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Biomedical subjects

Y Shimada

Publications and source records attributed to Y Shimada.

At least 343 records · Page 19Linked to original sources

Attenuation of reperfusion arrhythmias by selective inhibition of angiotensin-converting enzyme/kininase II in the ischemic zone: mediated by endogenous bradykinin?

We studied the effects of angiotensin-converting enzyme (ACE)/kininase II inhibition selectively in the ischemic zone on reperfusion arrhythmias, and the role of bradykinin versus angiotensin II (produced locally in this zone) in modulating the severity of such arrhythmias. Isolated rat hearts (n = 12 per group) were subjected to independent perfusion of left and right coronary beds. The left coronary bed received the ACE/kininase II inhibitor ramiprilat, alone or in combination with either HOE140 (bradykinin B2 receptor antagonist) or angiotensin II, before induction of regional ischemia (10 min) by discontinuation of flow to the bed. Ramiprilat (1, 10, or 100 nM) did not significantly alter the incidence of reperfusion-induced ventricular tachycardia (VT) or fibrillation (VF), but reduced the incidence of sustained VF from 83% in controls to 75, 50, and 25% (p < 0.05). The protective effects of 100 nM ramiprilat were abolished by coinfusion of HOE140 (10 or 100 nM) but not affected by coinfusion of angiotensin II (1 nM). HOE140 (10 nM), when infused alone into the left coronary bed before 7-min ischemia, increased the incidence of sustained VF from 42 to 100% (p < 0.05). Although HOE140 caused vasoconstriction in the left coronary bed when given alone or in combination with ramiprilat, its proarrhythmic effects were not due to a reduction of flow to the bed. We conclude that selective inhibition of ACE/kininase II in the ischemic zone moderately attenuates reperfusion arrhythmias and that enhanced bradykinin availability rather than reduced angiotensin II in synthesis contributes to such an effect.

Angiotensin-Converting Enzyme Inhibitors↗

[A case with petechiae due to human parvovirus B19].

We reported a case of 10-year-old girl with petechiae mainly on the truncus, although who had more than 10 x 10(4)/microliter of platelets. Smears of her bone marrow demonstrated extreme reduction of erythroblasts with giant proerythroblast like cells, which does not consist with idiopathic thrombocytopenic purpura. Human parvovirus B19 (B19) DNA was detected in her serum and throat swab using PCR and significant alterations of B19 specific IgM and IgG antibody titers were demonstrated. The petechiae subsided on the 8th day after her admission. She had not shown anemia less than Hb 10 g/dl, but her reticulocytes counts had increased up to 3.5% on the 11th day after her admission. Smears of her bone marrow on the 17th day became normal with moderate erythroblasts. It is demonstrated that the cellular receptor of this virus is an antigen of the blood group P recently. P antigen is presented not only on erythrocytes and on erythroblasts but also on megakaryocytes and endotherial cells. Therefore, it is suggested that direct injury by B19 to endothelial cells could cause petechiae in this case.

Child↗

Purification and Characterization of Two Dihydroxyacetone Kinases from Schizosaccharomyces pombe IFO 0354.

Two dihydroxyacetone kinases (DHAKs), DHAK I and DHAK II, were purified to homogeneity from Schizosaccharomyces pombe IFO 0354. They were immunologically different from each other. Although both of the enzymes had some affinity for glycerol and dl-glyceraldehyde in addition to dihydroxyacetone and glyceraldehyde, V(infmax) values for dihydroxyacetone were much higher than those for glycerol and dl-glyceraldehyde. On the basis of the K(infm) values of both enzymes for dihydroxyacetone, DHAK II plays a more important role than DHAK I in dissimilation of glycerol via dihydroxyacetone.

Journal Article↗

Impact of extracellular buffer composition on cardioprotective efficacy of Na+/H+ exchanger inhibitors.

There is controversy over whether the cardioprotective effects of Na+/H+ exchanger inhibitors are exerted primarily during ischemia or during subsequent reperfusion, possibly because of interstudy differences in experimental conditions. We studied the impact of perfusate buffer composition on the relative degree of protection afforded by Na+/H+ exchanger inhibition during ischemia vs. reperfusion. Isolated rat hearts (n = 8/group) were perfused (37 degrees C, 75 mmHg) with bicarbonate- or N-2-hydroxyethylpiperazine-N'-2-ethanesulfonic acid-buffered medium and subjected to 20 min of global zero-flow ischemia and 45 min of reperfusion. One of two structurally distinct Na+/H+ exchanger inhibitors [5-(N,N-dimethyl)amiloride (DMA) or (3-methylsulfonyl-4-piperidinobenzoyl)guanidine methanesulfonate (HOE-694), 10 mumol/l] was transiently (5 min) infused 1) immediately before ischemia, 2) during initial reperfusion, or 3) during both of these periods. With bicarbonate-buffered medium, neither drug improved the postischemic recovery of left ventricular developed pressure (LVDP) when given only during reperfusion. In contrast, HOE-694 improved the postischemic recovery of LVDP from 39 +/- 5% in control to 66 +/- 6% (P < 0.05) when given before ischemia and from 33 +/- 4% in control to 65 +/- 4% (P < 0.05) when given before ischemia plus during reperfusion. With the latter protocol, the cardioprotective effect of HOE-694 occurred in a dose-dependent manner at 0.1-10 mumol/l. In contrast to the results with bicarbonate-buffered medium, in the presence of N-2-hydroxyethylpiperazine-N'-2-ethanesulfonic acid-buffered medium, DMA and HOE-694 significantly improved recovery of LVDP (from 34 +/- 5% in controls to 56 +/- 3 and 71 +/- 8%, both P < 0.05) when given only during reperfusion. They also provided significant protection when given before ischemia or before ischemia plus during reperfusion; with the latter protocol, HOE-694 produced an almost complete recovery of LVDP (88 +/- 9 vs. 30 +/- 7% in controls, P < 0.05). In conclusion, our results suggest that the influence of Na+/H+ exchanger activity during reperfusion on the extent of functional recovery is modulated significantly by perfusate buffer composition. As a consequence, the cardioprotective efficacy of Na+/H+ exchanger inhibitors may be overestimated under bicarbonate-free conditions.

Amiloride↗

Effects of acidic reperfusion on arrhythmias and Na(+)-K(+)-ATPase activity in regionally ischemic rat hearts.

We studied the effects of acidic reperfusion on 1) the incidence of ventricular fibrillation (VF) and 2) sarcolemmal Na(+)-K(+)-adenosinetriphosphatase (ATPase) activity. Isolated rat hearts (n = 12/group) were subjected to independent perfusion (15 min) of left and right coronary beds with pH 7.4 buffer followed by zero-flow ischemia (10 min) of the former bed. This was then reperfused for 5 min, with acidic (pH 6.6) buffer for the first 0 (control), 0.5,1,2, or 4 min and with pH 7.4 buffer thereafter. In the control group, 92% of hearts developed VF within 20 s of reperfusion and remained in VF. In the 0.5-, 1-, 2-, and 4-min acidic reperfusion groups, only 17, 17, 42, and 25% of hearts (P < 0.05 vs. control for all groups), respectively, exhibited VF during acidic reperfusion. However, on switching to pH 7.4, VF occurred in a further 50, 58, 0, and 0% of hearts, respectively; thus the overall incidences of VF were 67, 75, 42 (P < 0.05 vs. control), and 25% (P < 0.05 vs. control), respectively. Additional hearts (n = 8/group) were used for cytochemical determination of sarcolemmal Na(+)-K(+)-ATPase activity in both the ischemic/reperfused left ventricular (LV) and the nonischemic right ventricular (RV) free walls. Ischemia (10 min) reduced LV Na2(+)-K(+)-ATPase activity from 110 +/- 8 to 25 +/- 3% of the RV value. After 0.5, 1, 2, 3, and 4 min of acidic reperfusion, LV Na(+)-K(+)-ATPase activity was 24 +/- 3, 29 +/- 3, 37 +/- 5, 55 +/- 6, and 70 +/- 4, respectively (P < 0.05 vs. 10-min ischemia). No significant recovery of LV Na(+)-K(+)-ATPase activity occurred following up to 4 min of pH 7.4 reperfusion. In conclusion, 1) at least 2 min of acidic reperfusion is required to achieve sustained protection against VF and 2) the protective mechanism may involve enhanced recovery of Na(+)-K(+)-ATPase activity as well as inhibition of Na+ influx.

Acids↗

Cloning, expression, and mapping of UBE2I, a novel gene encoding a human homologue of yeast ubiquitin-conjugating enzymes which are critical for regulating the cell cycle.

From a human fetal-brain cDNA library we isolated a novel gene sharing significant homology with two yeast genes, UBC9 and hus5, which encode ubiquitin-conjugating enzyme 9 (UBC9). In yeast this protein is critical for normal mitosis, and seems to be closely involved in progression of G2 to M phase of the cell cycle. The human UBC9 (h-UBC9) cDNA, (gene symbol UBE2I), contained an open reading frame of 474 nucleotides encoding 158 amino acids. Its predicted peptide showed respectively 56% and 66% identity (75% and 82% similarity) with the products of UBC9 and hus5. Northern-blot analysis revealed expression of three transcripts, 6.4 kb, 3.3 kb, and 1.35 kb, in all human tissues examined. This gene, UBE2I, was mapped to chromosome band 16p13.3 by FISH.

Amino Acid Sequence↗

Cloning, expression and chromosomal mapping of a novel cyclophilin-related gene (PPIL1) from human fetal brain.

We isolated a human cDNA clone encoding a novel protein homologous to cyclophilins, specific cellular targets of cyclosporin A, which are conserved in species ranging from human to prokaryotes. This cDNA, designated hCyPX, contained an open reading frame of 498 nucleotides encoding 166 amino acids. Computer analysis indicated that its predicted amino acid sequence had 41.6%, 40.4%, and 39.2% homology to those of human, bovine, and Drosophila cyclophilins, respectively. Northern blot analysis indicated ubiquitous expression in adult human tissues, but most abundant expression in heart. Fluorescence in situ hybridization to human metaphase chromosomes localized this gene (PPIL1, peptidylprolyl isomerase [cyclophilin]-like 1) to chromosome bands 2p23.3-->p23.1.

Amino Acid Isomerases↗

Inter- and intrahemispheric EEG coherence during light drowsiness.

The present study was conducted to examine inter- and intrahemispheric EEG coherence in 14 healthy, right-handed adults during wakefulness and light drowsiness as assessed by eye movement and EEG activity. Interhemispheric coherence was significantly lower during light drowsiness than during wakefulness for O1-O2 in the alpha-1 band and for F3-F4 in the beta-1 band. Intrahemispheric EEG coherence was significantly higher during light drowsiness for C4-O2 in the theta-1 and beta-1 bands. These findings indicate that light drowsiness can alter both inter- and intrahemispheric EEG coherence when compared with wakefulness, suggesting that cerebral functional organization changes during light drowsiness. It is important, therefore, to control arousal level of subjects in future studies dealing with the relationship between EEG coherence and various pathological conditions.

Adult↗

Stimulation of nitric oxide-cyclic GMP pathway by L-arginine increases the release of hepatic lipase from cultured rat hepatocytes.

The nitric oxide-cyclic GMP pathway is still undefined regarding regulation of the release of hepatic lipase (HTGL). It was found that L-arginine (Arg) stimulated the release of HTGL activity from rat hepatocytes in a time- and dose-dependent manner. L-Arg-stimulated release of HTGL activity was inhibited by N-monomethyl-L-Arg, which is a nitric oxide synthase inhibitor. L-Arg markedly increased the cyclic GMP content of hepatocytes in the presence of a cyclic GMP phosphodiesterase inhibitor. Zaprinast. The release of the enzyme activity was also suppressed by methylene blue (a guanyl cyclase inhibitor) and KT5823 (a cyclic GMP-dependent protein kinase inhibitor). These results suggest that the stimulation of nitric oxide synthesis by L-Arg increases the release of HTGL activity due to processes associated with the elevation of cyclic GMP level, probably through an activation of protein kinase.

Alkaloids↗

Studies on aromatase inhibitors. I. Synthesis and biological evaluation of 4-amino-4H-1,2,4-triazole derivatives.

Various 4-N-substituted amino-4H-1,2,4-triazole derivatives were synthesized and evaluated for aromatase-inhibitory activity (in vitro) and for pregnant mare serum gonadotropin (PMSG)-induced estrogen synthesis-inhibitory activity (in vivo). The 4-(4-cyanophenyl) amino derivative and 4-(4-nitrophenyl)amino derivative, each possessing a strong electron-withdrawing group on the phenyl moiety, showed potent aromatase-inhibitory activity. Structure-activity relationship studies indicated that 4-[(4-bromobenzyl)(4-cyanophenyl)amino]-4H-1,2,4-triazole (5k, YM511) is a highly potent aromatase inhibitor with IC50 values of 0.4 and 0.12 nM in in vitro experiments using rat ovary and human placenta, respectively, and an in vivo ED50 of 0.002 mg/kg in rats on oral administration. YM511 was also a weak inhibitor of other steroid hormone synthesis enzymes. These data suggest that YM511 is a highly selective aromatase inhibitor and may be a useful agent for the treatment of estrogen-dependent diseases such as breast cancer.

Aldosterone↗

[Quality evaluation on Paeoniae radix. I. Quantitative analysis of monoterpene glycosides constituents of Paeoniae radix by means of high performance liquid chromatography. Comparative characterization of the external figures, processing method and the cultivated areas].

The constituents of monoterpene in Paeoniae Radix were analyzed by means of high performance liquid chromatography (HPLC) using hitherto elucidated eight monoterpene glycosides, paeoniflorin 1, oxypaeoniflorin 2, benzoylpaeoniflorin, 3, benzoyloxypaeoniflorin 4, galloylpaeniflorin 5, galloyloxypaeoniflorin 6, albiflorin 7 and lactiflorin 8 and a monoterpene paeoniflorigenone 9. In sixty seven kinds of Paeoniae Radix collected in Japan, China, and South and North Korea those monoterpene constituents 1-9 were found to exist in the amounts of ranging 0.12-9.61% 1, 0.06-10.8% 2, 0.02-0.79% 3, 0.24-0.47% 4, 0.25-2.53% 5, 0.05-2.86% 6, 0.09-2.76% 7, 0.35-0.64% 8 and 0.01-0.49% 9 respectively. In addition, these results obtained by the quantitative analysis were discussed from the viewpoint of the external figures and processing methods.

China↗

The mechanism of comparable serum cholesterol lowering effects of pravastatin sodium, a 3-hydroxy-3-methylglutaryl coenzyme A inhibitor, between once- and twice-daily treatment regimens in beagle dogs and rabbits.

In dogs, no significant difference in the reduction of serum cholesterol was observed among three dosing regimens of pravastatin: once in the morning (3 mg/kg), once in the evening (3 mg/kg), and twice-daily (1.5 mg/kg x 2) for 21 days. In rabbits, pravastatin was administered at a dose of 50 mg/kg once-daily given in the evening or 25 mg/kg twice-daily for 14 days; the respective serum and liver cholesterol levels were decreased by 41% and 7% in the once-daily dosing and by 51% and 11% in the twice-daily dosing. The amount of low density lipoprotein (LDL) receptor protein was increased 1.2-1.3-fold (P < 0.05) by both treatments, and no significant difference was noted between these treatment regimens. In addition, there was no significant difference in the extent of up-regulated LDL receptor protein between once-daily dosing in the evening and once-daily dosing in the morning. In the experiments with rabbit hepatocytes, the up-regulated LDL receptor activity induced by preincubation with pravastatin was retained even 24 hr after the removal of pravastatin. These results suggest that the comparable efficacy of pravastatin between once- and twice-daily treatment could be explained by retention of up-regulated LDL receptor activity for more than 24 hr in vitro and in vivo.

Administration, Oral↗

The iothalamate clearance in cats with experimentally induced renal failure.

Plasma iothalamate (IOT) disappearance rates were measured after a single-injection of IOT (113.8 mg/kg, IV) in cats with experimentally induced renal failure. The disappearance rates especially fitted into the one compartment model. The mean value of plasma disappearance rates of IOT in these cats with induced renal failure (2.16 +/- 0.240 x 10(-3) micrograms/ml/min) was markedly lower than that of clinically healthy cats (4.10 +/- 1.00 x 10(-3) micrograms/ml/min). These results demonstrate that IOT clearance is available for evaluation of renal function in cats.

Animals↗

A new monitor with a zinc-oxide thin film semiconductor sensor for the measurement of volatile sulfur compounds in mouth air.

Halitosis, defined as unpleasant oral odor, is a concern among the general public. Halitosis is generally diagnosed by organoleptic examination and by gas chromatographic analysis of the main source of halitosis, volatile sulfur compounds, such as hydrogen sulfide, methyl mercaptan, and dimethyl sulfide. Gas chromatography requires a large-scale system and a long running time. We investigated the use of a zinc-oxide thin film semiconductor sensor for measuring trace volatile sulfur compounds in mouth air. Mouth air samples collected in teflon bags from 21 volunteers were analyzed by 3 methods: the monitor analysis, gas chromatography, and organoleptic examination by 3 judges. The readings of the monitor were correlated with the values of the total volatile sulfur compounds measured by gas chromatography (r = 0.75, P < 0.01) and also with the organoleptic scores given by the judges (r = 0.76, P < 0.01). The organoleptic scores were correlated with the gas chromatographic values (r = 0.71, P < 0.01). These results suggest that this new monitor with a zinc-oxide thin film semiconductor sensor may be used for the diagnosis of halitosis. Its small size and simplicity of handling may enable its use for routine chair-side study and field surveys of halitosis.

Breath Tests↗

[The importance of scientific clinical trials].

Well-designed clinical trials have been the only ways to answer many questions as to the "uncertainty" of cancer treatment. However, general physicians and mass media have not been willing to accept clinical trials because they were experiments on patients. In order to break through the present bottleneck it is very important to recognize the clinical significance of clinical trials by physicians themselves and to establish a system for reviewing and managing protocol study and for collecting clinical data. It is also important to obtain honest informed consent from patients tested in clinical trials. To accumulate the scientific evidences from clinical trials was the best way to achieve significant advances in cancer therapy.

Clinical Trials as Topic↗

[Informed consent in phase I trial].

Informed consent in phase I trials involves very difficult problems related to experimental factors of the phase I trial, a toxicity study conducted in human cancer patients. However, this is the first clinical step in new drug development, and patients must participate in phase I only when there is full disclosure of correct trial information. Disclosure should include the purpose of the trial, the procedure, and the risk/benefits related to the trial. Informing the patient of the cancer diagnosis and the extent of disease is also necessary before entry into a phase I trial. Although phase I trials are conducted with the precious contribution of patients, it is important that informed consent should not become a type of legal contract. Informed consent in phase I trials is an essential process, just like a roundtable discussion of patient and physician before fighting an incurable cancer.

Antineoplastic Agents↗

[Prognostic factors for esophageal cancer--from the viewpoint of molecular biology].

The prognostic factors for esophageal cancer from the viewpoint of molecular biology are reviewed. Among several oncogenes and suppressor genes erbB, int2/hst1/Cyclin D1 and MDM2 gene amplifications are significant prognostic factors for esophageal cancer. The value of p53 mutation, and expression of matrix metalloproteinase (MMPs) in the prediction of patients' survival are controversial, so further research is needed. High expression of tumor proliferation-related factors (Ki67, PCNA, and AgNOR), abnormalities of adhesion molecule (E-Cadherin, alpha-Catenin), activation of autocrine mechanism of growth factor (EGFR-TGF alpha, EGF), and DNA ploidy pattern, which is thought to be the result of an accumulation of genomic abnormalities are also prognostic factors for esophageal cancer.

Animals↗