PubMed HealthSearch

Biomedical subjects

K Nishiguchi

Publications and source records attributed to K Nishiguchi.

At least 19 recordsLinked to original sources

Effect of epidermal growth factor on Cu, Zn-superoxide dismutase expression in cultured fibroblasts from rat skin.

The effects of epidermal growth factor (EGF) on Cu, Zn-superoxide dismutase (SOD) in cultured fibroblasts from rat skin exposed to superoxide anions were studied. Cross-linking of [125I]hEGF using disuccinimidyl suberate and immunoblot analysis using anti-EGF receptor antibody to crude plasma membrane fractions of fibroblasts showed that a 170 kDa EGF receptor protein was present on the membrane, as in A431 cells which over express a specific EGF receptor. The cytosolic SOD enzyme activity in fibroblasts exposed to superoxide anions 24 h after treatment with EGF plus nafamostat (NM), a potent protease inhibitor, was increased 1.6-fold compared to control-treated cells. Treatment with either EGF or NM alone, evoked little increase in SOD enzyme activity. The increase in Cu, Zn-SOD protein levels corresponded to the increase in cytosolic SOD enzyme activity in fibroblasts. The Cu, Zn-SOD mRNA level in fibroblasts treated with EGF plus NM at 3 and 6 h was higher than that of the control. Additionally, levels of [125I]hEGF degradation products released into the medium from fibroblasts exposed to superoxide anions were significantly reduced in the presence of NM. These results suggest that the stabilization of EGF by NM in culture is an important factor in the expression of its effects, and that EGF induces Cu, Zn-SOD expression by accelerating transcription of the Cu, Zn-SOD gene in cells, resulting in their protection from the effects of superoxide anion radicals.

Animals

Intralobular localization of different cytochrome P-450 form dependent monooxygenase activities in the liver of normal and inducer-treated rats.

1. Isolated periportal (PP) and perivenous (PV) hepatocytes from normal and inducer-treated rat livers were used to examine the following: intralobular localization of cytochrome P-450IA, P-450IIB, P-450IIE and P-450IIIA dependent monooxygenase activities and effects of phenobarbital (PB), beta-naphthoflavone (BNF) and pregnenolone-16 alpha-carbonitrile (PCN) on the zonal induction of these monooxygenases. 2. 7-Ethoxyresorufin O-deethylase (7EROD), 7-pentoxyresorufin O-dealkylase (7PROD) and N-nitrosodimethylamine N-demethylase (NAND) activities of PP hepatocytes were not significantly different from those of PV hepatocytes. 3. Ethylmorphine N-demethylase (EMND) activity was significantly higher in PV hepatocytes than in PP hepatocytes of normal rats. 4. EMND activity was induced by PCN and PB treatments. The response of EMND activity to PCN treatment was higher in PP hepatocytes than that in PV hepatocytes, and as a result the PV dominance disappeared following PCN treatment. 5. Extents of the response of this activity to PB treatment were similar in PP and PV hepatocytes, and PV dominance remained unchanged even after induction.

Animals

Pharmacokinetics of zonisamide; saturable distribution into human and rat erythrocytes and into rat brain.

The distribution of zonisamide, a new antiepileptic drug, in erythrocytes and in brain was studied to clarify the factors influencing its distribution in epileptic patients. In both humans and rats, zonisamide was concentrated significantly in erythrocytes in a saturable manner. When the effective concentration of zonisamide in serum was compared with that in blood in nine refractory epileptic patients taking zonisamide chronically, the variation in effective serum concentration was significantly larger than that in blood concentration. In rats, the distribution in the brain also showed saturability. These results suggest that differences in saturable binding to various tissues may contribute to the wide variation that occurs in the effective serum concentration of zonisamide in epileptic patients and that monitoring of the blood concentration of zonisamide may provide useful information for treatment with this drug.

Administration, Oral

[Comparison of bidirectional collagenase perfusion with one way perfusion in the isolation of periportal or perivenous hepatocytes in rats].

To selectively isolate hepatocytes from the periportal (PP) and perivenous (PV) regions of rat liver acinus, we compared two different perfusion methods with collagenase: the bidirectional perfusion method (2-P) and the one way perfusion method (1-P). We determined the optimal conditions for each method on the basis of the zonal selectivity of isolated hepatocytes with a hematoxylin-eosin stained liver specimen. By both methods, hepatocytes were selectively isolated from the PP and PV regions. Comparing cell yield and cell viability after the two perfusion methods, 1-P was found to be better than 2-P. Density gradient centrifugation with Percoll was found to be an effective procedure for removing the damaged hepatocytes. We concluded that 1-P could isolate viable PP and PV hepatocytes with a normal glucagon-cyclic AMP response and ultrafine structure in high yield from rat liver.

Animals

Phytogrowth-inhibitory and antimicrobial activities of 3,4'-dihydroxy-alpha,beta-diethylstilbene, the isomer of diethylstilbestrol.

3,4'-Dihydroxy-alpha,beta-diethylstilbene (I), like diethylstilbestrol (II), showed phytogrowth-inhibitory and antimicrobial activities. First, compound I showed strong growth-inhibitory activity against the roots of two kinds of plants. The inhibitory activity of I was almost equal to that of sodium 2,4-dichlorophenoxyacetate used as a positive control. The phytogrowth-inhibitory activity of I was much higher than that of II. Next, unlike II, I had broad antifungal spectrum against phathogenic fungi. Compound I showed antifungal activity against six kinds of Fusarium oxysporum sp. This compound also had antibacterial activity against pathogenic and plant-pathogenic bacteria. These antibacterial activities of I were as high as those of II, the isomer of I. It should be emphasized that by shifting one of the phenolic hydroxyl groups of II to meta-position, phytogrowth-inhibitory activity was largely increased, while antimicrobial activity was unchanged.

Anti-Bacterial Agents

Differential localization of microsomal mixed function oxidase activity in periportal and perivenous hepatocytes isolated from rat liver.

1. The activity per mg of microsomal protein of aminopyrine N-demethylase was higher in perivenous (PV) than in periportal (PP) hepatocytes of rat, but when it was expressed per cytochrome P-450 content the difference in the activity was not significant. 2. The activity of 7-ethoxycoumarin O-deethylase, when expressed per mg protein and per P-450 content, was significantly higher in PV than in PP cells. 3. The activities of dimethylnitrosamine(DMNA) N-demethylase and aniline p-hydroxylase were not significantly different between two subpopulations of isolated hepatocytes when either expressed per mg protein or per P-450 content.

Aminopyrine

[A case report of tricuspid valve endocarditis due to Staphylococcus aureus with successful surgical treatment].

A 14-year-old boy had previously received right temporal lobectomy under the diagnosis of a malignant brain tumor. About one month after lobectomy, ventriculo-peritoneum shunt and ventriculo-atrium shunt were placed because hydrocephalus was progressed. The patient subsequently had a high fever probably due to wound infection of the shunt operation. Several blood cultures demonstrated Methicillin Resistant Staphylococcus Aureus (MRSA). Several sensitive antibiotics were administered for about 30 days, however these drugs were not effective. According to echocardiography, moderate tricuspid regurgitation and a large vegetation at the tricuspid valve were detected and isolated tricuspid valve endocarditis was diagnosed. Surgical intervention was necessary because of recurrent pulmonary emboli. After tricuspid valve replacement with a Björk-Shiley mechanical valve (31 mm), fever subsided and the patient was discharged on the 38th postoperative day. It is concluded that the surgical indications of the tricuspid valve endocarditis are as follows: 1. recurrent pulmonary emboli, 2. refractory right heart failure, 3. resistance against antibiotics.

Adolescent

Intralobular distribution of rat liver aldehyde dehydrogenase and alcohol dehydrogenase.

1. The activity of liver microsomal high Km-ALDH and mitochondrial low Km-ALDH, which may be primarily responsible for the oxidation of acetaldehyde after ethanol administration was found to be predominantly distributed in the centrilobular area. 2. The activities of other ALDH isozymes in mitochondrial and soluble fractions were evenly distributed in periportal and perivenous regions. 3. The activity of ADH which is involved in production of acetaldehyde was predominantly located in the periportal area. 4. From these results it seems unlikely that a concentration of acetaldehyde after ethanol ingestion is higher in perivenous hepatocytes than in periportal ones. Additional data would be needed to understand fully the mechanism by which ethanol induces predominantly centrilobular liver injury.

Acetaldehyde

Circadian rhythms in the activities of brain and liver aldehyde dehydrogenase isozymes in mice.

Circadian variations in the activities of aldehyde dehydrogenase (ALDH) isozymes in the subcellular fractions of the brain and liver were investigated in male and female mice of C57BL/6J strain. The rhythms in high Km-ALDH activities of brain and liver mitochondrial fractions which existed in ordinary light-dark cycle were not observed in animals maintained in the continuous darkness for two weeks. The rhythms in high Km-ALDH activities of hepatic soluble and microsomal fractions existed in both ordinary cycle and total darkness but the rhythmic phases were different. In the low Km-ALDH activity of hepatic mitochondrial fraction, the circadian rhythm was similar in two lighting conditions. There was sex difference in the existence of the circadian rhythm. It seems that the ALDH activity of mice is influenced by light-dark cycle and sex hormones.

Aldehyde Dehydrogenase

Postoperative left ventricular function in patients with mitral stenosis. The effect of commissurotomy and valve replacement on left ventricular systolic function.

Preoperative and postoperative left ventricular cineangiograms of 26 patients with mitral stenosis (MS) were analyzed to calculate left ventricular end-diastolic volume (EDV), end-systolic volume (ESV), stroke volume (SV), ejection fraction (EF) and systolic regional wall motion. Nine patients underwent commissurotomy (OMC group) and 17 patients underwent mitral valve replacement (MVR group). In both groups, postoperative EDV, SV and EF tended to increase, while ESV remained unchanged. In the OMC group, systolic wall motion of the left ventricle was found to be improved postoperatively, whereas systolic wall motion in the MVR group was found to be impaired postoperatively. The latter finding was assumed to be due to excision of the papillary muscles and chordae tendineae. Preservation of these structures is likely to be important for better postoperative functional recovery of the left ventricle.

Adult

Effect of chronic administration of acetaldehyde by inhalation on (Na+ + K+)-activated adenosine triphosphatase activity of rat brain membranes.

The effect of chronic acetaldehyde inhalation on (Na+ + K+)-ATPase (EC 3.6.1.3) activities of subcellular fractions of the rat cerebral cortex was studied. Chronic administration of acetaldehyde by inhalation for 4-21 weeks caused significant increases in the enzyme activities of both the synaptosomal plasma membrane (SPM) fraction and the microsomal (MC) fraction. This indicates the change in neural membrane functions of the brain after acetaldehyde treatment. Mg2+-ATPase activities of both subcellular fractions remained unchanged after acetaldehyde treatment.

Acetaldehyde

Subcellular aldehyde dehydrogenase activity and acetaldehyde oxidation by isolated intact mitochondria of rat brain and liver after acetaldehyde treatment.

The effect of treatment of rats with acetaldehyde on the subcellular NAD+-aldehyde dehydrogenase (EC 1.2.1.3, ALDH) activities and acetaldehyde oxidation by isolated intact mitochondria of the liver and the brain was studied. Inhalation of acetaldehyde caused a significant decrease in the liver mitochondrial low Km-ALDH activity, while brain mitochondrial ALDH activity remained unchanged. Acetaldehyde oxidation by isolated intact liver mitochondria decreased significantly but that by brain mitochondria remained unchanged after acetaldehyde inhalation. These findings raise the possibility that the brain enzyme may be exposed to lower concentration of acetaldehyde than the liver enzyme.

Acetaldehyde

Activity and electrophoretic profiles of brain aldehyde dehydrogenases in mice genetically selected for their ethanol preference.

The activities and electrophoretic profiles of NAD+-aldehyde dehydrogenases (EC 1.2.1.3, ALDHs) in the different brain regions from the mice of inbred C57BL/6J strain (alcohol preferring) and DBA/2 strain (alcohol avoiding) were studied. Kinetic studies on ALDH of the different brain regions revealed the existence of at least two ALDHs in both strains. The ALDH activity in the cerebellum, which was measured spectrophotometrically with 0.1 and 5 mM acetaldehyde as the substrates, was the highest of the three regions and it was about 2-fold higher than that in the cortex in both strains. The ALDH activities of mice of DBA/2 strain were higher than those of mice of C57BL/6J strain in all the regions. Only in the cortex the F1 hybrids (intermediate alcohol preferring) between C57BL/6J and DBA/2 strains had intermediate ALDH activity between their parental strains. Electrophoretic analysis of cortex ALDH revealed that strain differences were observed in the isozyme pattern between pH 7.2 and 7.8 with either acetaldehyde or propionaldehyde as substrate. These findings suggest that the ALDH activity in the cerebral cortex could be related to alcohol preference.

Alcohol Drinking