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K Inomata

Publications and source records attributed to K Inomata.

At least 73 records · Page 4Linked to original sources

Condensation of oligoglycines with trimeta- and tetrametaphosphate in aqueous solutions.

The dehydration condensation of glycine with trimetaphosphate in aqueous solution has been reinvestigated. Although it has been reported that the condensation of glycine under the alkaline conditions was brought about through the formation of cyclic acylphosphoramidate and hence the condensation of polyglycines could not occur, we found that the condensation of oligoglycines with trimeta- and tetrametaphosphate in aqueous solution are possible through the formation of their acylphosphates under the neutral or weak acidic conditions. Aqueous solutions of 1.0 M glycylglycine and 1.0 M trimetaphosphate in the various pH from 4.0 to 9.0 were incubated at 38 degrees C. The solutions were analyzed by HPLC with ninhydrin reaction system. Tetraglycine and hexaglycine were detected and their maximum yields were given in the reaction carried out around pH 7. They are approximately 15% and 4% after 30 days, respectively. Analogous experiments were performed with tetrametaphosphate. The results showed a similar pH dependence for the condensation, but the yields were about one-tenth of those of corresponding experiments with trimetaphosphate. Relative rates of dimerization of glycine, diglycine and triglycine in the equimolar concentration were also investigated at pH 6.0 at 38 degrees C. The rates for diglycine and triglycine were approximately twice and four times as large as that for glycine. Relevance of the experiments to chemical evolution is discussed.

Chemical Phenomena↗

Ultrastructural changes of synaptic glomeruli following intrathecal injection of distilled water to rats.

We attempted to identify synaptic glomeruli in the spinal substantia gelatinosa of rats by injecting distilled water into the subarachnoid space. The altered synaptic glomeruli were visualized when injecting 1.0 ml of distilled water, though the incidence of degenerative synaptic glomeruli was rare in the case of an injection of 0.5 ml or less. We assume that when the distilled water is injected, there is a sudden change in homeostatic balance in cerebrospinal fluid, following inhibition of nerve impulses in the dorsal root and the altered synaptic glomeruli. Ultrastructurally, the injection of distilled water led to a preferential degeneration of synaptic glomeruli derived from the C-fibers.

Animals↗

Qualitative morphogenesis of synaptic glomeruli in the rat cerebellum.

The synaptic glomeruli of rat cerebellum was investigated at postnatal ages of 1 to 7, 9 and 15 days in an attempt to formulate a morphogenic analysis for synaptic junctional development, using the E-PTA stain for synapses. The synaptic junctions, which are composed of dense projection, intercleft density and postsynaptic band in synaptic glomeruli, were observed at a postnatal age of 6 days. Two types of synaptic junctions, symmetrical and asymmetrical, were recognized.

Animals↗

Amylase secretion by parotid glands and pancreas of diabetic rats during feeding.

Parotid and pancreatic amylase secretion into the gastrointestinal tract during feeding was investigated in diabetic rats. In control rats, both parotid and pancreatic amylase activity decreased after feeding, while the amylase activity present in the gastric and small intestinal contents increased. In diabetic rats, parotid amylase activity, although reduced from control levels, decreased after feeding, and amylase activity of the parotid type appeared in the gastric content. Amylase activities in the diabetic pancreas and small intestinal contents at fasting were markedly reduced and did not show appreciable change with feeding. The total amylase activity in the small intestinal contents after feeding was markedly reduced in the diabetic rats, whereas the ratio of parotid to pancreatic amylase was markedly increased. These results suggest that the amylase secreted from the parotid glands into the gastrointestinal tract during feeding acts not only in the mouth and stomach but also in the small intestine of diabetic rats.

Amylases↗

Fetal alcohol syndrome in rats: conditions for improvement of ethanol effects on fetal cerebral development with supplementary agents.

As a possible preventative measure for brain dysfunction in the fetal alcohol syndrome, the effect of zinc or vitamin E supplementation together with ethanol on the fetal cerebrum was investigated in rats. Contrary to our previously published data showing the good effect of 0.01% zinc with 30% ethanol on fetuses, the administration of 0.01% zinc with 20% ethanol, 0.03% vitamin E with 20% ethanol or 0.02% vitamin E with 10% ethanol during pregnancy did not result in a good effect on the body and cerebral weights of fetuses on gestational day 21. The development of dendritic branches on frontal cerebral neurons in fetuses was decreased in the order of the control, zinc with ethanol and ethanol groups. The concentration and content of alpha-tocopherol were increased, but those of zinc were not, in the fetal cerebrum with the maternal administration of vitamin E or zinc together with ethanol, respectively. These results suggest that the improvement of the brain function might depend on the deficient agent induced by maternal ethanol ingestion.

Animals↗

Alkaline phosphatase activity of the IVth ventricular choroidal epithelium of rats during embryonic and neonatal development.

The cytochemical localization of alkaline phosphatase (AlPase) activity in the developing IVth ventricular choroidal epithelium was investigated in embryonic and neonatal rats. During the initial development of the choroidal primodium the flattened and/or cuboidal epithelial cells of the ventricular roof were changed to columnar cells with well-developed microvilli and apical tight junctions. When compared to AlPase activity on the lateral plasma membranes of the surrounding ependymal cells, these columnar cells of the choroidal primodium revealed activity on the lateral and luminal plasma membranes, but no activity was found on the basal surface of these cells. On the other hand, the epithelial cells in the neonatal choroid plexus showed a continuous morphological alteration from columnar cells with short microvilli to mature cuboidal cells with numerous long microvilli. AlPase activity in immature columnar cells was observed on all plasma membranes, except for the apical junctional area of the lateral surface. With maturing of the choroidal epithelial cells, the activity appeared to be eliminated from the lateral and luminal plasma membranes of the cuboidal cells, and mature choroidal epithelial cells showed activity on the basal surface only. These findings suggest that AlPase may play an important role in the membrane activity of epithelial cells differentiating between the primitive epithelial cells of the ventricular roof and the mature choroidal epithelial cells.

Alkaline Phosphatase↗

Decreased density of synaptic formation in the frontal cortex of neonatal rats exposed to ethanol in utero.

We examined the developing synaptic junctions in the rat frontal cortex in cases of fetal alcohol syndrome, the objective being to determine the synapse-mental retardation relationship. On day 21 of gestation, the ultrastructural synaptic junction revealed no obvious differences between the ethanol-exposed and control rats; however, the number of synapses in ethanol-exposed rats was one third that of the controls. The possible relationship between synaptic density in the frontal cortex and mental development has to be considered.

Animals↗

The fine structure of the node of Ranvier in the rat cerebellar cortex.

The transitional zone between the myelinated and the terminal portions of nerve fibers was electron microscopically investigated in the cerebellar cortex of normal rats. A noteworthy finding in the present study is the existence of a "heminode" consisting of the myelinated and non-myelinated portions, as demonstrated within a single section. The heminode seems to be a characteristic structure in the granular layer of the rat cerebellar cortex.

Animals↗

The protective effects of vitamin E on microcephaly in rats X-irradiated in utero: DNA, lipid peroxide and confronting cisternae.

Fetuses from rats given either water or 0.03% D,L-alpha-tocopherol acetate (vitamin E) as a drinking fluid and X-irradiated with 100 rad on gestational day 13 were examined on gestational day 21. Mean cerebral weight which was significantly reduced by the X-irradiation was increased by vitamin E supplementation but the level did not reach that in sham-irradiated controls. Administration of vitamin E caused an increase in DNA concentration which was significantly reduced by X-irradiation with water treatment. An increase in the mean level of lipid peroxide formation was observed in the water-treated, X-irradiated group in the sample at zero time but not in the vitamin E-treated, X-irradiated group. In the cytoplasm of fetal cerebral neurons from X-irradiated dams with vitamin E supplementation, confronting cisternae were frequently observed between two nuclear envelopes. Confronting cisternae may be considered as a repair mechanism of vitamin E against X-irradiated neuronal damage in the fetal cerebrum. This study provides evidence of the protection by vitamin E of neuronal development in X-irradiated fetuses, through its antioxidant properties, against attacks by free radicals and/or lipid peroxide.

Abnormalities, Radiation-Induced↗

The protective effects of vitamin E against microcephaly in rats X-irradiated in utero: dendritic branches.

Fetuses from rats given either water or 0.03% dl-alpha-tocopherol acetate (vitamin E) as the drinking fluid and X-irradiated with 100R on gestational day (gd) 13 were examined on gd 21. The degree of dendritic branching of frontal cerebral neurons, examined after Golgi staining, was significantly reduced by X-irradiation, and supplementation of vitamin E caused increased branching order numbers in irradiated fetuses. This study provides evidence of the protection by vitamin E of neuronal development in X-irradiated fetuses.

Abnormalities, Radiation-Induced↗

Cytochemical localization of alkaline phosphatase in the ependyma of the rat medulla oblongata.

The ependyma of the IVth ventricle and the central canal of the rat medulla oblongata was investigated using the cytochemical technique for alkaline phosphatase (A1Pase) which revealed two types of ependymal cells in the medulla. The central canal type of the ependymal cell occupying the dorsal part of the central canal in the lower medulla exhibited intense A1Pase activity with light microscopy. These cells had reaction products in all plasma membranes, including the microvilli and the cilia at the luminal cell surface. Some cells appeared to be tanycytes, since the process reached the basement membrane of the parenchymal blood vessel. The ventricular type of ependymal cells, which form the floor of the IVth ventricle and the central canal, contained no reaction products in any structure of the luminal cell surface. The possible relationship between the cerebrospinal fluid and the nervous tissues through the ependymal linings is discussed.

Alkaline Phosphatase↗

Ultracytochemical studies of capillary endothelial cells in the rat central nervous system.

The ultracytochemical localization of eight hydrolytic enzymes (TMPase, 5'-NPase, TPPase, TTPase, Mg++-ATPase, Ca++-ATPase, ALPase and K+-NPPase) and one oxidative enzyme (MAO) was determined in rat brain capillary endothelial cells. In the somal plasma membrane, the enzymatic activity was mainly located in the antiluminal plasma membrane. This finding was appropriate for enzymes possessing the optimal pH at alkaline ranges, except for alkaline phosphatase. Most enzymes investigated showed a positive reaction on the pinocytotic vesicles of capillary endothelial cells. Differences in the intensity of the enzyme activities of the luminal and antiluminal plasma membranes may reflect the polarity in the capillary endothelial cells and relate to blood-brain barrier mechanisms.

Adenosine Triphosphatases↗

The confronting cisternae in neurons in the substantia gelatinosa of the spinal cord of rats and Japanese monkeys.

The neurons in the substantia gelatinosa of the spinal cord of the rat and Japanese monkey were investigated electron microscopically and ultracytochemically. The confronting cisternae observed in the cytoplasm of the majority of gelatinosal neurons in both species were composed of closely apposed parallel cisternae with electron-dense flocculent material, and a continuity with the cisternae of the rough endoplasmic reticulum was often observed. Ultracytochemically, the p-nitrophenylphosphatase (p-NPPase) activity was present in the confronting cisternae, but thiamine monophosphatase (TMPase) and thiamine pyrophosphatase (TPPase) activities were absent. These results indicate that the confronting cisternae are a variant of the rough endoplasmic reticulum.

4-Nitrophenylphosphatase↗