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Biomedical subjects

T Nishihara

Publications and source records attributed to T Nishihara.

At least 127 records · Page 7Linked to original sources

Prostaglandin production via induction of cyclooxygenase-2 by human gingival fibroblasts stimulated with lipopolysaccharides.

The purpose of the present study was to investigate the involvement of cyclooxygenase-1(COX-1) and cyclooxygenase-2 (COX-2) in PGE2 production by human gingival fibroblasts stimulated with lipopolysaccharides (LPS) from periodondopathogenic bacteria. LPS were isolated from Porphyromonas gingivalis (P. gingivalis), Actinobacillus actinomycetemcomitans (A. actinomycetemcomitans) and Eschericia coli (E coli) by the phenol-water procedure. The three LPS preparations produced PCE2 up to 48 h in a time-dependent manner in human gingival fibroblasts. P. gingivalis-LPS was the most potent stimulator of PGE2 production and, to a lesser extent, A actinomycetemcomitans- and E coli-LPS. Treatment of the cells with indomethacin, a non selective COX-1/COX-2 inhibitor and NS-398, a selective COX-2 inhibitor, completely depressed PGE2 production. Treatment of dexamethasone, known to inhibit COX-2 expression, also significantly prevented PGE2 production. Immunohistochemical staining of COX-2 protein demonstrated that expression of COX-2 protein was increased at 24 h after P gingivalis-LPS stimulation, while expression of COX-1 protein was not affected by P. gingivalis-LPS. In order to investigate the regulation of PGE2 production. P. gingivalis-LPS-stimulated cells were treated with herbimycin A and genistein, both inhibitors of tyrosine kinases. Both the inhibitors significantly inhibited PGE2 production. Herbimycin A treatment depressed expression of COX-2 protein. These data suggest that human gingival fibroblasts stimulated with LPS from periodontopathogenic bacteria mainly produce PGE2 not by COX-1, but by COX-2, induction of which may be regulated by tyrosine kinase and that the produced PGE2 may be involved in the pathogenesis of periodontal diseases.

Aggregatibacter actinomycetemcomitans↗

Immunoreactive core peptides of hepatitis C virus produced in Escherichia coli and in vitro DNA amplification-restricted transcription-translation system.

Three kinds of hepatitis C virus (HCV) core peptides were produced directly and efficiently in E. coli: 1-120 aa of the C region as NCC, 1-157 aa as NCCT and 1-190 aa as NCCL. These peptides were estimated to be 16, 22 and 24 kDa, respectively, by SDS-polyacrylamide gel electrophoresis. The processing to produce p22 core protein observed in insect cells and mammalian systems did not occur in E. coli. These peptides were similarly reactive with serum antibody from patients with hepatitis C. A mutant clone of NCC recombinant plasmid pKNCC4 was obtained, whose product, NCC4, was more stable in the E. coli lysate and was highly immunoreactive with sera of hepatitis C patients. This stable immunoreactive core peptide produced by pKNCC4 is useful for the detection of anti-HCV core antibody. Immunoreactive core peptides were also produced by DNA amplification-restricted transcription-translation. Five kinds of cDNA from C to E1 region were amplified and transcribed in vitro, and these five transcripts were then translated in vitro using rabbit reticulocyte lysate: 1-120 aa as 17 kDa of C1, 1-155 aa as 21 kDa of C2, 1-174 aa as 22 kDa of C3, 1-192 aa as 24 kDa of C4, and 1-213 aa as 26 kDa of C5. Cotranslational processing using microsomal membranes occurred in peptides C4 and C5 to produce p22 the same size as C3. These results indicate that the C-terminus of the mature core protein p22 may be generated at around aa 174 by cleavage with the signal peptidase.

Amino Acid Sequence↗

Third ventriculostomy for symptomatic syringomyelia using flexible endoscope: case report.

Using a flexible endoscope, we performed a third ventriculostomy to treat a patient with communicating syringomyelia accompanied by enlarged cerebral ventricles. Her clinical improvement was rapid and dramatic. Postoperative magnetic resonance scan demonstrated shrinkage of the cervical syrinx as well as the ventricles. This simple and safe flexible endoscopic third ventriculostomy could be a treatment of choice for communicating syringomyelia accompanied by enlarged cerebral ventricles.

Adult↗

Characterization of the immunodominant antigens of Porphyromonas gingivalis 381 in high-responder patients.

The immunodominant antigens of Porphyromonas gingivalis 381 whole cells that reacted with sera from high-responder patients were examined in this study. Whole cells, phenol-water extracted lipopolysaccharide, and fimbriae from P. gingivalis 381 were analyzed using sera from 14 patients with adult periodontitis, rapidly progressive periodontitis or juvenile periodontitis as well as from two healthy subjects. Western blot analysis and enzyme-linked immunosorbent assay (ELISA) were performed. On Western blots, among many prominent protein bands, a smear was observed which was removed after adsorption of the sera with P. gingivalis phenol-water extracted lipopolysaccharide. Two major protein bands of 43 kDa and 41 kDa were found to be prominent even at very high dilutions of sera, the latter of which showed the same molecular weight as the fimbrilin band. These two bands were resistant to treatment by papain and trypsin. ELISA titers remained high after adsorption of the sera with P. gingivalis phenol-water extracted lipopolysaccharide. The results of this study suggest that the 43-kDa and the fimbrilin (41 kDa) proteins may play an important role as immunodominant antigens of P. gingivalis 381.

Adult↗

Interleukin-1 alpha produced in human gingival fibroblasts induces several activities related to the progression of periodontitis by direct contact.

Previous observations suggest that interleukin-1 (IL-1) may play an important role in the progression of periodontitis. In the present study, we investigated whether a cell-associated IL-1 alpha (CAIL-1 alpha) produced in human gingival fibroblasts (HGF) induces biological activities related to the progression of periodontitis. HGF were treated with recombinant human IL-1 beta (rhIL-1 beta) for 12 h. After that, the cell layers of HGF were washed 3 times with fresh medium and were then fixed with 1% paraformaldehyde. The fixed cell layers of HGF were used for assays for bone resorbing activity, prostaglandin E2 (PGE2) production and collagenase activity. Fixed cell layers of HGF treated with rhIL-1 beta enhanced not only calcium release from BALB/c mouse calvaria but also PGE2 production and collagenase activity in HGF and human periodontal ligament fibroblasts (HPLF) cultured on the fixed cell layers. These activities were neutralized by treatment with monoclonal mouse anti-human IL-1 alpha antibody, but monoclonal mouse anti-human IL-1 beta antibody showed no effects on these activities. The induction of these activities by fixed cell layers of HGF required direct contact between the fixed cell layers and the calvaria, HGF, or HPLF. These results suggest that CAIL-1 alpha produced in HGF treated with rhIL-1 beta induces bone resorbing activity, PGE2 production and collagenase activity in the target cells by direct contact; CAIL-1 alpha may play an important role in the progression of periodontitis.

Animals↗

Study on proteinase-inhibiting capacity of plasma alpha 2-macroglobulin in idiopathic nephrotic syndrome.

We studied the relationship between plasma alpha 2-macroglobulin (alpha 2M) and depressed cell-mediated immunity in idiopathic nephrotic syndrome (INS). Plasma alpha 2M concentrations (mumol/l) were increased during relapses of INS; however, the proteinase inhibitory activity, measured using bacterial thermolysin, was significantly decreased when calculated per 1 mol of alpha 2M, implying a reduced proteinase-inhibiting capacity of alpha 2M. The decreased proteinase-inhibiting capacity of alpha 2M was associated with the inhibitory activity of plasma on normal lymphocyte blastogenesis. Purified alpha 2M, when complexed with chymotrypsin, intensively inhibited normal lymphocyte blastogenesis induced by concanavalin A, as compared with the free form of alpha 2M. From these results it is suggested that, although the amount of alpha 2M protein has increased in the plasma of INS patients during relapse, its binding capacity to proteinases has relatively decreased. The results of this study may provide speculation for both the well-known high plasma alpha 2M concentrations and the immunodepression, both of which have been observed in INS patients in the past few decades.

Adolescent↗

[Mixed warm and cold antibody type autoimmune hemolytic anemia associated with systemic lupus erythematosus].

A 56-year-old woman developed mixed warm and cold antibody type autoimmune hemolytic anemia (mixed AIHA) associated with systemic lupus erythematosus. The patient was admitted to our hospital for acrocyanosis and shortness of breath. High fever and jaundice were observed. Urinalysis revealed protein and hemoglobin, and the sediment contained granular and hyaline casts. Her erythrocytes agglutinated markedly at room temperature. Her hemoglobin was 5.6 g/dl and reticulocyts were 19.3%. Total bilirubin, GOT and LDH were elevated, while haptoglobin and complements were abnormally reduced. Polyclonal increase of immunoglobulin, ANA and anti-Sm antibody were detected. The direct antiglobulin test was positive; IgG1, IgG3 and C3d were detected on the red cell surface. The cold agglutinin (CA) titer was 4096, showing anti-I blood group specificity, and was still active at 30 degrees C. Upon administration of prednisolone gradual increase of hemoglobin and decrease of reticulocytes were observed, indicating the healing of hemolysis. CA disappeared but the direct antiglobulin test remained positive. Mixed AIHA has been defined as the presence of both warm and cold antibodies. In addition, the presence of symptoms of cold agglutinin disease, or low-titer and high thermal amplitude CA might be necessary for the diagnosis of mixed AIHA.

Anemia, Hemolytic, Autoimmune↗

[Reevaluation of administration dosage in parenteral iron therapy].

Concerning parenteral iron therapy in iron deficiency anemia, Nakao's formula has been used to calculate the total amount of iron to be given, based on 80 ml/kg of circulating blood volume and 17 mg/kg of storage iron in healthy Japanese. Recent studies using radionuclide and radioimmunoassay revealed 65 ml/kg as the circulating blood volume and 500 mg as storage iron. From these data, the total amount of iron can be calculated from the following formula; 3.4 (16-X) x 65 x body weigh/100 + 500 mg (B) where 3.4 is the conversion factor for grams of hemoglobin to mg iron and X is the hemoglobin value before treatment. Parenteral iron therapy was performed in 15 patients with iron deficiency anemia using a total dose of iron calculated by the above the formula (B). The results were effective, and no decrease of hemoglobin was seen except in cases with continuous bleeding. In such cases, iron doses depending upon the amount of continuous bleeding should be added to the total amounts obtained from formula (B).

Adult↗

[CD2 and CD8 expression in acute promyelocytic leukemia].

A 34-year-old man was admitted to our hospital for a headache in March, 1995. The patient's hemoglobin was 7.5 g/dl, platelet count was 1.8 x 10(4)/microliter and white blood cell (WBC) count was 12,400/microliters with 99% myeloblasts. Myeloblasts were agranular or hypogranular but electron microscopy revealed microgranules in cytoplasm, and a few faggots were observed. The bone marrow was hyperplastic due to myeloblasts and chromosomal abnormality was recognized: 46, XY, t(15; 17) (q22; q12). PML-RAR alpha with intron 3 breakpoint of the PML locus, and rearrangements of the T-cell receptor beta and gamma genes were detected. These cells were positive for CD2 (63%), CD8 (47%), CD13 (87%) and CD33 (99%). Microgranular variant type of acute promyelocytic leukemia (APL) was diagnosed. Disseminated intravascular coagulation (DIC) was also present. The patient was treated with enocitabine, daunorubicin, 6-mercaptopurine, dalteparin sodium, anti-thrombin III concentrates and gabexate mesilate with prophylactic frozen transfusions of fresh plasma and platelet transfusions for 5 days, but WBC count did not decrease and DIC did not improve. The patient died of cerebral hemorrhage 7 days after diagnosis of APL. APL with CD8 expression has never been reported. We suggest that therapy should be modified in this type of APL and conclusions concerning the most appropriate therapeutic strategy will depend on the results of treatment of similar cases in the future.

Adult↗

CCAAT/enhancer-binding proteins alpha and beta interact with the silencer element in the promoter of glutathione S-transferase P gene during hepatocarcinogenesis.

We have previously identified a silencer in the glutathione S-transferase P (GST-P) gene which is strongly and specifically expressed during chemical hepatocarcinogenesis. At least three trans-acting factors bind to multiple cis-elements in the silencer. One of them, Silencer Factor-B (SF-B), is identical with CCAAT/enhancer-binding protein beta (C/EBP beta) and binds to GST-P Silencer 1 (GPS1). Many C/EBP beta binding sites are recognized by each of the C/EBP isoforms. Western blot analyses of C/EBP isoforms during chemical hepatocarcinogenesis revealed a decrease of C/EBP alpha expression. However, there was no change in C/EBP beta level. In the nuclear extracts from normal liver, C/EBP alpha was the dominant form that bound to GPS1, whereas both C/EBP alpha and C/EBP beta bound to GPS1 in the nuclear extracts from carcinogenic liver. Furthermore, transfection assays showed that C/EBP alpha not only repressed the GST-P promoter activity but also attenuated the transcriptional stimulation by C/EBP beta. These observations strongly suggest that the ratio of C/EBP alpha to C/EBP beta is one of the important factors for the GST-P silencer activity, and the decrease of this ratio during hepatocarcinogenesis reduces the silencer activity and, consequently, increases the GST-P expression.

Animals↗

Activin A-induced apoptosis is suppressed by BCL-2.

Activin A, a member of TGF beta superfamily has various activities including induction of apoptosis in mammalian cells. However, it remains unknown how activin A induces cell death. To clarify this, we investigated the expression of BCL-2 and BAX, and the effect of BCL-2 overexpression on activin A-induced apoptosis in B cell hybridoma cell lines. The activin A-sensitive cell lines expressed BAX but not BCL-2 and that activin A did not increase BAX levels. Overexpression of human BCL-2 suppressed activin A-induced apoptosis in these cells. Thus, activin A has been shown to induce apoptosis by a BCL-2-inhibitable mechanism without activating BAX.

Activins↗

CTG triplet repeat in mouse growth inhibitory factor/metallothionein III gene promoter represses the transcriptional activity of the heterologous promoters.

Growth inhibitory factor/metallothionein III (GIF/MT-III) is expressed specifically in brain, and neither mRNA nor protein is detected in other organs. This tissue-specific expression might be regulated by negative elements as well as positive elements, such as tissue-specific enhancers. To investigate the repression mechanisms of this gene in organs other than the brain, transfection experiments were performed by using various deletion mutants. Interestingly, a 25 x CTG repeat in the promoter region seemed to contribute to the repression activity. Moreover, the repression activity of this 25 x CTG repeat was also observed in various promoters and in a direction and position independent manner, indicating that this element could act as a silencer. However, no binding protein was detected by gel-shift and footprint analyses. These results strongly suggest that the CTG repeat functions as a negative element, and that this effect is caused by unknown mechanisms, rather than by interactions between specific cis-elements and specific trans-acting factors as reported previously. It is also possible that the CTG repeat functions as a general silencer in many genes.

Alzheimer Disease↗

Human cyclin D1 oncogene and esophageal squamous cell carcinoma.

BACKGROUND: Oncogene activation and tumor suppressor gene inactivation have been implicated in the genetic basis of esophageal squamous cell carcinoma (ESCC). Cyclin D1, an oncogene that has a critical role in G1 progression of the cell cycle, has been observed to be amplified in carcinomas of the breast and head and neck, and translocated in parathyroid adenomas and centrocytic lymphomas. METHODS: Established ESCC cell lines were assayed for cyclin D1 amplification and overexpression by Southern, Northern, and Western blot analyses. In addition, cyclin D1 overexpression was determined in primary tumors and adjacent normal mucosa by differential polymerase chain reaction (PCR) and immunohistochemical staining. RESULTS: The authors observed that approximately 50% of ESCC cell lines with cyclin D1 DNA amplification also had RNA and protein overexpression. Related genes, cyclin D2 and D3, were not amplified or overexpressed in these cell lines with rare exception. The cyclin D1 protein was able to associate with the cell-cycle-dependent kinases, cdk4 and cdk6, but not always with proliferating cell nuclear antigen in selected cell lines tested, representing a novel finding. In addition, approximately 50% of primary tumors had cyclin D1 overexpression that was not present in adjacent normal mucosa. Cyclin D1 overexpression based on PCR correlated with enhanced cyclin D1 protein nuclear staining in malignant cells. CONCLUSION: Cyclin D1 is amplified and overexpressed in ESCC and may be important in its molecular pathogenesis.

Base Sequence↗

The role of cysteine in the alteration of bovine liver dihydrodiol dehydrogenase 3 activity.

Bovine liver NADP(+)-dependent dihydrodiol dehydrogenase (DD3) is extremely sensitive to SH reagents such as N-ethylmaleimide (NEM) and 5,5'-dithiobis(2-nitrobenzoic acid). NEM produced time- and concentration-dependent inactivation of DD3 in a pseudo-first-order reaction manner. This inactivation was prevented by NADP+, 3-acetylpyridine-adenine dinucleotide phosphate, 2',5'-ADP and 2'-AMP but not by substrates, NAD+, nicotinamide mononucleotide or 5'-ADP.DD3 was absorbed by an affinity column of thiopropyl-Sepharose 6B, but enzyme incubated with both NEM and NADP+ was not. Moreover, one [14C]NEM molecule was incorporated into a cysteine of DD3 in the presence, and two cysteines of DD3 in the absence, of NADP+. These results suggested that two cysteine residues were modified per enzyme molecule by NEM, one was protected by NADP+ and the other had no significant function for the enzyme activity. Two radiolabelled peptides (P1 and P2) produced by the digestion with lysyl endopeptidase of [14C]NEM-modified DD3 could be separated by reverse-phase HPLC. P1, which was radiolabelled by [14C]NEM only in the absence of NADP+, showed the following sequence; H2N-Tyr-Lys-Pro-Val-Xaa-Asn-Gln-Val-Glu- NEM.Cys-His-Pro-Tyr-Phe-Asn-Gln-Ser-Lys-COOH (Xaa indicates a possible cysteine residue). This sequence was very similar to that of rat liver 3 alpha-hydroxysteroid/dihydrodiol dehydrogenase (3 alpha-HSD/DD) (residues 184 to 201) and was also highly conserved in the aldo-keto reductase superfamily. The sequence of P2, which had radioactivity in both the absence and presence of NADP+, also contained an NEM-modified cysteine and was similar in sequence to the regions located in loop A of rat 3 alpha-HSD/DD. The present study suggests that P1, which may have a cysteine residue corresponding to Cys-193 of rat 3 alpha-HSD/DD, functions in the alteration of DD3 activity depending on the modulation of NADP(+)-binding ability through a thiol/disulphide exchange reaction similar to that of rat 3 alpha-HSD/DD shown in our previous results; while P2, which may have a cysteine residue corresponding to Cys-145 of rat 3 alpha-HSD/DD, may be located near the surface of the enzyme molecule.

Amino Acid Sequence↗

Specific inhibitors of vacuolar type H(+)-ATPases induce apoptotic cell death.

Concanamycin A and bafilomycin A1 are known as strong inhibitors of the vacuolar type H(+)-ATPases in vitro. These inhibitors exhibited cytotoxic effects on twelve cell lines in cell viability assay. On the other hand, the F1F0-type H(+)-ATPase inhibitor oligomycin and the E1E2-type H(+)-ATPase inhibitor vanadate showed no cytotoxic effect. We show here that concanamycin A and bafilomycin A1 induce a significant increase in the proportion of fragmented DNA in agarose gel electrophoresis. Flow cytometric cell cycle analysis of WEHI 231 cells stimulated with concanamycin A revealed the increased percentage of apoptotic cells with hypodiploid DNA. These findings indicate that cell death induced by specific inhibitors of vacuolar type H(+)-ATPases occurs through apoptosis.

Animals↗

Enzymatic characterization of a novel bovine liver dihydrodiol dehydrogenase--reaction mechanism and bile acid dehydrogenase activity.

Bovine liver cytosolic dihydrodiol dehydrogenase (DD3) has been characterized by its unique dihydrodiol dehydrogenase activity for trans-benzenedihydrodiol (trans-1,2-dihydrobenzene-1,2-diol) with the highest affinity and the greatest velocity among three multiple forms of dihydrodiol dehydrogenases (DD1-DD3). It is the first time that DD3 has shown a significant dehydrogenase activity for (S)-(+)-1-indanol with low Km value (0.33 +/- 0.022 mM) and high K(cat) value (25 +/- 0.79 min-1). The investigation of the product inhibition of (S)-(+)-1-indanol with NADP+ versus 1-indanone and NADPH clearly showed that the enzymatic reaction of DD3 may follow a typical ordered Bi Bi mechanism similar to many aldo/keto reductases. Additionally, DD3 was shown to catalyze the dehydrogenation of bile acids (lithocholic acid, taurolithocholic acid and taurochenodeoxycholic acid) having no 12-hydroxy groups with low Km values (17 +/- 0.65, 33 +/- 1.9 and 890 +/- 73 microM, respectively). In contrast, DD1, 3 alpha-hydroxysteroid dehydrogenase, shows a broad substrate specificity for many bile acids with higher affinity than those of DD3. Competitive inhibition of DD3 with androsterone against dehydrogenase activity for (S)-(+)-1-indanol, trans-benzenedihydrodiol or lithocholic acid suggests that these three substrates bind to the same substrate binding site of DD3, different from the case of human liver bile acid binder/dihydrodiol dehydrogenase (Takikawa, H., Stolz, A., Sugiyama, Y., Yoshida, H., Yamamoto, M. and Kaplowitz, N. (1990) J. Biol. Chem. 265, 2132-2136). Considering the reaction mechanism, DD3 may also play an important role in bile acids metabolism as well as the detoxication of aromatic hydrocarbons.

Animals↗