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Biomedical subjects

K Tobita

Publications and source records attributed to K Tobita.

At least 19 recordsLinked to original sources

Development and characterization of an antisense-mediated prepackaging cell line for adeno-associated virus vector production.

One of the limitations of recombinant adeno-associated virus (rAAV) vector systems for gene therapy applications has been the difficulty in producing the vector in sufficient quantity for adequate evaluation. Since the AAV Rep proteins are cytotoxic, it is not easy to establish stable cell lines that express them constitutively. We describe a novel 293-derived prepackaging cell line which constitutively expresses the antisense rep/cap driven by a loxP-flanked CMV promoter. This cell line was converted into a packaging cell line expressing Rep/Cap for rAAV vector production through adenovirus-mediated introduction of a Cre recombinase gene. Without the introduction of the Cre recombinase gene, the cell line was shown to produce neither Rep nor Cap. rAAV vector was produced (1 x 10(9) genome copies/3.5-cm dish) 4 days after the transduction with Cre-expression adenovirus vector together with transfection of AAV vector plasmid. We further showed that the addition of Cap-expression adenovirus vector caused a 10-fold increase in the yield of rAAV vector. This system is also capable of producing rAAV as a transfection-free system by using a small amount of rAAV instead of vector plasmid.

Adenoviridae↗

(S)-preferential detoxification of 4-hydroxy-2(E)-nonenal enantiomers by hepatic glutathione S-transferase isoforms in guinea-pigs and rats.

In guinea-pig liver cytosol, racemic 4-hydroxy-2(E)-nonenal (HNE), a reactive and highly toxic product released from biomembranes by lipid peroxidation, was detoxified (S)-preferentially by GSH conjugation mediated by glutathione S-transferases (GSTs) and (R)-preferentially by NAD(+)-dependent oxidation mediated by aldehyde dehydrogenase (ALDH). The GST-mediated detoxification of the HNE enantiomers proceeded at much higher rates than that mediated by ALDH in guinea-pig liver cytosol. All the major guinea-pig GSTs, A1-1, M1-1, M1-2 and M1-3*, isolated from guinea-pig liver cytosol also catalysed the (S)-preferential conjugation of the HNE enantiomers. The liver and other major tissues of guinea-pigs had no immunologically detectable level of a putative GSTA4-4 orthologue, which exists as a minor GST protein in rat, mouse and human livers and exhibits extremely high catalytic activity towards HNE. All the hepatic rat GSTs, A1-1(2), A1-3, A4-4, M1-1, M1-2 and M2-2, also catalysed the (S)-preferential conjugation of HNE enantiomers.

Aldehydes↗

Solution properties of amino acid-type new surfactant.

The solution properties of an amino acid-type new surfactant, N-[3-lauryloxy-2-hydroxypropyl]-L-arginine L-glutamate (C12HEA-Glu), were examined by means of pK(a), surface tension, light scattering and fluorescence measurements. The dissociation state of C12HEA-Glu was changed by varying pH of the aqueous solution. The critical micelle concentration (cmc) of aqueous solution of C12HEA-Glu was lowest at pH 5.6 and the cmc increased with decreasing pH. The aggregation number of C12HEA-Glu micelles was largest at pH 5.6 and decreased with decreasing pH. The surface tension-concentration curve for C12HEA-Glu in water (non-buffered solution) showed a minimum. This is considered to be due to the coexistence of a trace species and a main species of C12HEA-Glu with various dissociation states since the pH of aqueous solution of C12HEA-Glu changes with the concentration of C12HEA-Glu. The micropolarity in the micelles of C12HEA-Glu was almost independent of pH, while the microfluidity in the micelles increased with increasing pH.

Journal Article↗

Self-amplification system for recombinant adeno-associated virus production.

A recently reported system for recombinant adeno-associated virus (rAAV) production does not require infection of a helper virus and depends on the transfection with a huge amount of three plasmids: AAV-vector, AAV-helper, and adenovirus-helper plasmids. Toward simplifying rAAV production, as a first step, we tested the use of the rAAV itself instead of the AAV-vector plasmid as a source of rAAV DNA and determined the optimal timing of infection and dose of the input rAAV. When 293 cells were infected just after transfection with 100 particles/cell of rAAV, irrespective of the purity, CsCl-purified or crude, up to 2000 particles/cell of rAAV were produced (9- to 20-fold self-amplification), a yield comparable to that obtained by an adenovirus-free transfection. These results indicate that infection of rAAV can greatly reduce the amount of plasmid DNA for a large-scale transfection. This strategy will also be useful when applied to packaging cell lines inducibly expressing Rep and Cap proteins.

Cells, Cultured↗

Maturation of end-systolic stress-strain relations in chick embryonic myocardium.

The embryonic myocardium increases functional performance geometrically during cardiac morphogenesis. We investigated developmental changes in the in vivo end-systolic stress-strain relations of embryonic chick myocardium in stage 17, 21, and 24 white Leghorn chick embryos (n = 10 for each stage). End-systolic stress-strain relations were linear in all developmental stages. End-systolic strain decreased from 0.50 +/- 0.02 to 0.31 +/- 0.01 (mean +/- SE, P < 0.05), while average end-systolic wall stress was similar at 3.29 +/- 0.34 to 4.19 +/- 0.43 mmHg (P = 0.14) from stage 17 to 24. Normalized end-systolic myocardial stiffness, a load-independent index of ventricular contractility, increased from 2.98 +/- 0.19 to 6.03 +/- 0.39 mmHg from stage 17 to 24 (P < 0.05). Zero-stress midwall volume increased from 0.024 +/- 0.002 to 0.124 +/- 0.004 microl from stage 17 to 24 (P < 0.05). These results suggest that the embryonic ventricle increases normalized ventricular "contractility" while maintaining average end-systolic wall stress over a relatively narrow range during cardiovascular morphogenesis.

Animals↗

Right and left ventricular wall deformation patterns in normal and left heart hypoplasia chick embryos.

The vertebrate embryonic ventricle transforms from a smooth-walled single tube to trabeculated right ventricular (RV) and left ventricular (LV) chambers during cardiovascular morphogenesis. We hypothesized that ventricular contraction patterns change from globally isotropic to chamber-specific anisotropic patterns during normal morphogenesis and that these deformation patterns are influenced by experimentally altered mechanical load produced by chronic left atrial ligation (LAL). We measured epicardial RV and LV wall strains during normal development and left heart hypoplasia produced by LAL in Hamburger-Hamilton stage 21, 24, 27, and 31 chick embryos. Normal RV contracted isotropically until stage 24 and then contracted preferentially in the circumferential direction. Normal LV contracted isotropically at stage 21, preferentially in the longitudinal direction at stages 24 and 27, and then in the circumferential direction at stage 31. LAL altered both RV and LV strain patterns, accelerated the onset of preferential RV circumferential strain patterns, and abolished preferential LV longitudinal strain (P < 0.05 vs. normal). Mature patterns of anisotropic RV and LV deformation develop coincidentally with morphogenesis, and changes in these deformation patterns reflect altered cardiovascular function and/or morphogenesis.

Analysis of Variance↗

CEA immunohistochemical localization is correlated with growth and metastasis of human gallbladder carcinoma.

Carcinoembryonic antigen (CEA) is a good marker of colorectal cancer. Recent studies have demonstrated that CEA may function as a metastatic potentiator by different pathways; i.e., modulation of immune responses, facilitation of intercellular adhesion and cellular migration. However, expression patterns of CEA have not yet been established in human gallbladder carcinomas. In this study, we examined CEA expression in human gallbladder adenocarcinomas and its clinicopathological significance. CEA immunoreactivity was detected not only in the cancer cells (cytoplasmic type: 63.0%, 34/54) but also in the cancer stroma (stromal type: 29.6%, 16/54). According to TNM classification, 75.0% (30/40) of T2-4 gallbladder cancers showed cytoplasmic CEA, while 28.6% (4/14) of the T1 cancers were cytoplasmic CEA-positive (p<0.05). Stromal CEA expression was detected in 40.0% (16/40) and none (0/14) of the T2-4 and T1 cancers, respectively (p<0.05). Lymph node metastasis was frequently found in the cytoplasmic CEA- and stromal CEA-positive gallbladder cancers (44.1% and 62.5%, respectively). These observations suggested that CEA expression plays important roles in cancer cell growth and metastasis of human gallbladder adenocarcinomas.

Adenocarcinoma↗

DF3 expression in human gallbladder carcinoma: significance for lymphatic invasion.

DF3 (MUC 1) is a member of a family of high molecular weight glycoproteins. Recent studies have demonstrated that DF3 is expressed in tumors of various human organs, and may function as an anti-adhesion molecule that inhibits cell-to-cell adhesion, inducing tumor metastasis. However, expression patterns of DF3 have not yet been established in human gallbladder carcinomas. In this study, we examined DF3 expression in human gallbladder adenocarcinoma and its clinicopathological significance. DF3 immunoreactivity was detected not only in the cancer cells (cytoplasmic type; 50.0%, 27/54) but also in the cancer stroma (stromal type; 46.3%, 25/54). According to TNM classification, 65.0% (26/40) of T2-4 gallbladder cancers showed cytoplasmic DF3, while 7.1% (1/14) of the T1 cancers were cytoplasmic DF3-positive (p<0.001). Stromal DF3 expression was detected in 62.5% (25/40) and none (0/14) of the T2-4 and T1 cancers, respectively (p<0.001). Lymph node metastasis was frequently found in the cytoplasmic DF3- and stromal DF3-positive gallbladder cancers (59.3% and 60.0%, respectively). These observations suggested that DF3 expression plays important roles in cancer cell growth and metastasis of human gallbladder adenocarcinomas.

Adenocarcinoma↗

Stromal sialyl Le(a) expression is correlated with vascular invasion of human gallbladder adenocarcinoma.

Sialyl Le(a) antigen (CA19-9), a member of a family of high molecular weight glycoproteins, was originally described as a gastrointestinal- and pancreatic-specific tumor marker. Recent studies have demonstrated that sialyl Lea is a ligand for E-selectin and may play an important role in tumor metastasis. However, expression patterns of sialyl Le(a) have not yet been established in human gallbladder carcinomas. In this study, we examined sialyl Le(a) expression in human gallbladder adenocarcinoma and its clinicopathological significance. Sialyl Le(a) immunoreactivity was detected not only in cancer cells (cytoplasmic type; 68.5%, 37/54) but also in cancer stroma (stromal type; 46.3%, 24/54). According to TNM classification, stromal sialyl Le(a) expression was detected in 60. 0% (24/40) and 7.1% (1/14) of the T2-4 and T1 cancers, respectively (p<0.01). Stromal sialyl Le(a)-positive gallbladder cancers frequently showed lymphatic invasion, venous invasion and lymph node metastasis (62.9%, 62.5% and 70.0%, respectively) (p<0.01). These observations suggested that sialyl Le(a) expression plays important roles in vascular invasion and metastasis of human gallbladder adenocarcinomas.

Adenocarcinoma↗

[X-ray and endoscopic diagnosis of esophageal achalasia].

We evaluated diagnostic X-ray and endoscopic examination findings in 486 patients with esophageal achalasia. Concerning the association between the duration of disease and the X-ray dilatation type, the duration was 1-4 years in more than 50% of patients with the Sp type, a mean of 8.5 years in those with the F type, and frequently more than 10 years in those with the S type. Endoscopy is generally used to determine the presence or absence of abnormal movement. In achalasia, the endoscope can be inserted into the stomach despite resistance at the stenotic site, and the mucosal surface is normal. Squamous cell carcinoma as a complication was observed in 21 patients (4.3%). The carcinoma complication rate was higher with a longer duration of disease and a longer observation period. The mean total course including the postoperative course was 27 years. Long-term and periodic X-ray and endoscopic observation of the disease course is important, and iodine staining is indispensable for early detection of esophageal cancer.

Adolescent↗

A switching system regulating subcellular localization of nuclear proteins using a viral protease.

We explored a novel approach to the functional regulation of nuclear proteins; altering their subcellular localization. To anchor a nuclear protein, beta-galactosidase with the nuclear localization signal of SV40 (nbeta-gal), within the cytoplasm, nbeta-gal was fused to the transmembrane domain of granulocyte colony-stimulating factor receptor (G-CSFR), a membrane protein. To liberate the nbeta-gal portion from the fusion protein, we used a protease derived from a plant virus, whose recognition sequence was inserted between the G-CSFR and nbeta-gal. Western analysis showed that the chimeric protein was cleaved in the presence of the protease in 293 cells and that the fusion protein without the recognition sequence remained intact. This chimeric protein was localized exclusively in the cytoplasm as visualized by X-gal staining and immunofluorescence microscopy. In contrast, when expressed together with the protease, beta-gal was predominantly detected in the nuclei. Moreover, we isolated 293-cell clones constitutively expressing the protease, indicating that this protease is not cytotoxic. These results suggest that the viral protease-mediated alteration of subcellular localization can potentially regulate the function of nuclear proteins.

Biological Transport↗

Intravascular ultrasound imaging before and after balloon angioplasty for pulmonary artery stenosis.

Previous reports regarding intravascular ultrasound (IVUS) imaging of the pulmonary arteries in children and its application to balloon pulmonary angioplasty are limited. This study was designed to compare findings of IVUS imaging and those of angiography of the pulmonary artery before and after the balloon angioplasty procedure. Thirty patients had significant pulmonary artery stenosis and underwent balloon angioplasty. In all, of 34 branch pulmonary arteries were dilated. All patients underwent both angiography and IVUS imaging at the time of balloon angioplasty. The mean age at balloon angioplasty was 5.7 +/- 4.0 yr. One echo-dense layer on IVUS was detected in 9% of the 34 stenotic vessels, and a two- or three-layered vascular wall pattern in 91%. The thickness of intima-medial layer (inner and middle layers) was greater than normal in 91% of stenotic vessels. After balloon angioplasty, intimal flaps and aneurysm were observed at 29 and 28 locations, respectively. Of these locations, the intimal flaps were detected by angiography in 44% and by IVUS in 100%; the aneurysm was detected by angiography in 61% and by IVUS in 93%. Media rupture was observed at 26 locations, and the change was detected only by IVUS. The present study suggests that intimal and medial changes in the pulmonary artery can be detected more precisely by IVUS than by angiography.

Angioplasty, Balloon↗

Suppression of endothelin system in Vero cells latently infected with influenza virus B/Lee/40.

In Vero cells latently infected with influenza virus B/Lee/40 (L/V cells), the endothelin (ET) system was examined as a possible mediator in pathogenesis of latent viral infection by radioimmunoassay (RIA) and quantitative reverse transcription polymerase reaction (RT-PCR). During viral latency of more than two months, ET secretion, preproendothelin-1 (PPET-1) mRNA, and endothelin receptor subtype A (ETAR) mRNA within the cells remained suppressed. Our data indicate that not only the release of ET-1 was downregulated at the transcriptional level but also ETAR mRNA was downregulated rather than upregulated compensatively in L/V cells.

Animals↗

Charged-to-alanine scanning mutagenesis of the N-terminal half of adeno-associated virus type 2 Rep78 protein.

The adeno-associated virus (AAV) Rep78 and Rep68 proteins are required for site-specific integration of the AAV genome into the AAVS1 locus (19q13.3-qter) as well as for viral DNA replication. Rep78 and Rep68 bind to the GAGC motif on the inverted terminal repeat (ITR) and cut at the trs (terminal resolution site). A similar reaction is believed to occur in AAVS1 harboring an analogous GAGC motif and a trs homolog, followed by integration of the AAV genome. To elucidate the functional domains of Rep proteins at the amino acid level, we performed charged-to-alanine scanning mutagenesis of the N terminus (residues 1 to 240) of Rep78, where DNA binding and nicking domains are thought to exist. Mutants were analyzed for their abilities to bind the GAGC motif, nick at the trs homolog, and integrate an ITR-containing plasmid into AAVS1 by electrophoretic mobility shift assay, trs endonuclease assay, and PCR-based integration assay. We identified the residues responsible for DNA binding: R107A, K136A, and R138A mutations completely abolished the binding activity. The H90A or H92A mutant, carrying a mutation in a putative metal binding site, lost nicking activity while retaining binding activity. Mutations affecting DNA binding or trs nicking also impaired the site-specific integration, except for E66A and E239A. These results provide important information on the structure-function relationship of Rep proteins. We also describe an aberrant nicking of Rep78. We found that Rep78 cuts predominantly at the trs homolog not only between the T residues (GGT/TGG), but also between the G and T residues (GG/TTGG), which may be influenced by the sequence surrounding the GAGC motif.

Alanine↗

End-systolic myocardial stiffness is a load-independent index of contractility in stage 24 chick embryonic heart.

Cardiac morphogenesis and function are interrelated during cardiovascular development. We evaluated the effects of acute alteration of loading condition to chick embryonic ventricular contractility using end-systolic myocardial stiffness based on the incremental elastic modulus concept. End-systolic stress-strain relations including geometric factor and end-systolic myocardial stiffness were determined from the simultaneous measurement of ventricular pressure and chamber dimension in the following four groups of stage 24 White Leghorn chick embryos: volume infusion (n = 9), conotruncal occlusion (n = 9), calcium suffusion (n = 10), and verapamil suffusion (n = 8). The end-systolic stress-strain relationship was linear in each embryo. There was no correlation between end-systolic myocardial stiffness and end-systolic stress. End-systolic myocardial stiffness increased with calcium suffusion (P < 0.05 vs. volume infusion). The geometric factor increased after verapamil suffusion (P < 0.05). End-systolic myocardial stiffness normalized by geometric factor was not changed by alteration of preload or afterload, increased after calcium suffusion, and decreased after verapamil administration (P < 0.05). These results suggest that normalized end-systolic myocardial stiffness is a load-independent index of ventricular contractility in the developing embryonic chick ventricle.

Animals↗

Stromal expression of thrombospondin-1 is correlated with growth and metastasis of human gallbladder carcinoma.

Thrombospondin-1 (TSP1) is one of the extracellular matrix glycoproteins that affect cell adhesion, motility and growth. Based on its effects on tumors, TSP1 is thought to be a potential regulator of tumor growth and metastasis. In this study, we examined TSP1 expression in human gallbladder adenocarcinoma and its clinicopathological significance. TSP1 immunoreactivity was detected mainly in the cancer stroma and was observed infrequently in cancer cells. According to the TNM classification, 74.5% (29/39) of the T2 and T3 gallbladder cancers were TSP1-positive, while none (0/14) of the T1 cancers showed TSP1 expression (p<0.001). Lymph node metastasis and venous involvement were frequently found in the TSP1-positive cases (90.0% and 87.1%, respectively) of gallbladder adenocarcinoma (p<0.001). These observations suggested that TSP1 expression plays an important role in cancer cell growth and metastasis of human gallbladder adenocarcinomas, and that stromal TSP1 immunoreactivity is a good predictor of vascular involvement and lymph node metastasis.

Adenocarcinoma↗

Detection of genes of RNA viruses from freshly biopsied gastric mucosa by reverse transcription polymerase chain reaction.

The reverse transcription polymerase chain reaction (RT-PCR) was performed to detect genes of RNA viruses in the freshly biopsied gastric mucosa of seven patients with low gastric acidity. Although nucleoprotein genes of Sendai virus and hemmaglutinin genes of influenza virus A were not detected, nucleoprotein genes of influenza virus B were detected in samples from three of the seven patients. The first patient had had antrectomy and vagotomy for gastric ulcer, the second patient was receiving a histamine type 2 receptor blocker for gastritis, and the third patient was receiving a proton pump inhibitor for gastric ulcer. Virus isolation from gastric mucosa and from gargles was negative for all seven patients. These findings suggest that genes of influenza viruses may exist in the gastric mucosa of patients with low gastric acidity.

Biopsy↗