PubMed HealthSearch

Biomedical subjects

S Hishida

Publications and source records attributed to S Hishida.

At least 19 recordsLinked to original sources

Endothelium-dependent relaxation resistant to NG-nitro-L-arginine in rat aorta.

Experiments were designed to determine whether cyclic GMP-independent relaxation is involved in the endothelium-dependent vascular relaxation response of rat aortic strip to acetylcholine. The relaxation response to acetylcholine in the presence of 3 x 10(-4) M NG-nitro-L-arginine was apparent when the precontraction was induced by norepinephrine at 5 x 10(-9) M or 10(-8) M. The relaxation response to acetylcholine resistant to NG-nitro-L-arginine was abolished by 10(-6) M atropine, 10 mM tetraethylammonium, or endothelium removal, but was not inhibited by 10(-5) M indomethacin, 3 x 10(-6) M oxyhemoglobin or 10(-5) M glibenclamide. The response was virtually abolished when the vascular strips had been preconstricted with 20 mM KCl. The increase in vascular cyclic GMP levels induced by 10(-5) M acetylcholine was completely abolished by 3 x 10(-4) M NG-nitro-L-arginine. These results suggest that acetylcholine-induced endothelium-dependent relaxation resistant to NG-nitro-L-arginine in rat aorta is unmasked when the precontractile force is caused by lower concentrations of norepinephrine and the relaxation is mediated by a cyclic GMP-independent mechanism, possibly an endothelium-derived hyperpolarizing factor.

Acetylcholine

Increased endothelium-dependent vascular relaxation in ethanol-fed rats.

We investigated the mechanism underlying increased relaxation of aortic strips to acetylcholine in rats chronically treated with ethanol. Rats were divided into three groups and maintained on liquid diets containing ethanol (35% of total calories) as the ethanol-fed group or an equicaloric volume of sucrose instead of ethanol as the sucrose-fed group for 10 weeks. The control group was also maintained on modified American Institute of Nutrition diet for the same period. Vascular strips of isolated rat aortas were mounted in organ chambers to record isometric tension. The endothelium-dependent relaxation responses to acetylcholine and calcium ionophore A23187 were greater in ethanol-fed rats than in control and sucrose-fed rats. However, the relaxation response to sodium nitroprusside or nifedipine did not differ among the three groups. Acetylcholine, calcium ionophore A23187, and sodium nitroprusside caused an increase in the cGMP contents of rat aortic strips that was similar among the three groups. These results suggest that a cGMP-independent relaxation mechanism is involved in the increased relaxation response to acetylcholine after chronic treatment with ethanol.

Acetylcholine

Vasorelaxant effects of oxpentifylline and theophylline on rat isolated aorta.

The mechanism of the relaxation response of rat aorta to the phosphodiesterase inhibitors oxpentifylline and theophylline was studied. Oxpentifylline induced a greater vasorelaxation response in the intact strips than in those without endothelium. The endothelium-dependent relaxation response to oxpentifylline was inhibited by nitro-L-arginine but not by indomethacin, and the endothelium-independent relaxation response was potentiated by the combination with isoprenaline but not sodium nitroprusside. Theophylline induced a similar relaxation response in vascular strips with and without endothelium. The relaxation response to theophylline was not inhibited by indomethacin or nitro-L-arginine in intact strips, but was potentiated by combination with isoprenaline or sodium nitroprusside in the denuded strips. These results suggest that the two phosphodiesterase inhibitors oxpentifylline and theophylline induce vasorelaxation by different mechanisms. Oxpentifylline can induce both endothelium-dependent relaxation, which is probably mediated by an endothelium-derived relaxing factor, and endothelium-independent relaxation, which may be due to an inhibitory action on phosphodiesterase of vascular smooth muscle. In contrast, theophylline can induce endothelium-independent relaxation alone, without modulation by the endothelium.

Animals

[A case of sudden death of a patient with hypopituitarism].

We report a 29-year-old woman who died due to pituitary insufficiency. After a normal delivery 2 years previously, she had suffered from amenorrhea and displayed decreased libido. She was discovered in convulsions by her husband when he returned home, and was admitted to an emergency hospital. Despite various treatments, she died. Her blood glucose level on admission was low, 32 mg/dl. Autopsy findings showed thin public hair and almost no axillary hair. The right and left adrenal glands weighed 1.7 g and 1.2 g, respectively. Histologically, the anterior pituitary gland showed severe bleeding and necrosis, and the middle lobe showed lymphocytic infiltration; the posterior lobe was almost normal. The adrenal glands showed marked atrophy of the cortex and deposition of calcium in the medulla. The thyroid gland, which weighted 15 g, showed diffuse interstitial lymphocytic infiltration, indicative of chronic lymphocytic thyroiditis. Atrophy of the ovaries and uterine endometrium was also observed. These findings indicated that death had been due to pituitary insufficiency. The histopathology of the pituitary, which showed lymphoid hypophysitis, and its association with lymphoid thyroiditis suggested that the pituitary insufficiency was not due to ischemic injury after delivery, a condition which can result from massive hemorrhage, but rather had arisen as a result of an autoimmune process.

Death, Sudden

[Inhibitory effect of fentanyl citrate on endothelium-dependent relaxation in rat aorta].

We studied the effect of fentanyl on the endothelium-dependent vascular responses in isolated rat aortic strips. Fentanyl depressed the endothelium-dependent relaxation induced by acetylcholine but not that induced by the calcium ionophore, A23187. Endothelium-independent relaxation in response to sodium nitroprusside (SNP), a soluble guanylate cyclase activator, was not depressed by fentanyl. On the other hand, fentanyl depressed the increase in cyclic GMP level stimulated by acetylcholine but not that stimulated by A23187 or SNP. Furthermore, fentanyl depressed the vasocontraction by acetylcholine but not that by histamine or KCl in isolated pig coronary artery strips without endothelium, suggesting that fentanyl can inhibit endothelium-independent contraction via muscarinic receptor on smooth muscle cells. These results suggest that fentanyl can inhibit endothelium-dependent vasorelaxation via endothelium-derived relaxing factor (EDRF) by acting on endothelial cells but not on smooth muscle cells. The inhibitory effect of fentanyl on the relaxation probably occurs at the level of muscarinic receptor on endothelial cells or at a site before biochemical pathways converting L-arginine to EDRF.

Acetylcholine

Mechanism of inhibitory action of ethanol on endothelium-dependent relaxation in rat aorta.

Using isolated rat aortic strips, we investigated the inhibitory effect of ethanol on endothelium-dependent relaxation induced by acetylcholine, especially on that mediated by endothelium-derived relaxing factor. Ethanol depressed the relaxation induced by acetylcholine and inhibited the increase in the content of intravascular cyclic GMP induced by acetylcholine, but not that induced by sodium nitroprusside or calcimycin. Ethanol also inhibited the acetylcholine-induced relaxation resistant to nitro-L-arginine. These results suggest that ethanol can inhibit the cyclic GMP-dependent relaxation mediated by endothelium-derived relaxing factor. Furthermore, ethanol seems to depress the cyclic GMP-independent relaxation mechanism.

Acetylcholine

Effects of daily administration of methamphetamine on multiple active/passive avoidance performance in rats.

The effects of daily methamphetamine (M-Amp) treatment with (2 mg/kg/day, i.p.) were examined on multiple active/passive avoidance performance (MAP) in rats. After avoidance training, the animals were given M-Amp every day; on the days of learning sessions, which were on alternate days, the drug was administered at 15 min before the session. Daily administration of M-Amp produced enhancement of the number of respondings (running) as an excitatory dimension of behavior, disruption of immobilities as an inhibitory dimension, and impairment of successes as a discriminatory dimension, when compared with saline-treated rats. Following M-Amp withdrawal, recovery from these damages of learned behavior was observed, except the deterioration in the discriminative dimension. In conclusion, the MAP paradigm is good for assessing the behavioral effects of M-Amp treatment, making it easy to distinct the behavioral effects of M-Amp into excitatory-inhibitory and discriminative dimensions. It is important to distinguish the behavioral components induced by M-Amp, since the damage of learned avoidance performance consists of different dimensions in the M-Amp-treated rats. Impairment of discriminative behavior appears to demonstrate an attentional deficit, which may explain the behavioral disorderliness in M-Amp abusers who display no disturbance of apparent consciousness. These results are discussed with association of brain monoamine alterations.

Animals

Acetaldehyde-induced formation of 1-methyl-1,2,3,4-tetrahydro-beta-carboline-3-carboxylic acid in rats.

1-Methyl-1,2,3,4-tetrahydro-beta-carboline-3-carboxylic acid (MTCA) is one of the metabolites of peak E substance, which, based on epidemiological studies, has been thought to be a possible causative agent of the tryptophan-induced eosinophilia-myalgia syndrome. Acute ethanol and L-tryptophan administration in rats pretreated with cyanamide resulted in the formation of MTCA. Concentrations of MTCA were estimated at 27 ng/g in blood and 33 ng/g in kidneys. Chronic treatment with a liquid diet containing ethanol as 36% of the total calories for 6 weeks increased these levels. MTCA was barely observed in rats that had received acute or chronic ethanol in the absence of cyanamide, or in the cyanamide-tryptophan controls. Cyanamide facilitation of ethanol-dependent MTCA biosynthesis may be due to a potentiation of the blood level of acetaldehyde derived from ethanol. The blood acetaldehyde level in rats that had been acutely treated with cyanamide, ethanol and L-tryptophan was 348 microM, and averaged 503 microM in rats that received the same treatment after chronic consumption of ethanol. In contrast to the above findings, L-tryptophan intake promoted the formation of 1,2,3,4-tetrahydro-beta-carboline-3-carboxylic acid (TCCA) in rats. This is the first report of MTCA in mammalian tissue during tryptophan and ethanol metabolism.

Acetaldehyde

[A case of sudden death of a patient with glycogen storage disease type 1--delayed aftereffect of a traffic accident].

A case of sudden death of a 22-year-old man with glycogen storage disease type 1 is reported. Autopsy revealed striking hepatomegaly with round edges. The liver was yellowish and weighed 2840 g. Histologic findings showed excessive deposition of PAS-positive material in the hepatocytes and in the proximal renal tubular epithelium cells, which means the accumulation of glycogen. A mass surrounding splenic artery was seen in the hilus of the spleen. There was about 2000 ml of fresh blood and clots in the abdominal cavity due to bleeding from a ruptured mass. The mass was composed of a hematoma with connective tissue surrounding it and was a pseudoaneurysm. The mass was considered to have been formed from bleeding due to injury to a branch of a splenic artery. Consideration of these findings led to the conclusion that death was caused by loss of blood from rupture of the mass and that the mass was formed due to injury of the branch of the splenic artery in a traffic accident 2 years earlier but not the pathogenesis of glycogen storage disease.

Accidents, Traffic

[Effect of ethanol on isometric tone of aorta from guinea pig].

Using aortic strips isolated from guinea pig, effects of ethanol on vascular smooth muscle tone were studied. Low concentrations (5, 50, 100 mM) of ethanol potentiated norepinephrine and serotonin-induced contractions, but not KCl-induced one. Ethanol (100 mM) potentiated calcium-induced contraction in the presence of norepinephrine, but not that in the presence of KCl. Ethanol (100 mM) showed no effects on norepinephrine-induced contraction in the calcium-free medium. Ethanol (100 mM) augmented 45Ca uptake stimulated with norepinephrine, but not that with KCl. Ethanol at the higher concentration of 600 mM by itself induced contraction, which was inhibited by trifluoperazine or in the calcium-free medium, but not by phentolamine, diphenhydramine, methysergide, indomethacin or nifedipine. Ethanol (600 mM) directly increased 45Ca uptake, which was not affected by nifedipine. These findings indicate that the low concentrations of ethanol potentiate receptor-mediated vascular smooth muscle contraction and the higher concentration of ethanol directly contracts it via facilitation of transmembranous calcium influx.

Animals

Effects of methamphetamine and ethanol on learning and brain neurotransmitters in rats.

The interactions of methamphetamine (MAMP) and ethanol (EtOH) on multiple active/passive avoidance performance and neurotransmitters in different brain regions were examined. After the acquisition schedules, rats were retrained under the influence of MAMP (2 mg/kg/day, IP), EtOH (2 g/kg/day, IP), and in combination over 20 days in rats (n = 6 per group). As a function of progress of drug treatment, MAMP-EtOH mixtures disrupt the learned avoidance performance and produced severe impairment of discriminative behavior caused by enhancement of excitability induced by MAMP when compared with MAMP only. At withdrawal, MAMP-EtOH-induced impairments of performance significantly persisted, whereas MAMP-only-induced impairments slightly recovered. At the eleventh day drug withdrawal, MAMP-only-induced alterations of neurotransmitter levels at different regions were alleviated by EtOH, but these did not return to normal levels. These data provide support for the direct antagonistic and indirect additive interactions following constant daily treatment with a combination of MAMP and EtOH. EtOH may be an important factor in MAMP abuse to MAMP-induced psychosis or neurotoxicity.

Animals

Effect of aging on contractile response to KCl, norepinephrine and 5-hydroxytryptamine in isolated human basilar artery.

1. We investigated the effect of aging on contractile response in human basilar artery. 2. The maximal contraction caused by KCl, norepinephrine and 5-hydroxytryptamine decreased with age. 3. ED50 value for norepinephrine or 5-hydroxytryptamine did not correlate with age. 4. These results suggest that the decrease in contractile response is due to nonspecific changes in the medial structure of the artery.

Adolescent

Vasorelaxant effect of trapidil on human basilar artery.

We have investigated the vasorelaxant effect of trapidil on human isolated basilar artery. Trapidil (10(-5)-10(-4) M) dose-dependently caused relaxation in vascular strips with or without endothelium, with no significant difference between the two types of strips. The relaxation responses were not inhibited by atropine, propranolol or methylene blue. Trapidil increased the concentration of 6-keto-PGF1 alpha, a prostacyclin degradation product, released from an artery ring in the incubation medium, but trapidil-induced relaxation was not inhibited by indomethacin. Pretreatment of vascular strips with 10(-5) M trapidil increased the relaxation responses to forskolin and dibutyryladenosine cyclic monophosphate but not to sodium nitroprusside or 8-bromoguanosine cyclic monophosphate. Trapidil induced a significant increase in the cAMP concentration but not in the cGMP concentration in artery strips. These results suggest that the relaxation response to trapidil is not caused by prostacyclin release or an increase in cGMP in the smooth muscle, but possibly by an increase in the cAMP levels, probably via an inhibitory effect on cAMP phosphodiesterase.

6-Ketoprostaglandin F1 alpha

Impairment of endothelium-dependent relaxation in human basilar artery after subarachnoid hemorrhage.

BACKGROUND AND PURPOSE: The goal of this study was to determine the alterations in vascular reactivity of human basilar artery after subarachnoid hemorrhage. METHODS: Human basilar arteries were obtained from subjects who died within 1 day after subarachnoid hemorrhage and control subjects who died from causes other than brain involvement. Basilar artery strips were suspended for isometric tension recording in Krebs-Ringer solution. Morphometric study was also carried out on paraffin-embedded sections stained with van Gieson's elastica stain of preselected sites from the basilar arteries. The intimal and medial area and the intimal index ([intimal area/area circumscribed by internal elastic lamina] x 100) were evaluated. RESULTS: Contractile responses to KCl, norepinephrine, and 5-hydroxytryptamine did not differ between subarachnoid hemorrhage and control groups. The endothelium-dependent relaxation responses to thrombin, bradykinin, and calcium ionophore A23187 were less for the subarachnoid hemorrhage group than for the control group. However, the endothelium-independent response to sodium nitroprusside of the subarachnoid hemorrhage group did not differ from that of the control group. Morphometric measurements were comparable between the two groups. CONCLUSIONS: These results suggest that the decreased relaxation responses to thrombin and bradykinin occur at the level of endothelial cells and not smooth muscle cells and that decreased relaxation may be involved in delayed vasospasm after subarachnoid hemorrhage. Although the decreased relaxation was observed within 1 day after subarachnoid hemorrhage, a period in which delayed spasm does not occur, this time difference may be dependent on the severity of bleeding after rupture of an aneurysm.

Adult

Development of tolerance to inhibitory effect of ethanol on endothelium-dependent vascular relaxation in ethanol-fed rats.

Rats were maintained on liquid diets containing ethanol (35% of total calories) or an equicaloric volume of sucrose instead of ethanol for 10 wk. Vascular strips of isolated rat aortas were mounted in organ chambers to record isometric tension. Ethanol in vitro inhibited the endothelium-dependent relaxation responses to acetylcholine and ATP in both pair-fed control and ethanol-fed rats. The inhibitory effect of ethanol was greater in the pair-fed rats. In addition, the magnitudes of these relaxation responses in the absence of ethanol in vitro in pair-fed rats were similar to those in the presence of ethanol in ethanol-fed rats. In the absence of ethanol in vitro, the relaxations in response to acetylcholine and ATP in the ethanol-fed rats were greater than in the pair-fed rats. These results suggest that chronic ethanol consumption can induce tolerance to ethanol-induced inhibition of endothelium-dependent relaxation responses to acetylcholine and ATP, and that the relaxations can become adapted to the presence of plasma levels of ethanol, which may inhibit the relaxation in vivo. The augmented relaxation in the ethanol-fed rats may result from the mechanism causing tolerance to the inhibitory effect of ethanol.

Acetylcholine

Possible involvement of kinins in cardiovascular changes after alcohol intake.

Japanese healthy male subjects were divided into two groups, i.e., a normal aldehyde dehydrogenase (ALDH) group with a low Km isozyme of ALDH for acetaldehyde, and a deficient group without it. After intake of 0.4 g/kg alcohol, the deficient group showed high levels of blood acetaldehyde, facial flushing including an increased pulse rate and a fall in diastolic blood pressure, while the normal group did not manifest these changes. In the deficient group, the total kininogen concentration gradually decreased after alcohol intake due to a reduction in low molecular weight kininogen, and plasma prekallikrein remained unchanged. The normal group showed no significant changes in any of these values after alcohol intake. In an in vitro study with pooled plasma, the low concentrations of urinary kallikrein caused a decrease in the low molecular weight kininogen only. These results suggest that kinins released by acetaldehyde-induced activation of glandular kallikreins are associated with the changes in cardiovascular symptoms in deficient group which display flushing after alcohol intake.

Acetaldehyde

Influence of the endothelium on vascular responses of aortae from endotoxic rats.

Intraperitoneal injection of endotoxin diminished the in-vitro contractile response of rat aorta to phenylephrine or clonidine, whether the intimal layer was disrupted or not. The relaxing responses to acetylcholine and sodium nitroprusside in aorta precontracted with 10(-6) M phenylephrine were similar between control and endotoxic groups. However, when the precontractile force following phenylephrine was adjusted to an equivalent level, the relaxing responses to acetylcholine and sodium nitroprusside were diminished in the endotoxic aorta compared with the controls. There was no significant difference between the two groups in the increase in cyclic GMP levels induced by acetylcholine or by sodium nitroprusside. These results suggest that aortae from endotoxic rats show decreased responsiveness to alpha-adrenoceptor stimulation not because of enhancement of the endothelium-derived relaxing factor but because of abnormality in the vascular smooth muscle which is not specific for subtypes of the alpha-adrenoceptor.

Acetylcholine

Effect of aging on endothelium-dependent vascular relaxation of isolated human basilar artery to thrombin and bradykinin.

Using strips of human basilar arteries mounted in organ chambers to record isometric tension, we investigated vascular reactivity to thrombin and bradykinin. Both agents produced endothelium-dependent relaxation of basilar artery strips precontracted with phenylephrine but had no effect on resting tension in strips with or without endothelium. The relaxations caused by thrombin were abolished by antithrombin III/heparin, hirudin, and MD805. Thrombin but not bradykinin caused complete tachyphylaxis toward a second exposure. Indomethacin did not inhibit the relaxations induced by thrombin or bradykinin, whereas bromophenacyl bromide and methylene blue did. Aging decreased the relaxation induced by thrombin but did not affect the concentration needed to reach 50% maximal relaxation, nor did it affect the maximal relaxation in response to bradykinin, calcium ionophore A23187, and sodium nitroprusside. Our results suggest that thrombin and bradykinin produce endothelium-dependent relaxations mediated by an endothelium-derived relaxing substance and that the relaxation caused by thrombin is mediated by a proteolytic action on endothelial cells. The decrease in relaxations in response to thrombin with increasing age might be due to a decrease in the number or sensitivity of thrombin receptors on endothelial cells.

Adolescent