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Biomedical subjects

K Toda

Publications and source records attributed to K Toda.

At least 91 records · Page 5Linked to original sources

Two major strains of type 1 wild poliovirus circulating in Indochina.

Two hundred ninety-four isolates from 329 patients with acute flaccid paralysis in Cambodia and Vietnam during 1992-1995 were identified as type 1 wild polioviruses. Among these isolates, 85 were selected as geographic representatives and were examined by determining the nucleotide sequences of their genome in the VP1 region. The phylogenic analysis revealed that all of the isolates examined were classified into groups A and B. Isolates belonging to group A had been found only in northern Vietnam until 1993 but not in 1994 and 1995. Group B isolates were located in both northern and southern Vietnam and Cambodia. In 1994 and 1995, however, only group B isolates were found in the Mekong Delta area in southern Vietnam and Cambodia. Isolates of groups A and B were genetically different from strains previously isolated in other Asian countries. One of the two indigenous wild polioviruses still remains to be eliminated in this area.

Antigens, Viral↗

Identification of novel cadherins expressed in human melanoma cells.

Cadherin molecules are essential for tissue morphogenesis and are also related to cancer invasion and metastasis. Although normal melanocytes express E- and P-cadherin, the activity and expression of E- and P-cadherin in melanoma cells are still unknown. We measured the homophilic adhesion activity of human normal epidermal melanocytes and the melanoma cell lines MeWo and A375. The melanoma cells showed stronger homophilic adhesion activity than did the melanocytes, despite the lower expression of E- and P-cadherin in the melanoma cells. This result suggested that melanoma cells expressed other types of homophilic adhesion molecules. Using degenerate primers to amplify multiple cadherin subtypes, we performed a polymerase chain reaction (PCR) with the first strand of cDNAs generated by reverse transcription of the mRNAs of the melanoma cells, and we isolated two known cadherin fragments, N-cadherin and PC42, and six novel cadherin fragments, cadherins ME1-ME6. The reverse transcriptase-PCR using specific primers of cadherins including E-, P-, and N-cadherins, PC42, and cadherins ME1-ME6 revealed that the melanoma cells expressed more kinds of cadherin molecules than did the melanocytes. Such cadherins may play an important role in melanoma cell-cell adhesion.

Amino Acid Sequence↗

Effects of self washout structure on the antithrombogenicity and the hemolytic properties of a centrifugal pump.

Antithrombogenicity in an initial type (N1) of a centrifugal pump (CP) developed in our institute is provided by the central balancing hole of an impeller. A new CP (N2) was modified to obtain better antithrombogenicity, in which the balancing hole was widened to improve self washout flow velocity (Vsf), and an edge of the thrust bearing was rounded off to minimize flow separation. Effects of the modifications were assessed in vitro and in vivo studies. The Vsf of the N1 and the N2 evaluated by a Doppler velocimeter were 12.8 and 22.1 cm/s, respectively. Flow around the thrust bearing, which was visualized by a light cutting method, confirmed less flow stagnation in the N2. The hemolytic indices of the N1 and the N2 were 0.023 and 0.008 mg/dl, respectively. In vivo antithrombogenicity and the hemolytic properties of the N2 and the N1 were investigated without anticoagulation therapy in 3 goats. In each goat the N2 was driven for 1 week and exchanged for the N1, which was driven for the same period. Red thrombi at the thrust bearing were found in 2 N1s, and 2 small thrombi were on the impeller of another N1, whereas a thrombus of less than 1 mm3 at the TB was noted in 1 N2. Plasma free hemoglobin was not increased in either CP. These results indicate that the N2 has better antithrombogenicity and hemolytic properties than the N1.

Animals↗

[2-5 AS activity in serum and peripheral blood mononuclear cells for chronic active hepatitis C and the relationship to clinical outcome of interferon therapy].

Of 49 patients with chronic hepatitis C treated by interferon (IFN), we measured 2'-5'-oligoadenylate synthetase (2-5 AS) activity in peripheral blood mononuclear cells (PBMC) and serum before and after the IFN therapy and studied the correlation with the clinical outcome. Before IFN therapy, the levels of 2-5 AS in PBMC and serum were significantly higher in patients with chronic hepatitis C than in healthy controls, though there was no correlation between the 2-5 AS activity and the clinical outcome. When PBMC were stimulated with IFN in vitro, the induced 2-5 AS activities in patients with chronic hepatitis C were almost same as those in healthy controls. Among patients infected with hepatitis C virus (HCV) genotype II which was considered relatively resistant to IFN, patients whose HCV was disappeared from serum by IFN therapy showed good induction of 2-5 AS activity by IFN in vitro, whereas patients in which serum HCV remained positive after the therapy showed poor response to IFN in vitro. The levels of 2-5 AS in PBMC 2 months after IFN therapy were still higher in patients whose HCV was continuously disappeared from serum by the therapy (complete remission) than in healthy controls. The in vitro induction of 2-5 AS in patients whose HCV in serum remained positive after the therapy was significantly lower than in patients with complete remission. The induction of 2-5 AS activity in patients to whom IFN therapy was ineffective, significantly decreased after the IFN therapy as compared with the activity measured before the therapy. These findings suggest that measurement of 2-5 AS activity in PBMC in vitro through IFN therapy might be useful for predicting in vivo responsibility to IFN and also knowing the change of the responsibility.

2',5'-Oligoadenylate Synthetase↗

Mosaic expression of uncein and 180-kDa bullous pemphigoid antigen in generalized atrophic benign epidermolysis bullosa.

Immunofluorescence microscopy of epidermodermal junction components in serial cryosections from the perilesional skin of a patient with generalized atrophic benign epidermolysis bullosa (GABEB) showed broken line-like staining of both BPAG2 (180-kDa bullous pemphigoid antigen) and uncein (antigen of 19-DEJ-1 monoclonal antibody), whereas integrin alpha 6 and laminin 5 were continuously expressed along the basement membrane zone. Immunoelectron microscopy revealed a mosaic distribution of the BPAG2/uncein positive and negative cells. BPAG2, a candidate protein of GABEB, probably has a close connection with uncein, and anchoring filament component.

Adult↗

In vivo evidence of the critical role of cadherin-5 in murine vascular integrity.

Vascular endothelial cell-cell adhesion is crucial for the regulation of vascular functions and is associated with many circulatory disorders. We isolated a rat monoclonal antibody (VECD1) recognizing the mouse vascular endothelial cell adhesion molecule and found that it inhibited vascular endothelial cell-cell association. We sequenced a full-length cDNA of the antigen that was identical to mouse cadherin-5. L-cells transfected with its cDNA acquired cell-cell adhesiveness, and these transfectants reacted with VECD1 at cell-cell contact areas. We studied the role of mouse cadherin-5 in vascular functions. The addition of VECD1 antibody to a cultured vascular endothelial cell line (F-2) caused the detachment of each cell. Although normal F-2 cells formed tubular structures on Matrigel, VECD1 disturbed the tubulogenesis. VECD1 also increased the permeability through the F-2 cell layer. To clarify the in vivo function of mouse cadherin-5, we intraperitoneally injected the hybridomas producing VECD1 into adult mice. Severe venous stasis and subcutaneous hemorrhage were induced within several days after the injection, resulting in the early death of the animals. These findings are evidence of an essential role of cadherin-5 in the regulation of vascular endothelial cell-cell adhesion in vivo.

Abdominal Muscles↗

DNA gyrase involvement in chloroplast-nucleoid division in Cyanidioschyzon merolae.

Cyanidioschyzon merolae is a unicellular alga with one chloroplast and one mitochondrion per cell. Each of these organelles has a simple nucleoid located in the central area. Prior to mitosis and cytokinesis, both the division of organelle nucleoids and organellokinesis occur simultaneously. We investigated the effects of nalidixic acid, an inhibitor of DNA gyrase, on the replication and division of organelle nucleoids. Using microfluorometry, we monitored the synthesis of organelle DNA (organelle S phase) in synchronous cultures. In both the chloroplast and the mitochondrion, DNA synthesis occurred from the start of the light period and ceased within 3 h. The addition of nalidixic acid at the start of the light period inhibited DNA synthesis in both organelles. Next, we added nalidixic acid to the synchronous culture at the beginning (just before the organelle S phase) or at the end (organelle G2 phase) of the light period and monitored the division of organelle nucleoids in the dark period. Approximately 50 to 70% of chloroplast nucleoids divided unequally in both experiments. Despite the unequal division of the chloroplast nucleoids, electron microscopy revealed that the chloroplasts were divided into equal daughter chloroplasts by the chloroplast-divided ring. During the same treatments, all of the mitochondrial nucleoids underwent normal and equal division. Our results suggest the involvement of DNA gyrase in the replication of chloroplast and mitochondrial DNA and in the division of the chloroplast nucleoid, as well as a difference in mechanism between the division of chloroplast and mitochondrial nucleoids.

Anti-Infective Agents↗

Cooperative regulation of the human aromatase cytochrome P450 gene transcription by placenta-specific cis-acting elements.

Aromatase cytochrome P450 catalyses the reaction to convert androgens to estrogens by coupling with NADPH-cytochrome P450 reductase in the endoplasmic reticulum. The human aromatase cytochrome P450 gene (CYP19) is expressed in a variety of tissues under regulation of tissue-specific promoters. Previously, we localized a cell-type specific transcriptional enhancer element between -242 and -166 relative to the major cap site of the gene, by transient expression analysis in human BeWo choriocarcinoma cells. In the present study, we demonstrate that the enhancer element consists of two subelements, element I (located between -238 and -200), and element II (located between -196 and -176) as analysed by DNase I footprinting using the nuclear extracts of BeWo cells. The gel mobility shift assay shows that each of these subelements binds specific nuclear factor(s). The transient expression of the bacterial chloramphenicol acetyltransferase gene constructs involving the subelements in BeWo cells reveals that the elements activate reporter gene expression synergistically when present together, nevertheless each of the elements by itself also has an enhancer activity. The transient expression analysis further shows that element I is responsible for the transcriptional synergism with the binding site of a nuclear factor-interleukin-6 (NF-IL-6) (also known as CCAAT enhancer/binding protein beta), which is located between -2141 and -2115 relative to the major cap site of the gene. These results suggest that the enhancer element plays important roles in sustaining the high levels of CYP19 expression in placental cells in cooperation with other cis-acting transcritional regulatory elements.

Aromatase↗

Morphological and electrophysiological properties of ACCx nociceptive neurons in rats.

A total of 33 neurons with cutaneous receptive fields were recorded from the anterior cingulate cortex (ACCx) and successfully injected with neurobiotin. All neurons were in area 24 of the ACCx. Neurons from the ACCx had large receptive fields (RFs), usually bilateral, and some had RFs covering the whole body surface. Most of the neurons were in the deep laminae and had a pyramidal soma with thick apical dendrites and many spines. Thirteen of 33 neurons were classified as pyramidal nociceptive specific (NS) neurons and 12 as noxious-tap neurons, 3 neurons received inhibitory input and were in lamina V. Two non-pyramidal noxious-tap neurons were located in lamina V and 1 pyramidal noxious-tap neuron was located in lamina VI, and 2 pyramidal NS neurons were in lamina III. Axon collaterals of NS neurons were mainly distributed around the soma, whereas those of noxious-tap neurons were also distributed far from the soma. A large number of varicosities were observed on the axon collaterals of both NS and noxious-tap neurons. Our results suggest that NS neurons in the ACCx send information locally to the vicinity of the soma, while noxious-tap neurons send information to a wider area of the ACCx.

Animals↗

Overexpression of int-5/aromatase in mammary glands of transgenic mice results in the induction of hyperplasia and nuclear abnormalities.

Our recent studies have shown that the cellular gene at the mouse mammary tumor virus integration site in the int-5 locus is aromatase. To study the role of int-5/aromatase in normal mammary development and mammary neoplasia, we have generated transgenic mice that overexpress int-5/aromatase under the control of mouse mammary tumor virus enhancer/promoter. All the transgenic virgin (n = 10) and postlactational (n = 15) females that overexpress int-5/aromatase show various histological abnormalities. Overexpression of int-5/aromatase in mammary glands of virgin females leads to the enlargement of 40% of ducts, of which 65% had hyperplastic lesions, 20% had dysplastic lesions, and 15% had fibroadenoma lesions. Overexpression of int-5/aromatase in involuted mammary glands of transgenic females induces hyperplasia in 75-80% of ducts and glands that exhibit a range of morphological abnormalities, including formation of hyperplastic alveolar nodule (10%), ductal and glandular hyperplasia (70-80%), ductal and lobular dysplasia (15%), and nuclear abnormalities (2-5%) such as multinucleation and karyomegaly, which are all indicative of preneoplastic changes. Our results show that early exposure of mammary epithelium to in situ estrogen and continued exposure to in situ estrogen as a result of overexpression of int-5/aromatase appears to predispose mammary tissue to preneoplastic changes, which may, in turn, increase the risk of developing neoplasia and increase susceptibility to environmental carcinogens. These findings support clinical and experimental data that suggest that early estrogen exposure increases breast cancer risk.

Animals↗

Assessment of histological features and outcome of interferon therapy in chronic hepatitis C.

The correlation between the histological features of liver biopsy specimens before interferon (IFN) treatment and the clinical effect of IFN administration on chronic hepatitis C was investigated. A study of the relation between several histological features that were graded in 60 liver biopsy specimens from chronic hepatitis C patients before IFN treatment disclosed that the grade of portal fibrosis was positively correlated with the grade of other inflammatory features, including piecemeal necrosis and portal and lobular inflammation. The degree of portal fibrosis adversely affected the rate of normalization of ALT levels in chronic hepatitis C during and after IFN treatment. We reexamined 36 liver biopsy specimens that showed a moderate degree of portal fibrosis, and found that the degree of piecemeal necrosis was inversely correlated with the extent of lymphoid follicle formation in the portal tracts. During IFN therapy, the group of chronic hepatitis C patients who showed marked piecemeal necrosis and less lymphoid follicle formation in the liver specimens had a poor response to IFN treatment, whereas another group that showed marked lymphoid follicle formation and little piecemeal necrosis in the liver specimens had a good response to IFN. These relationships gradually disappeared after the completion of IFN treatment.

Adult↗

Identification and characterization of transcriptional regulatory elements of the human aromatase cytochrome P450 gene (CYP19).

Aromatase cytochrome P450, a member of the cytochrome P450 gene super family, catalyzes conversion of androgens to estrogens in a form of an enzyme-complex with NADPH-cytochrome P450 reductase. Transcription of the aromatase cytochrome P450 gene (CYP19) is regulated in part by tissue-specific promoters coupled with alternative splicing mechanisms. The transcription in human placenta is governed by a promoter activity of the 5' flanking region of exon I.1, which is mapped more than 40 kb upstream from the translational start codon observed in exon II. Transient expression analyses with chimeric constructs containing the 5' flanking sequences linked to the bacterial chloramphenicol acetyltransferase (CAT) gene in human BeWo choriocarcinoma cells localized a cell-type specific enhancer element between -242 and -166 relative to the major cap site. DNase I footprinting and transient expression analyses of the enhancer element indicate that it consists of two sub-elements and that both sub-elements are necessary for the maximum enhancement of the transcription. In addition to the enhancer element, a cis-acting element important for transcriptional enhancement of the gene in response to 12-O-tetradecanoylphorbol 13-acetate in BeWo cells is localized between -2141 and -2115. A nuclear factor binding to the element is identified as NF-IL6 (also termed as LAP and C/EBP beta). Transient expression analyses using the CAT constructs containing the NF-IL6 binding sites involvement of the factor in transcriptional regulation of CYP19.

Aromatase↗

Impact of systemic depulsation on tissue perfusion and sympathetic nerve activity.

BACKGROUND: We postulated that pathophysiologic processes under nonpulsatile circulation are related to the behavior of the sympathetic nerve activity that regulates tissue perfusion. METHODS: Pulsatile and nonpulsatile pumps were installed in parallel in the left heart bypass circuit of anesthetized goats (n = 9) so that pulsatile circulation could be converted to nonpulsatile circulation instantly. At 5 minutes before and after systemic depulsation, we measured hemodynamic indices, renal nerve activity, and regional blood flow of the brain, heart, and renal cortex. RESULTS: Renal nerve activity was significantly elevated after systemic depulsation (15.6 +/- 9.3 versus 19.4 +/- 9.8 microV), when mean aortic pressure remained almost constant. The renal cortical flow was significantly reduced after depulsation (3.61 +/- 1.23 versus 2.93 +/- 1.19 mL.min-1.g-1), whereas no significant difference was found in the regional blood flow of the brain or the heart. CONCLUSIONS: The significant reduction of renal cortical blood flow after systemic depulsation is associated with a significant increase in renal nerve activity. Our results suggest that increased renal nerve activity plays an important role in the reduction of renal function after systemic depulsation.

Animals↗

Myelin gene expression in immortalized Schwann cells: relationship to cell density and proliferation.

Myelin gene expression was investigated in the immortalized S16 Schwann cell line grown in the presence and absence of serum and at different densities. Protein expression was monitored by western blotting, and message levels were determined by RNase protection assays. To study cell proliferation rates at different cell densities and serum conditions, [3H]thymidine uptake assays and cell counts were performed. Although serum deprivation decreased cell proliferation as expected, the proliferation of S16 cells was unchanged or slightly increased at high density under the conditions of our experiments in either serum-containing or serum-free medium. This increased cell division at high density appeared to be due to greater release of an autocrine growth factor to the medium by dense cell populations. For both sparse and dense cells, substantially more P0 glycoprotein (P0) and myelin-associated glycoprotein (MAG) per milligram of total cellular protein were expressed when the cells were proliferating slowly in defined medium in comparison with more rapidly proliferating cells in serum-containing medium. Furthermore, in both serum-containing and defined media, dense cell populations expressed more MAG and PO than sparse ones. PO mRNa and MAG mRNA levels generally paralleled protein levels. The level of mRNA for peripheral myelin protein-22 (PMP-22) was also increased at high cell density but did not change much when proliferation was decreased by serum deprivation. PMP-22 protein was not detected under any of the growth conditions. The changes in expression of these genes with growth conditions may be specific for myelin proteins, because the expression of a nonmyelin glycoprotein, L1, remained constant. The level of cyclic AMP in the cells did not change with the different growth conditions tested. The results indicate that the S16 Schwann cell line mimics primary or secondary Schwann cells by down-regulating myelin gene expression when it proliferates more rapidly in the presence of serum. Furthermore, in both the presence and absence of serum, there was greater expression of myelin genes at high cell density that was not associated with a decreased proliferative rate. Because evidence for a role of secretory factors in affecting myelin gene expression was not obtained by treating sparse S16 cells with medium conditioned by dense S16 cells, the results suggest that the higher expression of myelin genes at high density may be mediated by cell-to-cell contact.

Animals↗

Structure and intracellular localization of mouse ADP-ribosylation factors type 1 to type 6 (ARF1-ARF6).

ADP-ribosylation factors (ARFs) are a family of small GTP-binding proteins that are proposed to be involved in the formation of coated transport vesicles. Although six ARF sequences have been reported in mammals to date, it has been unclear how many ARF members are present in a single organism. In this study, we provide the first direct evidence by cDNA cloning for the presence of all six ARF members in mouse. These proteins are highly conserved across mammalian species and Northern blot analysis revealed that mRNAs for all the members were expressed ubiquitously. Transfection of cells with epitope-tagged ARFs revealed that ARFs 1-3 displayed a perinuclear Golgi localization, while ARFs 4-6 appeared to be widely dispersed throughout the cytoplasm. These results suggest that although all the ARF proteins play fundamental and critical roles in cellular function, they are involved in different vesicular transport processes.

ADP-Ribosylation Factor 1↗