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Biomedical subjects

T Miyamoto

Publications and source records attributed to T Miyamoto.

At least 19 recordsLinked to original sources

Interleukin-4 enhances in vitro mineralization in human osteoblast-like cells.

The effect of human interleukin-4 (hIL-4) on mineralization in human osteoblast-like cells was investigated. Confluent cells were incubated with hIL-4 for 16 or 30 days in the presence or absence, respectively, of alpha-glycerophosphate (alpha-GP), which accelerates the mineralization process. hIL-4 (0.3 ng/ml) induced mineralization with 1.9-, 26- and 37-fold increases of hydroxyproline, calcium, and osteocalcin content, respectively, in the presence of alpha-GP. Mineralization was not induced with other cytokines, hIL-1, hIL-2, hIL-6, or mIL-4. hIL-4 also induced mineralization in the absence of alpha-GP in a manner different from that of 1 alpha, 25(OH)2 vitaminD3 (1,25(OH)2VD3). These findings suggest that IL-4 may play an important role in bone formation.

Alkaline Phosphatase

Neurotrophic action of gliostatin on cortical neurons. Identity of gliostatin and platelet-derived endothelial cell growth factor.

Gliostatin is a polypeptide growth inhibitor of apparent M(r) = 100,000 with a homodimeric structure comprising two 50-kDa subunits, acting on astrocyte as well as astrocytoma cells (Asai, K., Hirano, T., Kaneko, S., Moriyama, A., Nakanishi, K., Isobe, I., Eksioglu, Y.Z., and Kato, T. (1992) J. Neurochem., 59, 307-317). The amino acid sequences of 13 tryptic peptides including the amino terminus were completely identical to those of platelet-derived endothelial cell growth factor (PD-ECGF) (Ishikawa, F., Miyazono, K., Hellman, U., Drexler, H., Wernstedt, C., Hagiwara, K., Usuki, K., Takaku, F., Risau, W., and Heldin, C.-H. (1989) Nature 338, 557-562). Gliostatin and PD-ECGF, purified from human placenta, shared growth inhibition on glial cells and growth promotion on endothelial cells, and exhibited similar values for half-maximal dose of glial growth inhibition (ID50 = 1.3 nM) and the half-maximal concentration of endothelial growth promotion (EC50 = 1.0 nM), suggesting that both factors evoke the biological actions through an identical receptor on each cell surface. We have further demonstrated evidence of a novel neurotrophic action of gliostatin/PD-ECGF toward embryonic rat cortical neurons in culture. The half-maximal concentration of gliostatin/PD-ECGF for neurotrophic action was 0.3 nM. All actions on glial, endothelial, and neuronal cells, were abolished by a monoclonal antibody against gliostatin. These data indicate that gliostatin/PD-ECGF may play important roles on development and regeneration of the central nervous system and may also involve the induction of angiogenesis for the formation of blood brain barrier.

Amino Acid Sequence

[Gd-DTPA-enhanced MR imaging of the normal facial nerve].

We performed a prospective imaging study of the normal facial nerve within the temporal bone before and after injection of Gd-DTPA. The study included 29 patients using a 1.5T superconducting unit and 40 nerves (right: 21; left: 19) were available for analysis. There was no enhancement of the facial nerve within the internal auditory canal in the entire series. However, the enhancement at the labyrinthine segment was observed in one nerve (3%); at the geniculate ganglion in seven (18%); at the tympanic segment in 18 (45%) and at the mastoid segment in 28 nerves (70%). Our results indicate that enhancement of the facial nerve in normal subjects is not a rare condition.

Adolescent

Distribution of alkyl and alkenyl ether-linked phospholipids and platelet-activating factor-like lipid in various species of invertebrates.

The levels of alkenylacyl, alkylacyl and diacyl subclasses of choline glycerophospholipid (CGP) and ethanolamine glycerophospholipid (EGP) fractions in 28 species of various invertebrates were studied. We found that only small amounts of either 1-alkyl-2-acyl-sn-glycero-3-phosphocholine (alkylacyl-GPC) or 1-alkenyl-2-acyl-sn-glycero-3-phosphoethanolamine (alkenylacyl-GPE) are present in most species of insects. On the other hand, almost all species examined in various phyla other than Arthropoda were shown to contain large amounts of both alkylacyl-GPC and alkenylacyl-GPE. The highest proportion of alkylacyl subclass in CGP was noted in sponge, Halichondria japonica (81.8% of CGP) and the highest proportion of alkenylacyl subclass in EGP was found in clam worm, Marphysa sanguinea (88.7% of EGP). We next surveyed the presence of platelet-activating factor (PAF)-like lipid in 45 species of invertebrates. PAF-like lipid was widely distributed among various lower animals. The highest value was obtained for sea cucumber, Stichopus japonicus, in which PAF-like lipid was present throughout the body. We also confirmed the presence of acetyltransferase activity in several lower animals. These results suggest that alkyl and alkenyl ether-linked phospholipids including PAF are physiologically important molecules particularly for invertebrates belonging to lower phyla.

Animals

Cloning and characterization of the human thyroid hormone receptor beta 1 gene promoter.

The promoter region of the human (h) thyroid hormone receptor (TR) beta 1 gene was isolated from a human placenta genomic library. Primer extension and S1 nuclease mapping confirmed a single transcriptional start site. DNA sequence analysis of the 5' upstream region revealed the existence of a putative thyroid response element (TRE) which is highly homologous to TREs found in several thyroid hormone responsive genes. Binding of hTR protein to the promoter region of the hTR beta 1 gene was confirmed by gel mobility shift assay. A transient transfection study demonstrated that hTR activated the expression of a reporter gene containing the promoter sequence of the hTR beta 1 gene in a hormone dependent manner. The TRE in the hTR beta 1 gene promoter may be involved in the autoregulation of hTR beta 1 gene expression.

Base Sequence

Regulation of rat hepatic peroxisomal enoyl-CoA hydratase-3-hydroxyacyl-CoA dehydrogenase bifunctional enzyme by thyroid hormone.

Rat hepatic t protein that is negatively regulated by thyroid hormone in nuclear globulin extract was characterized by the antibodies. The following evidence indicated that t protein is a peroxisomal enoyl-CoA hydratase-3-hydroxyacyl-CoA dehydrogenase bifunctional enzyme (bifunctional enzyme). 1. Both proteins had an identical molecular size, and were immunologically indistinguishable from each other. 2. The t protein was abundant in mitochondrial fraction which contained abundant peroxisomes. 3. The amount of the t protein was increased by a peroxisomal proliferator. 4. The activity of the peroxisomal bifunctional enzyme corresponded to the t protein in CM-Sephadex column chromatography. The amount of peroxisomal bifunctional enzyme was increased by thyroidectomy and decreased by 3,5,3'- triiodo-L-thyronine treatment in the whole homogenate of rat liver. These results indicate that the levels of peroxisomal bifunctional enzyme were regulated by thyroid hormone in vivo.

3-Hydroxyacyl CoA Dehydrogenases

Regulation of B cell function by lobenzarit, a novel disease-modifying antirheumatic drug.

OBJECTIVE: Lobenzarit (disodium 4-chloro-2,2'-iminodibenzoate [CCA]) is a novel disease-modifying drug for the treatment of rheumatoid arthritis (RA). Although its clinical efficacy has been demonstrated, its mechanism of action remains unclear. We therefore examined the effects of CCA on in vitro IgM and IgM rheumatoid factor (IgM-RF) production by human B cells. METHODS: IgM and IgM-RF production was induced from highly purified B cells from 8 healthy donors by stimulation with Staphylococcus aureus Cowan 1 (SAC) plus factors generated from mitogen-activated T cells (TCF) or with immobilized anti-CD3-activated CD4+ T cells. RESULTS: CCA suppressed the production of IgM-RF as well as IgM at concentrations of 25-50 micrograms/ml (therapeutic serum concentrations of the drug), although the IgM-RF production induced by SAC plus TCF was suppressed at lower concentrations of CCA (1-3 micrograms/ml). Whereas CCA suppressed interleukin-2 (IL-2) production by anti-CD3-activated CD4+ T cells, its suppressive effects on B cells were not overcome by addition of IL-2 or TCF. CCA did not inhibit the initial stages of B cell activation in either culture system, but rather, suppressed the maturation of previously activated B cells. Cell cycle analysis by acridine orange staining indicated that CCA-mediated inhibition of B cell responsiveness induced by anti-CD3-activated CD4+ T cells was the result of a block at the G1-S interphase. CONCLUSION: These results indicate that CCA suppresses the production of IgM and IgM-RF by directly inhibiting activated B cells. Thus, one of the actions of CCA in RA may be the suppression of the function of activated B cells.

Anti-Inflammatory Agents, Non-Steroidal

NIH3T3 transfectant containing human K-ras oncogene shows enhanced metastatic activity after in vivo tumor growth or co-culture with fibroblasts.

A clone of NIH3T3 transformant (H-3), obtained by transfecting genomic DNA of a human colon carcinoma cell line, contains human K-ras oncogene and yields metastatic pulmonary nodules after intravenous injection of the cells into nude mice. This metastatic ability was enhanced remarkably after in vivo tumor growth (subcutaneous tumor formation in nude mice) accompanied by increased mRNA expression and gene amplification of the human-derived K-ras oncogene, while it declined gradually as the passage number increased in vitro, with corresponding decreases of gene amplification and mRNA expression. Six subclones were randomly selected from H-3 cells which had been subcultured to passage 22. All of the clones in culture showed almost the same low level of metastatic ability and exhibited little K-ras oncogene amplification with correspondingly low mRNA expression. However, after they formed tumors in nude mice, every clone acquired high metastatic ability and the gene amplification increased, with elevated mRNA expression. These experimental facts indicated that acquisition of metastatic ability coupled with the function of K-ras oncogene was conditional in nature, being strongly affected by in vivo tumor circumstances. The low metastatic and G-418-resistant H-3 cells were co-cultured with BALB/c3T3 fibroblasts for 2-4 weeks. After removal of fibroblasts by exposure to G-418, the tumor cells exhibited increased metastatic ability and human K-ras oncogene mRNA, suggesting an intimate interaction between H-3 cells and fibroblasts influencing the function of transfected human K-ras oncogene. Fibroblasts of the host animal may thus have an important role in generating enhanced metastatic activity of H-3 cells.

3T3 Cells

IP3- and cAMP-induced responses in isolated olfactory receptor neurons from the channel catfish.

Olfactory receptor neurons enzymatically dissociated from channel catfish olfactory epithelium were depolarized transiently following dialysis of IP3 or cAMP (added to the patch pipette) into the cytoplasm. Voltage and current responses to IP3 were blocked by ruthenium red, a blocker of an IP3-gated Ca(2+)-release channel in sarcoplasmic reticulum. In contrast, the responses to cAMP were not blocked by extracellularly applied ruthenium red, nor by L-cis-diltiazem or amiloride and two of its derivatives. The current elicited by cytoplasmic IP3 in neurons under voltage clamp displayed a voltage dependence different from that of the cAMP response which showed marked outward rectification. A sustained depolarization was caused by increased cytoplasmic IP3 or cAMP when the buffering capacity for Ca2+ of the pipette solution was increased, when extracellular Ca2+ was removed or after addition of 20-200 nM charybdotoxin to the bathing solution, indicating that the repolarization was caused by an increase in [Cai] that opened Ca(2+)-activated K+ channels. The results suggest that different conductances modulated by either IP3 or cAMP are involved in mediating olfactory transduction in catfish olfactory receptor neurons and that Ca(2+)-activated K+ channels contribute to the termination of the IP3 and cAMP responses.

Animals

Preoperative evaluation of myocardial viability by thallium-201 imaging in patients with old myocardial infarction who underwent coronary revascularization.

The myocardial uptake and redistribution in thallium scintigraphy and the regional wall motion by echocardiography were evaluated by a semi-quantitative method in 42 patients who previously had myocardial infarction (50 target vessels) and underwent coronary revascularization. The aim of this study was to elucidate the significance of the initial image, delayed image and redistribution on thallium-201 scintigraphy for clinical diagnosis of the myocardial viability. As a semi-quantitative analysis, we used a bull's-eye display for thallium image and centerline method for echocardiographic wall motion, and compared the results before and after revascularization. As a result, the thallium grade improved postoperatively in all 17 areas which preoperative had showed redistribution, and also in 11 of the 32 areas without preoperative redistribution. The sensitivity, specificity and accuracy of preoperative thallium redistribution for predicting myocardial viability were 61%, 100% and 78%, respectively, when the postoperative improvement in the thallium grade was used as the standard. The postoperative probability of improvement in the thallium grade increased in proportion to the preoperative thallium grade (delayed image) (p less than 0.01). There was no correlation between the preoperative thallium delayed image and postoperative improvement in wall motion. Postoperative improvement in thallium image and wall motion could not be predicted from the preoperative wall motion. Thus, postoperative improvement in thallium images can be anticipated if redistribution is present on the preoperative thallium image, and the preoperative thallium delayed image is useful for predicting myocardial viability. Improvement in wall motion could not be predicted preoperatively by these methods.

Adult

Cushing's syndrome induced by hypersecretion of cortisol from only one of bilateral adrenocortical tumors.

A case of Cushing's syndrome induced by the unilateral (right side) dominance of cortisol secretion in the face of bilateral adrenal tumors is reported. The adrenal tumor resected on the right side was a so-called black adenoma and histologically without any findings of nodular hyperplasia. After resection of the adrenal adenoma, no findings of cortisol hypersecretion from the remaining adrenal tumor on the left side were observed until the present, suggesting that the tumor of the left adrenal gland is a nonfunctioning adenoma. These data imply that the adrenal adenomas have primarily developed from the adrenal gland itself, rather than from micronodular hyperplasia by corticotropin stimulation, and that one of these tumors produces excess hormones initially by corticotropin stimulation, but the other remains in cell proliferation.

Adenoma

Prolonged survival of MRL-lpr/lpr mice treated with Tripterygium Wilfordii Hook-F.

MRL-lpr/lpr mice were treated with Tripterygium Wilfordii Hook-F (TWHF), a Chinese herbal medicine successfully used for human rheumatoid arthritis. Dramatic prolongation of survival and the reduction of urinary protein were observed in mice treated with a high dose of TWHF (20 mg/kg, three times a week) compared to the control animals receiving solvent alone. A slight but significant reduction was also seen in the degree of lymphadenopathy and arthritis with the high dose treatment. Surprisingly, no significant difference was present in IgM rheumatoid factor and IgG anti-double-stranded DNA antibody levels or in the histopathology of lupus nephritis. These results indicate the dissociation of histopathological renal disease and the degree of proteinuria or the life span. Although further pharmacological analysis is required, TWHF might be potentially useful for diseases such as systemic lupus erythematosus or nephrotic syndrome.

Animals

ONO-4057, a novel, orally active leukotriene B4 antagonist: effects on LTB4-induced neutrophil functions.

ONO-4057(5-[2-(2-Carboxyethyl)-3-[6-(4-methoxyphenyl)-5E- hexenyl]oxyphenoxy]valeric acid), an orally active leukotriene B4(LTB4) antagonist, displaced the binding of [3H] LTB4 to the LTB4 receptor in human neutrophil (Ki = 3.7 +/- 0.9 nM). ONO-4057 inhibited the LTB4-induced rise in cytosolic free calcium (the concentration causing 50% inhibition (IC50) = 0.7 +/- 0.3 microM) and inhibited human neutrophil aggregation, chemotaxis or degranulation induced by LTB4 (IC50 = 3.0 +/- 0.1, 0.9 +/- 0.1 and 1.6 +/- 0.1 microM) without showing any agonist activity at concentration up to 30 microM. ONO-4057 did not inhibit fMLP or C5a-induced neutrophil activation at concentrations up to 30 microM. In the in vivo study, ONO-4057 given orally, prevented LTB4-induced transient neutropenia or intradermal neutrophil migration in guinea pig (the dose causing 50% efficacy (ED50) = 25.6mg/kg or 5.3mg/kg). Furthermore, ONO-4057 given topically, suppressed phorbol-12-myristate-13-acetate (PMA)-induced neutrophil infiltration in guinea pig ear (the effective dose = 1 mg/ear). These results indicate that ONO-4057 is a selective and orally active LTB4 antagonist and may be a potential candidate for the treatment of various inflammatory diseases.

Animals

An enhancement of the yield of X-ray-induced Minute mutations in the c3G female-ywmf-2 male system of Drosophila melanogaster.

The possible enhancement of the yield of X-ray-induced Minute mutations in the c3G female-ywmf-2 male system which is proposed to be responsible for the high production of spontaneous Minute mutations was investigated. To determine and compare the yield of X-ray-induced Minute mutations exactly, four series of crosses were made: (a) ywmf-2 male x Oregon-R (OrR) female crosses, spontaneous Minute mutations were scored; (b) ywmf-2 male x c3G female crosses, spontaneous Minute mutations produced in the c3G female-ywmf-2 male system were evaluated; (c) X-irradiated ywmf-2 male x OrR female crosses, the yield of Minutes induced by X-rays in the different stages of male germ cells was evaluated; and (d) X-irradiated ywmf-2 male x c3G female crosses, the yield of X-ray-induced Minutes in the c3G female-ywmf-2 male system was evaluated. The results show that the yield of X-ray-induced Minutes recorded in the c3G female-ywmf-2 male system is 2.37-16.55 times more than that in the ywmf-2 male x OrR female crosses. This finding clearly indicates that the yield of these mutations is greatly enhanced in the c3G female-ywmf-2 male system. This possibly suggests that the c3G female-ywmf-2 male system may be responsible not only for the high production of spontaneous Minute mutations but also for the high formation of radiation-induced Minutes.

Animals

Expression and function of a human thyroid hormone receptor-derived DNA-binding domain protein.

DNA binding domain proteins (DBDP) were prepared using a pET construct containing an insert coding for amino acids 49-122 of human thyroid hormone receptor (hTR) alpha and 103-179 of hTR beta. These proteins were expressed in Escherichia coli strain BL21 (DE3)-plysS after induction by isopropyl-D-thiogalactopyranoside (IPTG). The hTR alpha and hTR beta DBDP contain respectively 79 and 82 amino acids, including an amino terminal 4 amino acid extension derived from pET-3a or the synthesized initiation codon. Using a gel shift assay, both DBDPs were found to bind to a DNA oligonucleotide containing a thyroid hormone response element (TRE). The DBDPs competed with full length hTR alpha 1 for binding to the oligonucleotide. Apo-DBDPs (Zn2+ released by low pH) failed to bind to the palindromic TRE. DNA binding is restored however if apo-DBDP is preincubated in 500 microM Zn2+. When the DBDPs were expressed in COS-7 cells using a pCB6+ expression vector, they did not induce expression of a TRE-CAT fusion gene. hTR DBDPs thus can bind to DNA, presumably as monomers, since they do not contain the leucine zipper-like motif for dimerization. In COS-7 cells, they fail to cause transactivation of a TRE-CAT fusion gene. It is inferred that this may be because the DBDPs are not translocated to the nucleus or lack a transactivation domain.

Amino Acid Sequence

Structures of four new triterpenoid oligoglycosides: DS-penaustrosides A, B, C, and D from the sea cucumber Pentacta australis.

Two new non-holostane-type triterpenoid oligoglycosides, DS-penaustrosides A [1] and B [2], were isolated from the solvolysate of a crude glycoside fraction obtained from a sea cucumber Pentacta australis, together with two holostane-type glycosides, DS-penaustrosides C [3] and D [4]. The structure of 1-4 have been elucidated on the basis of spectral and chemical evidence.

Animals

Radioreductive effect of bestatin (Ubenimex) in BALB/c mice.

The radioreductive effect of Bestatin (Ubenimex), a biological response modifier, was examined in BALB/c mice. Consecutive daily administrations from day 0 to day 3 after lethal irradiation resulted in a dose reduction factor (DRF) of 1.03. In haematological studies Bestatin enhanced the recovery of peripheral leucocytes in sublethally irradiated mice by activating colony-stimulating factors (CSF) in serum, leading to enhanced recovery of GM-CFC. There was no enhancement of CSF in BALB/c nude mice. On the other hand, Bestatin showed no effect on day 12 CFU-S and day 7 CFU-S after the sublethal irradiation, though there was a trend that the drug stimulated numbers of day 7 CFU-S after irradiation. These results strongly suggest that Bestatin enhanced the CSF activity by modulating T cell function, resulting in the augmentation of peripheral leucocytes and prolongation of survival of irradiated mice. This drug now used in the clinic proved to be modestly effective.

Acute Disease

Voltage-dependent and odorant-regulated currents in isolated olfactory receptor neurons of the channel catfish.

The electrical properties of olfactory receptor neurons, enzymatically dissociated from the channel catfish (Ictalurus punctatus), were studied using the whole-cell patch-clamp technique. Six voltage-dependent ionic currents were isolated. Transient inward currents (0.1-1.7 nA) were observed in response to depolarizing voltage steps from a holding potential of -80 mV in all neurons examined. They activated between -70 and -50 mV and were blocked by addition of 1 microM tetrodotoxin (TTX) to the bath or by replacing Na+ in the bath with N-methyl-D-glucamine and were classified as Na+ currents. Sustained inward currents, observed in most neurons examined when Na+ inward currents were blocked with TTX and outward currents were blocked by replacing K+ in the pipette solution with Cs+ and by addition of 10 mM Ba2+ to the bath, activated between -40 and -30 mV, reached a peak at 0 mV, and were blocked by 5 microM nimodipine. These currents were classified as L-type Ca2+ currents. Large, slowly activating outward currents that were blocked by simultaneous replacement of K+ in the pipette with Cs+ and addition of Ba2+ to the bath were observed in all olfactory neurons examined. The outward K+ currents activated over approximately the same range as the Na+ currents (-60 to -50 mV), but the Na+ currents were larger at the normal resting potential of the neurons (-45 +/- 11 mV, mean +/- SD, n = 52). Four different types of K+ currents could be differentiated: a Ca(2+)-activated K+ current, a transient K+ current, a delayed rectifier K+ current, and an inward rectifier K+ current. Spontaneous action potentials of varying amplitude were sometimes observed in the cell-attached recording configuration. Action potentials were not observed in whole-cell recordings with normal internal solution (K+ = 100 mM) in the pipette, but frequently appeared when K+ was reduced to 85 mM. These observations suggest that the membrane potential and action potential amplitude of catfish olfactory neurons are significantly affected by the activity of single channels due to the high input resistance (6.6 +/- 5.2 G omega, n = 20) and low membrane capacitance (2.1 +/- 1.1 pF, n = 46) of the cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals