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Biomedical subjects

K Harada

Publications and source records attributed to K Harada.

At least 577 records · Page 32Linked to original sources

Evaluation of lead exposure in workers at a lead-acid battery factory in Korea: with focus on activity of erythrocyte pyrimidine 5'-nucleotidase (P5N).

OBJECTIVE: To evaluate lead exposure among lead-acid battery workers in Korea, to evaluate in more detail the erythrocyte pyrimidine 5'-nucleotidase (P5N) test for lead exposure, and to evaluate the abnormal accumulation of erythrocyte pyrimidine nucleotides in the battery workers. METHODS: Activity of P5N and other biological variables were examined in 66 exposed workers in a lead-acid battery factory and in 26 non-exposed workers in Korea. RESULTS: At the factory the time-weighted average of 13 (72%) of 18 air samples for lead exceeded 0.05 (range 0.012-0.468) mg/m3. Blood lead concentration (PbB) in 39 of the 66 exposed workers was above 40 micrograms/dl, and the mean (SD) PbB in the exposed group was 45.7 (15.7) micrograms/dl. Compared with the nonexposed group, free erythrocyte protoporphyrin in the exposed group was significantly increased, whereas erythrocyte P5N activity and activity of erythrocyte delta-aminolevulinic acid dehydratase (ALAD) were significantly inhibited. Erythrocyte P5N activity had valid correlation biologically with PbB and with other biological variables, such as ALAD activity. In 28 exposed workers, the concentration of erythrocyte pyrimidine nucleotides (uridine 5'-diphosphate-glucose and cytidine 5'-triphosphate) correlated inversely with P5N activity and positively with PbB. CONCLUSIONS: These findings show that the depression of erythrocyte P5N activity by lead exposure results in the accumulation of erythrocyte pyrimidine nucleotides. In general, the standard analysis of PbB performed in laboratories around the world remains the most useful index of recent exposure. The results indicate that the erythrocyte P5N activity test provides supporting evidence of lead exposure and shows the effect of lead on nucleotide metabolism.

5'-Nucleotidase↗

Overexpression of human lipoprotein lipase protects diabetic transgenic mice from diabetic hypertriglyceridemia and hypercholesterolemia.

We investigated the role of the overexpression of lipoprotein lipase (LPL) in lipoprotein abnormalities in transgenic mice with streptozotocin-induced diabetes mellitus. Before the induction of diabetes, LPL activity was 4.6-fold in skeletal muscle and 2.0-fold higher in the heart in transgenic mice than in their nontransgenic littermates. LPL activity in skeletal muscles in diabetic nontransgenic mice and cardiac LPL activity in diabetic nontransgenic and transgenic mice were decreased. Body weights were similarly reduced, and no appreciable amount of adipose tissue was observed in diabetes in both groups. The plasma triglyceride level was lower in diabetic transgenic mice than in diabetic nontransgenic mice (33.2 +/- 22.5 versus 185.3 +/- 57.4 mg/dL). Induction of diabetes was associated with a significant increase in the plasma cholesterol level in nontransgenic mice (90.0 +/- 11.1 versus 163.9 +/- 39.3 mg/dL) but much less in transgenic mice. Our results indicate that overexpression of LPL in transgenic mice inhibited diabetes-associated hypertriglyceridemia and hypercholesterolemia but did not affect the loss of body weight induced by diabetes.

Animals↗

Effects of platelet-derived growth factor on the synthesis of lipoprotein lipase in human monocyte-derived macrophages.

Lipoprotein lipase (LPL), which is secreted by the two predominant cell types in atherosclerotic plaque, macrophages and smooth muscle cells, may be involved in atherosclerosis by generating atherogenic remnant lipoproteins. We investigated the effects of platelet-derived growth factor (PDGF)-BB on the synthesis of LPL by human monocyte-derived macrophages. These cells were cultured in the presence of PDGF-BB for 8 days, after which the enzyme activity, mass, and mRNA levels of LPL were determined. The effect of PDGF-BB was time-dependent and dose-dependent at concentrations of 1 to 10 ng/mL. At 10 ng/mL PDGF-BB enhanced twofold to 2.3-fold the secretion of LPL, and a pulse-labeling study with [35S]methionine revealed that 10 ng/mL PDGF-BB significantly increased the synthesis of LPL. Northern blotting analysis showed that the LPL mRNA level increased dose dependently in macrophages treated with PDGF-BB, and 10 ng/mL PDGF-BB enhanced twofold the expression of LPL mRNA. The protein kinase C inhibitor staurosporine suppressed the effect of PDGF-BB on LPL activity. These results indicate that PDGF-BB stimulated transcription of the LPL gene in human monocyte-derived macrophages through protein kinase C activation and resulted in an increased synthesis of LPL. Therefore, we hypothesize that the augmented synthesis of LPL by PDGF-BB modulates atherosclerosis by influencing lipoprotein metabolism in the vascular wall.

Becaplermin↗

Reperfusion of rat heart after brief ischemia induces proteolysis of calspectin (nonerythroid spectrin or fodrin) by calpain.

Rat myocardium expresses the 240- and 235-kD polypeptides antigenically related to alpha- and beta-subunits of brain calspectin (nonerythroid spectrin or fodrin), respectively. In the subcellular fractions of the myocardium, alpha-calspectin was found in the 600g, 10,000g, and 100,000g pellets, whereas beta-calspectin was localized to the 10,000g pellet. On the basis of the Na+,K(+)-ATPase activity and the contents of a gap junction protein, the sarcolemma was distributed to the 10,000g and 100,000g pellets, and the intercalated disks were enriched in the 10,000g pellet. Both alpha- and beta-calspectin were proteolyzed by calpain in vitro. The two subunits were also proteolyzed in vivo, when the rat hearts underwent 10 to 60 minutes of global ischemia followed by 30 minutes of reperfusion. The reperfusion following the ischemia induced the proteolysis of alpha-calspectin in the 10,000g and 100,000g pellets, producing the 150-kD fragment. A synthetic calpain inhibitor, calpain inhibitor-1, suppressed the degradation of calspectin in vivo, which indicates that calpain is responsible for the reperfusion-induced proteolysis of calspectin. The inhibitor also improved myocardial stunning. Immunohistochemical study revealed that the proteolysis of alpha-calspectin occurs at the intercalated disks and the sarcolemma after postischemic reperfusion, in accord with the biochemical data. These results suggest that degradation of calspectin partly accounts for the contractile failure of the myocardium after postischemic reperfusion by disrupting the membrane skeleton and the intercalated disks.

Animals↗

Inhibition of diet-induced atheroma formation in transgenic mice expressing apolipoprotein E in the arterial wall.

Apolipoprotein E (apoE) plays a crucial role in lipoprotein metabolism both in plasma and in peripheral tissues. To test whether apoE in the vascular wall has a direct and local effect on atherogenesis, we established transgenic mice expressing human apoE under control of H2 Ld promoter. Studies on mRNA levels and immunohistochemistry demonstrated that this line was characterized by high expression of human apoE in the arterial wall while its expression was relatively low in other tissues as compared with the respective endogenous expression of mouse apoE. They showed no difference in plasma cholesterol levels and lipoprotein profile from controls when fed both normal and atherogenic diets. However, after 24 wk of an atherogenic diet, the formation of fatty streak lesions in proximal aorta was markedly inhibited in transgenic mice as compared with controls. Both lesion area and esterified cholesterol content were < 30% of those in controls. In a tissue cholesterol labeling study with 3H-cholesterol, the specific activity of aorta cholesterol was much less in transgenic mice, suggesting that apoE enhances cholesterol efflux from the aortic wall into plasma. Thus, apoE has anti-atherogenic action which is mediated via enhancing reverse cholesterol transport from arterial wall.

Animals↗

Induction of sustained expression of proto-oncogene c-fms by platelet-derived growth factor, epidermal growth factor, and basic fibroblast growth factor, and its suppression by interferon-gamma and macrophage colony-stimulating factor in human aortic medial smooth muscle cells.

Vascular medial smooth muscle cells migrate, proliferate and transform to foam cells in the process of atherosclerosis. We have reported that the intimal smooth muscle cells express proto-oncogene c-fms, a characteristic gene of monocyte-macrophages, which is not normally expressed in medial smooth muscle cells. In the present study, we demonstrated that combinations of platelet-derived growth factor (PDGF)-BB and either epidermal growth factor (EGF) or fibroblast growth factor (FGF) induced high expression of c-fms in normal human medial smooth muscle cells to the level of intimal smooth muscle cells or monocyte-derived macrophages, whereas c-fms expression by PDGF-BB alone was 1/10 and both EGF and FGF had no independent effect on c-fms expression. By contrast, interferon (IFN)-gamma and macrophage colony-stimulating factor (M-CSF) suppressed the induction of c-fms expression. These results indicate that multiple growth factors and cytokines may play a role in the phenotypic transformation of medial smooth muscle cells to intimal smooth muscle cells in atherosclerotic lesions by altering c-fms expression.

Aorta↗

Non-selective effects of amiloride and its analogues on ion transport systems and their cytotoxicities in cardiac myocytes.

The effects of amiloride and its analogues (3',4'-dichlorobenzamil (DCB), 2',4'-dimethylbenzamil (DMB), 5-(N-ethyl-N-isopropyl)amiloride (EIPA) and 5-(N-methyl-N-isobutyl)amiloride (MIBA)) on cardiac ion transporters (Na+/Ca2+ exchanger, Na+/H+ exchanger, Na+ pump and Ca2+ pump) and their cytotoxicities were tested in cardiac myocytes. All the tested compounds showed concentration-dependent inhibitory effects on the ion transporters studied in canine cardiac sarcolemmal vesicles. The concentrations (microM) of amiloride, DCB, DMB, EIPA and MIBA required to produce 50% inhibition were > 1000, 19, 10, 83 and 84, respectively, for the Na+/Ca2+ exchanger; 130, 73, 63, 16 and 14 for the Na+/H+ exchanger; > 1000, 72, > 300, > 300 and > 300 for the Na+ pump; and > 1000, 37, 93, 90 and 70 for the Ca2+ pump, respectively. Furthermore, these agents induced cell death in isolated rat cardiac myocytes and the 50% lethal concentrations (microM) were > 1000, 9.2, 30, 16 and 17, respectively. These findings demonstrate that amiloride and its analogues have non-selective inhibitory effects on cardiac ion transporters and cytotoxicity in cardiomyocytes. When these drugs are employed as experimental tools to investigate the involvement of ion transporters in cell functions, the results must be interpreted with caution.

Amiloride↗

Left ventricular regional wall motion in the early neonatal period.

To investigate the changes in regional wall motion of the left ventricle in the early neonatal period, serial echocardiography was performed in normal neonates at 2 and 120 hr after birth. Quantitative analysis of the regional wall motion was performed by the centerline method. We measured right ventricular systolic time intervals, left ventricular stroke volume, flow velocity-time integral of the pulmonary artery, and size of the ductus arteriosus. The ductus arteriosus was 4.5 +/- 0.5 mm at 2 hr but was closed in all subjects by 120 hr. At 2 hr, there was hyperkinesis of the interventricular septum which disappeared by 120 hr. The right ventricular systolic time intervals at 2 hr showed a sign of pulmonary hypertension. At 2 hr, the left ventricular stroke volume was at the highest level and the flow velocity-time intervals of pulmonary artery was at the lowest level. Thus the hyperkinesis of the interventricular septum at 2 hr might reflect the circulatory changes that are characteristic of the early neonatal period.

Blood Flow Velocity↗

Polysplenia syndrome with common atrioventricular canal and persistent truncus arteriosus.

A case of an infant with a rare combination of polysplenia syndrome with common atrioventricular canal and persistent truncus arteriosus is presented. In our present case, severe common atrioventricular valve regurgitation was identified, as in previous cases. To our knowledge, echocardiographic and autopsy findings of this association has not been previously reported. The persistent truncus arteriosus is extremely rare in the setting of the polysplenia syndrome, but the present case report demonstrates that these anomalies may, at times, occur.

Abnormalities, Multiple↗

Effect of vasopressin V1- and V2-receptor stimulation on blood pressure in DOCA-salt hypertensive rats.

We recently reported that stimulation of the arginine vasopressin (AVP) V1-receptor enhanced the pressor response in spontaneously hypertensive rats (SHR). In the present study, we investigated acute changes in systolic blood pressure (SBP) and heart rate (HR) after intravenous injections of AVP, OPC-21268 (a V1-receptor antagonist), and OPC-31260 (a V2-receptor antagonist), in anesthetized DOCA-salt hypertensive rats (DOCA) and age-matched sham-operated Wistar rats (control) to determine whether the pressor effect is specific to SHR or is present in other hypertensive animal models. SBP increased significantly in DOCA rats 9 min after injection of AVP 5 ng/kg without a concomitant increase in HR. Neither OPC-21268 3mg/kg nor OPC-31260 3mg/kg caused significant changes in SBP or HR. SBP tended to increase when AVP was administered after injection of OPC-31260. HR increased significantly 15 min after the combined treatment with OPC-31260 and AVP in DOCA rats compared with control rats. SBP did not change significantly when AVP was administered after injection of OPC-21268 in DOCA or control rats, but HR decreased significantly from 1 to 4 min after injection of AVP in DOCA rats. Our results suggest that V1-receptor stimulation does not enhance the pressor response in the DOCA rat, which is a model of volume-dependent hypertension, suggesting that the AVP system, especially V1-receptor, is not as important in the development or maintenance of hypertension in DOCA rats as in SHR.

Animals↗

Enhanced pressor response in spontaneously hypertensive rats induced by stimulation of vasopressin-V1 receptors.

To elucidate the effect of the arginine vasopressin (AVP) system in vivo, especially V1 and V2 activity, on blood pressure, we measured the acute changes in blood pressure and heart rate after AVP, OPC-21,268 (a V1 receptor antagonist), and OPC-31,260 (a V2 receptor antagonist) were injected intravenously in anesthetized spontaneously hypertensive rats (SHR) and Wistar-Kyoto (WKY) rats at the age of 15 weeks. Compared with the control period, single injection of AVP 5 ng/kg significantly increased systolic blood pressure in WKY rats without a concomitant increase in heart rate, but there was no significant increase in blood pressure in SHR. In contrast, single injection of either OPC-21,268 3 mg/kg or OPC-31,260 3 mg/kg did not affect blood pressure or heart rate in either SHR or WKY rats. Injection of AVP after the administration of OPC-31,260 induced a greater increase in blood pressure in SHR than in WKY rats, whereas injection of AVP after the administration of OPC-21,268 did not induce any clear increase in blood pressure in SHR or WKY rats. These results suggest that SHR have enhanced pressor activity mediated by V1 receptors and that this increase may be due to an increase in their number. In conclusion, enhancement of V1 activity may contribute to the development of high blood pressure in SHR.

Animals↗

Linear transverse forehead incision for patients with alopecia praematura--technical note.

A method for craniotomy via a transverse linear scalp incision on the forehead wrinkle line with cosmetic reconstruction is described. The method requires minimal knowledge of plastic surgical techniques. Operative scars are inconspicuous and the normal appearance of the forehead can be retained, which is especially valuable for patients with alopecia praematura.

Adult↗

Overexpression of apolipoprotein E prevents development of diabetic hyperlipidemia in transgenic mice.

To determine the role of apolipoprotein E (apoE) in diabetic hyperlipidemia, we induced diabetes in transgenic mice overexpressing apoE by intravenous injection of streptozotocin (STZ) and examined plasma lipoprotein metabolism in these mice. In STZ-induced diabetic mice, blood glucose levels were > 19 mmol/l (350 mg/dl) and plasma insulin levels were reduced to < 5 pmol/l (1 microU/ml). The diabetic nontransgenic mice developed hypercholesterolemia (plasma total cholesterol level: 4.55 +/- 1.32 vs. 1.97 +/- 0.13 mmol/l [176 +/- 51 vs. 76 +/- 5 mg/dl]) and hypertriglyceridemia (plasma triglyceride level: 0.82 +/- 0.29 vx. 0.42 +/- 0.11 mmol/l [73 +/- 26 vs. 37 +/- 10 mg/dl]) compared with values before induction of diabetes. In the diabetic nontransgenic mice, enhanced intestinal acylCoA:cholesterol acyltransferase activity was demonstrated, a factor that may contribute to the development of diabetic hyperlipidemia. Induction of apoE remarkably reduced the development of hyperlipidemia in diabetic transgenic mice compared with diabetic nontransgenic mice (plasma cholesterol level: 4.55 +/- 1.32 vs. 3.31 +/- 0.47 mmol/l [176 +/- 51 vs. 128 +/- 18 mg/dl], P < 0.01, and plasma triglyceride level: 0.82 +/- 0.29 vs. 0.17 +/- 0.11 mmol/l [73 +/- 26 vs. 15 +/- 10 mg/dl], P < 0.01). Plasma lipoprotein analysis by gel filtration chromatography showed that the reduction of plasma cholesterol and triglyceride levels was due to the disappearance of lipoproteins containing apoB. In these studies, we demonstrated the usefulness of STZ-induced diabetes in mice as an animal model for diabetic hyperlipidemia and demonstrated that endogenous induction of apoE in transgenic mice improved diabetic hyperlipidemia.

Animals↗

A study of the steroid sulfatase gene in families with X-linked ichthyosis using polymerase chain reaction.

We have studied the steroid sulfatase (STS) gene in three Japanese families with X-linked ichthyosis (XLI), using polymerase chain reaction (PCR). PCR was performed using three sets of intraexonic primers covering exons 1, 5 and 10. In affected individuals from two of the families, DNA was not amplified in any of the three exons, suggesting that XLI in these families was due to the complete deletion of the STS gene. In affected individuals in the remaining family, DNA was amplified in predicted sizes in exons 1 and 5, but not in exon 10, suggesting that XLI in this family was due to partial deletion of the STS gene including exon 10. These results suggested that STS gene deficiency is heterogeneous in Japanese families with XLI. PCR is useful for the rapid diagnosis of XLI, the differentiation of XLI from ichthyosis vulgaris, and genetic counseling of XLI families. The PCR method was not applicable for carrier detection.

Adolescent↗

Effects of ranitidine on gastric vesicles containing H+,K(+)-adenosine triphosphatase in rats.

BACKGROUND: To ascertain the mechanism for rebound acid hypersecretion after treatment with an H2-receptor blocker, we investigated the effects of ranitidine on gastric H+,K(+)-adenosine triphosphatase (ATPase) in rats. METHODS: Male Wistar rats received ranitidine (1-50 mg/kg body weight intraperitoneally twice a day for 5 days). The rats were starved for 15 h after the last treatment and then killed, and gastric vesicles containing H+,K(+)-ATPase were prepared. RESULTS: Treatment with ranitidine dose-dependently increased protein content in the gastric vesicular fraction purified from the gastric mucosa without changing total protein content. Ranitidine also increased the content of a 94,000-dalton protein, the catalytic subunit of H+,K(+)-ATPase. On the other hand, ranitidine did not affect the specific activity of the enzyme (mumol/min/mg of the gastric vesicular protein). Since gastric vesicles in the fasting state mainly consist of the tubulovesicular membrane, these results suggest that ranidine administration increases total tubulovesicular H+,K(+)-ATPase content (mumol/min/rat) by increasing the number of tubulovesicles per parietal cell. The ranitidine-induced increase in total tubulovesicular H+,K(+)-ATPase activity was still evident 1 week after treatment and returned to control level 1 month later. CONCLUSIONS: All these findings suggest that the increased content and total activity of tubulovesicular H+,K(+)-ATPase after ranitidine treatment may contribute to the mechanism for acid rebound after H2-blocker therapy.

Animals↗

Pradimicin S, a new pradimicin analog. III. Application of the frit-FAB LC/MS technique to the elucidation of the pradimicin S biosynthetic pathway.

The biosynthetic pathway of pradimicin S (PRM-S) was investigated by using sinefungin and bioconversion experiments with aglycones of pradimicin A (PRM-A) and Actinomadura spinosa AA0851, a PRM-S producer. Addition of sinefungin to the strain inhibited the formation of 11-O-demethyl-7-O-methylpradinone II (11dM-7M-PNII) as also determined to occur with its addition to the PRM-A producer. In feeding PRM-A aglycone and its analogs to the strain early in PRM-S biosynthesis, good identifications of bioconverted products were obtained by frit-FAB LC/MS as follows: 11-O-demethylpradinone II (11dM-PNII), 11dM-7M-PNII, 11-O-demethylpradinone I (11dM-PNI), 11-O-demethylpradimicinone I (11dM-PMNI) and pradimicinone I (PMNI) were converted to PRM-S. Pradimicin B (PRM-B) and pradimicin L (PRM-L) were converted to PRMs-L and -S and PRM-S, respectively. A biosynthetic pathway for PRM-S is proposed.

Actinomycetales↗

Total structures and antimicrobial activity of bacitracin minor components.

Total structures of 13 minor components of bacitracin (BC) were proposed, and their antimicrobial activities were investigated. The components of BC including bacitracins A (BC-A) and F (BC-F) were isolated by preparative HPLC and were hydrolyzed under acidic conditions. The resulting amino aids were derivatized with 1-fluoro-2,4-dinitrophenyl-5-L-alanineamide and were separated by HPLC to determine their absolute configurations. It was found that the N-terminal amino acids of BC-A and its related components were epimerized during the hydrolysis to yield their enantiomers. The formation of these artifactual amino acids suggests that our previously proposed structures of the BC minor components are incorrect; therefore, the structures were corrected based on these results. The structures of the BC minor components were the same as that of BCs-A and -F except that one to three of the L-isoleucines, including the N-terminal one, were replaced by L-valines. These structures were confirmed by tandem mass spectrometry under fast atom bombardment (FAB) conditions and Frit-FAB liquid chromatography/mass spectrometry. Based on the UV spectra of the BC components determined by photodiode array detection-HPLC analysis, a new systematic nonmenclature was proposed for the minor components. The isolated components were also used for the determination of their minimal inhibition concentrations and it was found that BC-A is 2 approximately 8 times more potent than the other minor components against strains of Micrococcus luteus and Staphylococcus aureus.

Amino Acid Sequence↗

Structural elucidation of aculeximycin. III. Planar structure of aculeximycin, belonging to a new class of macrolide antibiotics.

The planar structure of aculeximycin (1) produced by Streptosporangium albidum has been determined by spectral methods and chemical degradations such as 1,8-diazabicyclo[5,4,0]undec-7-ene (DBU)-methanol reaction, ozonolysis, and periodative oxidation. The antibiotic consists of a 30-membered polyhydroxy lactone ring, an alpha, beta-unsaturated ester group, an intramolecular hemiketal, an oligosaccharide (aculexitriose), a neutral sugar and an amino sugar. The structure of aculeximycin is closely related to those of sporaviridins produced by Streptosporangium viridogriseum. We consider that aculeximycin and sporaviridins belong to a new class of macrolide antibiotics, which is different from the polyol macrolides produced by Streptomyces.

Acetylation↗