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Biomedical subjects

R Kido

Publications and source records attributed to R Kido.

At least 73 records · Page 4Linked to original sources

Detection of some retinoid radicals using high-performance liquid chromatography with electron spin resonance spectroscopy or electrochemical detection.

Radical species were detected in the incubation mixtures of some retinoids (retinoic acid, retinal, retinol and retinyl acetate) by using the spin-trapping technique. The spin-adducts were resolved by high-performance liquid chromatography on a reversed-phase column with isocratic elution and detected by electron spin resonance spectroscopy and electrochemical detection. The spin-adducts were eluted in the order retinoic acid, retinol, retinyl acetate, in a similar manner to the retinoids themselves. These results suggest that the spin-adducts are products of nitrosobenzene with retinoid radicals in which the retinoid radicals retain their original chemical structures.

Chromatography, High Pressure Liquid↗

A direct determination of taurine in perchloric acid-deproteinized biological samples.

A high-performance liquid chromatographic method was developed to estimate the amount of taurine in tissue extracts and body fluids. Shodex Ionpak C-811, an adsorption-distribution type column, was chosen and combined with 3 mM perchloric acid as the mobile phase. The eluted taurine was derivatized with o-phthaladehyde-2-mercaptoethanol reagent and measured at an absorbance of 350 nm instead of fluorescent intensity. Using this method, it was possible to isolate and estimate the amount of taurine from other coexisting substances or structural analogs such as hypotaurine, cysteamine, or cysteinesulfinic acid. For rapid routine assays of taurine in many biological samples, it is advisable that the tissue extracts be pretreated with cation-exchange resin to exclude other interfering substances including O-phosphoserine. The linear relationship between the concentration of taurine and absorbance achieved over the concentration range 0.1-10.0 nmol and the recoveries obtained were 98-101% by the internal standard method. The specificity, reproducibility, and sensitivity of this method for taurine were good enough to be used for biological applications. Examples of the tissue levels of taurine in various organs of the rat, as determined by this new method, are also presented.

Animals↗

Detection of radical species in mixtures of some retinoids with hematin by using the ESR spin-trapping technique.

Radical species were detected in mixtures of some retinoids with hematin by using the ESR spin-trapping technique. The rates of radical formation were approximately proportional to the oxygen consumption during the incubation of the retinoids with hematin. HPLC analyses of the incubation mixtures of the retinoids with hematin showed that 5,6-epoxides of the retinoids were formed. The amounts of the epoxides formed were proportional to both oxygen consumption and the amounts of radicals formed. These results suggest that the 5,6-epoxidations proceed via radical intermediates.

Chromatography, High Pressure Liquid↗

Electron spin resonance studies of erythrocytes from spontaneously hypertensive rats and humans with essential hypertension.

The purpose of the present study was to investigate erythrocyte membrane abnormalities in hypertension by means of an electron spin resonance and spin-label technique. The erythrocytes from spontaneously hypertensive rats (SHR) and humans with untreated essential hypertension were examined and compared with their normotensive counterparts, and electron spin resonance spectra were obtained for a fatty spin-label agent (5-nitroxy stearate) incorporated into the erythrocyte membranes. The value of outer hyperfine splitting (2T' parallel) was significantly higher in erythrocytes of SHR and humans with essential hypertension than in erythrocytes of normotensive controls (at 37 degrees C: SHR, 56.14 +/- 0.51 gauss [G], n = 8; Wistar-Kyoto rats, 52.22 +/- 0.86 G, n = 4, p less than 0.01; humans with essential hypertension, 56.94 +/- 0.27 G, n = 11; normotensive subjects, 55.44 +/- 0.36 G, n = 8, p less than 0.01). The order parameter (S) was also increased in the hypertensive rats and humans compared to their respective normotensive controls. When calcium was loaded to erythrocytes with calcium ionophore A23187 (0.9 microM) and CaCl2 (1.0 mM), the parameters of the spectra were increased. These changes were more prominent in the hypertensive groups than in the normotensive controls. These results revealed that the erythrocyte membranes of the hypertensive subjects tolerated different spin motions than those of the normotensive controls in the electron spin resonance study and that membrane fluidity might be decreased in hypertension. Additionally, calcium loading to erythrocytes caused the reduction of membrane fluidity. Therefore, it is suggested that an abnormality of calcium handling at the cellular level might affect physical properties of the biomembranes in hypertension.

Adult↗

Alterations in calcium-handling of erythrocytes in spontaneously hypertensive rats. Calcium-induced changes in the osmotic fragility of erythrocytes in hypertension.

To investigate the sensitivity to calcium of erythrocytes in hypertension, changes in the osmotic fragility of erythrocytes following Ca-loading were observed. Washed erythrocytes were obtained from spontaneously hypertensive rats (SHR, Okamoto and Aoki) and age-matched normotensive Wistar Kyoto rats (WKY). Treatment of erythrocytes with Ca-ionophore A23187 and Ca in the medium caused a reduction in the osmotic fragility which correlated with the Ca-concentration. The degree of alteration in the osmotic fragility of erythrocytes was greater in SHR than in WKY. Oral administration of hydralazine to SHR significantly reduced the blood pressure. However, the alterations in the osmotic fragility of erythrocytes secondary to Ca-loading were not different between hydralazine-treated and untreated SHR. In the presence of a Ca-antagonist (verapamil or diltiazem) in the medium, the reduction of the osmotic fragility of erythrocytes caused by Ca-loading was inhibited, and the differences between SHR and WKY were abolished by Ca-antagonists. These results suggest that the greater changes in osmotic fragility of erythrocytes caused by Ca-loading in SHR could be due to a genetic abnormality of Ca-handling by the cell membranes, and that this abnormality might cause an increase in intracellular Ca, which contributes, in part, to the pathogenesis of hypertension.

Animals↗

Inhibition by chlorogenic acid of haematin-catalysed retinoic acid 5,6-epoxidation.

Chlorogenic acid (3-O-caffeoylquinic acid) inhibited haematin- and haemoglobin-catalysed retinoic acid 5,6-epoxidation. Some other phenol compounds (caffeic acid and 4-hydroxy-3-methoxybenzoic acid) also showed inhibitory effects on the haematin- and haemoglobin-catalysed epoxidation, but salicylic acid did not. Of the above compounds, caffeic acid and chlorogenic acid were potent inhibitors compared with the other two, suggesting that the o-hydroquinone moiety of chlorogenic acid and caffeic acid is essential to the inhibition of the epoxidation. Although caffeic acid inhibited retinoic acid 5,6-epoxidation requiring the consumption of O2, formation of retinoic acid radicals was not inhibited on the addition of caffeic acid to the incubation mixture. The above results suggest that caffeic acid does not inhibit the formation of retinoic acid radicals but does inhibit the step of conversion of retinoic acid radical into the 5,6-epoxide.

Caffeic Acids↗

Detection of radical species in haematin-catalysed retinoic acid 5,6-epoxidation by using h.p.l.c.-e.p.r. spectrometry.

E.p.r. signals were detected in an all-trans-retinoic acid/haematin incubation mixture by using an e.p.r. spin-trapping technique. The spin adducts are presumably attributable to some intermediates in haematin-catalysed retinoic acid 5,6-epoxidation, since addition of nitrosobenzene to the reaction mixture dose-dependently inhibited the epoxidation. Analysing the reaction mixture by h.p.l.c.-e.p.r. spectrometry resulted in the detection of three peaks (III-1, III-2, IV) ascribable to the radical species. Two (peaks III-1 and -2) of the three peaks, which appeared 10 min after the reaction had started, seem to be attributable to the radical species directly participating in the epoxidation. The radicals trapped by nitrosobenzene do not appear to be derived from active oxygen, since none of these peaks were detected in a similar h.p.l.c. analysis of O2- and OH.-generating systems. They are presumably derived from retinoic acid. This view is also supported by the following results: none of these peaks were detected in the h.p.l.c. elution profile of the reaction mixture when retinoic acid was absent; peaks III-1 and 2 were detected even under anaerobic conditions, and their peak heights were unchanged under aerobic conditions.

Catalysis↗

Tryptophan degradation in mice initiated by indoleamine 2,3-dioxygenase.

Tryptophan degradation in mice initiated by indoleamine 2,3-dioxygenase was characterized, taking advantage of its induction by bacterial lipopolysaccharide. Our results demonstrated that in various tissues, N-formylkynurenine produced by the dioxygenase from tryptophan was rapidly hydrolyzed into kynurenine by a kynurenine formamidase, but it was not further metabolized. The localization in the liver and kidney of the kynurenine-metabolizing enzymes suggested that kynurenine thus formed was transported by the bloodstream to those two organs to be metabolized. In fact, the plasma kynurenine level increased in parallel with the induction of the dioxygenase by lipopolysaccharide, and kinetic analysis indicated that at the maximal induction of the enzyme there was a 3-fold increase in the kynurenine production. The major metabolic route of kynurenine was excretion in urine as xanthurenic acid. This increase in the kynurenine production was not explained by L-tryptophan 2,3-dioxygenase in the liver, because during the induction of indoleamine 2,3-dioxygenase, the hepatic enzyme level was substantially suppressed. These findings indicated that indoleamine 2,3-dioxygenase actively oxidized tryptophan in mice and that its induction resulted in an increase in tryptophan degradation.

Animals↗

Retinoic acid 5,6-epoxidation by hemoproteins.

Retinoic acid 5,6-epoxidase activity was found in several hemoproteins such as human oxy- and methemoglobin (HbO2 and MetHb), equine skeletal muscle oxy- and metmyoglobin (MbO2 and MetMb), bovine liver catalase, and horseradish peroxidase. Hematin also catalyzed retinoic acid 5,6-epoxidation. The results suggest that the heme moiety participates in the epoxidation. However, neither horse heart cytochrome c, nor free ferrous ion nor free ferric ion exhibited the epoxidase activity. Some hemoproteins (HbO2, MetHb, MbO2, MetMb, catalase, peroxidase, and hematin) exhibited characteristic individual pH dependences of the activity, suggesting that the epoxidase activities of the hemoproteins are influenced by the apoenzymes to some degree. This view is also supported by the finding that preincubation of an HbO2 preparation at various temperatures (37-70 degrees C) reduced its epoxidase activity with increasing temperature, whereas the activity of hematin was unaffected. Active oxygen scavengers such as mannitol, catalase, and superoxide dismutase exhibited no effect on the epoxidase activities of HbO2, MetHb, MbO2, and MetMb. A ligand of heme, CN- (100 mM), inhibited the epoxidase activities but N3- (100 mM) did not. The epoxidase activities were completely inhibited by NADPH, NADH, and/or 2-mercaptoethanol but not by NADP+ and/or NAD+. An intermediate in the epoxidation may be reduced by NADPH, NADH and/or 2-mercaptoethanol. Radical species can be considered as plausible candidates for the intermediate.

Animals↗

Enhanced calcium-sensitivity of erythrocytes in hypertension--calcium-induced changes of erythrocyte osmotic fragility in essential hypertension.

To investigate the Ca-sensitivity of the erythrocyte membrane in hypertension, the changes of the osmotic fragility of erythrocytes by Ca-loading and the effects of Ca-channel blockers or calmodulin-antagonist were observed in patients with essential hypertension. Erythrocytes were obtained from untreated patients with essential hypertension and age-matched normotensive subjects. Treatment of erythrocytes with Ca-ionophore A23187 and Ca in bathing medium caused the reduction of the osmotic fragility of erythrocytes dose-dependently on Ca-concentration. The degree in alteration of the osmotic fragility of erythrocytes was greater in essential hypertension than that in normotensive controls. In addition, Ca-induced changes of erythrocyte osmotic fragility was inversely correlated with the plasma renin activity in essential hypertension. In the presence of Ca-antagonists (verapamil, diltiazem) or calmodulin-antagonist (trifluoperazine), the reduction of the osmotic fragility of erythrocytes by Ca-loading was inhibited, and the differences of the osmotic fragility of erythrocytes between the hypertensives and the normotensive controls were abolished by these drugs. These results suggest that the greater changes of the osmotic fragility of the erythrocytes by Ca-loading in essential hypertension might be due to the abnormality of Ca-handling of the cell membranes causing an increase in the intracellular Ca concentration, contributing at least partially to the pathogenesis of hypertension.

Adult↗

Haemoglobin-catalysed retinoic acid 5,6-epoxidation.

Examination of the subcellular distribution of retinoic acid 5,6-epoxidase activity in rat liver and human liver homogenates showed that there is a prominent peak of activity in a high-density fraction. A corresponding peak was also detected in rat blood and human blood. Retinoic acid 5,6-epoxidation was catalysed by human blood cells but not by human plasma, and purified human haemoglobin also catalysed the epoxidation of retinoic acid to 5,6-epoxyretinoic acid. These results suggest that retinoic acid 5,6-epoxidase activity in human liver and rat liver homogenates is partially due to the presence of residual blood cells, and particularly haemoglobin, in the homogenates. In the retinoic acid 5,6-epoxidation catalysed by human haemoglobin, molecular O2 was required and its reaction was stimulated by Triton X-100. Boiling of haemoglobin solution resulted in an 94% decrease in the activity. NADPH (1 mM) and NADH (1 mM) completely [2-mercaptoethanol (5 mM) almost completely] inhibited the 5,6-epoxidation catalysed by haemoglobin, but catalase, superoxide dismutase and mannitol showed no inhibitory effect. CN- ion (100 mM) inhibited the reaction, but N3- ion (100 mM) did not.

Adult↗

Human indolylamine 2,3-dioxygenase. Its tissue distribution, and characterization of the placental enzyme.

The presence of indolylamine 2,3-dioxygenase was examined in human subjects by determining its activity with L-tryptophan as substrate. Enzyme activity was detected in various tissues, and was relatively high in the lung, small intestine and placenta. Human indolylamine 2,3-dioxygenase, partially purified from the placenta, had an Mr of about 40 000 by gel filtration and exhibited a single pI of 6.9. The human enzyme required a reducing system, ascorbic acid and Methylene Blue, for maximal activity and was able to oxidize D-tryptophan, 5-hydroxy-L-tryptophan as well as L-tryptophan, but kinetic studies indicated that the best substrate of the enzyme was L-tryptophan.

Female↗

Peroxisome localized human hepatic alanine-glyoxylate aminotransferase and its application to clinical diagnosis.

The subcellular localization of alanine-glyoxylate aminotransferase (EC 2.6.1.44 L-Alanine: glyoxylate aminotransferase) of adult human liver was examined by sucrose density gradient centrifugation. The enzyme sedimented at the same density as catalase, indicating that it was localized in the peroxisomes. Alanine-glyoxylate aminotransferase activity in the liver of patients with cirrhosis was about 65% of that of normal liver or 71% of that from patients with chronic hepatitis, but its activity in the serum of patients with cirrhosis was higher than that from patients with chronic hepatitis. Patterns of activity of alanine-glyoxylate aminotransferase in liver and serum differed from those of aspartate-2-oxoglutarate aminotransferase and ornithine carbamoyltransferase that have a different intracellular location. Serum immunoreactive alanine-glyoxylate aminotransferase (Im-AGT) was measured by enzyme-linked immunoadsorbent assay (ELISA). The Im-AGT levels (mean +/- SEM) in acute (80 +/- 13 micrograms/L) and chronic (72 +/- 4 micrograms/L) hepatitis were higher than those of normal controls (44 +/- 1 micrograms/L). However, the difference between acute and chronic hepatitis was not statistically significant. The level in liver cirrhosis (54 +/- 3 micrograms/L) was lower than those of the hepatitides but higher than that of normal controls. The apparent half-life of serum Im-AGT of patients who underwent liver lobectomy by a microwave tissue coagulation method was approximately 3-4 days.

Adult↗

Chromatographic separation and identification of naturally occurring chlorogenic acids by 1H nuclear magnetic resonance spectroscopy and mass spectrometry.

The high-performance liquid chromatographic separation and identification of the phenolic compounds in extracts from coffee bean are described. The system consists of Fine SIL C18-5 analytical and preparative columns and gradient elution (solvent A, 10 mM H3PO4; solvent B, methanol). The seven chlorogenic acids isolated were identified by mass spectrometry and nuclear magnetic resonance spectroscopy. The isolated and identified compounds are 3-O-caffeoylquinic acid, 4-O-caffeoylquinic acid, 5-O-caffeoylquinic acid, 3,4-O-dicaffeoylquinic acid, 3,5-O-dicaffeoylquinic acid, 4,5-O-dicaffeoylquinic acid and 3-O-feruloylquinic acid.

Chlorogenic Acid↗

Intracellular localization and characterization of 3-hydroxykynureninase in human liver.

3-hydroxykynureninase in human liver was present in cytosol and mitochondria. The cytosolic enzyme and mitochondrial enzyme had the same physiological and enzymic properties. The enzyme had a mol. wt of 130,000 by gel filtration and isoelectric point of pH 5.9. The enzyme was active for 3-hydroxykynurenine and kynurenine, and its activity ratio was 15:1. The apparent Km values of the enzyme were 7.7 X 10(-5) M for 3-hydroxykynurenine, 1.0 X 10(-3) M for kynurenine and 2.5 X 10(-6) M for pyridoxal 5'-phosphate with 3-hydroxykynurenine. Some other properties of purified enzymes are described.

Aged↗

Characteristics of pancreatic branched chain amino acid aminotransferases from rat, man and dog.

Branched chain amino acid aminotransferase (EC 2.6.1.42) from pancreas of rat, man and dog was highly purified and characterized. Rat pancreas contained only one type of branched chain amino acid aminotransferase, but human and dog pancreas contained two types. These were named Enzyme I and Enzyme III according to the classification by Aki et al. (1969). Five enzymes purified were activated by the addition of 2-mercaptoethanol and glutathione. Enzyme III has lower Km values for amino acids and 2-oxo acids than Enzyme I. Some other properties of purified enzymes are described.

Animals↗

Relative roles of upper and lower lacrimal canaliculi in normal tear drainage.

A total of 88 cases of impaction of the eyelash into the lacrimal punctum were collected from 34,256 outpatients, and 39 cases of lash impaction into the Meibomian gland duct were found among 30,456 outpatients. Observations of these patients were analyzed to find the relative roles of the upper and lower lacrimal canaliculi in the normal tear drainage. In the cases of the Meibomian gland duct, the impaction occurred at a similar incidence in the upper and lower eyelids. However, in the cases of the punctum, the upper punctum was affected about three times more frequently than the lower punctum. The impaction of the eyelashes probably occurred at about the same rate in both puncta, but the present results suggested that the lashes in the lower punctum disappeared more easily into the drainage system than the lashes in the upper punctum. The lower canaliculus should, therefore, play the major role in normal tear drainage.

Eyelashes↗

A new biosynthetic route of porphyrin precursors in common between animals and plants.

An additional enzyme, 4-oxo-5-hydroxyvalerate (OHV) dehydrogenase was identified and characterized. This enzyme catalyzes the conversion of OHV to 4,5-dioxovalerate, a direct precursor of 5-aminolevulinate. The enzyme was partially purified from rat liver supernatant as two isoenzyme (ca. 40,000 and 70,000 dalton). 5-Aminolevulinate was formed from OHV via 4,5-dioxovalerate by this dehydrogenase and alanine-4,5-dioxovalerate aminotransferase (EC 2.6.1.43). This dehydrogenase required NADP or NAD as a hydrogen acceptor. The enzyme was heat sensitive and catalyzed the reaction reversibly. The dehydrogenase was present in the high speed supernatants of liver and kidney of rat, rabbit and human, and that of spinach leaf.

Alcohol Oxidoreductases↗