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Biomedical subjects

M Shibata

Publications and source records attributed to M Shibata.

At least 253 records · Page 14Linked to original sources

Cytoskeletal rearrangements and transcriptional activation of c-fos serum response element by Rho-kinase.

The small GTPase Rho is implicated in cytoskeletal rearrangements including stress fiber and focal adhesion formation and in the transcriptional activation of c-fos serum response element. In vitro, Rho-kinase, which is activated by Rho, phosphorylates not only myosin light chain (MLC) (thereby activating myosin ATPase) but also myosin phosphatase, thus inactivating myosin phosphatase. Rho-kinase is involved in the formation of stress fibers and focal adhesions in fibroblasts. Here we show that the expression of constitutively active Rho-kinase increased the level of MLC phosphorylation. The activity of Rho-kinase was necessary for maintaining the vinculin-containing focal adhesions, whereas organized actin stress fibers were not necessary for this. The microinjection of constitutively active Rho-kinase into fibroblasts induced the formation of focal adhesions to some extent under the conditions where organized actin stress fibers were disrupted. The expression of constitutively active Rho-kinase also stimulated the transcriptional activity of c-fos serum response element. These results suggest that Rho-kinase has distinct roles in divergent pathways downstream of Rho, which include MLC phosphorylation leading to stress fiber formation, focal adhesion formation, and gene expression.

3T3 Cells↗

Cloning of a novel human diacylglycerol kinase (DGKtheta) containing three cysteine-rich domains, a proline-rich region, and a pleckstrin homology domain with an overlapping Ras-associating domain.

Diacylglycerol kinase (DGK) attenuates levels of second messenger diacylglycerol in cells and produces another (putative) messenger, phosphatidic acid. We have previously purified a 110-kDa DGK from rat brain (Kato, M., and Takenawa, T. (1990) J. Biol. Chem. 265, 794-800). Here we report the cDNA cloning from human brain and retina cDNA libraries. The cDNA encodes a novel DGK isotype, termed DGKtheta, of 941 amino acids with an apparent molecular mass of 110 kDa. DGKtheta contains a C-terminal putative catalytic domain, which is present in all eukaryotic DGKs. In contrast to other DGK isotypes, DGKtheta contains three cysteine-rich domains instead of two. The third cysteine-rich domain is most homologous to the second one in other DGK isotypes. This particular sequence homology extends C-terminally beyond the typical cysteine/histidine core structure and is DGK-specific. DGKtheta furthermore contains various domains for protein-protein interaction, such as a proline- and glycine-rich domain with a putative SH3 domain-binding site and a pleckstrin homology domain with an overlapping Ras-associating domain. DGKtheta is expressed in the brain and, to a lesser extent, in the small intestine, duodenum, and liver. In situ hybridization of DGKtheta mRNA in adult rat brain reveals high expression in the cerebellar cortex and hippocampus. DGKtheta activity in COS cell lysates is optimal toward diacylglycerols containing an unsaturated fatty acid at the sn-2 position.

Amino Acid Sequence↗

Endothelium- and cytochrome P-450-dependent relaxation induced by isoproterenol in rat aortic rings.

In rat aortic rings, the mechanism of endothelium-dependent relaxation induced by isoproterenol is examined. Pretreatment with (+/-)-1-[2,3]-(dihydro-7-methyl-1H-inden-4-yl)oxy]-3-[(1-methyleth yl)amino] -2-butanol (ICI-118,551), a beta 2-adrenoceptor antagonist, or atenolol, a beta 1-adrenoceptor antagonist, partly inhibited the relaxing response to isoproterenol. The relaxing response to isoproterenol in the presence of ICI-118,551 or atenolol was markedly inhibited by removal of endothelium. In the aorta pretreated with ICI-118,551 or atenolol, residual relaxing response to isoproterenol was also inhibited by 2-methyl-1,2-di-3-pyridyl-1-propanone (metyrapone), alpha-naphthoflavone or 8-methoxypsoralen, cytochrome P-450 monoxygenase inhibitors, and methylene blue, but not by indomethacin, a cyclooxygenase inhibitor, 2,3,5-trimethyl-6-(12-hydroxy-5,10-dodecadiynyl)-1, 4-benzoquinone (AA861), a 5-lipoxygenase inhibitor, NG-nitro-L-arginine (NOARG), a nitric oxide synthase inhibitor, Zn protoporphyrin IX, a heme oxygenase inhibitor, or yohimbine, a alpha 2-adrenoceptor antagonist. In the aorta denuded of endothelium, metyrapone did not affect the residual relaxing response to isoproterenol in the presence of atenolol. These results suggest that the cytochrome P-450 system may be involved in the endothelium-dependent relaxation induced by isoproterenol through beta 1- and beta 2-adrenoceptor activation.

Adrenergic beta-Agonists↗

Effects of shear stress on wound-healing angiogenesis in the rabbit ear chamber.

Recent studies indicate that wall shear stress plays a significant role in the physiological adaptation of the vascular system. This study focused on the effect of sustained wall shear stress on wound-healing angiogenesis by exploring the morphologic and hemodynamic changes in developing microvessels in vivo through the tissue repair process. Rabbits were treated with the alpha 1 blocker prazosin (50 mg/L in water) orally from Day 0 to Day 23 after implantation of ear chambers to increase peripheral blood flow. The microvasculature in the chamber was recorded from Day 7 to Day 23 by using an intravital videomicroscope. The relative area of the chamber covered by vascularized tissue (%), the rate of ingrowth (mm2/day), the total vascular area (mm2), and the wall shear stress level (dyne/cm2) in venules (diameter in 20-40 microns) were quantified using a computerized image analysis system. The relative area increased significantly in the prazosin-treated animals from Days 7 to 19. The chamber of the treated group was completely covered with vascularized tissue earlier than that of the control group. The final total vascular area was larger by 21% in the treated group. The time course of shear stress in the treated group showed an initial elevation (1.44 times increase vs the control) followed by a gradual decrease toward the control level. These findings suggest that wound-healing angiogenesis may be partly involved in the adaptive response of microvasculature to shear stress.

Adrenergic alpha-Antagonists↗

Mechanism of macromolecule concentration in collecting lymphatics in rat mesentery.

The mechanism by which macromolecular contents are concentrated during lymph transport was investigated in the collecting lymphatics of the mesentery of the rat. To examine changes in the concentration of lymph macromolecular tracer (fluorescein isothiocyanate-tagged dextran, MW 148,900) in the rhythmically contractile lymphatics, we quantified the fluorescence intensity of the lymph tracer using an intravital microscopy system with single slit-laser (20 microns in thickness) epi-illumination, regardless of the vasomotion of the lymph vessel. The results for the fluorescence intensity measurement at different sites at distances of about 300-1000 microns along unbranched collecting lymphatics revealed that the concentration of the lymph macromolecular contents was significantly increased during their passage from upstream to downstream (P < 0.05). The fluorescence intensity of lymph tracer in the occluded segment of collecting lymphatics around 1000 microns in length was enhanced during the contraction phase and reduced during the relaxation phase. These results suggest that the filtration of macromolecule-free fluid from the lymph across the lymphatic wall during its contraction plays an important role in the lymph concentration mechanism in the collecting lymphatics, probably due to the Starling forces acting across the lymphatic wall.

Animals↗

Determination of the optimal walking speed for neural relaxation in healthy elderly women using electromyogram and electroencephalogram analyses.

The purpose of this study was to determine the walking speed which has the greatest influence on neural relaxation in healthy elderly women as determined by electromyogram (EMG) and electroencephalogram (EEG) analyses. Seven elderly female volunteers [mean age 68.5 (SD 3.95) years] served as subjects for this study. The EMG signals were recorded from the gastrocnemius (MG), soleus (SL) and tibialis anterior (TA) muscles while walking on a treadmill, starting at 40 m.min-1 and increasing 6 m.min-1 incrementally for 10 min. The turning point of muscle activities (by integrated EMG. iEMGtp) was determined as the walking speed at the point at which the mean rate of change of iEMG (MG + SL + TA) abruptly increased. After the determination of iEMGtp. the treadmill was set at three constant speeds, one corresponding to the speed for the iEMGtp and two others 20% higher or lower than that for the iEMGtp. The subjects then walked for 20 min at each of these speeds on 3 separate days and their EEG power spectrum data were obtained for frequencies from the 8 to 13 Hz (z-wave component, AWC). The mean of iEMGtp for our subjects was at a mean walking speed of 64.7 (SD 7.9) m.min-1. Considering the subjects' age and height, iEMGtp was somewhat faster than their expected self-paced normal walking speed. There were no differences between the mean AWC values of the subjects prior to exercising at each of the three speeds. The mean AWC values after exercise were significantly (P < 0.01) greater than before. The extent of the increase in AWC at iEMGtp was greater than those at slower speeds. Our data would suggest that walking exercise at the speed which corresponds with EMG evidence of iEMGtp may induce the most significant relaxing effects in elderly women.

Aged↗

The involvement of KCa, KATP and KV channels in vasorelaxing responses to acetylcholine in rat aortic rings.

1. In rat aortic rings contracted by phenylephrine, acetylcholine relaxation was partly inhibited by: iberiotoxin, a Ca(2+)-activated K(KCa) channel inhibitor; glyburide, an ATP-dependent K(KATP) channel inhibitor; and 4-aminopyridine, a voltage-dependent K(KV) channel inhibitor, and was almost abolished by the removal of endothelium. 2. NG-nitro-L-arginine (NOARG), a NO synthase inhibitor, markedly reduced acetylcholine relaxation and abolished the inhibitory effects of iberiotoxin and glyburide on the acetylcholine relaxation. The inhibitory effect of 4-aminopyridine on acetylcholine relaxation was partly reduced by NOARG. 3. Methylene blue, a guanylate cyclase inhibitor, markedly inhibited acetylcholine relaxation and also abolished the inhibitory effects of iberiotoxin and glyburide and partly inhibited that of 4-amino-pyridine on acetylcholine relaxation. 4. Metyrapone, a cytochrome P-450-dependent monooxygenase inhibitor, and AA861, a 5-lipoxygenase inhibitor, but not indomethacin, a cyclooxygenase inhibitor, partly inhibited acetylcholine relaxation and reduced the inhibitory effect of 4-aminopyridine on acetylcholine relaxation. 5. These results indicate that, in rat aortic rings, acetylcholine relaxation may be dependent on the activation of KCa, KATP and KV channels. The activations of KCa and KATP channels may also be dependent on NO synthesis and subsequent formation of cGMP. The activation of KV channels may also be dependent on NO synthesis and subsequent activation of guanylate cyclase. In addition, the activation of KV channels may be dependent on the metabolism of arachidonic acid through 5-lipoxygenase and cytochrome P-450-dependent on the monooxygenase pathways.

4-Aminopyridine↗

Effects of several denervation procedures on distribution of calcitonin gene-related peptide and substance P immunoreactive in rat stomach.

The effect of chemical deafferentation, vagotomy (VGX), and gangliosympathectomy (GSX) on the density of fibers containing calcitonin gene-related peptide (CGRP) and substance P (Sub.P) in the rat gastric wall was studied. Chemical deafferentation by capsaicin abolished the density of CGRP-immunoreactive (IR) fibers, not Sub.P-IR fibers. Ten days after VGX, the density of CGRP-IR or Sub.P-IR fibers in the mucosa was largely reduced, while no reduction of CGRP-IR and Sub.P-IR fibers was seen in submucosal and muscular layers. GSX significantly reduced the density of CGRP-IR fibers in the mucosa and caused a moderate decrease in the fibers in submucosal and muscular layers. Pretreatment with 6-hydroxydopamine, a neurotoxin for noradrenergic nerves, did not affect the density of CGRP-IR fibers in the gastric wall. The density of Sub.P-IR fibers in the gastric wall was not affected by GSX. These studies indicate that the CGRP-IR and Sub.P-IR fibers in the mucosa are susceptible to extrinsic nerve denervation compared with those in the submucosa and muscle layers, that a major portion of the CGRP-IR fibers in the mucosa is of both vagal and spinal origin, and that a major portion of the Sub.P-IR fibers in the mucosa is of vagal origin. Furthermore, the present results support that CGRP-IR fibers, not Sub.P-IR fibers, in the rat stomach are capsaicin-sensitive.

Animals↗

Structure of an anti-HIV-1 hammerhead ribozyme complex with a 17-mer DNA substrate analog of HIV-1 gag RNA and a mechanism for the cleavage reaction: 750 MHz NMR and computer experiments.

The structure of an anti-HIV-1 ribozyme-DNA abortive substrate complex was investigated by 750 MHz NMR and computer modeling experiments. The ribozyme was a chimeric molecule with 30 residues-18 DNA nucleotides, and 12 RNA residues in the conserved core. The DNA substrate analog had 17 residues. The chimeric ribozyme and the DNA substrate formed a shortened ribozyme-abortive substrate complex of 47 nucleotides with two DNA stems (stems I and III) and a loop consisting of the conserved core residues. Circular dichroism spectra showed that the DNA stems assume A-family conformation at the NMR concentration and a temperature of 15 degrees C, contrary to the conventional wisdom that DNA duplexes in aqueous solution populate entirely in the B-form. It is proposed that the A-family RNA residues at the core expand the A-family initiated at the core into the DNA stems because of the large free energy requirement for the formation of A/B junctions. Assignments of the base H8/H6 protons and H1' of the 47 residues were made by a NOESY walk. In addition to the methyl groups of all T's, the imino resonances of stems I and III and AH2's were assigned from appropriate NOESY walks. The extracted NMR data along with available crystallographic data, were used to derive a structural model of the complex. Stems I and III of the final model displayed a remarkable similarity to the A form of DNA; in stem III, a GC base pair was found to be moving into the floor of the minor groove defined by flanking AT pairs; data suggest the formation of a buckled rhombic structure with the adjacent pair; in addition, the base pair at the interface of stem III and the loop region displayed deformed geometry. The loop with the catalytic core, and the immediate region of the stems displayed conformational multiplicity within the NMR time scale. A catalytic mechanism for ribozyme action based on the derived structure, and consistent with biochemical data in the literature, is proposed. The complex between the anti HIV-1 gag ribozyme and its abortive DNA substrate manifests in the detection of a continuous track of A.T base pairs; this suggests that the interaction between the ribozyme and its DNA substrate is stronger than the one observed in the case of the free ribozyme where the bases in stem I and stem III regions interact strongly with the ribozyme core region (Sarma, R. H., et al. FEBS Letters 375, 317-23, 1995). The complex formation provides certain guidelines in the design of suitable therapeutic ribozymes. If the residues in the ribozyme stem regions interact with the conserved core, it may either prevent or interfere with the formation of a catalytically active tertiary structure.

Catalysis↗

Elevated plasma levels of interleukin-1 receptor antagonist and interleukin-10 in patients with acute myocardial infarction.

The study was undertaken to measure plasma interleukin-1 (IL-1) receptor antagonist and IL-10 concentrations in patients with acute myocardial infarction and to analyze their relationship to the hemodynamics, severity, and prognosis of myocardial infarction in its acute stages. We attempted to define the kinetics of IL-1 receptor antagonist and IL-10 in patients with acute myocardial infarction (n = 34, age 42-91 years, mean 68 years). Plasma IL-1 receptor antagonist and IL-10 levels were measured by enzyme-linked immunosorbent assay. Patients in group A (n = 17) had uncomplicated acute myocardial infarction (Killip class I). Patients in group B (n = 17) had severe acute myocardial infarction (Killip class II, III, or IV). Peak Il-1 receptor antagonist and IL-10 levels in group B were significantly higher (p < 0.05) than those of group A. In group B, the peak IL-1 receptor antagonist levels were significantly correlated with white blood cell counts (r = 0.63, p = 0.006), pulmonary capillary wedge pressure (r = 0.78, p = 0.0002), and cardiac index (r = -0.51, p = 0.04). Peak IL-10 levels were significantly correlated with white blood cell counts (r = 0.60, p = 0.01), the pulmonary wedge pressure (r = 0.73, p = 0.0008), and cardiac index (r = -0.50, p = 0.04). Moreover, a significant correlation was found between the peak IL-1 receptor antagonist and IL-10 levels (r = 0.91, p < 0.0001). The peak IL-1 receptor antagonist levels in nonsurvivors (n = 13) were significantly higher (p < 0.01) than those in survivors (n = 21). The plasma IL-1 receptor antagonist and IL-10 levels were closely correlated with the severity of hemodynamics in acute myocardial infarction and with the clinical status of patients with severe acute myocardial infarction. Results suggest that plasma IL-1 receptor antagonist and IL-10 can serve as prognostic indicators in cases of sever acute myocardial infarction.

Adult↗

The effect of xenon on spinal dorsal horn neurons: a comparison with nitrous oxide.

We compared the effects of xenon (Xe) on the spinal cord dorsal horn neurons with those of nitrous oxide (N2O) in cats anesthetized with chrolarose and urethane. We assessed the potency of both anesthetics by the inhibition of wide dynamic range neuron responses evoked by cutaneous noxious (pinch) stimulation to a hindpaw. During 70% Xe inhalation, the responses of 7 of 11 neurons to pinch stimulation were suppressed. N2O, 70%, suppressed it in 8 of 11 neurons. The potency of Xe and N2O was compared in six neurons that were suppressed by both anesthetics. After 20 min of Xe inhalation, the response to pinch was suppressed to 49.5% +/- 8.2% (mean +/- SE), while N2O, 70% in oxygen, suppressed it to 45.9% +/- 7.9%. The difference between N2O and Xe was not significant. We conclude that Xe and N2O suppress the spinal cord dorsal horn neurons to a similar degree.

Anesthetics, Inhalation↗

Comparison of free and reversed pedicled posterior interosseous cutaneous flaps.

The posterior interosseous cutaneous flap is characterized by its thinness and the adjustable length of its vascular pedicle. This flap can be used both as a free and reversed vascular pedicled flap. We applied the free flap mostly for reconstruction of the digits, and the reversed vascular pedicled flap for soft-tissue defects of the proximal hand. Of 17 free flaps, 16 survived completely, and 1 developed partial necrosis. Eleven flaps were elevated as reversed vascular pedicled flaps, three of which were combined with the lateral arm flap to cover large defects. In these three combined flaps, the posterior radial collateral artery was anastomosed to an artery in the recipient site to enhance circulation; all three flaps survived completely. Operative time was 30 to 40 minutes shorter for the reversed vascular pedicled flaps. Two of the remaining eight reversed vascular pedicled flaps developed partial necrosis. The flap success rate was thus higher in the free flaps than in the reversed vascular pedicled flaps.

Adult↗

No effect of the anticholinergic drugs trihexyphenidyl and biperiden on the plasma concentrations of bromperidol and its reduced metabolite.

Effects of the anticholinergic drugs trihexyphenidyl and biperiden on plasma concentrations of bromperidol and its reduced metabolite were studied. Subjects comprised 20 schizophrenic inpatients taking bromperidol, 6-18 mg/ day for 1-9 weeks. Patients were randomly allocated to one of two treatment sequences: trihexyphenidyl-biperiden (n = 12) or biperiden-trihexyphenidyl (n = 8). Each sequence consisted of two 2-week phases, with no washout period between the two phases. The daily dose of trihexyphenidyl was 8 mg and that of biperiden 6 mg. Plasma concentrations of bromperidol and reduced bromperidol were measured using high-performance liquid chromatography (HPLC). There was no significant difference in plasma bromperidol or reduced bromperidol concentrations among baseline, trihexyphenidyl and biperiden phases: 7.3 +/- 3.7 versus 7.2 +/- 4.1 versus 7.0 +/- 4.3 ng/ml and 2.0 +/- 2.1 versus 2.2 +/- 2.1 versus 1.9 +/- 2.0 ng/ml, respectively. The present study thus suggests that neither trihexyphenidyl nor biperiden affects plasma concentrations of bromperidol and its reduced metabolite.

Adult↗

Increased plasma concentrations of bromperidol and its reduced metabolite with levomepromazine, but not with thioridazine.

Bromperidol is a close structural analog of haloperidol. The authors studied the effects of levomepromazine and thioridazine, which are frequently added to other neuroleptics as sedatives, on plasma concentrations of bromperidol and its reduced metabolite. The subjects were 26 inpatients with schizophrenia receiving bromperidol, 12 to 24 mg/day, for 1 to 19 weeks. In 10 cases, 50 mg levomepromazine per day and in nine cases, 50 mg thioridazine per day were coadministered for 1 week. In seven cases, both drugs were coadministered with > or = 2-week intervals. Plasma concentrations of bromperidol and reduced bromperidol were measured by a high-performance liquid chromatographic method. Levomepromazine (n = 17) significantly (p < 0.001) increased plasma concentrations of bromperidol (7.3 +/- 4.1 versus 10.2 +/- 4.8 ng/ml) and reduced bromperidol (1.8 +/- 1.4 versus 4.5 +/- 3.3 ng/ml). Thioridazine (n = 16) did not significantly change plasma concentrations of bromperidol (9.1 +/- 5.7 versus 8.6 +/- 5.5 ng/ml), while those of reduced bromperidol could not be measured because of interfering peaks. The current study suggests that levomepromazine, but not thioridazine, increases plasma concentrations of bromperidol and reduced bromperidol by inhibiting the metabolism of these compounds.

Adult↗

Computed tomographic study of aged schizophrenic patients.

The width of interhemispheric fissure, lateral ventricles and third ventricle were measured using cranial computed tomography (CT; linear method) in 45 elderly inpatients with chronic schizophrenia and in 28 age-matched control subjects. Twenty-three patients were men and 22 were women. In addition, Mini-Mental State Examination, Brief Psychiatric Rating Scale (BPRS) and a subclass of BPRS were undertaken in all patients. There is a significant enlargement of the maximum width of the interhemispheric fissure (in both male and female) and a significant enlargement of the ventricular system (more severe in men than in women) in aged schizophrenics, as seen with CT, compared with normal controls. These findings are consistent with previous studies of non-aged schizophrenic patients. Based upon the relation between the third ventricle enlargement and the positive and depressive symptoms in all patients. This result suggests that the advanced third ventricle enlargement may decrease these symptoms in aged schizophrenics.

Aged↗