PubMed Health⌕ Search

Biomedical subjects

Y Kasé

Publications and source records attributed to Y Kasé.

At least 19 recordsLinked to original sources

Amino acid sequence of sardine calcitonin and its hypocalcemic activity in rats.

A novel calcitonin (CT) was isolated from the spotlined sardine, Sardinops melanostictus. The primary structure of sardine CT was determined as follows: H-Cys-Ser-Asn-Leu-Ser-Thr- Cys-Ala-Leu-Gly-Lys-Leu-Ser-Gln-Glu-Leu-His-Lys-Leu-Gln-Ser-Tyr-Pro-Arg- Thr- Asn-Val-Gly-Ala-Gly-Thr-Pro-NH2. This amino acid sequence was different from that of salmon CT in 4 amino acid residues at positions 8th, 21th, 27th and 29th. As judged by the international method of CT bioassay, hypocalcemic activity of sardine CT was calculated as 4156 IU/mg. When compared for durability of CTs, it was found that sardine CT was significantly more potent than that of salmon CT. This is the first report of CT from a marine species of teleost.

Amino Acid Sequence↗

[Piperidine in the brain: its neurobiological significance].

Piperidine (Pip) is a normal constituent in mammalian brain, affects synaptic mechanism in the CNS, and influences neural mechanisms governing regulation of emotional behavior and extrapyramidal function. In addition, there are enzyme systems within the brain that synthesize and metabolize Pip, and uptake and storage mechanisms for Pip are found in the nerve endings. Pip is highly concentrated in the pituitary and pineal glands, hippocampus and caudate nucleus among the regions of the brain. Levels of Pip in the brain show physiological variations associated with environmental changes. The levels increase significantly under deep anesthesia. The study on the time relations of the change in brain levels of Pip and the anesthetic activity demonstrates that the level increases prior to the loss of the righting reflex and that the elevated level declines prior to the reappearance of the reflex. Furthermore, Pip levels in the lower brainstem reticular formation show sleep-related changes during REM sleep deprivation and REM sleep rebound that followed. Direct administration of Pip into the hippocampus and amygdala of cats with chronically implanted electrodes and a cannula caused resting and calmness in small doses, and seizure discharge accompanied by hyperemotionality in large doses. Administration into the pontine reticular formation induced REM and NREM sleep. Iontophoretic application produced the excitation and inhibition of single neuron activities in the cerebral cortex, hippocampus, caudate nucleus, cerebellum, and pituitary in anesthetized rats. With no anesthesia, Pip caused the inhibitory action in a higher percentage of the neurons studied, compared with the result obtained under anesthesia. Pip-induced excitation and inhibiton were blocked by tetramethylammonium but little affected by scopolamine. The kinetic study of Pip-induced Cl- current in internally perfused neurons of Aplysia, by using the 'concentration camp' and voltage clamp techniques, revealed that Pip acted on at least two components of nicotinic receptor-Cl- channel complex, and further that Pip could discriminate between the transient and the persistent components of ACh-induced Cl- current. These findings suggest that Pip may have close connections with neuroendocrine as well as neuronal functions, and further, with the mechanisms underlying sleep-consciousness and emotional function. Because of piperidine's multiplex pharmacological activities, the study of piperidine may provide a clue to the discovery of new active drugs and to the elucidation of causes of pathological states relating to the brain function.

Anesthesia↗

Pipecolic acid enhancement of GABA response in single neurons of rat brain.

Using unit recording and microelectrophoresis, influence of pipecolic acid (PA), a major metabolite of lysine in the brain, on GABA and glycine responses was studied in the cerebral cortical and hippocampal pyramidal neurons of rats. With small currents, PA had no effect on the single neuron activities but enhanced GABA response without affecting glycine response. The finding provides a new evidence that PA may have a connection with central GABA system.

Action Potentials↗

The effects of piperidine and its related substances on blood vessels.

Piperidine is an endogenous active amine. Intravenous or intra-arterial administration of piperidine produced vasodilation in anesthetized dogs. The vasodilative effect of piperidine was inhibited by atropine (0.3 mg/kg, i.v.). In the hind limb perfusion experiment in anesthetized dogs, piperidine produced vasodilation, while it showed no vasorelaxing action in various isolated canine arterial strip preparations. These results suggest that the vasodilation caused by piperidine may be produced through activation of muscarinic receptors and that piperidine may act on smaller resistance blood vessels but not on large conductance vessels. In addition, pipecolic acid and N-methyl piperidine, the respective precursor amino acid and metabolite of piperidine, were almost inactive, but nipecotic acid was 1/4 to 1/10 times as active as piperidine as vasodilators. It is suggested that the non-substituted amine moiety of piperidine is very important for the manifestation of vasodilative activity and that piperidine might play a role in regulation of peripheral vascular circulation.

Animals↗

Influence of cerebral cortex stimulation upon cough-like spasmodic expiratory response (SER) and cough in the cat.

In 27 pentobarbitalized cats, the influence of electrical stimulation of the cerebral cortex upon the spasmodic expiratory response (SER) was studied and compared with cortical influences on coughing induced by stimulation of the superior laryngeal nerve (sup. laryngeal N.). This cortical influence was evoked by electrical stimulation of the cortical nucleus of amygdala (Aco), and was very similar to coughing accompanying changes in emotional behavior and was depressed more effectively by psychotropics than by centrally acting antitussives like codeine. When anterior cingulate gyrus (ant. cingulate G.) or orbital gyrus (orbital G.) were stimulated simultaneously with Aco or sup. laryngeal N., weak stimulation was sufficient to inhibit SER, while stronger stimuli were needed for the suppression of cough. If the same cortical regions were stimulated after initiation of SER or cough, SER was markedly suppressed but cough little affected. Production of SER was facilitated by simultaneous stimulation of the piriform lobe (piriform L.) or olfactory tract (olfactory T.), whereas cough production was facilitated by simultaneous stimulation of the suprasylvian gyrus. These results suggest that SER and coughing are differently controlled by the cerebral cortex, and that SER is modulated by the limbic cortex, in particular, by ant. cingulate G., orbital G. and piriform L. The mechanism of modulation for SER is discussed.

Amygdala↗

[Pharmacological effects of brovanexine hydrochloride (BR-222) on the respiratory tract system, particularly on the respiratory tract fluid, mucociliary transport and cough].

Pharmacological effects of brovanexine hydrochloride (BR-222), a new expectorant, on the respiratory tract system was studied in comparison with that of bromhexine hydrochloride. 1. When doses ranging from 5 to 40 mg/kg of BR-222 were given orally (p.o.) or intraduodenally (i.d.) to rats, rabbits and dogs, it caused a significant increase in the output volume of respiratory tract fluid (RTF). It was almost as potent as bromhexine, but its pattern of increasing RTF was different from that of bromhexine. The increase in the serous ingredient of RTF after BR-222 administration seemed to be more remarkable than that after bromhexine treatment, though both drugs had no influences on the component ratio of glucose or protein in the RTF of dogs. 2. BR-222 at 10 and 20 mg/kg (i.d.) showed a tendency to reduce the viscosity of RTF in anesthetized dogs and so did bromhexine. A dose of 10 mg/kg (i.d.) of BR-222 also showed a tendency to reduce the viscosity of sputum obtained from the SO2-exposed rabbits. 3. A dose of 6 mg/kg (i.m.) of BR-222 caused a significant increase in the mucociliary transport rate in unanesthetized pigeons; in contrast with this, bromhexine caused a slight decrease. 4. Both drugs given orally showed no antitussive effects when examined by the "coughing dog" method.

Animals↗

Pharmacological studies on dl-glaucine phosphate as an antitussive.

Antitussive effect, toxicity and other related pharmacological properties of dl-1,2,9,10-tetramethoxy-6a,alpha-aporphine phosphate (dl-glaucine phosphate, DL-832) were studied in comparison with those of codeine. Acute toxicity of DL-832 in mice was 2/5 to 7/10 of that of codeine for any routes of i.v., i.p., s.c. and p.o. The antitussive effect as tested by "coughing dog and cat" methods and Domenjoz's method in cats was 1/5 to 4/5 that of codeine, according to the routes administered. Safety margin in antitussive effect was similar to or less than that of codeine. Differing from codeine, levallorphan exerted no influence on the antitussive effect of DL-832. In vitro, DL-832 exerted moderate relaxant actions on normal tone and on contractions induced by histamine and acetylcholine of tracheal muscle. In vivo, it showed a moderate relaxant effect on histamine-induced bronchial constriction. The decrease in the volume of respiratory tract fluid caused by DL-832 was smaller than that by codeine. DL-832 slightly reduced the transportation rate of intratracheal foreign body, although to much lesser extent as compared to codeine. On respiration, blood pressure and heart rate, DL-832 showed depressant effects and moreover it caused changes in ECG. However, all of these effects were similar to and a little weaker than those observed with codeine. DL-832 prolonged hexobarbital sleeping time significantly. Neither analgesic nor anticonvulsant effect was observed. When given in larger doses, DL-832 inhibited intestinal transportation in vivo, although this effect was much weaker than that of codeine. DL-832 showed slight local anesthetic effect.

Anesthetics, Local↗

On the sites of antitussive action of dl-glaucine phosphate.

The sites of antitussive action of dl-1,2,9,10-tetramethoxy-6a,alpha-aporphine phosphate (dl-glaucine phosphate, DL-832) were studied. It was assumed from the following results that DL-832 acts on the cough center per se. a) When DL-832 was given by the routes leading to the brain stem such as the vertebral artery and the cerebello-medullary cistern, far smaller doses were sufficient to obtain the same effect as that by i.v. administration. b) DL-832 showed neither effect on the afferent pathway for cough reflex nor influence on pulmonary stretch receptors. c) It exhibited practically no influence on the efferent pathways for cough reflex, that is, that for innervating respiratory muscle movement as well as that for controlling bronchial muscle tone. d) Decerebration exerted no influence on the antitussive effect. e) DL-832 definitely depressed the potentials of both the recurrent and internal intercostal nerves evoked by the superior laryngeal nerve stimulation. f) In deafferentated and decerebrate cats, DL-832 rather increased the spontaneous discharges of the phrenic nerve, whereas codeine decreased them.

Afferent Pathways↗

Analysis of endogenous pyrrolidine levels by mass fragmentography.

Pyrrolidine, one of biogenic volatile amines, possesses nicotine-like synaptotropic actions on the nervous systems. In the present study, pyrrolidine levels in the tissues were examined by using mass fragmentographic technique. High concentrations of pyrrolidine were found in the seminal vesicle and lung of rabbits. Only trace amounts of pyrrolidine existed in the brain of mice and rats, although higher concentrations were detected in the brain of rabbits. In the rat brain, however, high levels of pyrrolidine were found in the pineal gland, pituitary gland and corpus striatum.

Animals↗

Potentiation of phenobarbital-induced anticonvulsant activity by pipecolic acid.

Pipecolic acid (PA) is an intermediate of lysine metabolism in the mammalian brain. Recent findings suggest a functional connection of PA as neuromodulator in GABAergic transmission. Since many drugs are postulated to produce their effects by interaction with the central GABA system, the influence of PA on the anticonvulsant activity of phenobarbital was examined. Pretreatment of mice with 50 mg . kg-1 of PA potentiated the suppressing effects of the barbiturate on electrically and chemically induced convulsions. However, there was no potentiation of the behavioral effects and hypothermia induced by phenobarbital. PA itself had no or only little effect on the convulsions, motor function and rectal temperature when given in i.p. doses up to 500 mg . kg-1. Intraventricular administration of 500 microgram of PA also did not suppress either type of convulsion, although it produced ptosis, hypotonia, sedation and hypothermia. The results are discussed in relation to GABA system.

Animals↗

Pipecolic acid: a new type of alpha-amino acid possessing bicuculline-sensitive action in the mammalian brain.

Using unit recording and electrophoretic techniques, pharmacological properties of pipecolic acid (PA) were studied in the brain neurons of rats. PA response was blocked by bicuculline more effectively than GABA response but not blocked by strychnine. Stereochemical findings obtained using the HGS-model demonstrated that PA structure is almost the same as a part of bicuculline structure. The present results suggest that PA might be a new type of substance possessing bicuculline-sensitive action. The site of the action of PA was also discussed.

Animals↗

Changes in brain piperidine levels under anesthesia: mass fragmentographic analysis.

Piperidine is a biogenic alicyclic amine possessing potent pharmacological activity. Interest has recently been focussed on its possible role as an endogenous hypnogenic substance. Using a mass fragmentographic technique with deuterium-labelled piperidine as an internal standard, the time relations of the change in brain levels of piperidine and the anesthetic activity of urethane were determined in mice. The brain piperidine level increased prior to the loss of the righting reflex and the elevated level declined prior to the reappearance of the reflex. The change in brain piperidine level correlated with neither that in spontaneous motility nor that in body temperature. The findings favor the idea that piperidine might at least partly regulate the level of consciousness.

Anesthesia↗

A new method for evaluating mucolytic expectorant activity and its application. II. Application to two proteolytic enzymes, serratiopeptidase and seaprose.

Using our new method described in a preceding paper, in vivo effects of two proteolytic enzymes such as serratiopeptidase (SER) and seaprose (SAP) on sputa collected from bronchitis rabbits were examined. SER (20 mg/kg) and SAP (30 mg/kg) significantly reduced the viscosity of sputum (P less than 0.05) at the 1-3-h periods and the 4-6-h periods, respectively, after intraduodenal administration. 50 mg/kg of SER also significantly decreased not only viscosity (P less than 0.001) but also amount of freeze-dried substance (P less than 0.05) of sputum at the 1-3-h periods, but SAP did not affect the amount of dried substance. Both enzymes significantly increased the volume of sputum, probably as the result of liquefaction. Thus, mucolytic expectorant activity of both enzymes can be demonstrated first by the reduction in viscosity and next of the increase in volume of sputa. However, the decrease in amount of freeze-dried substance is not always in accord with the reduction viscosity.

Animals↗

A new method for evaluating mucolytic expectorant activity and its application. I. Methodology.

A new method for evaluating in vivo effect of mucolytic expectorants was devised. In this report, however, the focus is placed on methodology but not on pharmacology. Rabbits with subacute bronchitis were prepared by long-term exposure to minute amounts of SO2 gas. The sputum was quantitatively collected from the animal through a tracheal cannula at suitable time intervals according to the Perry and Boyd's method. As a preliminary study, changes in volume, viscosity and amounts of freeze-dried substance of sputa were examined after intraduodenal administration of water instead of mucolytic expectorants, the effects of which will be described in the subsequent paper, but no significant changes occurred with this test.

Animals↗

Effects of anesthetics on piperidine levels in mouse brain.

Piperidine is one of the biogenic amines possessing potent pharmacological activity. Recent interest has focused on its possible role as an endogenous hypnogenic substance. Using a mass fragmentographic technique with deuterium-labelled piperidine as an internal standard, piperidine concentrations in brains of waking and deeply anesthetized mice were analyzed to compare piperidine levels in the brain under distinctly different states of consciousness. A rapid and significant increase in piperidine concentrations was found in the brain but not in blood of mice anesthetized with any one of pentobarbital, urethane, ether and halothane. The results, showing that CNS depression is accompanied by accumulation of piperidine in the brain, are consistent with the idea that piperidine may have a close connection with the mechanisms controlling the level of consciousness.

Anesthetics↗