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Biomedical subjects

A Baba

Publications and source records attributed to A Baba.

At least 73 records · Page 4Linked to original sources

Adrenal tumor producing 11-deoxycorticosterone, 18-hydroxy-11-deoxycorticosterone and aldosterone.

A case of adrenal tumor producing 11-deoxycorticosterone, 18-hydroxy-11-deoxycorticosterone and aldosterone is reported. A 55-year-old woman had hypertension, hypokalemia, low plasma renin activity and an adrenal tumor. The plasma level of aldosterone was normal, and the levels of 11-deoxycorticosterone and 18-hydroxy-11-deoxycorticosterone were extremely high. After the tumor removal, the plasma level of aldosterone decreased and plasma levels of 11-deoxycorticosterone and 18-hydroxy-11-deoxycorticosterone were normalized. The tumor was benign adenoma and the production of steroid hormones was under control of adrenocorticotropic hormone. The enzyme activity of 21-hydroxylation in the tumor was elevated and that of 11 beta-hydroxylation was decreased compared with the adjacent tissue.

18-Hydroxydesoxycorticosterone

[Usefulness of the newly developed transtelephonic electrocardiogram and computer-supported response system].

The "Cardiophone System" is a system designed to expand the relationship between patients and medical services using a transtelephonic electrocardiogram and computer-assisted answering system. The transtelephonic electrocardiogram, or so-called "Cardiophone", developed by Nihon Kohden, Inc., allows the patients to carry a "Cardiophone" to record electrocardiograms during paroxysmal occurrences of palpitation, chest pain, and other symptoms. The Cardiophone may function as a terminal of the host computer at the hospital, which stores the electrocardiogram and print it as soon as the computer receives the electrocardiogram over the phone. Cardiologists can examine the electrocardiogram immediately after it is printed. Cardiologists and operators are on duty 24 hours a day. Judgments based on the electrocardiogram are made by the cardiologist on duty, and stored in the computer by the operator. The patients may listen to the judgment over the phone within 30 min of sending the electrocardiogram. In the case of potentially lethal findings on the electrocardiogram, the cardiologist on duty calls the patient directly to give a medical advice. We studied 184 outpatients who were enrolled in the Cardiophone System of our hospital. The average number of transtelephonic electrocardiograms was 10 per day. Abnormal electrocardiographic changes were observed in 42 patients, and the diagnoses were as follows: paroxysmal supraventricular tachycardia in 18 patients, paroxysmal atrial fibrillation in 17, ventricular tachycardia in 3, and angina in 7. Among seven patients in whom ST changes were documented by Cardiophone, six were diagnosed as variant angina. In several patients with diagnoses already made by Holter monitoring, the Cardiophone was used to monitor the drug effects and the correlations between symptoms and arrhythmic events. We conclude that the Cardiophone System is useful for diagnosing the causes of paroxysmal cardiac symptoms in some patients and for improving home medical services.

Adolescent

Novel benzodioxan derivative, 5-[3-[((2S)-1,4-benzodioxan-2-ylmethyl) amino]propoxy]-1,3-benzodioxole HCl (MKC-242), with anxiolytic-like and antidepressant-like effects in animal models.

Behavioral effects of MKC-242 (5-{3-[((2>)-1,4-benzodioxan-2-ylmethyl)amino] propoxy}-1,3-benzodioxole CHl), a novel and selective serotonin 1A receptor agonist, were investigated in rats and mice and compared against those of diazepam, buspirone and tandospirone. MKC-242 (0.0625-0.25 mg/kg, p.o.) significantly increased punished drinking in water-deprived rats. The reference compounds also increased punished drinking at doses of 10 to 40 mg/kg, p.o. The increase by MKC-242 was blocked by N-tert-butyl-3-(4-(2-methoxypenyl)piperazin-1-yl) -2-phenylpropanamide, a serotonin 1A receptor antagonist. MKC-242 (0.1-0.5 mg/kg, p.o.) also increased social interaction under high light and unfamiliar conditions in rats. It had weak benzodiazepine-like side effects in mice. MKC-242 (1, 3 mg/kg, p.o.) attenuated the reduction of locomotion caused by restraint stress in rats, the same effects were observed on both buspirone (100 mg/kg, p.o.) and tandospirone (100 mg/kg, p.o.). In the forced swimming test in rats, MKC-242 (0.3-3 mg/kg, i.p.), 8-hydroxy-2-(di-n-propylamino) tetralin (1, 3 mg/kg, i.p.) and amitriptyline (30 mg/kg, i.p.) reduced immobility, although diazepam, buspirone and tandospirone did not. The reduction by MKC-242 and 8-OH-DPAT was antagonized by N-tert-butyl-3-(4-(2-methoxyphenyl)piperazin-1-yl) -2-phenylpropanamide. Moreover, the reduction was also blocked by 1-(2--pyrimidinyl)piperazine (1-PP), a common metabolite of buspirone and tandospirone. These findings suggest that MKC-242 possesses potent anxiolytic and antidepressant properties that are mediated via an activation of serotonin 1A receptors.

Animals

[Na+ -Ca2+ exchanger].

Na+ -Ca2+ exchanger couples the translocation of Na+ in one direction with that of Ca2+ in the opposite direction, and it is considered to have an important role in Ca2+ homeostasis in several cells. There are two types of Na+ -Ca2+ exchangers (cardiac and rod outer segment types). The cardiac clone (NCX1) is modeled to have an amino-terminal cleaved signal sequence, 11 transmembrane segments, and a large hydrophilic cytoplasmic domain. Several isoforms generated by alternative splicing of NCX1 and an isoform (NCX2), a product of a different gene, are present in different tissues. This brief review focuses on the physiological importance, molecular aspects and the pathological roles of the exchanger, especially NCX1.

Amino Acid Sequence

The value of positive nitrites in screening asymptomatic bacteriuria amongst Malaysian school children.

It is important to diagnose and treat urinary tract infection in children before renal damage has taken place. Hence a new screening procedure will be of interest. This study was conducted to evaluate the efficacy of urinary nitrite in screening for asymptomatic bacteriuria among school children compared to a more traditional method. Of the 44,816 school children investigated 240 (0.54%) students were judged to have bacteriuria ie 82 (0.19%) in boys and 158 (0.35%) in girls. Escherichia coli was the commonest organism isolated (28.75%). Urine dipstick testing for nitrite was found to have a low sensitivity and positive predictive value. While urinalysis for pyuria was noted to have a sensitivity of 77.9%, a specificity of 95.8% and a negative predictive value of 99.9%.

Bacteriuria

Structure of the gene encoding the mouse pituitary adenylate cyclase-activating polypeptide receptor.

The PACAP-R gene, encoding the mouse pituitary adenylate cyclase-activating polypeptide receptor (PACAP-R), has been isolated and its structural organization has been determined. PACAP-R spans more than 50 kb and is divided into 18 exons. PACAP-R contains two alternative exons encoding the putative third intracellular loop, as found in the rat PACAP-R. The proximal promoter region is highly G+C rich and lacks an apparent TATA box, but contains a CCAAT box and two potential Sp1-binding sites.

Animals

Antidepressant-like effect by postsynaptic 5-HT1A receptor activation in mice.

The antidepressant-like effect of 5-(3(-)[((2S)-1,4-benzodioxan-2-ylmethyl)amino]propoxy)-1,3- benzodioxole (MKC-242), a novel 5-HT1A receptor agonist, was studied in the forced swimming test in mice injected i.c.v. with 5,7-dihydroxytryptamine to destroy 5-HT neurons or treated with p-chlorophenylalanine to inhibit 5-HT synthesis. MKC-242 reduced immobility time of mice pretreated with vehicle and these drugs, although it did not affect their locomotor activity. The anti-immobility effect was antagonized by 5-HT1A receptor antagonists such as propranolol and N-tert-butyl-3-(4-(2-methoxyphenyl)piperazin-1-yl)-2-phenylpropana mide. These findings support the hypothesis that postsynaptic 5-HT1A receptors play an important role in the antidepressant-like effect of 5-HT1A receptor agonists.

5,7-Dihydroxytryptamine

Expression of glutamate transporters in cultured glial cells.

Expression of mRNAs for glutamate transporter (GLT-1) and glutamate aspartate transporter (GLAST) was investigated in three different types of purified glial cells by the reverse transcriptase-polymerase chain reaction (RT-PCR). Cultured astrocytes, oligodendrocytes, and microglia expressed mRNAs for GLAST and GLT-1; mRNA for GLAST was expressed more prominently than that for GLT-1 in astrocytes. Oligodendrocytes and microglia expressed mRNAs for both GLT-1 and GLAST equally, but the expression in microglia was not prominent, suggesting glutamate uptake is not essential in microglia. In astrocytes cultured from different brain regions, GLAST mRNA was equally expressed. GLT-1 mRNA was also detected in these astrocytes, but the expression level was lower than that of GLAST.

ATP-Binding Cassette Transporters

cDNA cloning of a thromboxane A2 receptor from rat astrocytes.

A cDNA clone for rat thromboxane (TX) A2 receptor was obtained from cultured astrocytes. The cDNA encodes a protein of 341 amino acids with seven putative transmembrane domains. The receptor is homologous with mouse and human TXA2 receptors at 92.7% and 71.8%, respectively. Expression of messenger RNA for the receptor was examined by reverse transcriptase-polymerase chain reaction, showing ubiquitous expression in brain glial cells such as astrocytes, oligodendrocytes and microglia.

Amino Acid Sequence

NE-100, a novel sigma ligand: effects on [3H]TCP binding to intact primary cultured neuronal cells.

N,N-dipropyl-2-[4-methoxy-3-(2-phenylethoxy)phenyl]-ethylamine monohydrochloride (NE-100), a potent and highly selective sigma ligand, haloperidol, (+)pentazocine, 1-(cyclopropyl-methyl)-4-(2'-(4"-fluorophenyl)-2'-oxoethyl) piperidine HBr (DuP 734) and 4-(2'-(4"-cyanophenyl)-2'-oxoethyl) 1-(cyclopropylmethyl)piperidine (XJ 448) inhibited carbachol-induced inositol 1,4,5-triphosphate (IP3) formation in a dose-dependent manner. The rank order of potency of the tested drugs for inhibition was: haloperidol > or = (+)pentazocine = NE-100 > DuP 734 = XJ 448. In addition, the effects of NE-100, DuP 734 and XJ 448 upon [3H]TCP binding were examined using primary cultured neuronal cells derived from the fetal rat telencephalon. These drugs inhibited [3H]TCP binding to intact cells. The ability of the test drugs to inhibit [3H]TCP binding to primary cultured neuronal cells was in the order: NE-100 > DuP 734 > XJ 448. These observations suggest that NE-100 indirectly modulates the N-methyl-D-aspartate (NMDA)/phencyclidine (PCP) receptor ion channel complex (NMDA receptor-ion channel), presumably through sigma-1 sites.

Animals

Intracellular ascorbic acid inhibits the Na(+)-Ca2+ exchanger in cultured rat astrocytes.

The effect of ascorbic acid on Ca2+ uptake in cultured rat astrocytes was examined in the presence of ouabain and monensin, which are considered to drive the Na(+)-Ca2+ exchanger in the reverse mode. Ascorbic acid at 0.1-1 mM inhibited Na(+)-dependent Ca2+ uptake significantly but not Na(+)-dependent glutamate uptake in the cells, although the inhibition required pretreatment for more than 30 min. The effect of ascorbic acid on the Ca2+ uptake was blocked by simultaneous addition of ascorbate oxidase (10 U/ml). Na(+)-dependent Ca2+ uptake was also inhibited by isoascorbate at 1 mM but not by ascorbate 2-sulfate, dehydroascorbate, and sulfhydryl-reducing reagents such as glutathione and 2-mercaptoethanol. The inhibitory effect of ascorbic acid was observed even in the presence of an inhibitor of lipid peroxidation, o-phenanthroline, or a radical scavenger, mannitol, and the degrading enzymes such as catalase and superoxide dismutase. On the other hand, the inhibitory effect was not observed under the Na(+)-free conditions that inhibited the uptake of ascorbic acid in astrocytes. When astrocytes were cultured for 2 weeks in a medium containing ascorbic acid, the content of ascorbic acid in the cells was increased and conversely Na(+)-dependent Ca2+ uptake was decreased. These results suggest that an increase in intracellular ascorbic acid results in a decrease of Na(+)-Ca2+ exchange activity in cultured astrocytes and the mechanism is not related to lipid peroxidation.

Animals

Nitroprusside and cyclic GMP stimulate Na(+)-Ca2+ exchange activity in neuronal preparations and cultured rat astrocytes.

The effects of nitric oxide (NO)-generating agents on 45Ca2+ uptake in rat brain slices and cultured rat astrocytes were studied in the presence of monensin, which is considered to drive the Na(+)-Ca2+ exchanger in the reverse mode. Sodium nitroprusside (SNP) at > 10 microM increased monensin-stimulated Ca2+ uptake in the slices, although it did not affect high K(-)-stimulated Ca2+ uptake. Another NO donor, 3-morpholinosydnonimine, was effective. The effect of SNP was antagonized by hemoglobin (50 microM), a NO scavenger, and mimicked by 8-bromo-cyclic GMP (100 microM). In rat brain synaptosomes, SNP increased monensin-stimulated Ca2+ uptake, but it did not affect high K(+)-stimulated Ca2+ uptake. 8-Bromocyclic GMP, but not SNP, increased Na(+)-dependent Ca2+ uptake significantly in synaptic membrane vesicles in the absence of monensin. In cultured rat astrocytes, SNP and 8-bromo-cyclic GMP increased Ca2+ uptake in the presence of ouabain and monensin, which were required for the Ca2+ uptake in the cells. These findings suggest that NO stimulates the Na(+)-Ca2+ exchanger in neuronal preparations and astrocytes in a cyclic GMP-dependent mechanism.

Animals

Increase in chloride-dependent L-glutamate transport activity in synaptic membrane after in vitro ischemic treatment.

The effect of energy failure on Cl(-)-dependent L-glutamate (L-Glu) transport was examined with an in vitro preparation. Rat brain slices were incubated in low oxygen and glucose-deprived medium (in vitro ischemia), and a synaptic membrane fraction was prepared from the slices. Cl(-)-dependent L-[3H]Glu uptake into vesicles increased about twofold after 20 min of in vitro ischemia. The increased L-[3H]Glu uptake was inhibited by L-Glu, DL-2-amino-4-phosphonobutyrate, L-homocysteic acid, L-cystine, 4,4'-diisothiocyano-2,2'-disulfonic stilbene, and removal of Cl-. Uptakes of Na(+)-dependent L-[3H]Glu, [3H]GABA, and [3H]taurine were not changed by the in vitro ischemia. In vitro ischemia increased the Vmax value without affecting the Km value. The increased L-[3H]Glu uptake by in vitro ischemia was reduced by subsequent incubation in a normoxic glucose-containing solution. ATP content in brain slices decreased to < 10% of control values by in vitro ischemia for 10 min. The decrease in ATP content was restored by subsequent incubation in normoxic glucose-containing solution. Treatment with veratrine, 2,4-dinitrophenol, carbonyl cyanide m-chlorophenylhydrazone, and NaCN in normoxic conditions increased L-[3H]Glu uptake with a concomitant decrease in ATP content in slices. These results suggest that Cl(-)-dependent L-Glu transport activity in synaptic membranes increases in ischemia- or hypoxia-induced brain energy failures.

ATP-Binding Cassette Transporters

Increase of noradrenaline release in the hypothalamus of freely moving rat by postsynaptic 5-hydroxytryptamine1A receptor activation.

1. 5-Hydroxytryptamine (5-HT) plays a role in the regulation of noradrenergic neurones in the brain, but the precise mechanism of regulation of noradrenaline (NA) release by 5-HT1A receptors has not been defined. The present study describes the effect of a highly potent and selective 5-HT1A receptor agonist, 5-(3-[[(2S)-1,4-benzodioxan-2-ylmethyl)]amino]propoxy)-1,3-b enzodioxole HC1 (MKC-242), on NA release in the hypothalamus using microdialysis in the freely moving rat. 2. Subcutaneous injection of MKC-242 (0.5 mg kg-1) increased extracellular levels of NA and its metabolite, 3-methoxy-4-hydroxyphenylglycol, in the hypothalamus and hippocampus. 3. The 5-HT1A receptor agonists, 8-hydroxy-2-(di-n-propylamino) tetralin (8-OH-DPAT) (0.2 mg kg-1) and buspirone (3 mg kg-1) mimicked the effect of MKC-242 in increasing NA release in the hypothalamus. 4. The effects of MKC-242 and 8-OH-DPAT in the hypothalamus were antagonized by pretreatment with WAY100135 (10 mg kg-1), a silent 5-HT1A receptor antagonist. 5. Local administration of 8-OH-DPAT (10-100 microM), citalopram (1 microM), a 5-HT reuptake inhibitor, and MDL72222 (10 microM), a 5-HT3 receptor antagonist, into the hypothalamus, had no effect on NA release. 6. Intracerebroventricular injection with 5,7-dihydroxytryptamine caused a marked reduction in brain 5-HT content, but the treatment affected neither basal NA levels nor the MKC-242-induced increase in NA release. 7. The effect of MKC-242 in increasing NA release was not attenuated by repeated treatment with the drug (0.5 mg kg-1, once a day for 2 weeks). 8. The present results suggest that activation of postsynaptic 5-HT1A receptors increases NA release in the hypothalamus.

5,7-Dihydroxytryptamine

Fluid and protein secretion by the submandibular glands of weanling rats in response to cholinergic and peptidergic agonists at various doses.

Fluid and protein secretion by the submandibular glands of 25-day-old rats were examined and compared in response to three cholinergic and four peptidergic sialogogues at various doses. All cholinergic and peptidergic agonists used were potent sialogogues for the submandibular glands of the weanling rats over the wide range of doses used. The cholinergic agonists, bethanechol and methacholine and the peptidergic agonists, substance P, substance PTyr8 and eledoisin-related peptide used intravenously, acted similarly to each other on the submandibular glands of the rats, late in the natural weaning period, but carbachol and physalaemin had slightly different effects. Of the peptidergic agonists, physalaemin was the most potent sialogogue among four tachykinins tested at the low dose. The types of protein secreted by the submandibular glands of the weanling rats in response to all sialogogues used here were typical of the beta-type. These results indicate that all agonists used could mainly stimulate the acinar cells of the submandibular glands of the weanling rats which have already fully developed functionally at this time.

Animals

Inhibitory effect of ginseng total saponins on glutamate-induced swelling of cultured astrocytes.

The effects of ginseng total saponins (GTS) on L-glutamate-induced swelling of cultured astrocytes from rat brain were studied. Following exposure to 0.5 mM glutamate for 1 h, the intracellular water space (as measured by [3H]O-methyl-D-glucose uptake) of astrocytes increased three-fold with a morphological change: the disappearance of cellular processes. Simultaneous addition of GTS with glutamate reduced the astrocytic swelling in a dose-dependent manner. GTS at 0.5 mg/ml did not affect the viability of astrocytes for up to 18 h, which was determined by a colorimetric assay for cellular growth and survival. These data suggest that GTS prevents the cell swelling of astrocytes induced by glutamate.

Animals

Stimulation of cyclic AMP formation by pituitary adenylate cyclase-activating polypeptide is attenuated by glutamate in rat brain slices.

In rat hippocampal slices, pituitary adenylate cyclase-activating polypeptide-38 (PACAP-38) stimulated cyclic AMP formation in dose- and time-dependent manners. The PACAP-38 action was dose-dependently attenuated by L-glutamate in the hippocampus; L-glutamate at the concentration of 1 mM attenuated PACAP-38-stimulated cyclic AMP formation by approximately 30%. The inhibitory effect of L-glutamate is also observed in rat cerebellar slices. In contrast, the inhibitory effect of a prostanoid EP3-receptor agonist on PACAP-38-stimulated cyclic AMP formation was brain region-specific; the inhibitory action was observed in the cerebellum but not in the hippocampus.

Adenylyl Cyclases