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Biomedical subjects

M Tsuchiya

Publications and source records attributed to M Tsuchiya.

At least 109 records · Page 6Linked to original sources

Detection of peptidoglycan and beta-glucan with silkworm larvae plasma test.

A method to detect peptidoglycan and (1-->3) beta-D-glucan with silkworm larvae plasma (SLP) derived from the hemolymph of the silkworm, Bombyx mori was developed. SLP contains all of the factors of the pro-phenol oxidase cascade, an important self-defense mechanism of insects. Peptidoglycan or (1-->3)-beta-D-glucan initiates the cascade, in which pro-phenol oxidase is finally activated to phenol oxidase. The phenol oxidase activity was colorimetrically or visually detected with 3,4-dihydroxyphenylalanine as a substrate. SLP displayed high reactivity with peptidoglycan and polysaccharides containing 1,3-beta-glucosidic linkages, but not with endotoxins. SLP is useful for the detection of microbial contamination because peptidoglycan and (1-->3)-beta-D-glucan are cell wall components of bacteria and fungi, respectively.

Animals↗

Roles of ET-1 in endotoxin-induced microcirculatory disturbance in rat small intestine.

The major objective of this study was to investigate whether endothelin-1 (ET-1) plays a significant role in endotoxin-induced microcirculatory disturbances of the intestinal mucosa. Submucosal microvessels of the rat ileum were observed by intravital microscopy with a high-speed video camera system. Preceding the apparent intestinal mucosal damage, red blood cell (RBC) velocity was significantly decreased 30 min after endotoxin treatment in both arterioles and venules. The number of leukocytes sticking to submucosal venules was significantly increased at 30 min. BQ-123, an ETA-receptor antagonist, significantly attenuated the decrease in RBC velocity and also prevented an increase in leukocyte sticking as well as the subsequent mucosal damage induced by endotoxin. The ET-1 concentrations began to be elevated in plasma at 15 min and in the mucosa at 30 min and subsequently further increased in a time-dependent manner. A significant decrease in calcium-dependent nitric oxide synthase activity and significant increases in the concentration of platelet-activating factor (PAF) were demonstrated in the intestinal mucosa after endotoxin treatment. BQ-123 also significantly attenuated these changes. We concluded that the increased ET-1 production in intestinal mucosa induced by endotoxin stimulation could lead to leukocyte sticking and decreased RBC velocity in the intestinal microcirculatory beds via ETA receptors, which are closely related to increased production of PAF and decreased synthesis of constitutive nitric oxide.

Animals↗

Hereditary deficiency of lactate dehydrogenase H-subunit.

We report herein the fifth family of hereditary deficiency of lactate dehydrogenase (LDH) H-subunit with an autosomal recessive inheritance including two cases of complete deficiency. Their LDH activities were low both in the serum and in the red blood cells (RBC). Electrophoretic analysis revealed that the patients with the complete deficiency had only the LDH5 isozyme. The complete deficiency was associated with marked elevation of fructose-1, 6-diphosphate (FDP) and dihydroxyacetonephosphate (DHAP) and a less marked rise in glyceraldehyde-3-phosphate (GA3P) among glycolytic intermediates in the RBC. Furthermore, hemolysis was observed in the present cases, but this finding was not included in the other reports.

Consanguinity↗

Enhancing effect of the liver extract and flavin adenin dinucleotide mixture on anti-viral efficacy of interferon in patients with chronic hepatitis C.

A combined preparation of liver extract and flavin adenin dinucleotide (FAD) (Adelavin) has been widely used in patients with chronic liver diseases in Japan. One milliliter of this agent contains 15 microliters of phenol-soluble phase of liver nucleic acid fraction and 10 mg of FAD. To examine the advantages of using this preparation in the elimination of hepatitis C virus (HCV) from patients with chronic hepatitis (CH)-C receiving interferon (IFN), 2 ml of this preparation was intravenously (n = 9) or intramuscularly (n = 8) administered daily for 5 days before 6 million units of IFN-alpha was intramuscularly injected once. Before and 48 hours after the injection of IFN, serum ALT, 2'5'-oligoadenylate synthetase (2'5-AS) activity, and HCV RNA levels were measured. The daily administration of this preparation alone for 5 days did not significantly change serum ALT, 2'5-AS activities, and HCV RNA levels. The 2'5-AS activities were significantly increased by IFN after the intravenous injection of this preparation (p < 0.01), while an injection of IFN alone of this dose did not change its activities (n = 10). HCV RNA levels were significantly decreased by IFN only after the administration of the preparation (intramuscular, p < 0.01; intravenous, p < 0.01). The effect of intravenous injection of this preparation was also elicited in patients with HCV genotype II and with HCV more than 10(5) copies/ml. These results suggest that this preparation may enhance the 2'5-AS production by IFN as a result of the increase in mitochondrial adenosin triphosphate production and may be a potent agent to enhance the anti-viral efficacy of IFN in patients with CH-C.

Adult↗

Characterization of CP-122,721; a nonpeptide antagonist of the neurokinin NK1 receptor.

CP-122,721 [(+)-(2S,3S)-3-(2-methoxy-5-trifluoromethoxybenzyl)amino-2 -phenylpiperidine] interacts with high affinity (pIC50 = 9.8) at the human NK1 receptor expressed in IM-9 cells. In the presence of CP-122,721, there was a reduction in Bmax of [125I]BH-SP binding with no change in affinity suggesting that CP-122,721 does not interact with the NK1 receptor in competitive manner. In an in vitro functional assay. CP-122,721 blocked SP-induced excitation of locus ceruleus cells in guinea pig brain slices with a IC50 value of 7 nM. In vivo, CP-122,721 potently blocked plasma extravasation in guinea pig lung elicited by aerosolized capsaicin (1 mM) with an ID50 = 0.01 mg/kg, p.o. Orally administered CP-122,721 antagonized Sar9, Met (O2)11-SP-induced locomotor activity in guinea pigs with an ID50 = 0.2 mg/kg suggesting good entry into the central nervous system. In addition, consistent with insurmountable blockade observed in vitro, CP-122,721 (0.01, 0.03 0.3 mg/kg, p.o.) produced a rightward shift in the dose response curve for SP-induced hypotension in the awake dog that was accompanied by a decrease in the maximal response. Thus, in vitro and in vivo CP-122,721 appears to behave functionally as a non-competitive antagonist producing an insurmountable blockade of the actions of SP.

Animals↗

[Prediction of long-term efficacy of amiodarone for refractory ventricular tachycardia: clinical significance of electrophysiologic study and Holter monitoring].

The usefulness of electrophysiologic study and Holter monitoring for predicting the long-term efficacy of amiodarone was investigated in 31 patients with sustained ventricular tachycardia (VT) and organic heart disease. Patients underwent both electrophysiologic study and Holter monitoring before and during oral administration of amiodarone. These patients were followed up and the difference in the prognosis according to the results of these two tests was examined. During a follow-up period of 887 +/- 678 days, sustained VT recurred in 13 patients and sudden cardiac death in 3. Sustained VT recurred in only one of 11 patients in whom amiodarone was determined effective by electrophysiologic study whereas recurrent VT and/or sudden death occurred in 15 of 20 patients in whom amiodarone was determined ineffective (p < 0.01). Eight of 18 patients in whom amiodarone was determined effective by Holter monitoring, and 8 of 13 in whom it was determined ineffective, suffered recurrent VT and/or sudden cardiac death. Amiodarone was judged effective in 7 patients by both tests (group I) and in 15 by either electrophysiologic study or Holter monitoring (group II). In the remaining nine patients, amiodarone was ineffective by both tests (group III). Recurrent VT or sudden death occurred in none of the patients in group I (0%), in nine group II (60%) and seven in group III (78%). The prognoses of the three groups were significantly different: group I vs II; p < 0.05, group II vs III: p < 0.05, and group I vs III; p < 0.005. The combination of the two drug tests, electrophysiologic study and Holter monitoring, is a useful method for the prediction of the long-term efficacy of amiodarone in patients with sustained VT and underlying heart disease. Patients in whom amiodarone was determined ineffective in both tests, are at high risk for VT recurrence and sudden death, and interventional therapy is recommended.

Administration, Oral↗

Humanization of an anti-human IL-6 mouse monoclonal antibody glycosylated in its heavy chain variable region.

Interleukin-6 (IL-6) inhibitors are good potential therapeutic agents in human patients, and anti-IL-6 antibodies are among the best candidates. Here, we have successfully humanized mouse monoclonal antibody SK2, which specifically binds to IL-6 and strongly inhibits IL-6 functions. Since this antibody possesses N-linked carbohydrates on Asn-30 of VH region, which seems to be very close to an antigen-binding site, influence of these carbohydrates on antigen-binding was investigated. A biosensor study showed that the mouse SK2 Fab and its deglycosylated fragments had almost equal Kd (Kon/Koff), 26.8 nM (1.05 x 10(6)/2.81 x 10(-2)) and 24.7 nM (1.28 x 10(6)/3.15 x 10(-2)), respectively. Furthermore, a mutant chimeric SK2 antibody, in which the N-glycosylation site was removed from the VH region, showed a Kd of 11 nM, almost similar to that of the original chimeric SK2 antibody, determined by Scatchard analysis with 125I-IL-6. These data indicate the carbohydrates of mouse SK2 VH region do not significantly influence antigen-binding activity. In the next step, two versions of each humanized SK2 VL and VH regions were carefully designed based on the amino acid sequences of human REI and DAW, respectively. Only one alteration, Tyr to Phe, was made at position 71 in the two light chains, according to the canonical residue for LI. A N-glycosylation site was introduced on the two heavy chains, by changing Ser to Asn at position 30. All four combinations of humanized light and heavy chains could bind to IL-6 as well as the chimeric SK2 antibody. The light chain first version, however, could not efficiently inhibit IL-6 binding to its receptor, indicating the importance of the LI loop conformation for the inhibitory activity of SK2 antibody. In contrast, both versions of the heavy chains were comparable, in yielding good humanized SK2 antibodies, suggesting that the glycosylation of the SK2 VH region has no influence in recreating a functional antigen-binding site in this humanization.

Amino Acid Sequence↗

Detection of arginine-ADP-ribosylated protein using recombinant ADP-ribosylarginine hydrolase.

We made use of ADP-ribosylarginine hydrolase to detect arginine-ADP- ribosylated proteins. The hydrolase was expressed in Escherichia coli as a protein fused with glutathione S-transferase (GST). The fusion protein GST-ADP-ribosylarginine hydrolase catalyzed the hydrolysis of alpha-ADP-ribosylarginine to produce ADP-ribose and arginine. Casein ADP-ribosylated with [32P]NAD and chicken heterophil arginine-specific ADP-ribosyltransferase served as a substrate for the recombinant ADP-ribosylarginine hydrolase and the released ADP-ribose was determined. Protein ADP-ribosylated by cholera toxin could serve as substrate of the hydrolase but protein ADP-ribosylated by pertussis toxin, diphtheria toxin, or C(3) enzyme of Clostridium botulinum could not. The hydrolase did not release the radioactivity incorporated into isolated rat liver nuclei incubated with [(32)P]NAD or in bovine brain cytosol incubated with [(32)P]ADP-ribose. In homogenate of mouse heart which contained arginine-specific ADP-ribosyltransferase, labeling of a 55-kDa protein by incubation with [(32)P]NAD was removed by ADP-ribosylarginine hydrolase treatment; hence, the specific hydrolysis of ADP-ribose-arginine bond by GST-ADP-ribosylarginine hydrolase can be used to detect the arginine-ADP-ribosylated proteins in crude preparations. Arginine--ADP-ribosylated proteins in crude preparations. Arginine-ADP-ribosylated proteins in mouse spleen lymphocytes were identified using this method.

Adenosine Diphosphate Ribose↗

A newly identified GPI-anchored arginine-specific ADP-ribosyltransferase activity in chicken spleen.

Arginine-specific ADP-ribosyltransferase activity was detected in chicken spleen membrane fraction and the activity was extracted by phosphatidylinositol-specific phospholipase C but not by 1 M NaCl or 1% Triton X-100. The transferase activity extracted from the spleen membrane was thiol-independent and was not inhibited by 200 mM NaCl. Zymographic analysis of the transferase, under non-reducing conditions, showed two forms of active bands corresponding to a molecular mass of 46 and 42 kDa. Thus, the presence of this novel arginine-specific ADP-ribosyltransferase, anchored to the membrane through glycosylphosphatidylinositol and different from previously cloned chicken transferases, AT1 and AT2, is being given further attention.

Animals↗

Assay of arginine-specific adenosine-5'-diphosphate-ribosyltransferase by capillary electrophoresis.

Using high-voltage capillary electrophoresis we detected ADP-ribosylarginine, a product of ADP-ribosylation reaction catalyzed by arginine-specific ADP-ribosyltransferase in the presence of NAD and L-arginine. The authentic ADP-ribosylarginine, detected by its ultraviolet absorbance at 254 nm, had a different retention time from NAD or nicotinamide. When the ADP-ribosylation reaction products were analyzed, the peak corresponding to ADP-ribosylarginine increased with incubation time and in an enzyme-dose-dependent manner. The lower limit of detection was 0.3 pmol, a value 100 times lower than that obtained with the reversed-phase high-performance liquid chromatography assay described previously. Using the capillary electrophoresis system, a thiol-independent ADP-ribosyltransferase activity was detected in chicken spleen cell membrane. Since the capillary electrophoresis assay for ADP-ribosylarginine is simpler, faster, and less expensive than the high-performance liquid chromatography assay, determination of arginine-specific ADP-ribosyltransferase activity in animal tissues will be facilitated.

ADP Ribose Transferases↗

Sialidase of swine influenza A viruses: variation of the recognition specificities for sialyl linkages and for the molecular species of sialic acid with the year of isolation.

The sialidase of swine influenza A viruses of N1 and N2 subtypes, isolated from 1930 to 1992, was studied for substrate specificity with ganglio-series, lacto-series type II and GM3 gangliosides containing Neu5Ac alpha 2-3Gal, Neu5Gc alpha 2-3Gal and Neu5Ac alpha 2-6Gal linkages. All viral sialidases tested showed that the activity for hydrolysing substrates with Neu5Ac alpha 2-3Gal was higher than the activities with Neu5Gc alpha 2-3Gal and Neu5Ac alpha 2-6Gal linkages. When GM1b, GM3 and sialylparagloboside were used as substrates, the earliest strain (A/Wisconsin/15/30 H1N1, isolated in 1930) showed the activity ratio of Neu5Ac alpha 2-6Gal to Neu5Ac alpha 2-3Gal to be 0.13:0.2, and the ratio Neu5Gc alpha 2-3Gal/Neu5Ac alpha 2-3Gal to be 0.19:0.37, while those strains isolated from 1978 to 1992 exhibited ratios of 0.29:0.58 for Neu5Ac alpha 2-6Gal/Neu5Ac alpha 2-3Gal and 0.51:0.76 for Neu5Gc alpha 2-3Gal/Neu5Ac alpha 2-3Gal. The above results indicate that the substrate specificities of sialidases from swine influenza A viruses towards sialyl linkages and the molecular species of sialic acid are related to the year of isolation, i.e. strains isolated after 1978 exhibited higher activity towards Neu5Ac alpha 2-6Gal and Neu5Gc alpha 2-3Gal linkages when compared with strains isolated in an earlier year, 1930.

Animals↗

Plasticity of myofibroblasts appearing in granulation tissues after acetic acid treatment. Effect of bFGF.

To clarify the origin of the myofibroblasts appearing in the healing process of the acetic acid-induced ulcer and effect of basic fibroblast growth factor (bFGF) on these myofibroblasts, we conducted an immunohistochemical study using antibody to intermediate filaments, desmin and vimentin. The binding sites of bFGF on the regenerative tissues were also studied by the radioautographic study of soluble compounds. As a result, the binding sites of bFGF were accumulated on the fibroblasts and myofibroblasts as well as on endothelial cells. The effect of CS23, acid-stable human recombinant bFGF was shown on distribution of myofibroblasts and regeneration of the microvascular system in the mucosal and submucosal layers.

Acetates↗

Conjugated bile salts regulate turnover of rat intestinal brush border membrane hydrolases.

The mechanisms whereby the conjugated bile salts regulate the activities of the brush border membrane hydrolases and its physiological significance were investigated in rat small intestine, and comparisons were made with the action of pancreatic protease. Rat brush border membrane proteins were metabolically labeled with [35S]methionine, and isolated brush border membrane was incubated with taurocholate or pancreatic elastase. The activity of solubilized hydrolases was assayed and the molecular forms of the hydrolases were examined by SDS-PAGE. The activity and protein bands of alkaline phosphatase and sucrase-isomaltase were solubilized by taurocholate, while alkaline phosphatase was not solubilized by elastase. Solubilized sucrase-isomaltase molecules were proteolytically degraded by elastase, whereas the intact molecule of sucrase-isomaltase was solubilized by taurocholate. Next the physiological role of bile salts in brush border membrane hydrolase turnover were investigated using metabolic labeling of brush border membrane hydrolase and immunoprecipitation in biliary diversion rats. After three days of biliary diversion, a significant increase in alkaline phosphatase activity was observed. Although synthesis of alkaline phosphatase in biliary diversion rats was similar to that observed in control rats, biliary diversion rats showed 1.5-fold slower turnover of alkaline phosphatase when compared with control rats. These results suggest that conjugated bile salts in the intestinal lumen may cause a rapid turnover of brush border membrane hydrolases, which may be increased by the enhanced enzyme degradation. The mechanisms for the enhanced degradation appeared to be solubilization of hydrolases caused by the detergent activity of bile salts. Therefore, conjugated bile salts may play an important physiological role in the regulation of expression of the protease-resistant enzymes such as alkaline phosphatase.

Alkaline Phosphatase↗

Effect of basic fibroblast growth factor on reinnervation of gastric microvessels. Possible relevance to ulcer recurrence.

Basic fibroblast growth factor (bFGF) has well-established angiogenic and ulcer healing actions. bFGF has also been found to induce neural regeneration in the central nervous system. Thus, the present study was undertaken to clarify the effect of basic fibroblast growth factor on the regeneration of autonomic nerves in the granulation tissues following the induction of experimental gastric ulcer induced by acetic acid in rats. Rats were divided into control, acetic acid alone, and acetic acid plus acid-stable human recombinant basic fibroblast growth factor (CS23, 1 microgram/100 g body wt., every 12 hr for three days, or one or two weeks, through oral gastric intubation) groups. As a result, few autonomic nerves were recognized surrounding the newly formed arterioles and venules in the acetic acid alone group. In the CS23-treated group, the cholinergic, calcitonin gene-related peptide and vasoactive intestinal peptide-immunoreactive nerves were clearly recognized near the microvessels, but few adrenergic nerves were seen even after CS23 treatment. From these observations, basic fibroblast growth factor was suggested to promote the reinnervation of the newly formed microvessels.

Animals↗