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Biomedical subjects

T Seki

Publications and source records attributed to T Seki.

At least 91 records · Page 5Linked to original sources

Activin receptor-like kinase 1 modulates transforming growth factor-beta 1 signaling in the regulation of angiogenesis.

The activin receptor-like kinase 1 (ALK1) is a type I receptor for transforming growth factor-beta (TGF-beta) family proteins. Expression of ALK1 in blood vessels and mutations of the ALK1 gene in human type II hereditary hemorrhagic telangiectasia patients suggest that ALK1 may have an important role during vascular development. To define the function of ALK1 during development, we inactivated the ALK1 gene in mice by gene targeting. The ALK1 homozygous embryos die at midgestation, exhibiting severe vascular abnormalities characterized by excessive fusion of capillary plexes into cavernous vessels and hyperdilation of large vessels. These vascular defects are associated with enhanced expression of angiogenic factors and proteases and are characterized by deficient differentiation and recruitment of vascular smooth muscle cells. The blood vessel defects in ALK1-deficient mice are reminiscent of mice lacking TGF-beta1, TGF-beta type II receptor (TbetaR-II), or endoglin, suggesting that ALK1 may mediate TGF-beta1 signal in endothelial cells. Consistent with this hypothesis, we demonstrate that ALK1 in endothelial cells binds to TGF-beta1 and TbetaR-II. Furthermore, the ALK1 signaling pathway can inhibit TGF-beta1-dependent transcriptional activation mediated by the known TGF-beta1 type I receptor, ALK5. Taken together, our results suggest that the balance between the ALK1 and ALK5 signaling pathways in endothelial cells plays a crucial role in determining vascular endothelial properties during angiogenesis.

Activin Receptors↗

Autocrine stimulatory mechanism by transforming growth factor beta in human hepatocellular carcinoma.

The serum concentration of transforming growth factor beta (TGF-beta) is elevated as tumors progress in hepatocellular carcinoma (HCC) patients. In this study, we examined whether modulation of tumor-derived TGF-beta signal transduction contributes to malignant progression. We investigated the production of TGF-beta1, the biological effects of TGF-beta and neutralizing antibody on HCC cells, activation of Smad 2, Smad 3, and Smad 4, induction of antagonistic Smads (Smad 6 and Smad 7), and promoter activities of two target genes, plasminogen activator inhibitor type 1 (PAI-1) and p15INK4B. In human cell lines HCC-M and HCC-T, TGF-beta accelerates their proliferation. Smad 2 was activated constitutively by an autocrine mechanism, because in the absence of exogenous TGF-beta, a high level of Smad 2 phosphorylation, induction of PAI-1 transcripts, and nuclear localization of Smad 2 were observed. This constitutive activation of Smad 2 was, at least in part, attributable to the lack of induction of antagonistic Smads by TGF-beta. However, Smads activated by tumor-derived TGF-beta constantly suppressed p151NK4B expression. In addition, 3 of 10 human HCC tissues showed nuclear localization of Smad 2 and low mRNA levels of p15INK4B and antagonistic Smads but a high level of PAI-1. Our observations suggest that this constant suppression of the p15INK4B gene could be involved in the malignant progression of HCC.

Autocrine Communication↗

Green tea polyphenols: novel and potent inhibitors of squalene epoxidase.

The green tea gallocatechins, (-)-epigallocatechin-3-O-gallate (EGCG) (IC(50) = 0.69 microM), (-)-gallocatechin-3-O-gallate (GCG) (IC(50) = 0.67 microM), (-)-epicatechin-3-O-gallate (ECG) (IC(50) = 1.3 microM), and theasinensin A (IC(50) = 0.13 microM), were found to be potent and selective inhibitors of rat squalene epoxidase (SE), a rate-limiting enzyme of cholesterol biogenesis. On the other hand, flavan-3-ols without galloyl group at C-3 did not show significant enzyme inhibition. It was demonstrated for the first time that the cholesterol lowering effect of green tea may be attributed to their potent SE inhibition activities. Inhibition kinetics revealed that EGCG inhibited SE in noncompetitive (K(I) = 0.74 microM), and non-time-dependent manner. The potent enzyme inhibition would be caused by specific binding to the enzyme, and by scavenging reactive oxygen species required for the monooxygenase reaction.

Animals↗

Organ-specific, carcinogen-induced increases in cell proliferation in p53-deficient mice.

Transgenic mice with germ-line p53 alleles disrupted by gene targeting are sensitive to the development of some spontaneous tumors and have provided researchers with much information with respect to cancer. In the present study, to cast light on the organ specificity of chemically induced carcinogenesis, we evaluated carcinogen-induced cell proliferation in target organs in heterozygote p53 knockout mice (p53-deficient mice). Groups of 9- or 10-week-old wild-type(+/+) and p53-deficient mice were respectively treated with one of the following carcinogens for 4 weeks: N-butyl-N-(4-hydroxybutyl)nitrosamine (0.0075% in drinking water); dimethylnitrosamine (0.001% in drinking water); dihydroxy-di-N-propylnitrosamine (0.1% in drinking water); 1,2-dimethylhydrazine (10 mg/kg body weight s.c. injection once a week); 4-nitroquinoline 1-oxide (4-NQO, 10 mg/kg b.w. s.c. injection once a week); or 7,12-dimethylbenz(a)anthracene (25 microg/kg body weight dermal application once a week). Cell proliferation was evaluated by measuring the 5-bromo-2'-deoxyuridine labeling indices in each target organ. The p53 and p21 statuses were evaluated by comparing the expressions of p53 protein, p21waf1/cip1 mRNA, and p21waf1/cip1 protein between the mice. 5-Bromo-2'-deoxyuridine labeling indices of the urinary bladder and the skin were significantly increased in p53-deficient mice as compared with the wild-type(+/+) mice. In the all organs examined, carcinogen-induced p21waf1/cip1 mRNA overexpression was detected with levels obviously lower in the p53-deficient animals. These data suggest that p53-deficient mice have an organ-specific increased sensitivity to the induction of cell proliferation in the urinary bladder and the skin. These are the same organs for which sensitivity to carcinogenesis has been reported. Because a decrease of p21waf1/cip1 protein overexpression was also observed in the organs in which cell proliferation did not appreciably differ from the level in wild-type(+/+) mice, this decrease might have no effect on sensitivity to cell proliferation and carcinogenesis. Alternatively, it might play an important role in the cell cycle regulation of only the sensitive organs.

Animals↗

Antithrombotic and antineoplastic effects of phyto-organosulfur compounds.

The antiplatelet activity of methyl allyltrisulfide (MATS), a component commonly present in steam-distilled garlic oil, has been demonstrated by the authors. MATS inhibits arachidonic acid cascade at the reaction site with PGH synthase. However, this enzyme catalyzes two successive reactions, from arachidonic acid to PGG2, and from PGG2 to PGH2. The present study revealed that MATS inhibited the latter reaction. In addition, our recent findings that to a promyelocytic leukemia cell HL60, Allium oils shows marked anti-neoplastic effects representing both growth suppression and differentiation activities are described. The garlic oil and onion oil showed almost equal ability in inducing the proliferation, which measured either by nitroblue-tetrazolium reducing activity assay or by flow cytometry for detecting CD11b expression. The combination use of one of these oils with all-trans retinoic acid or with dimethyl sulfoxide lead to the marked differentiation of the cells, and their effects were estimated to be synergistic.

Allium↗

Premature chromatin condensation caused by loss of RCC1.

Hamster rcc1 mutant, tsBN2, prematurely enter mitosis during S phase. RCC1 is a guanine nucleotide exchanging factor for a small G protein Ran and localised on the chromatin, whereas RanGTPase activating protein is in the cytoplasm. Consistently, Ran shuttles between the nucleus and the cytoplasm, carrying out nucleus-cytosol exchange of macromolecules, which regulates the cell cycle. The finding that loss of RCC1 which disturbs nuclear protein export due to loss of RanGTP, abrogates the check point control suggests that RCC1 senses the status of the chromatin, such as replication, and couples it to the cell cycle progression through Ran.

Animals↗

Gastric seromuscular and omental pedicle flap for bronchopleural fistula after pneumonectomy.

We report a case of postpneumonectomy bronchopleural fistula treated using a gastric seromuscular and omental pedicle flap and maintaining good postoperative respiratory function. A 76-year-old man underwent right pneumonectomy with regional lymph node dissection for squamous cell carcimoma of the lung. Five weeks later, a bronchopleural fistula occurred. Empyema with the bronchopleural fistula was diagnosed and chest tube drainage implemented immediately. Despite the drainage, signs of inflammation persisted and the patient's nutrition did not improve leading to surgery, on August 18, 1997. The bronchopleural fistula was closed by horizontal suture proximal to the stapling sutured line. A gastric seromuscular and omental pedicle flap was sutured as a cover over the bronchial stump. Postoperative analysis of respiratory function and arterial blood gas showed good results.

Aged↗

Expression of keratan sulfate at the arthroplasty surface after cup arthroplasty.

Fibrous tissue which regenerated on the acetabular arthroplasty surface was obtained from a 52-year-old woman who underwent total hip replacement after cup arthroplasty. The histological features of this newly formed fibrous tissue and expression of keratan sulfate, which is a characteristic matrix component of articular cartilage, were studied. Microscopic observation revealed that the arthroplasty surface consisted mainly of fibrous tissue which did not show metachromasia with toluidine blue staining, but there were many nodular structures communicating with the bone marrow. Immunostaining for keratan sulfate revealed clear positive staining around the cells of the nodular structures communicating with the bone marrow, while only weakly positive staining was observed in the superficial layer of the loose fibrous tissue. The present study revealed marked formation of articular cartilaginous tissue in areas having good communication with the bone marrow, which indicates that maintenance of this communication may be necessary to improve the outcome of cup arthroplasty.

Arthroplasty, Replacement, Hip↗

Hyaluronan in synovial fluid of patients with loose total hip prosthesis. Comparison with hyaluronan in patients with hip osteoarthritis and idiopathic osteonecrosis of femoral head.

The concentration and molecular weight of hyaluronan (HA) in the synovial fluid of the hip joint were determined in 13 patients (aged 62.8 +/- 9.4 years) who had undergone prior total hip arthroplasty(THA), 23 patients (aged 65.0 +/- 8.2 years) with osteoarthritis of the hip joint (OA), and 13 patients (aged 40.2 +/- 2.7 years) with idiopathic osteonecrosis of the femoral head (ION). A sample of synovial fluid was obtained during revision THA because of loosening of the total hip prosthesis for the THA group, and during the first replacement surgery or osteotomy for the OA and ION groups. The concentration of HA in the synovial fluid was 0.64 +/- 0.42 mg/ml in the THA group, 1.07 +/- 0.28 mg/ml in the OA group, and 1.30 +/- 0.56 mg/ml in the ION group. The concentration of HA in the synovial fluid of the THA patients was significantly lower than that of the OA and ION patients (P = 0.0156 vs OA, P = 0.003 vs ION). The molecular weight of HA was 309 +/- 88.3 x 10(4) Da in the THA group, 377 +/- 201 x 10(4) Da in the OA group, and 240 +/- 148 x 10(4) Da in the ION group; these values do not differ significantly (P = 0.259 vs OA, P = 0.174 vs ION). Among the THA patients, there was no relation between the concentration of HA and the age of the patient, length of time since the first operation, or type of prosthesis fixation; there was also no relation between the molecular weight of HA and each of these factors. These results suggest that a pseudosynovial membrane is regenerated after THA, and that it produces HA of the same molecular weight as that in patients with OA and ION, although in smaller quantities.

Adult↗

Identification of 142 single nucleotide polymorphisms in 41 candidate genes for rheumatoid arthritis in the Japanese population.

Single-nucleotide polymorphisms (SNPs) can make an important contribution to our understanding of genetic backgrounds that may influence medical conditions and ethnic diversity. We undertook a systematic survey of genomic DNA for SNPs located not only in coding sequences but also in non-coding regions (e.g., introns and 5' flanking regions) of selected genes. Using DNA samples from 48 Japanese patients with rheumatoid arthritis (RA) as templates, we surveyed 41 genes that represent candidates for RA, screening a total of 104 kb of DNA (30 kb of coding sequences and 74 kb of non-coding DNA). Within this 104 kb of genomic sequences we identified 163 polymorphisms (1 per 638 bases on average), of which 142 were single-nucleotide substitutions and the remainder, insertions or deletions. Of the coding SNPs, 52% were non-synonymous substitutions, and non-conservative amino acid changes were observed in a quarter of those. Sixty-nine polymorphisms showed high frequencies for minor alleles (more than 15%) and 20 revealed low frequencies (<5%). Our results indicated a greater average distance between SNPs than others have reported, but this disparity may reflect the type of genes surveyed and/or the relative ethnic homogeneity of our test population.

Alleles↗

Genomic structure and multiple single-nucleotide polymorphisms (SNPs) of the thiopurine S-methyltransferase (TPMT) gene.

Thiopurine S-methyltransferase (TPMT) catalyzes the S-methylation of drugs such as azathiopurine, 6-mercaptopurine, and 6-thioguanine, which are widely prescribed for immunosuppressive or cytotoxic applications. We report here the entire genomic structure of the TPMT gene and the presence of 30 single-nucleotide polymorphisms (SNPs) within that structure. The gene spans a genomic region about 27kb long and consists of nine exons. By screening its entire genomic sequence for SNPs in 48 Japanese chromosomes by direct DNA sequencing, we detected 1 SNP in the 870-bp promoter region, 26 SNPs in introns, and 3 SNPs in the 3' untranslated region (3'UTR) for investigating correlations between TPMT genotypes and the side-effects caused by thiopurine drugs.

Humans↗

Electron microscopic observation of pituitary adenylate cyclase-activating polypeptide (PACAP)-containing neurons in the rat retina.

The distribution and localization of pituitary adenylate cyclase-activating polypeptide (PACAP) in the rat retina were studied by immunocytochemistry with both light and electron microscopy. PACAP-like immunoreactivity (PACAP-LI) was detected in the amacrine and horizontal cells as well as in the inner plexiform layer, the ganglion cell layer and the nerve fiber layer. PACAP-LI seemed to be concentrated predominantly in the neuronal perikarya and their processes, but not in other cells in the retina. At the ultrastructural level, PACAP-LI was visible in the plasma membranes, rough endoplasmic reticulum, and cytoplasmic matrix in the PACAP-positive neurons in the inner nuclear layer. In the inner plexiform layer, PACAP-positive amacrine cell processes made synaptic contact with immunonegative amacrine cell processes, bipolar cell processes, and ganglion cell terminals. These findings suggest that PACAP may function as a neurotransmitter and/or neuromodulator.

Animals↗

CD30 expression on circulating memory CD4+ T cells as a Th2-dominated situation in patients with atopic dermatitis.

Th2 clones have been reported to express CD30 preferentially, but whether T cells producing Th2-type cytokines may favor CD30 expression in the in vivo state remains unknown. We investigated the expression of CD30 on circulating T cells in atopic dermatitis (AD) as a Th2-dominated disorder. Peripheral blood mononuclear cells were prepared from 51 AD patients and 14 nonatopic controls, and their phenotypes were analyzed with flow cytometry. Cytokine production by stimulated CD4+ T cells was also assessed by the single-cell-staining method. Flow cytometric analysis clearly revealed that CD30+ T cells were identifiable in the blood of AD patients with greater frequency compared to controls. The important finding was that CD30 expression was restricted to a small but substantial population of memory (CD45RO+) CD4+ T cells, but not CD8+ ones. In AD patients, it was demonstrated that the percentages of CD30+ cells within CD45RO+ CD4+ T cells correlated well with the disease severity, serum IgE levels, peripheral eosinophil counts, and tendency toward Th2-dominant cytokine pattern as determined by the ratio of interleukin-4 to interferon-gamma production. This study suggests that CD30 expression in circulating T cells might serve as an in vivo marker for the Th2-dominated condition.

Adolescent↗

Effect of activin on cell growth in primary cultures of guinea pig gastric epithelial cells.

BACKGROUND: The effect of activin on differentiated cells is known to be different from that on undifferentiated cells. Cultured gastric epithelial cells in complete serum-free conditions grew into matured mucous cells after treatment with epidermal growth factor (EGF). AIM: To elucidate the effect of activin on the growth of differentiated and undifferentiated gastric mucosal cells. METHODS: Cultured guinea pig gastric epithelial cells were prepared using the method of Ogihara et al. Synthesis of activin was analysed by Western blot using monoclonal anti-activin A antibody. Cell proliferation was assessed by counting the number of cells. Mucin production was assessed by histochemical study using periodic acid-Schiff (PAS) reaction. RESULTS: Western blot analysis indicated that activin was synthesized in cultured guinea pig gastric mucosal cells. One hundred nanomolar EGF induced a 3-fold increase in cell count and the appearance of PAS-positive granules. Five nanograms activin per millilitre without EGF stimulated proliferation of the cells that showed almost negative PAS staining. When activin was added after treatment with 100 nM EGF for 24 h, cell proliferation induced by EGF was inhibited by activin at concentrations higher than 5 ng/mL. CONCLUSION: These results suggest that activin stimulates proliferation of undifferentiated cells and inhibits growth of differentiated cells.

Activins↗

Distribution of c-fos mRNA in the brain following intracerebroventricular injection of nitric oxide (NO)-releasing compounds: possible role of NO in central cardiovascular regulation.

We injected nitric oxide (NO)-releasing compounds and NO synthase (NOS) inhibitors into the brains of conscious, freely moving rats and measured the effects on mean arterial blood pressure (MAP) and heart rate, as well as on the expression of c-fos mRNA, neuronal NOS (nNOS) mRNA and NADPH-diaphorase, an indicator of NOS activity. When administered i.c.v., the NO donor, NOC-18, caused a significant fall in MAP and heart rate, whereas the NOS inhibitor, NG-nitro-L-arginine methyl ester (L-NAME), induced a significant rise in MAP. The same dose of NOC-18 or L-NAME when administered i.v. did not affect MAP and heart rate. Centrally administered NOC-18 induced c-fos mRNA expression in several regions of the brain involved in the baroreceptor response, including the nucleus of the solitary tract, the area postrema and the rostral ventrolateral medulla, as well as areas involved in the integration of autonomic, neuroendocrine and behavioural responses, including the medial preoptic area, the organum vasculosum lamina terminalis, the bed nucleus of stria terminalis, the paraventricular nucleus (PVN), the supraoptic nucleus (SON), the central nucleus of amygdala (CeA) and the locus coeruleus. Most of the areas that expressed c-fos also contained nNOS mRNA and/or NADPH-d-positive neurones and fibres. i.c.v. injection of L-NAME induced c-fos mRNA expression in PVN, SON, locus coeruleus and NTS, suggesting a tonic inhibition of neuronal activity by NO or stimulation of neuronal activity by endogenous NO. i.v. injection of NOC-18 or L-NAME did not induce any significant c-fos mRNA expression in rat brain. These results demonstrate that NO acts directly in the brain to reduce the systemic blood pressure, and that the endogenous NO pathway may play a role in cardiovascular and autonomic regulation by modulating neuronal activities in discrete regions of the brain.

Amygdala↗

P-ANCA-positive Wegener's granulomatosis presenting with hypertrophic pachymeningitis and multiple cranial neuropathies: case report and review of literature.

An autopsy case of hypertrophic pachymeningitis and multiple cranial neuropathies is reported. A 53-year-old woman with paraplegia and various neurological signs which developed over a 2 year period was diagnosed as having an epidural mass with thickened dura mater extending from the lower cervical to the thoracic spinal cord. In addition, bilateral episcleritis, blephaloptosis, and blindness of the right eye with various cranial nerve deficits were found to be caused by the mass lesions involving the paranasal sinuses, orbit, and the cavernous sinus. Perinuclear antineutrophil cytoplasmic antibody (p-ANCA) was positive, but cytoplasmic antineutrophil cytoplasmic antibody (c-ANCA) was negative by enzyme-linked immunosorbent assay. The partially removed epidural mass with hypertrophied dura mater and biopsy of the paranasal lesions showed chronic granulomatous inflammation with vasculitis. The remaining lesions resolved with steroid therapy with remarkable neurological improvement. The positive p-ANCA test, paranasal involvement, the report of a similar histopathological case and a review of the literature on granulomatous pachymeningitis suggest the presence of p-ANCA-positive Wegener's granulomatosis with central nervous system involvement characterized by hypertrophic pachymeningitis and/or multiple cranial neuropathies.

Antibodies, Antineutrophil Cytoplasmic↗