt-11 cDNA expression library, using the Th-10a mAb. Sequencing of the whole 3.5-kb cDNA revealed that NP95 is a novel nuclear protein with an open reading frame (ORF) consisting of 782 amino acids. The ORF contains a zinc finger motif, a potential ATP/GTP binding site, a putative cyclin A/E-cdk2 phosphorylation site, and the retinoblastoma protein (RB)-binding motif "IXCXE". The chromosomal location of Np95 gene was determined by fluorescence in situ hybridization. Np95 gene locates on mouse Chromosome (Chr) 17DE1.1. and rat Chr 9q11.2-q12.1. Np95 was strongly expressed in the testis, spleen, thymus, and lung tissues, but not in the brain, liver, or skeletal muscles. These results collectively implicate this novel nuclear protein in cell cycle progression and/or DNA replication.

Amino Acid Sequence↗

Capillaries with fenestrations around regenerating muscle fibers in the soleus muscle of the dystrophic (dy) mouse.

To investigate the morphological changes in capillaries around regenerating muscle fibers in the dystrophic (dy) mouse, we examined capillaries in the soleus muscles of 30-day-old control and dy mice by electron microscopy. In the control mice, the intramuscular capillaries were continuous. In the dystrophic mice, the muscles contained degenerative muscle fibers and many small muscle fibers regenerating after necrosis; these fibers had centrally located nuclei. The capillaries in the dy mice were mostly continuous, but some had a narrow vascular lumen around regenerating muscle fibers, possibly indicating newly formed capillaries. Moreover, about 20% of the capillaries with a narrow vascular lumen had a small number (less than five) of fenestrae bridged by a single-layered diaphragm. These findings suggest that capillary networks around muscle fibers regenerating after necrosis are remodeled by newly formed capillaries, and some of these capillaries have fenestrae in the endothelium to increase the supply of nutrients and oxygen to the regenerating muscle fibers.

Animals↗

Angiographic follow-up of internal thoracic artery for free bypass grafting.

BACKGROUND: The use of free internal thoracic artery (ITA) grafts in patients with smaller body surface areas has been questioned because of technical difficulties and inadequate graft flow. METHODS: To evaluate postoperative changes in the diameter of free ITA grafts, we performed coronary angiography immediately after coronary artery bypass grafting and then again at a mean of 42 +/- 6 months later. In 20 consecutively treated patients, 21 free ITAs were used as bypass conduits. Two ITA grafts that were patent at the time of the first angiography had closed at the second angiography. Postoperative changes in ITA graft diameter were measured in the 19 patent ITA grafts. RESULTS: At the first angiography, the mean diameters of the proximal, middle, and distal ITA grafts were 2.28 +/- 0.45 mm, 2.34 +/- 0.39 mm, and 2.12 +/- 0.38 mm, respectively. At the second angiography, the mean diameters of the proximal, middle, and distal ITA grafts were 2.85 +/- 0.50 mm, 2.89 +/- 0.53 mm, and 2.72 +/- 0.53 mm, respectively. All segments of the ITA grafts had dilated significantly between the first and second angiographic evaluations (p < 0.01). The percentage change in graft diameter was greater when the initial ITA diameter was less than 2.3 mm (32.0% +/- 28.0%) than when it was 2.3 mm or more (18.8% +/- 11.3%) (p < 0.05). CONCLUSIONS: The postoperative increase in free ITA graft diameter depends on coronary blood flow requirements.

Adult↗

Three-dimensional structure of the vascular network in normal and immobilized muscles of the rat.

OBJECTIVE: To examine whether there are three-dimensional changes in capillaries of rat soleus muscle during mechanical limb immobilization. DESIGN: Scanning electron microscopy, with the microcorrosion cast technique, was used to examine vascular networks in immobilized Wistar rat soleus muscles from 4 to 12 weeks after limb immobilization and to compare these networks with those in the control muscle. INTERVENTION: Immobilization of the soleus muscle was achieved by unilateral pinning of the ankle joint in full plantar flexion. RESULTS: The wavelike structure of the vascular network in the control muscles changed into a straight configuration in 8- and 12-week immobilized muscles.

Animals↗

Expression of activin A is increased in cirrhotic and fibrotic rat livers.

BACKGROUND & AIMS: Activin A, a member of the transforming growth factor (TGF)-beta superfamily, recently has been reported to suppress DNA synthesis and to induce apoptosis of hepatocytes. These biological functions are similar to those of TGF-beta1, which is overexpressed in liver cirrhosis. The aim of this study was to examine whether activin A is involved in liver cirrhosis and fibrosis. METHODS: Liver cirrhosis or fibrosis was induced by intraperitoneal injections of dimethylnitrosamine or porcine serum into rats. The kinetics of activin A messenger RNA (mRNA) expression in cirrhotic and fibrotic livers and primary cultured rat hepatocytes were assessed by Northern blotting, and the localization of activin A was determined immunohistochemically. Modulation of type 1 collagen mRNA expression by activin A in rat cultured Ito/fat-storing cells and fibroblasts was also examined. RESULTS: Northern blotting showed that activin A mRNA expression was enhanced in fibrotic livers. The numbers of hepatocytes expressing immunoreactive activin A were significantly greater, especially around the fibrotic areas. Activin A mRNA expression in cultured hepatocytes was increased significantly by TGF-beta1 and by activin A itself. Furthermore, type 1 collagen mRNA expression in cultured cells was enhanced by activin A and TGF-beta1 in a synergistic manner. CONCLUSIONS: Activin A is overexpressed in rat cirrhotic and fibrotic livers and may contribute to hepatic fibrogenesis.

Activins↗