Biomedical subjects
E Hasegawa
Publications and source records attributed to E Hasegawa.
The expression of Ca2+/calmodulin-dependent protein kinase I in rat retina is regulated by light stimulation.
Ca2+/calmodulin-dependent protein kinase I (CaM-kinase I) in rat retina was analyzed by immunohistochemical analysis, Western blot analysis and kinase activity assay. Western blot analysis revealed two immunoreactive bands similar to those detected in the brain. Developmental studies revealed that CaM-kinase I expression increased in accordance with postnatal development. Expression of CaM-kinase I in the retinas of rats raised in the complete darkness markedly decreased. CaM-kinase I activity assay supported these findings. Synapsin I was shown to be a possible intrinsic substrate of CaM-kinase I in rat retina. These results elucidated that CaM-kinase I is expressed in the retina and may play an important role in the retinal functions and that the expression of CaM-kinase I is regulated by light stimulation.
Fine structure of rat liver, adrenal, testis and seminal vesicle in experimental emaciation.
Experimentally emaciated male rats were produced by a bilateral electrical destruction of a part of hypothalamus. In a typical case, when the animals were fixed by perfusion, dissected, and organs weighted, the body weight became 1/2 of the control in 10 weeks. The weight of the viscera (including the subserous fat) was more decreased in comparison with the controls than the weight of the body wall (including extremities and the subcutaneous fat). The weight of the liver became 1/3, the adrenal 1/4, the testis 1/6 and the seminal vesicle 1/19 of the control. Light and electron microscopic examinations showed atrophy and fatty degeneration in the liver, atrophy of the zona reticularis in the adrenal, failure of spermatogenesis, especially at its spermiogenetic stage, in the testis, and an apoptosis in glandular epithelial cells of the seminal vesicle. Two weeks after partial hypothalamus destruction, the weight of the body wall was more decreased in comparison with the controls than the weight of the viscera. Possible pathophysiological mechanisms are discussed. An experimental model of electron microscopical research of apoptosis are presented.
Continuous measurement of tympanic temperature with a new infrared method using an optical fiber.
The purpose of this study was to investigate the utility of an infrared tympanic thermometry by using an optical fiber for measuring tympanic temperature (Tty). In the head cooling and facial fanning tests during normothermia, right Tty measured by this method (infrared-Tty) and esophageal temperature (Tes) were not affected by decreased temple and forehead skin temperatures, suggesting that the infrared sensor in this system measured the infrared radiation from the tympanic membrane selectively. Eight male subjects took part in passive-heat-stress and progressive-exercise tests. No significant differences among infrared-Tty, the left Tty measured by thermistor (contact-Tty), and Tes were observed at rest or at the end of each experiment, and there was no significant difference in the increase in these core temperatures from rest to the end. Furthermore, there were no significant differences in the core temperature threshold at the onset of sweating and slope (the relationship of sweating rate vs. infrared-Tty and vs. contact-Tty). These results suggest that this method makes it possible to measure Tty accurately, continuously, and more safely.
A dual effect of 1-methyl-4-phenylpyridinium (MPP+)-analogs on the respiratory chain of bovine heart mitochondria.
We examined effects of several compounds, structurally related to 1-methyl-4-phenylpyridinium (MPP+), on the NADH-dependent respiration of bovine heart submitochondrial particles. 1-Methyl-4-(3 '-trimethylammoniophenyl)pyridinium (analog 8) as well as MPP+ completely inhibited O2 consumption, reduction of ubiquinone-10, and reduction of cytochrome b in a dose-dependent manner. The production of superoxide (O2-) induced by MPP+ or analog 8 was to the same extent as that by rotenone, an inhibitor of complex I of the mitochondrial respiratory chain. Rotenone had no additive effect on the maximal production of O2- induced by MPP+ or analog 8, suggesting that the production was mediated by the same way as rotenone. 1-Methyl-4-(4'-nitrophenyl) pyridinium (analog 1) induced about 20-fold more production of O2 than MPP+ and the production was additively increased by rotenone. Analog 1 only partially inhibited rotenone-sensitive O2 consumption. Paraquat induced the production of O2- as much as analog 1. Paraquat, however, did not inhibit rotenone-sensitive O2 consumption or reduction of cytochrome b. These results suggest that MPP+ and its analogs interact with the mitochondrial respiratory chain at two sites, the substrate side of the rotenone-binding site and the rotenone-binding site. The analogs may be reduced to produce O2- at the former site and inhibit the respiratory chain at the latter site.
Changes of energy metabolism induced by 1-methyl-4-phenylpyridinium (MPP+)-related compounds in rat pheochromocytoma PC12 cells.
We examined effects of three structurally related pyridinium compounds, 1-methyl-4-phenylpyridinium (MPP+), paraquat, and 1-methyl-4-(4'-nitrophenyl) pyridinium (analog 1), on the energy metabolism in pheochromocytoma PC12 cells. MPP+ inhibited the intracellular NADH oxidation by the mitochondrial respiratory chain, judging from the decrease of the cytosolic NAD+/NADH ratio. Paraquat enhanced the oxidation of NADH and decreased intracellular ATP more than MPP+. The inhibition of the mitochondrial respiration by MPP+ was partially compensated by enhanced glycolysis, while paraquat inhibited glycolysis at the level of hexokinase probably due to the intracellular production of oxygen radicals. Analog 1 moderately enhanced glycolysis, moderately increased a cytosolic ratio of NAD+/NADH, and caused only a slight decline of intracellular ATP. Paraquat was the most cytotoxic of the three compounds. Thus, the three structurally related compounds, MPP+, paraquat, and analog 1, showed different effects on the mitochondrial respiratory chain and the glycolytic pathway in PC 12 cells. Their properties found in the cells well reflected those obtained by using bovine heart submitochondrial particles.
Reticalmin: a novel calcium/calmodulin-dependent protein kinase IV-like protein in rat retina.
Western blot analysis of 100,000 g supernatant of rat retina using a polyclonal anti-Ca2+/ calmodulin-dependent protein kinase IV (CaM-kinase IV) antibody revealed an immunoreactive mass of 35 kDa, termed reticalmin. Lower amount of a isoform of CaM-kinase IV was also expressed in rat retina. Reticalmin did not react with anti-CaM-kinase IV C-terminal peptide antibody which recognized alpha and beta isoforms of CaM-kinase IV and calspermin. Immunohistochemically reticalmin was shown to be localized mainly in the outer segment of photo-receptor cells, and in dendrites of inner plexiform layers and may be in nuclei of ganglion cells and some inner nuclear layer cells.
Effect of methamphetamine and dopamine receptor antagonists on cholecystokininlike immunoreactivity in the rat medial prefrontal cortex.
A single intraperitoneal administration of methamphetamine (MAP) reduces cholecystokininlike immunoreactivity (CCK-LI) in medial prefrontal cortex (mPFC) of the rat brain. This report examines the effects of various dopamine (DA) receptor antagonists [haloperidol (HAL), sulpiride (SUL), YM09151-2 (YM), and SCH23390 (SCH)] on MAP-induced abnormal behaviors and the changes of CCK-LI in the rat mPFC. A single subcutaneous administration of HAL (0.25 mg/kg), YM (0.1 mg/kg), or SUL (250 mg/kg) significantly reduced the basal CCK-LI in mPFC by 20-40%; a selective D1 antagonist, SCH (up to 1.0 mg/kg), had no effect on basal CCK-LI. However, the reduction of CCK-LI induced by MAP (20-40%) was abolished by the pretreatment with HAL (0.025 and 0.25 mg/kg), YM (0.01 and 0.1 mg/kg), or SCH (1.0 mg/kg), without being affected by SUL (up to 250 mg/kg). This effect of DA antagonists on MAP-induced change in CCK-LI was associated with an inhibition of MAP-induced stereotyped behaviors. These data suggest that the CCK-containing neurons in rat mPFC are functionally related to the mesocortical DA system and may participate in a development of abnormal behaviors induced by MAP.
The effects of substituents introduced into 9-aminoacridine on frameshift mutagenicity and DNA binding affinity.
Some derivatives of 9-aminoacridine (1) were synthesized, and their frameshift mutagenicity and DNA binding affinity were studied. The introduction of a methyl group into the acridine ring of 1 reduced the mutagenic activity and the intercalative DNA binding affinity, while the introduction of chlorine increased them. Halogenated derivatives of 1 showed higher toxicity against Salmonella typhimurium TA1537.
Developmental alteration of the expression and kinase activity of cyclin-dependent kinase 5 (Cdk5)/p35nck5a in the rat retina.
Neuronal Cdc2-like kinase has been purified from the bovine brain as a proline-directed serine/threonine kinase. This kinase is a heterodimer of Cdk5 and p35nck5a and influences neuronal maturation or sprouting in the normal brain. In this study, we showed the expression of Cdk5/p35nck5a kinase in the developing rat retina. The expression of Cdk5 and p35nck5a increased between 1 week and 3 weeks after birth. These expression levels were most prominent from 2 weeks to 3 weeks after birth and decreased after 4 weeks. The developmental change of Cdk5/p35nck5a kinase activity coincided with those of the expression of p35nck5a and Cdk5. An immunohistochemical study showed that Cdk5 was expressed in the ganglion cells and in some cells in the inner nuclear layer at an early stage. With retinal development, Cdk5 was expressed in the inner plexiform layer also. In the adult, the expression of Cdk5 was restricted to the inner plexiform layer and to some cells in the inner nuclear layer. These changes of localization in the developing retina were very close to those of B-50/GAP-43. On the other hand, the expression of p35nck5a was restricted to the soma of the neuron in the developing retina. This subcellular localization in the developing retina agreed with that in the developing rat brain. The expression levels of Cdk5 and p35nck5a in retina of rats raised from fetus to 3 weeks after birth in darkness were 36% and 40% respectively, of the baseline for control rats. Moreover, the kinase activity in rats raised in darkness was lower than that in control rats. These data suggest that Cdk5/p35nck5a may play a role in neuronal plasticity in the developing rat retina.
Frameshift mutagenicity and DNA intercalation of 9-amino-2-hydroxyacridine, a rat liver S9 metabolite of 9-aminoacridine.
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1-Methyl-4-phenylpyridinium (MPP+) inhibits mitochondrial oxygen consumption mediated by succinate as well as malate in rat pheochromocytoma PC12 cells.
When rat pheochromocytoma PC12 cells are cultured with 1 mM 1-methyl-4-phenylpyridinium (MPP+), the number of viable cells decreases to one third in 4 days while the number increases ten-fold without MPP+. Oxygen consumption by mitochondria in the presence of malate is inhibited about 80% by the treatment of the cells with MPP+ for 4 days. Unexpectedly, succinate-dependent oxygen consumption is also inhibited to essentially the same extent as malate-dependent one. These results suggest that the impairment of the respiration mediated by succinate as well as malate is important as a mechanism of MPP(+)-induced cell death.
Sulfhydryl drugs reduce neurotoxicity of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) in the mouse.
Striatal levels of dopamine and its metabolites 3-methoxy-4-hydroxy-phenylacetic acid (DOPAC) and homovanillic acid (HVA) decreased 7 days after subcutaneous injection of MPTP (20 mg/kg) to the mouse. Striatal GSH contents decreased and GSSG/GSH ratios increased one hour after subcutaneous administration of MPTP. Pretreatments of both cysteamine (200 mg/kg, s.c.) and dimercaprol (20 mg/kg, i.m.) reduced the MPTP-induced decreases in striatal dopamine, DOPAC and HVA, and also prevented the MPTP-induced decreases in GSH levels and increases in GSSG/GSH ratios. On the other hand, injection of cysteamine did not modify the MPTP-induced decreases in striatal levels of dopamine and its metabolites when it was done 2 hours after MPTP administration. Moreover, pretreatment of cysteamine did not affect striatal concentrations of MPP+ in MPTP-treated mice. These results suggest that sulfhydryl drugs such as cysteamine and dimercaprol may reduce neurotoxicity of MPTP probably via changes in redox cycle of glutathione in the brain.
Synthesis of porphinatoirons having an alkyl amphiphilic chain and their O2 binding properties in lipid bilayers.
Synthesis and characterization of two amphiphilic tetraphenylporphinatoiron complexes having a glycerophosphocholine or an alkyl phosphoserine group are described. These porphinatoiron(II) complexes with 1-dodecyl-2-methyl-imidazole (L2MIm) were efficiently embedded in the bilayer of a phospholipid vesicle due to their high compatibility with lipids, similar to the heme substituted with four alkyl amphiphilic chains (lipid-heme). Oxygen transporting ability of the phospholipid vesicles embedded with hemes were similar to that of hemoglobin (Hb) in red blood cells.
[Blood flow pattern and tumor vascular change following intraperitoneal administration of CDDP in VX2 ovarian tumor].
Following intraperitoneal(IP) administration of cis-diamminedichloroplatinum(CDDP), a dynamic study was conducted on rabbits in Angiotensin II(ATII) induced hypertension to investigate hemodynamic changes in VX2 ovarian tumors. VX2 tumors for transplantation were prepared in Japanese white female rabbits. 15mg/kg of CDDP in 30ml/kg 0.9% NaCl solution was IP administration to the rabbits. The tissue platinum(Pt) concentration was measured and tumor vascular model prepared. The rabbits also received IP combined with 1.2g/kg intravenous administration of sodium thiosulfate(STS), and a hemodynamic study was run on rabbits with ATII induced hypertension two weeks after administration. IP administration resulted in tissue Pt levels as high as 18.50 +/- 8.05 micrograms/g in the VX2 ovarian tumors, with a tiny non-enhanced area appearing in the rim enhancement, consistent with necrotic changes. The tumor time-density curve following IP was characterized by a markedly delayed washout, with many hypovascular portions noted in the vascular model and a clear decrease in tumor vessels measuring 30 microns or less. in contrast, the peak value increased in the time-density curve and there was washout in the excretory phase following ATII induced hypertension. In view of the results, we suggest that a microcirculatory disorder resulting from IP administration could be improved under ATII induced hypertension.
Succinate-dependent lipid peroxidation and its prevention by reduced ubiquinone in beef heart submitochondrial particles.
When succinate and ADP-Fe3+ chelate were added to beef heart submitochondrial particles pretreated with 2-thenoyltrifluoroacetone, an inhibitor of succinate dehydrogenase of the mitochondrial respiratory chain, the formation of malondialdehyde was observed. No formation was observed without the pretreatment. Oxaloacetate competitively inhibited the malondialdehyde formation with an apparent Ki of 3.4 microM. The malondialdehyde formation seemed to be initiated at the location between the p-hydroxymercuribenzoate-sensitive site and the 2-thenoyltrifluoroacetone-sensitive site of the succinate dehydrogenase because it was inhibited by the mercurial. Ubiquinone-10 was rapidly destroyed during the malondialdehyde-forming reaction when it was in the oxidized form, while the ubiquinone was not destroyed and the malondialdehyde formation was abolished when about 50% of the ubiquinone in the particles was in the reduced state. These observations suggest that the succinate-dependent peroxidation is strongly controlled by the redox state of ubiquinone.
Involvement of lipocortin I in development of galactose-induced cataracts in rat.
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Oxygen-transport and solution properties of polylipid/Hb vesicles (ARC).
Polymerized phospholipid vesicle encapsulating Hb (polylipid/Hb vesicle) was prepared from a mixture of unsaturated phospholipid, cholesterol and unsaturated fatty acid and polymerization by gamma-ray irradiation. The average radius of resulting vesicles was 203 +/- 39 nm and concentrated Hb (30 wt%) was efficiently encapsulated. gamma-Ray polymerization proceeds theoretically at low temperature (4 degrees C). P50 and oxygen transporting efficiency were adjusted to 40 mmHg and 40%, respectively. Oncotic pressure and solution viscosity can be controlled to the same values as blood.