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Biomedical subjects

H Tatsumi

Publications and source records attributed to H Tatsumi.

At least 19 recordsLinked to original sources

Nominal free air in the left inguinal fossa due to perforation of the sigmoid colon in a case of blunt abdominal trauma: CT diagnosis.

We present a case of perforation of the sigmoid colon due to blunt abdominal trauma. Computed tomography showed nominal free air in the inguinal fossa. The distribution of free air may be a clue to the site of an injured intestine. Early detection of intestinal injury is difficult, but repeated computed tomography after several hours may reveal increased free air.

Abdominal Injuries↗

Improved bioluminescent enzyme immunoassay for the rapid detection of Salmonella in chicken meat samples.

AIMS: To evaluate an improved bioluminescent enzyme immunoassay (BEIA) using biotinylated firefly luciferase for the rapid detection of Salmonella in naturally contaminated chicken meat samples. METHODS AND RESULTS: Capture agents and lipopolysaccharide (LPS) extraction reagents for Salmonella were investigated to improve the sensitivity of the BEIA. Also, the use of Oxoid SPRINT (Simple Pre-enrichment and Rapid Isolation New Technology) as a pre-enrichment and selective medium for 26-h BEIA detection of Salmonella in chicken meat samples was examined. The use of polymyxin B as a capture agent on solid support and 3-[(3-Cholamidopropyl) dimethylammonio] propanesulfonic acid (CHAPS) for extraction of the LPS facilitated sensitive detection of Salmonella. Of 120 chicken meat samples, 25 samples were positive using the improved BEIA with the SPRINT and 25 samples were positive using the SPRINT followed by the standard isolation methods. CONCLUSIONS: The improved BEIA, in which polymxin B was used as a capture agent and CHAPS was used for extraction of the antigen, had a sensitivity of 96.0% and a specificity of 98.9% for the detection of Salmonella in chicken meat. SIGNIFICANCE AND IMPACT OF THE STUDY: The improved BEIA combined with the SPRINT medium for the detection of Salmonella in chicken meat samples produced comparable results to the culture methods in 26 h.

Animals↗

In vitro reconstitution of signal transmission from a hair cell to the growth cone of a chick vestibular ganglion cell.

Signal transmission from a chick hair cell to the growth cone of a vestibular ganglion cell was examined by placing an acutely dissociated hair cell on the growth cone of a cultured vestibular ganglion cell. Electrical stimuli were applied to the hair cell while monitoring the intracellular Ca(2+) concentration ([Ca(2+)](i)) at the growth cone or recording whole-cell currents from the vestibular ganglion cell. Electrical stimulation of the hair cell induced [Ca(2+)](i) increases at the growth cone and inward currents in the vestibular ganglion cell. The [Ca(2+)](i) increase was blocked by 6-cyano-7-nitroquinoxaline (CNQX) (10 microM) but not by 2-amino-5-phosphonovaleric acid (APV; 50 microM). Glutamate (100 nM-300 microM) applied to the vestibular ganglion cell by the Y-tube method induced inward currents which were also antagonized by CNQX, but not by APV. These results indicate that the electrical stimulation of a hair cell induced glutamate or glutamate like agent release from the hair cell, which activated non-N-methyl-D-aspartate receptors at the growth cone of the vestibular ganglion cell, followed by action potentials and [Ca(2+)](i) elevation in the vestibular ganglion cell. This is the first demonstration of in vitro reconstitution of functional signal transmission from a hair cell to a vestibular ganglion cell.

6-Cyano-7-nitroquinoxaline-2,3-dione↗

Evaluation of a 24-hour bioluminescent enzyme immunoassay for the rapid detection of Salmonella in chicken carcass rinses.

A bioluminescent enzyme immunoassay (BEIA), using Salmonella-specific monoclonal antibody M183 for capture and biotinylated monoclonal antibody M183 for detection, was developed with InteLite AB streptavidin-biotinylated firefly luciferase complex as a reporter. Salmonella cultures were preenriched in buffered peptone water with shaking for 6 h at 37 degrees C and then selectively enriched in Muller-Kauffmann tetrathionate (MKTT) broth and modified semisolid Rappaport-Vassiliadis (MSRV) medium for 16 h at 42 degrees C. After enrichment, the total test time for the BEIA was 1.5 h. The analytical sensitivity of the BEIA ranged from 6.0 x 10(2) CFU/ml to 1.2 x 10(5) CFU/ml in MKTT and from 1.4 x 10(5) to 2.3 x 10(6) CFU/ml in MSRV using six Salmonella serovars prevalent in Canada. With enrichment cultures, the BEIA detected 1 CFU of Salmonella Typhimurium and Salmonella Enteritidis in 25 ml of chicken rinses. Representative strains of 10 Salmonella serovars were detected, and cross-reactivity was not observed with 25 non-Salmonella foodborne bacteria. The BEIA performance was assessed by testing 420 poultry samples, which were analyzed in parallel with the standard MSRV culture method. The BEIA detected 117 (27.88%) Salmonella-positive samples, whereas the standard MSRV culture method detected 124 (29.5%). The BEIA had a sensitivity of 64.5% and a specificity of 87.5% compared to the standard MSRV culture method. However, similar specificities and sensitivities were obtained when the standard MSRV culture method was compared to the BEIA (sensitivity = 68.4% and specificity = 85.5%). Neither method detected 100% of the Salmonella found in the samples tested, and statistical analyses indicated no significant difference between the two methods. In summary, the BEIA offers another alternative for the detection of Salmonella, with the additional advantage of providing a 24-h test for detecting Salmonella in chicken carcass rinses. The results obtained in this research indicate that tests are still needed for the isolation and detection of Salmonella that will establish the true prevalence of Salmonella in chicken samples.

Animals↗

Calcium-sensitive nonselective cation channel identified in the epithelial cells isolated from the endolymphatic sac of guinea pigs.

We identified a Ca2+-sensitive cation channel in acutely dissociated epithelial cells from the endolymphatic sac (ES) of guinea pigs using the patch-clamp technique. Single-channel recordings showed that the cation channel had a conductance of 24.0 +/- 1.3 pS (n = 8) in our standard solution. The relative ionic permeability of the channel was in the order K+ = Na+ > Ca2+ >> Cl-. This channel was weakly voltage-dependent but was strongly activated by Ca2+ on the cytosolic side at a concentration of around 1 mm in inside-out excised patches. With cell-attached patches, however, the channel was activated by much lower Ca2+ concentrations. Treatment of the cells, under cell-attached configuration, with ionomycin (10 microm), carbonyl cyanide 3-chlorophenylhydrazone (CCCP, 20 microm), or ATP (1 mm), which increased intracellular Ca2+ concentration ([Ca2+]i), activated the channel at an estimated [Ca2+]i from 0.6 microm to 10 microm. It is suggested that some activators of the channel were deteriorated or washed out during the formation of excised patches. Based on this Ca2+ sensitivity, we speculated that the channel contributes to the regulation of ionic balance and volume of the ES by absorbing Na+ under certain pathological conditions that will increase [Ca2+]i. This is the first report of single-channel recordings in endolymphatic sac epithelial cells.

Adenosine Triphosphate↗

Dynamics of integrin clustering at focal contacts of endothelial cells studied by multimode imaging microscopy.

Human umbilical vein endothelial cells were stained with FITC-labeled anti-beta(1) integrin antibody and plated on a glass cover slip to elucidate the mechanism of integrin clustering during focal contact formation. The process of integrin clustering was observed by time-lapse total-internal-reflection fluorescence microscopy, which can selectively visualize the labeled integrins at the basal surface of living cells. The clustering of integrins at focal contacts started at 1 hour after plating and individual clusters kept growing for approximately 6 hours. Most integrin clusters (approximately 80%) elongated towards the cell center or along the cell margin at a rate of 0.29+/-0.24 microm minute(-1). Photobleaching and recovery experiments with evanescent illumination revealed that the integrins at the extending tip of the clusters were supplied from the intracellular space. Simultaneous time-lapse imaging of exocytosis of integrin-containing vesicles and elongating focal contacts showed that most exocytosis occurred at or near the focal contacts followed by their elongation. Double staining of F-actins and integrins demonstrated that stress fibers were located near the integrin clusters and that intracellular punctate integrins were associated with these stress fibers. These results suggest that the clustering of integrins is mediated by actin-fiber-dependent translocation of integrins to the extending tip of focal contacts.

Actins↗

Modulation of intestinal permeability by nitric oxide donors: implications in intestinal delivery of poorly absorbable drugs.

The effects of nitric oxide (NO) donors NOC5 [3-(2-hydroxy-1-(methylethyl)-2-nitrosohydrazino)-1-propanamine ] and NOC12 [N-ethyl-2-(1-ethyl-hydroxy-2-nitrosohydrazino)-ethanamine] on the permeability of 5(6)-carboxyfluorescein (CF) across the intestinal membrane were examined by an in vitro Ussing chamber method. The NO donors significantly increased the intestinal permeability of CF and their absorption-enhancing effects were concentration-dependent over the range of 0.01 to 0.1 mM. Regional differences in the absorption-enhancing effects of the NO donors were observed (colon > jejunum). The absorption-enhancing effect of NOC12 reduced as the molecular weights of compounds increased. Therefore, the degree of absorption-enhancing effect of NOC12 was dependent on the molecular weights of compounds. In the pretreatment studies with NOC12 and lactate dehydrogenase release studies, the absorption-enhancing effect of 0.1 mM NOC12 was reversible and less toxic to the colonic membrane. On the other hand, the absorption-enhancing effect of NOC12 was inhibited by the coadministration of 2-(4-carboxyphenyl) 4,4,5, 5-tetramethylimidazole-1-oxyl 3-oxide sodium salt, an NO scavenger, suggesting that NO can regulate the permeability of water-soluble drugs in the gut. Furthermore, NOC12 (0.1 and 1 mM) significantly decreased the transepithelial electrical resistance value of the colonic membrane, suggesting that the absorption-enhancing mechanism of NOC12 may be partly related to the dilation of the tight junction in the epithelium via a paracellular route. These findings suggest that NO donors may be useful to enhance the intestinal absorption of poorly absorbable drugs.

Animals↗

Mechanosensitive chloride channels on the growth cones of cultured rat dorsal root ganglion neurons.

We developed an experimental system to investigate mechanosensitivity of a single neuron, using cultured rat dorsal root ganglion cells. Highly precise mechanical stimulation was applied to various sites of the cells, using a piezo-driven glass microcapillary whose movement was computer-controlled, while whole-cell patch-clamp recordings were made from the cell bodies. When the growth cones and lamillipodia from the cell soma were mechanically stimulated, inward currents were recorded at the holding potential of -60mV. Filopodia were most sensitive to mechanical stimulation. However, when neurites or soma of dorsal root ganglion cells were stimulated in the same way, electrical responses were hardly recorded. Two types of currents varying in time-course were observed: fast type of 100-200ms and slow type of several seconds in duration. When the membrane potential was held at around 0mV, both types of currents were almost abolished or even reversed, and the reversal potential was estimated to be about -2. 2mV. Replacement of extracellular sodium by tetraethylammonium did not significantly change the reversal potential. In the low-chloride solution ([Cl(-)](o)=11.7mM), the reversal potential was about +60mV, as expected from the Nernst equation for chloride. These inward currents were almost completely inhibited by extracellular application of chloride channel blocker, 5-nitro-2-(3-phenylpropylamino) benzoic acid (100microM). These results indicate that the inward currents are due to activation of mechanosensitive chloride channels, preferentially located on the growth cones of cultured dorsal root ganglion neurons.

Animals↗

Development of novel lipophilic derivatives of DADLE (leucine enkephalin analogue): intestinal permeability characateristics of DADLE derivatives in rats.

PURPOSE: The objective of this study is to examine the intestinal permeability of novel lipophilic derivatives of DADLE (Tyr-D-Ala-Gly-Phe-D-Leu), an enkephalin analogue, using isolated rat intestinal membranes. METHODS: The novel lipophilic derivatives of DADLE were synthesized by chemical modification with various fatty acids at the C terminus. The pharmacological activities of these DADLE derivatives were assessed by a hot plate test. The intestinal permeability of these derivatives was estimated by the in vitro Ussing chamber method. RESULTS: We obtained four different DADLE derivatives including acetyl-DADLE (DADLE-C2), butyryl-DADLE (DADLE-C4), caproyl-DADLE (DADLE-C6), and caprylyl-DADLE (DADLE-C8). All the derivatives of DADLE had at least 75% of the activity of native DADLE, suggesting that chemical modification of DADLE at the C terminus did not markedly affect its pharmacological activity. These DADLE derivatives were more stable than native DADLE in jejunal and colonic homogenates. A "bell-shaped" profile was observed between the apparent permeability coefficients (Papp) of DADLE derivatives and lipophilicity. In particular, DADLE-C4 had the greatest permeability characteristics across the intestinal membrane of the acyl derivatives studied in this experiment. The permeability of DADLE-C4 across the jejunal membrane was further improved in the presence of puromycin, amastatin, and sodium glycocholate (NaGC), all at a concentration of 0.5 mM. CONCLUSIONS: We suggest that the combination of chemical modification with butyric acid and the application of a protease inhibitor are effective for improving the absorption of DADLE across the intestinal membrane.

Animals↗

Rapid detection of Staphylococcus aureus using bioluminescent enzyme immunoassay.

A bioluminescent enzyme immunoassay (BLEIA) method for detecting protein A-bearing Staphylococcus aureus was developed using biotinylated firefly luciferase. The BLEIA was able to detect protein A at one pg ml-1 and 103 cfu ml-1 level of Staph. aureus. The BLEIA showed significant signals with overnight cultures of all 24 Staph. aureus strains, and the BLEIA did not show any significant signals with overnight cultures of all 44 strains of coagulase-negative staphylococci and the other genus bacteria. After 5 h cultivation beginning at approximately 50 cfu ml-1, the BLEIA was able to detect all 35 Staph. aureus strains isolated from healthy humans.

Bacterial Proteins↗

Development of a rapid positive/absent test for coliforms using sensitive bioluminescence assay.

We have developed a sensitive bioluminescence assay for beta-galactosidase using a luminescent substrate, D-luciferin-O-beta-galactopyranoside (LuGal). The detection limit for beta-galactosidase was 3 x 10-20 mol per assay, which was approximately 50-fold more sensitive than the test using a fluorescent substrate. This assay was applied to a positive/absent (P/A) test for coliforms. Observations made after 7 h of culture followed by a 10-min enzyme assay using LuGal were comparable to those made after a 22-24-h culture by the current method. Therefore, the LuGal method allows a rapid P/A test for coliforms.

Bacteriological Techniques↗

Telemedicine for evaluation of brain function by a metacomputer.

A method of evaluating brain function using the metacomputer concept of the Globus system combined with a message-passing interface is described. The proposed method has the ability to exploit various geographically distributed resources and parallel computing linked to a high-technology medical instrumentation system, magnetoencephalography, to analyze the functional state of the brain. It is envisaged that the method will lead to the realization of an efficient telemedicine system for health care.

Brain↗

Attachment of growth cones on substrate observed by multi-mode light microscopy.

Evanescent light illumination was introduced into a multi-mode microscope to construct a new type of total internal reflection fluorescence microscope (TIRFM). This microscope, capable of TIRFM, high resolution video-enhanced differential interference contrast (DIC), epifluorescence, interference reflection (IR) imaging, was combined with an image acquisition system for time-lapse microscopy. Neuronal growth cones of a rat hippocampal neuron were stained with membrane labeling fluorescence dyes (DiI or octadecyl rhodamine B). Dynamic changes of the cell substrate contact of the neuronal growth cone were observed using the multi-imaging capacities of this system. When growth cone regions were stimulated by pressure ejection of a high potassium solution, TIRFM intensity at the basal membrane of the growth cone increased, suggesting that basal membrane of growth cone approaches the glass substrate when excited. The approach of the ventral membrane to the substrate during excitatory stimulation was also observed with IR microscope. The functional importance of cell/substrate contact in growth cones is discussed.

Animals↗

Pyruvate phosphate dikinase from a thermophilic actinomyces Microbispora rosea subsp. aerata: purification, characterization and molecular cloning of the gene.

Various thermophilic bacteria were analyzed by Southern hybridization analysis using oligonucleotide probes coding for the pyruvate phosphate dikinase (PPDK) gene from Clostridium symbiosum, and positive hybridization signals were observed in the chromosomal DNAs from Microbispora rosea subsp. aerata (IFO 14047). PPDK activity was detected in lactose induced cells and the enzyme was purified to homogeneity. The molecular mass of PPDK was estimated to be 230000 by gel filtration chromatography and 91000 by SDS-PAGE, suggesting that PPDK is a dimeric enzyme. This enzyme was specific for adenine nucleotide and the apparent Km values for AMP, PPi, and phosphoenolpyruvate were 5, 38, and 280 microM, respectively. It was stable in the pH range 6 to 11, and retained 80% activity after 60 min heat treatment at 60 degrees C. We cloned the PPDK gene from M. rosea. It consists of 878 amino acids with a molecular mass of 95514. Sequence comparison indicates around 50% similarity with other PPDKs and it has all the highly conserved regions of the related enzymes. We expressed the PPDK gene in Escherichia coli and obtained enzymatically active protein.

Actinomyces↗

Electrochemical study of reversible hydrogenase reaction of Desulfovibrio vulgaris cells with methyl viologen as an electron carrier.

An electrode modified with immobilized whole cells of Desulfovibrio vulgaris (Hildenborough) produces an S-shaped voltammogram with both cathodic- and anodic-catalytic-limiting currents in a methyl viologen-containing buffer saturated with H2. Methyl viologen penetrates into the bacterial cells to serve as an electron carrier in the reversible reaction of hydrogenase in the cells and functions as an electron-transfer mediator between the bacterial cells and the electrode, thus producing the catalytic currents for the evolution and consumption of H2. An equation for the catalytic current that takes into account the reversible hydrogenase reaction explains well the shape of the voltammogram. The potential at null current on the voltammogram agrees with the potential determined by potentiometry with the same electrode, which is equal to the redox potential of the H+/H2 couple in the solution--the standard potential of a hydrogen electrode at the pH of the solution. When D. vulgaris cells are suspended in an argon-saturated buffer containing methyl viologen, the suspension produces a catalytic current at a bare glassy carbon electrode for the evolution of H2. Analysis of the current by a theory for a catalytic current for a unidirectional nonlinear enzyme catalysis allows us to determine the kinetic parameters of the reaction between methyl viologen and hydrogenase in intact D. vulgaris cells. Thus we obtain the apparent Michaelis constant for methyl viologen cation radical, K'MV.+ = 0.16 mM, and the apparent catalytic constant (that is, the turnover number per D. vulgaris cell), zkcat,H+ = 1.2 x 10(7) s-1, for the H2 evolution reaction at pH 5.5 and at 25 degrees C, z being the number of hydrogenases contained in a D. vulgaris cell. The bimolecular reaction rate constant, kcat,H+/K'MV.+, of the reaction between methyl viologen cation radical and oxidized hydrogenase in intact D. vulgaris cells is estimated as 4.2 x 10(7) M-1 s-1. Similarly, the bimolecular reaction rate constant, kcat,H2/K'MV2+, of the reaction between methyl viologen and reduced hydrogenase is estimated to be 1.2 x 10(7) M-1 s-1 at pH 9.5 and 25 degrees C. Both rate constants are large enough for the reactions to be diffusion-limited processes.

Bacterial Proteins↗

Growth cones exhibit enhanced cell-cell adhesion after neurotransmitter release.

Evoked release of acetylcholine and subsequent cell-cell adhesive contacts between growth cones and acetylcholine sensing neurons were observed using cultured neurons dissociated from the diagonal band of Broca of the rat. Stimulation to the soma of the diagonal band of Broca neurons evoked release of acetylcholine from the growth cones. The release of acetylcholine was monitored using whole-cell patch-clamp recording from acetylcholine receptor-rich superior cervical ganglion neuron positioned on the growth cone as a sensor of acetylcholine release. By measuring changes in fluorescence from the growth cone using Ca2(+)-sensitive dye while voltage-clamping the superior cervical ganglion neuron, transient intracellular Ca2+ concentration increase and acetylcholine release from growth cone were recorded simultaneously. Video-enhanced differential interference contrast imaging of the growth cones demonstrated tether formation between the growth cone and superior cervical ganglion cell soma when the superior cervical ganglion cell soma was moved away from the growth cone after acetylcholine release, suggesting formation of adhesive contacts between the growth cone and the sensor neuron. Adhesive contacts between growth cones and sensor neurons were also detected when a high K+ solution or alpha-latrotoxin was applied to the growth cone. Adhesions were also observed between growth cones and latex beads, when growth cones were exposed to high K+ solution. The properties of the adhesive contacts at the growth cone were studied by optically manipulating a latex bead attached to the growth cone surface. These results suggest that growth cones exhibit cell-cell adhesion after neurotransmitter release.

Animals↗