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Biomedical subjects

M Shibata

Publications and source records attributed to M Shibata.

At least 181 records · Page 10Linked to original sources

Regulation of a novel pathway for cell death by lysosomal aspartic and cysteine proteinases.

PC12 cells undergo apoptosis when cultured under conditions of serum deprivation. In this situation, the activity of caspase-3-like proteinases was elevated, and the survival rate could be maintained by treatment with acetyl-DEVD-cho, a specific inhibitor of caspase-3. In a culture of PC12 cells treated with acetyl-DEVD-cho, where caspase-3-like proteinases are not activated, CA074, a specific inhibitor of cathepsin B induced active death of the cells. Cathepsin B antisense oligonucleotides showed a similar effect to CA074 on the induction of active cell death. By double staining of terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate-biotin nick end-labeling and activated caspase-3, the dying cells treated with CA074 were positive for terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate-biotin nick end-labeling staining but negative for activated caspase-3. Ultrastructurally, the cells were relatively large and had nuclei with chromatin condensation. The initiation of cell death by CA074 or the cathepsin B antisense were inhibited by the addition of pepstatin A, a lysosomal aspartic proteinase inhibitor, or by cathepsin D antisense. To examine whether this cell death pathway was present in cell types other than PC12 cells, we analysed dorsal root ganglion neurons obtained from rat embryos on the 15th gestational day, a time when they require nerve growth factor for survival and differentiation in culture. When cultured in the absence of nerve growth factor, the neurons survived in the presence of acetyl-DEVD-cho or acetyl-YVAD-cho. Under these conditions, CA074 reduced the survival rate of the neurons, which was subsequently restored by the further addition of pepstain A. These results suggest that a novel pathway for initiating cell death exists which is regulated by lysosomal cathepsins, and in which cathepsin D acts as a death factor. We speculate that this death-inducing activity is normally suppressed by cathepsin B.

Animals↗

Diffuse central nervous system lupus involving white matter, basal ganglia, thalami and brainstem.

We described an 11-year-old girl with acute central nervous system lupus showing diffuse lesions. She developed generalized convulsions followed by prolonged coma, and her psychomotor ability recovered fully after 3 months of steroid therapy. Cranial magnetic resonance imaging (MRI) showed high signal intensity in the cerebral deep white matter, bilateral basal ganglia, thalami, and brainstem on T2-weighted image. These lesions resolved over 1 month with residual atrophic change in the heads of the caudate nucleus on MRI. Acute SLE leukoencephalopathy may be recognized as a subtype of CNS lupus.

Basal Ganglia↗

BLNK required for coupling Syk to PLC gamma 2 and Rac1-JNK in B cells.

Signaling through the B cell receptor (BCR) is essential for B cell function and development. Despite the key role of Syk in BCR signaling, little is known about the mechanism by which Syk transmits downstream effectors. BLNK (B cell LiNKer protein), a substrate for Syk, is now shown to be essential in activating phospholipase C (PLC)gamma 2 and JNK. The BCR-induced PLC gamma 2 activation, but not the JNK activation, was restored by introduction of PLC gamma 2 membrane-associated form into BLNK-deficient B cells. As JNK activation requires both Rac1 and PLC gamma 2, our results suggest that BLNK regulates the Rac1-JNK pathway, in addition to modulating PLC gamma 2 localization.

Adaptor Proteins, Signal Transducing↗

Expression of a bacterial endoglucanase gene in tobacco increases digestibility of its cell wall fibers.

Transgenic tobacco plants exhibiting exogenous cellulase activity were produced by introduction of a truncated cellulase (t-EgI) gene from Ruminococcus albus. They accumulated about 0.1-0.5% t-EgI of the total soluble proteins in the cytoplasm. They were normal in morphology and growth. t-EgI expressed in the transgenic plants degraded their own cell wall materials after the cells were disrupted. The plants expressing the t-egI gene could be used as "cellulase-encapsulating plants" for livestock and food industries.

Journal Article↗

Preparation and characteristics of rumen-bypass microcapsules for improvement of productivity in ruminants.

Rumen-bypass microcapsules were prepared by a spray-dry method for protection against microbial hydrogenation in the rumen (neutral pH). Porous starch was used as the core material, and the microcapsules were prepared by a triple coating of Eudragit E100, AS-HF, and shellac. Capsules were generated with yield of about 48% and a mean particle diameter of 20-30 microm. The microcapsules had high stability in a neutral solution that mimicked a ruminal pH (pH 6.5). Moreover, when microcapsules were incubated in the presence of ruminal microorganisms, about 65% of the microcapsules were resistant to digestion in ruminal fluids, and protection of the inclusion substance was observed. In addition, the efficiency of release of these microcapsules was about 85% within only 30 min in the abomasal environment (pH 3.0).

Animals↗

Identification of a factor VIII peptide, residues 2315-2330, which neutralizes human factor VIII C2 inhibitor alloantibodies: requirement of Cys2326 and Glu2327 for maximum effect.

Factor VIII (FVIII) inhibitor alloantibodies react with combinations of the A2, C2 and A3-C1 domains of the FVIII molecule. Some inhibitors block binding of FVIII to both von Willebrand factor (VWF) and phospholipid, and recognize a C2 domain epitope which overlaps both binding sites. In order to determine the essential binding regions for alloantibodies inhibitory for FVIII activity, we have performed inhibitor neutralization assays and competitive inhibition assays using 10 overlapping synthetic peptides spanning the carboxy-terminal region of the C2 domain (residues 2288-2332). We found one peptide (2315-2330, L9) which neutralized the anti-FVIII activity of four out of five different C2 alloantibodies by 50%, 39%, 47% and 57%, respectively. Neutralization of these alloantibodies by recombinant C2 domain (residues 2173-2332) was 68%, 50%, 59%, 86% and >95%, respectively. The inhibitor which was not neutralized by L9 peptide and reacted by immunoblotting with peptide 2218-2307, did not prevent binding of FVIII to VWF and only partially inhibited binding of FVIII to phosphatidylserine. Mutants of the L9 peptide were prepared in which each residue from 2315-2330 was sequentially substituted by glycine. Inhibitor neutralization experiments using these peptides demonstrated that Arg2320 and Cys2326 or Glu2327 are important for the effect of L9 peptide, since their substitution by glycine reduced its neutralizing effect by 60% to >90%, suggesting that they are crucial for formation of the one of the C2 inhibitor epitopes.

Amino Acid Sequence↗

Isolation of a Kawasaki disease-associated bacterial sequence from peripheral blood leukocytes.

BACKGROUND: The clinical and epidemiologic features of Kawasaki disease (KD) suggest an infectious etiology, but the agent(s) remains unknown. We aimed to isolate the causative bacterial gene from peripheral blood leukocytes of patients with acute KD. METHODS: Nested polymerase chain reaction (PCR) assay was used to amplify the bacterial 16S ribosomal RNA gene (rDNA). The amplified DNA were cloned into a plasmid vector and sequenced. Phylogenetic analysis was performed with clustal W program and the neighbour-joining method. RESULTS: First, the PCR reagents were examined by the PCR assay using conservative primers and we found more than 10 16S rDNA sequences contaminating the reagents. We then examined five KD patients using the PCR assay, excluding the contaminated sequences, and obtained five 16S rDNA sequences as possible KD-associated sequences. The primers specific to each 16S rDNA sequence were synthesized and used for specific PCR assays. Only the PCR assay specific to the 16S rDNA sequence termed 16S71-33 did not show any false positives with the control DNA from non-KD patients. The 16S71-33 sequence was positive in three of 20 patients with acute KD before gamma-globulin therapy, but it became negative after therapy. The phylogenetic analysis showed a new species of the genus Corynebacterium as the origin of the 16S71-33 sequence. CONCLUSIONS: These data show that an infectious KD agent is traced in peripheral leukocytes and that a new Corynebacterium species may be responsible for KD in some cases. The true frequency and the role of the new Corynebacterium in KD would be clarified by measuring specific antibodies to it.

Base Sequence↗

Gastroprotective mechanism of lafutidine, a novel anti-ulcer drug with histamine H2-receptor antagonistic activity.

Lafutidine (CAS 118288-08-7, FRG-8813) is a novel histamine H2-receptor antagonist with gastroprotective activity. The aim of this study was to investigate the property of the gastro-protective activity of lafutidine by examining the effect on ammonia-induced change in transmucosal potential difference (PD), basal gastric mucosal blood flow (GMBF) and noxious agent-induced cell damage. Intragastrical application of lafutidine accelerated the recovery of the PD reduction after exposure of the mucosa to 0.25% ammonia solution and the accelerating effect was abolished by chemical deafferentation, but not with indometacin, a cyclooxygenase inhibitor. The application of capsaicin, as a reference compound, significantly promoted the recovery of the ammonia-induced PD reduction and this effect was not altered with indometacin. Lafutidine given intragastrically caused a sustained increase in GMBF in a dose-dependent fashion, which was also completely inhibited in the deafferentated rats. In vitro studies revealed that, in contrast to 16,16-dimethyl prostaglandin E2, lafutidine did not protect isolated gastric superficial epithelial cells from ethanol- or ammonia-induced damage. In conclusion, the gastroprotection of lafutidine is induced by promoting the restitution of the damaged mucosa after a noxious agent, not by directly protecting the epithelial cells and this effect may be caused through the mechanism of capsaicin-sensitive afferent nerves.

16,16-Dimethylprostaglandin E2↗

Characterization of new fluorogenic substrates for the rapid and sensitive assay of cathepsin E and cathepsin D.

Cathepsin E and cathepsin D are two major intracellular aspartic proteinases implicated in the physiological and pathological degradation of intra- and extracellular proteins. In this study, we designed and constructed highly sensitive synthetic decapeptide substrates for assays of cathepsins E and D based on the known sequence specificities of their cleavage sites. These substrates contain a highly fluorescent (7-methoxycoumarin-4-yl)acetyl (MOCAc) moiety and a quenching 2,4-dinitrophenyl (Dnp) group. When the Phe-Phe bond is cleaved, the fluorescence at an excitation wavelength of 328 nm and emission wavelength of 393 increases due to diminished quenching resulting from the separation of the fluorescent and quenching moieties. The first substrate, MOCAc-Gly-Lys-Pro-Ile-Leu-Phe-Phe-Arg-Le u-Lys(Dnp)gamma-NH2, in which the Lys-Pro combination at positions P5 and P4 was designed for specific interaction with cathepsin E, is hydrolyzed equally well by cathepsins E and D (kcat/Km = 10.9 microM(-1) x s(-1) for cathepsin E and 15.6 microM(-1) x s(-1) for cathepsin D). A very acidic pH optimum o was obtained for both enzymes. The second substrate, MOCAc-Gly-Lys-Pro-Ile-Ile-Phe-Phe-Arg-Le u-Lys(Dnp)gamma-NH2, in which the isoleucine residue at position P2 was meant to increase the specificity for cathepsin E, is also hydrolyzed equally by both enzymes (kcat/Km = 12.2 microM(-1) x s(-1) for cathepsin E and 16.3 microM(-1) x s(-1) for cathepsin D). The kcat/Km values for both substrates are greater than those for the best substrates for cathepsins E and D described so far. Unfortunately, each substrate shows little discrimination between cathepsin E and cathepsin D, suggesting that amino acids at positions far from the cleavage site are important for discrimination between the two enzymes. However, in combination with aspartic proteinase inhibitors, such as pepstatin A and Ascaris pepsin inhibitor, these substrates enable a rapid and sensitive determination of the precise levels of cathepsins E and D in crude cell extracts of various tissues and cells. Thus these substrates represent a potentially valuable tool for routine assays and for mechanistic studies on cathepsins E and D.

Amino Acid Sequence↗

Quantitative polymerase chain reaction using an external control mRNA for determination of gene expression in a heterogeneous cell population.

Gene expression can be evaluated quantitatively by conventional RT-PCR or Northern blotting with the aid of a correction based on the expression of an internal control gene. However, this approach is not suitable for quantitating gene expression in a group of heterogeneous cell subsets, because the internal control gene expression may vary among the subsets. Therefore, we developed a new method for quantitative PCR using rat poly(A)+ RNA as an external control. We used this method to investigate cytokine gene expression in lymph node cells from mice during the induction of contact hypersensitivity. Expression of the murine glyceraldehydephosphate dehydrogenase (GAPDH) gene, a candidate internal control, was not constant in cells from trinitrochlorobenzene- and vehicle-applied animals, suggesting that GAPDH gene expression changes in heterogeneous lymph node-cell subsets during induction of contact hypersensitivity. Therefore, we decided to use rat GAPDH mRNA as an external control. Cytokine gene expression was measured by quantitative PCR and was corrected based on external rat GAPDH cDNA. The reliability of this quantitative PCR was superior to that of the conventional method with an internal control.

Animals↗

Endocrine cell micronests in an ovarian mucinous cystadenofibroma: a mimic of microinvasion.

An ovarian mucinous cystadenofibroma with peculiar neuroendocrine cell micronests is described in a 59-year-old Japanese woman. Aggregates of epithelial cells resembling microinvasive carcinoma cells were scattered throughout the adenofibromatous area. These micronests were composed of small uniform cells with argentaffin and argyrophil granules. Numerous small cells with neuroendocrine granules were also seen within mucinous glands. This is the first report of neuroendocrine micronests in an ovarian neoplasm, a finding that should be distinguished from microinvasion.

Adenofibroma↗

Increased serum concentration of circulating soluble receptor for interleukin-2 and its effect as a prognostic indicator in cachectic patients with gastric and colorectal cancer.

Serum concentration of soluble interleukin-2 receptor (sIL-2R) was measured in noncachectic patients with 42 gastric and 32 colorectal cancers, 39 cachectic cancer patients and 15 normal volunteers. It increased with the advance of cancer, being highest in the cachectic patients. It was inversely correlated with the serum concentrations of nutriotional parameters such as prealbumin and transferrin, and positively correlated with the serum concentration of immunosuppressive acidic protein, soluble tumor necrosis factor receptor 1 and neopterin. The length of survival of cachectic patients (days) was inversely correlated also with the serum concentration of sIL-2R. These findings suggest that sIL-2R might be of use an important parameter to predict the progress of gastric and colorectal cancers, deterioration of the patients' nutriotional status and immune activity as well as their prognosis.

Cachexia↗

Effect of magnesium sulfate pretreatment and significance of matrix metalloproteinase-1 and interleukin-6 levels in coronary reperfusion therapy for patients with acute myocardial infarction.

Magnesium (Mg) inhibits the influx of calcium in vascular smooth muscle cells. The purposes of this study were to test the hypothesis that an intravenous administration of magnesium might effect the complement response and to determine the effects of a magnesium pretreatment of patients with acute myocardial infarction (AMI) on the incidence of reperfusion injuries. Thirty-eight AMI patients were treated with coronary reperfusion therapy within 6 hours of onset. They were randomly divided into two groups: group pretreated with intravenous magnesium sulfate (0.27 mmol/kg) (magnesium group, n = 19), and nonpretreated controls (placebo group). The reperfusion injuries observed within 1 hour after the coronary reperfusion included arrhythmias, aggravated chest pain, and ST segment elevation in 12-lead electrocardiograms. Coronary recanalization was performed in 36 patients. The incidence of reperfusion arrhythmia was significantly lower in the magnesium group than in the placebo group (17% vs 78%, p<0.001). At the postreperfusion stage, there was a tendency for the degree of ST segment reelevation in the magnesium group lower than in the placebo group (2.5 +/- 2.3 mm vs 4.7 +/- 3.8 mm, p = 0.07). No marked difference was observed in the incidence of chest pain aggravation between the two groups (67% vs 73%, ns). The peak serum levels of interleukin-6 (IL-6) were significantly lower in the magnesium group than those in the placebo group (38.9 +/- 25.0 vs 92.3 +/- 76.5 pg/mL, p = 0.016). The peak serum levels of matrix metalloproteinase-1 (MMP-1) were lower than those in the placebo group (16.2 +/- 4.8 vs 19.7 +/- 9.0 ng/mL, p = 0.09), but the difference was not significant. A positive correlation was observed between the peak MMP-1 values and the peak IL-6 values (r = 0.57, p = 0.001) in all patients. Increased serum ionized Mg2+ may inhibit arrhythmic recurrence and the production of IL-6 and MMP-1 after reperfusion and prevent the increase of myocardial lesions caused by calcium overload on myocytes. The increased IL-6 production may induce MMP-1, leading to tissue organ injury. Pretreatment with magnesium sulfate may protect the myocardium of AMI patients from reperfusion injuries.

Adult↗

Successful stenting on tortuous coronary artery with accordion phenomenon: strategy--a case report.

Guidewire manipulation through tortuosities is difficult. Straightening a tortuous coronary artery by using a stiff guidewire has been recognized to induce vessel wall shortening referred to as an "accordion phenomenon." With inappropriate identification as dissection or thrombus formation, the risk of performing unnecessary dilation at the pseudo-narrowing site exists. The authors describe here two cases showing the accordion phenomenon induced by a stiff guidewire during successful stenting at a tortuous right coronary artery. In another case, the authors experienced an "accordion phenomenon" at the proximal edge of the Palmaz-Schatz stent implanted in a tortuous right coronary artery. The stent edge was better positioned at the straight portion than at the contour portion in a tortuous coronary artery.

Aortic Dissection↗

Cerebrovascular responses to therapeutic dose of indomethacin in newborn pigs.

The aims of this study were 1) to compare the effects of low versus high doses of indomethacin on cerebral blood flow (CBF) responses to hypercapnia and 2) to investigate the effects of low-dose indomethacin on the cerebral vasculature during resting conditions and during vasodilator stimuli. In the first experiment, 27 piglets were randomized into three groups to receive 5 mg/kg indomethacin, 0.2 mg/kg indomethacin, or normal saline. Ninety minutes later, CBF was measured by radioactive microspheres at baseline, during hypercapnia [PaCO2 > or = 70 mm Hg (> or =9.3 kPa)] and normocapnia. Total CBF was comparable among the three groups at baseline. CBF increased during hypercapnia in all groups, but the hyperemic response was significantly attenuated in the high-dose indomethacin group compared with the saline group but not in the group treated with 0.2 mg/kg. CBF returned toward baseline during normocapnia in all piglets. In the second experiment, a closed cranial window was implanted over the parietal cortex of nine piglets. Cerebrovascular responses to hypercapnia and topical application of isoproterenol (10(-7) and 10(-6) M) and histamine (10(-6) and 10(-5) M) were investigated before and after administration of 0.2 mg/kg indomethacin. Within 10 min of indomethacin administration, pial arteriolar diameters decreased from 72 +/- 8 to 58 +/- 6 microm (p < 0.05), and 6-keto-PGF1alpha concentration decreased from 1440 +/- 250 to 570 +/- 30 pg/mL (p < 0.05). Two hours (138 +/- 21 min) later, pial arteriolar diameters had returned toward baseline values (65 +/- 5 microm), whereas 6-keto-PGF1alpha values remained considerably lower than preindomethacin values (530 +/- 30 pg/mL). Cerebrovascular responses to dilator stimuli were preserved after 0.2 mg/kg indomethacin. We conclude that 0.2 mg/kg indomethacin does not markedly affect the cerebral hyperemic responses to hypercapnia in contrast with a very prominent inhibition by 5 mg/kg indomethacin. Also, although indomethacin at a low dose constricts pial arterioles transiently and attenuates cerebral prostanoid production, it does not inhibit the pial arteriolar responsiveness to prostanoid-associated dilator stimuli. This observation may be due to the permissive role that prostacyclin plays in cerebral vasodilatory responses to some vasogenic stimuli such as hypercapnia and histamine.

6-Ketoprostaglandin F1 alpha↗

Synthesis and pharmacological evaluation of pyrroloazepine derivatives as potent antihypertensive agents with antiplatelet aggregation activity.

A series of 1-aminoalkyl-pyrrolo[2,3-c]azepin-8-one derivatives was synthesized and evaluated as alpha 1 adrenergic and serotonin 2 (5-HT2) receptor antagonists, with the aim of finding a novel antihypertensive agent potently exhibiting both activities. Some compounds with a 4-[4-(4-fluorobenzoyl)piperidino]butyl group at the 1-position exhibited both activities, and varied significantly in terms of the substituents at the 4-position of the pyrroloazepine ring. Among the compounds obtained in this study, (E)-1-[4-[4-(4-fluorobenzoyl)piperidino]-butyl]-4-hydroxyimino-7- methyl-1,4,5,6,7,8-hexahydropyrrolo[2,3-c]azepin-8-one (15a, SUN9221) displayed potent alpha 1-adrenergic antagonistic activity (pA2 = 8.89 +/- 0.21) and 5-HT2 antagonistic activity (pA2 = 8.74 +/- 0.22) in isolated guinea pig arteries. This compound exhibited antihypertensive activity and a duration of action equivalent to orally administered prazosin or doxazosin, 3 mg/kg, in conscious spontaneously hypertensive rats, as well as potent antiplatelet aggregation activity.

Adrenergic alpha-1 Receptor Antagonists↗

Antiulcer effect of lafutidine on indomethacin-induced gastric antral ulcers in refed rats.

Lafutidine is a new type antiulcer agent with antisecretory and gastroprotective activities. We investigated the effect of lafutidine on indomethacin-induced antral ulcer in refed rats. Subcutaneous indomethacin injection resulted in the formation of gastric antral ulcer. Lafutidine (1-10 mg/kg, p.o.) reduced the area of ulcer in a dose-dependent manner when administered immediately after the indomethacin injection. Capsaicin at 3 mg/kg, p.o. and 16,16-dimethyl prostaglandin E2 at 3 microg/kg, p.o. also reduced the ulcer area. Chemical deafferentation of capsaicin-sensitive neurons or N(G)-nitro-L-arginine treatment aggravated the ulcer formation and abolished the preventive effect of lafutidine and capsaicin. After the induction of gastric ulcer, lafutidine given twice daily for 2.5 days reduced the area of ulcer in a dose-dependent manner with a significant effect at 10 mg/kg, p.o., as compared with that of the control group. In chemically-deafferentated rats, lafutidine did not show any healing effect. Cimetidine (30 mg/kg, p.o.) and famotidine (1 mg/kg, p.o.) had no significant effect on indomethacin-induced antral ulcer. These results may suggest that lafutidine, unlike cimetidine and famotidine, can prevent the indomethacin-induced antral ulcer formation and accelerate the healing of the ulcer in refed rats through mechanisms involving the capsaicin-sensitive afferent neurons and nitric oxide.

16,16-Dimethylprostaglandin E2↗