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Biomedical subjects

K Wada

Publications and source records attributed to K Wada.

At least 235 records · Page 13Linked to original sources

Antiinflammatory potency of dehydrocurdione, a zedoary-derived sesquiterpene.

OBJECTIVE AND DESIGN: Dehydrocurdione, a sesquiterpene isolated from zedoary, was tested for in vivo and in vitro antiinflammatory actions. MATERIALS: Analgesic effect was tested in ICR mice by the acetic acid-induced writhing method. Antipyretic effect was studied in Sprague-Dawley rats treated with baker's yeast. Antiinflammatory activities were tested in Wistar rats with carrageenan-induced paw edema and adjuvant-induced chronic arthritis. In vitro analyses included the capabilities to inhibit cyclooxygenase activity, and to scavenge free radicals as determined by electron paramagnetic resonance (EPR). RESULTS: Oral administration of dehydrocurdione (40 to 200 mg/kg) mitigated the writhing reflex. induced by acetic acid and the fever elicited by baker's yeast. A higher dose (200 mg/kg) of dehydrocurdione was required to inhibit the carrageenan-induced paw edema. Oral administration of dehydrocurdione at 120 mg/kg/day for 12 days significantly reduced chronic adjuvant arthritis. Unlike indomethacin (IC50: 0.1 microM), dehydrocurdione showed minimal cyclooxygenase inhibition. However, dehydrocurdione (100 microM to 5 mM) significantly reduced free radical formation from hydrogen peroxide and ferrous iron determined by EPR spectrometry using 5,5'-dimethyl-1-pyrroline-N-oxide as a spin trap agent. CONCLUSION: In addition to the well-known effect of zedoary as a stomachic, dehydrocurdione, the major component of Curcuma zedoaria Roscoe has antiinflammatory potency related to its antioxidant effect.

Acetic Acid↗

A new in-vitro drug sensitivity test (collagen-gel droplet embedded-culture drug sensitivity test) in carcinomas of pancreas and biliary tract: possible clinical utility.

The collagen-gel droplet embedded-culture drug sensitivity test (CD-DST), a chemosensitivity test, evaluate the efficacy of anticancer drugs and to was used clinically to thus plan rational postoperative chemotherapy for patients with pancreatic and biliary tract carcinomas. The CD-DST solves some problems inherent in other conventional assays. This method: (1) allows evaluation of four chemotherapeutic agents, using small quantities of cells (1 x 10(5) cells), (2) shows high primary culture success rates, (3) maintains the original growth characteristics of the cultured cells, (4) eliminates the effects of fibroblasts by employing image analysis, and (5) permits evaluation using physiologic drug concentrations. Primary cultures of tumor cell samples from all 25 patients with pancreatic or biliary tract carcinomas studied were successful. Against pancreatic carcinomas, the efficacy rates, assessed by CD-DST, of four anticancer drugs evaluated were: 25.0% for mitomycin (MMC), followed by 23.5% for adriamycin, 18.8% for 5-fluorouracil (5-FU), and 11.8% for cisplatin (CDDP). Against biliary tract carcinomas, the rates were highest for 5-FU and MMC (50.0%) and lowest for CDDP (25.0%). The efficacy rates for all four anticancer drugs evaluated were higher against biliary tract carcinomas than against pancreatic carcinomas. Tumor cultures from 10 of 17 patients with pancreatic cancer and 3 of 8 patients with biliary tract cancer showed no sensitivity to any of the drugs tested. The in-vitro results with CD-DST suggest the risk of administering non-selective postoperative chemotherapy to patients with pancreatic and biliary tract carcinomas, and emphasize the importance of carefully selecting effective chemotherapeutic agents based on adequate chemosensitivity testing.

Antineoplastic Agents↗

Rectal carcinoid tumor associated with the Peutz-Jeghers syndrome.

A 16-year-old man who had been diagnosed with the Peutz-Jeghers syndrome at the age of 8 years presented with crampy abdominal pain. Thorough examinations revealed a large jejunal polyp causing intussusception, as well as multiple polyps in the small and large intestines. Preoperative proctoscopy demonstrated the coexistence of a submucosal tumor in the rectum. Proctoscopic mucosal resection was performed and histological and immunohistochemical examinations led to a diagnosis of carcinoid tumor. Additional transanal resection of the rectal wall showed no residual tumor and the patient has been well for 2 years to date. Although malignant tumors are increasingly reported in association with the Peutz-Jeghers syndrome, to our knowledge, there have been no previous reports of such an association in the English-language and Japanese literature.

Adolescent↗

Characterization of the UL4 gene product of herpes simplex virus type 2.

We have identified the herpes simplex virus type 2 (HSV-2) UL4 gene product using a rabbit polyclonal antiserum raised against a recombinant 6xHis-UL4 fusion protein expressed in Escherichia coli. The antiserum reacted specifically with a 27-kDa protein in HSV-2 186-infected cell lysates. The protein was not detectable in the presence of the viral DNA synthesis inhibitor, suggesting that the UL4 gene was expressed as a gamma 2 gene. Indirect immunofluorescence studies localized the UL4 protein within the nucleus as discrete punctate forms at late times postinfection. However, when expressed in the absence of other viral proteins, the UL4 protein was limited to the cytoplasm, indicating that an interaction with one or more other virus-induced proteins was responsible for the nuclear localization during infection. Subnuclear fractionation studies showed that the protein was released from the nuclear structure of infected cells by high salt treatment. Moreover, the UL4 protein was detected in purified virions and light particles.

Animals↗

Effect of YM087, a potent nonpeptide vasopressin antagonist, on vasopressin-induced protein synthesis in neonatal rat cardiomyocyte.

OBJECTIVE: Hypertrophy of cardiomyocytes may play an important role in the pathogenesis of cardiac hypertrophy associated with various cardiovascular diseases such as congestive heart failure. The aim of this study was to investigate whether vasopressin (AVP) induces protein synthesis in cultured neonatal rat cardiomyocytes through its specific receptor and whether YM087, a newly synthesized nonpeptide AVP receptor antagonist, inhibits AVP-induced protein synthesis in vitro. METHODS: AVP receptors on cardiomyocytes were characterized using the radioligand [3H] AVP. The effects of AVP and YM087 on intracellular free calcium concentration ([Ca2+]i), mitogen-activated protein (MAP) kinase and [3H]-leucine incorporation were investigated in cultured neonatal rat cardiomyocytes. RESULTS: In cardiomyocytes, Scatchard analysis showed a single population of high-affinity binding sites with the expected AVP V1A receptor subtype profile. YM087 showed high affinity for cardiomyocyte V1A receptors with a Ki value of 0.63 nM. In these same cells, YM087 potently inhibited AVP-induced increases in [CA2+]I and activation of MAP kinase in a concentration-dependent manner. In addition, AVP concentration-dependently stimulated the synthesis of protein without changing the rate of DNA synthesis, and YM087 prevented AVP-induced protein synthesis in a concentration-dependent manner. CONCLUSIONS: These results suggest that AVP directly causes protein synthesis and YM087 is a potent inhibitor of AVP-induced protein synthesis of cardiomyocytes and thus may have beneficial effects in the development and regression of cardiomyocytic hypertrophy.

Analysis of Variance↗

The role of endogenous acid in the development of acute gastric ulcer induced by ischemia-reperfusion in the rat.

We investigated the role of endogenous gastric acid in the development of gastric ulcer from erosion induced by ischemia-reperfusion of the celiac artery in the rat. A half-hour clamping of the celiac artery (ischemia) caused acute gastric erosions 1 hour after reperfusion and such acute injuries progressed to ulcers 48-72 hours after reperfusion without any necrotizing agents. Gastric acid secretion decreased immediately after ischemia and didn't recover until 12 hours after reperfusion. Intraperitoneal administrations of cimetidine (100 mg/kg, every 12 hours) or omeprazole (30 mg/kg, every 24 hours) were started at 1, 6, or 12 hours after reperfusion. When administrations were started 1 hour after reperfusion, both drugs significantly decreased the total damaged area and prevented the progression of gastric erosions to ulcers. However, administrations started 6 or 12 hours after reperfusion failed to inhibit the total damaged area and to prevent ulcer formation. These results suggest that endogenous gastric acid may play an important role in the progression of gastric erosions to ulcers although ischemia itself reduces acid secretion. Furthermore, treatment with anti-acid-secretory drugs in the early stage of mucosal damage may be important for the prevention of ulcer.

Acute Disease↗

Effect of ischemia-reperfusion on contractile function of rat urinary bladder: possible role of nitric oxide.

Because there are increasing evidences that nitric oxide (NO) plays important roles in ischemia-reperfusion injury in several systems, we investigated the role of NO in ischemia-reperfusion injury of the rat urinary bladder. Rat abdominal aorta was clamped with a small clip to induce ischemia-reperfusion injury in the rat bladder dome. In functional studies, contractile responses to carbachol were cumulatively measured after the urinary bladder was treated with various duration (0, 30, 60, and 90 min) of ischemia. The injury of rat bladder functioning was dependent on ischemic periods. Significant decreases in the Emax (maximum contractile response) values were observed in the bladder subjected to 60 or 90 min ischemia. Furthermore, the subsequent 30 min reperfusion caused additional damages of the contractile response in bladder muscles. To investigate the role of NO in the ischemia (30 min)-reperfusion (30 min) injury, NG-nitro-L-arginine methylester (L-NAME) was injected intraperitoneally 30 min before the ischemia. Treatment of L-NAME (30 and 100 mg/kg) partly but significantly prevented the reduction contractile responses to carbachol of the rat bladder dome. In histological studies, the ischemia-reperfusion caused infiltration of leukocytes and rupture of microcirculation in the regions of submucosa and smooth muscle without a corresponding sloughing of mucosal cells. The histological damages were also prevented by treatment with L-NAME. Therefore, these data suggested that ischemia-reperfusion of the urinary bladder may result in dysfunction of the contractile response to autonomic nervous system and that nitric oxide may act as a cell/tissue damaging agent in ischemia-reperfusion injury.

Animals↗

Characterization of vasopressin receptor in rat lung.

This study characterized rat lung membrane arginine vasopressin (AVP) receptors in detail. Specific binding of [3H]AVP to rat lung membranes was dependent upon time, temperature and membrane protein concentration. Scatchard plot analysis of equilibrium binding data revealed the existence of a single class of high-affinity binding sites with a Kd of 0.45 nM and a Bmax of 76.6 fmol/mg protein. Competitive inhibition of [3H]AVP binding showed that neurohypophysial hormones as well as their synthetic analogues displaced [3H]AVP in a concentration-dependent manner. The order of potencies for the native peptides was: AVP > lysine vasopressin = arginine vasotocin > oxytocin. Furthermore, potent V1A receptor antagonists, d(CH2)5Tyr(Me)AVP and dPTyr(Me)AVP, showed high affinity for lung membranes. In contrast, the V2 receptor agonist, dDAVP, and the specific oxytocin receptor agonist, [Thr4,Gly7]oxytocin, did not affect AVP binding. These results suggest that the lung contains the V1A receptor subtype. The lung membrane AVP receptor characterized in this study may play an important role in mediating the physiological effects of AVP in the lung.

Animals↗

A selective type 4 phosphodiesterase inhibitor, T-440, modulates intracellular cyclic AMP level and interleukin-2 production of Jurkat cells.

Effect of a selective type 4 phosphodiesterase (PDE4) inhibitor, T-440, on intracellular cyclic AMP (cAMP) level and interleukin (IL)-2 production of Jurkat cells was investigated. T-440 suppressed both cAMP-PDE activities in cytosolic and membrane fractions of Jurkat cells. Intracellular cAMP level in Jurkat cells was elevated by PGE2 and forskolin but not by T-440. T-440, however, significantly enhanced the increase of cAMP by PGE2. PGE2 and forskolin inhibited IL-2 production of Jurkat cells stimulated with concanavalin A. T-440 by itself did not affect IL-2 production, but significantly enhanced the effect of PGE2 on IL-2 production. The increase of intracellular cAMP by T-440, PGE2, forskolin and T-440 plus PGE2 was well correlated with the inhibition of IL-2 production. These results indicate that IL-2 production of T cells is regulated by cAMP-PDE activity. Immunomodulatory effects of PDE4 inhibitors like T-440 should further be explored in vivo.

3',5'-Cyclic-AMP Phosphodiesterases↗

Binding characteristics of YM087, an AVP receptor antagonist, in rhesus monkey liver and kidney membranes.

The binding characteristics of YM087, a nonpeptide vasopressin (AVP) V1A and V2 receptor antagonist, were studied using 3H-AVP binding to rhesus monkey liver and kidney membrane preparations. Both membrane preparations exhibited one class of high-affinity binding sites. However each membrane's receptors were different, with Kd values of 0.57 and 1.11 nM, Bmax values of 59.6 and 147 fmol/mg protein for liver and kidney, respectively. AVP receptor agonist or antagonist binding inhibition studies confirmed that these receptors belong to the V1A (liver) and V2 (kidney) subtypes. YM087 showed high affinity for both liver V1A and kidney V2 receptors with Ki values of 26.3 and 9.89 nM, respectively. These results show that YM087 is a potent, nonpeptide dual AVP V1A and V2 receptor antagonist, and would be a powerful tool for understanding the physiologic roles of AVP.

Animals↗

Oscillating thromboemboli within the extracranial internal carotid artery demonstrated by ultrasonography in patients with acute cardioembolic stroke.

We detected oscillating thromboemboli at the extracranial internal carotid artery (ICA) by duplex carotid ultrasonography in patients with acute cardioembolic stroke. Using B-mode ultrasonography, we evaluated the extracranial ICA in 11 patients with acute cardioembolic ICA occlusion. A homogeneous, elastic, oscillating intraluminal mass echo originating in the extracranial ICA extended distally in 5 (46%) of these patients. The echoes moved quickly and distally during the systolic phase of the cardiac cycle and returned slowly to the original position during the diastolic phase. We performed a postmortem study 24 days after stroke onset in 1 patient with an oscillating intraluminal mass echo that had been demonstrated by duplex ultrasonography. The ICA lumen was obstructed with a fresh string-like thrombus. The findings of oscillating intraluminal mass echo may help establish a diagnosis of acute embolic ICA occlusion.

Acute Disease↗

Etiological analysis of focal nodular hyperplasia of the liver, with emphasis on similar abnormal vasculatures to nodular regenerative hyperplasia and idiopathic portal hypertension.

Pathological studies were performed on 23 cases of focal nodular hyperplasia (FNH) under the hypothesis that FNH is a hyperplastic lesion caused by abnormal vasculatures of portal tracts within the nodule. For a comparison of the histological features of portal tracts, nodular regenerative hyperplasia (NRH), idiopathic portal hypertension (IPH), chronic hepatitis and so-called normal liver were used as control tissues. Extranodular areas of FNH nodules were also examined. Clinical data were briefly summarized. Most of the portal tracts within FNH nodules showed various abnormal findings, such as dilatation and/or stenosis of portal vein, muscular thickening of arterial wall with dilated or stenotic lumina, lymphocyte infiltration, and bile ductule proliferation. However, portal vein thrombi were not found. These findings were not thought to represent compensatory reaction to portal vein thrombosis. Similar abnormal features were also observed in extranodular areas of FNH although to a milder degree. These abnormal features resembled those of NRH and IPH. Moreover, the characteristic scar-like tissues within FNH nodules were proved to be abnormally large portal tracts including large feeding arteries, portal veins and bile ducts. It has been believed that septa and scar-like tissue within FNH nodules are not portal tracts and that arterial malformation independent of portal tracts are related to the development of FNH. In addition, venous structures within FNH modules have until now not been considered to be portal veins. However, this study revealed that severe anomaly of portal tracts including portal veins and hepatic arterial branches existed in FNH nodules. Moreover, portal tracts in extranodular areas were also abnormal. Clinically, only one patient had a history of oral contraceptives. Based on these findings, congenital anomaly of the portal tracts histologically resembling the abnormal portal tracts of NRH and IPH may be related to the pathogenesis of FNH.

Adult↗

Effects of carbamazepine on hippocampal serotonergic system.

To establish the mechanism of action of the antiepileptic and psychotropic effects of carbamazepine (CBZ), its effects on serotonin (5-HT) transmission, metabolism and re-uptake activity in the rat hippocampus were studied. After acute and chronic administrations of 25 mg/kg CBZ, the plasma concentration of CBZ was found to be within the therapeutic range, whereas both acute and chronic administrations of 50 and 100 mg/kg CBZ resulted in a supratherapeutic plasma concentration. Acute administration of the therapeutic dose of CBZ resulted in an increase in the hippocampal extracellular and total level of 5-HT, its metabolite, 5-hydroxydoleacetic acid (5-HIAA) and its precursor, 5-hydroxytryptophan (5-HTP). The acute administration of 50 mg/kg CBZ resulted in an increase in the hippocampal levels of extracellular 5-HT and 5-HIAA as well as in the total levels of 5-HTP, whereas hippocampal levels of extracellular 5-HTP, total 5-HT and 5-HIAA remained unaffected. CBZ at a dose of 100 mg/kg decreased the levels of all of these substances. After chronic administration, 25 mg/kg/day CBZ increased hippocampal total levels of 5-HT, 5-HTP and 5-HIAA, whereas 100 mg/kg/day CBZ decreased all of these total levels. CBZ at a dose of 50 mg/kg/day decreased total levels of 5-HT, however neither total levels of 5-HIAA nor 5-HTP were affected. Both therapeutic and supratherapeutic plasma concentrations of CBZ inhibited 5-HTP accumulation, and did not affect 5-HT re-uptake activity in vitro. These results suggest that a therapeutic concentration of CBZ enhances 5-HT turnover and transmission, whereas a supratherapeutic concentration of CBZ inhibits 5-HT turnover and transmission without affecting 5-HT re-uptake activity. These effects of CBZ on serotonergic systems may be, at least partially, involved in the mechanisms of action of CBZ.

5-Hydroxytryptophan↗

Detection of suppression of bitterness by sweet substance using a multichannel taste sensor.

A multichannel taste sensor whose transducer is composed of several kinds of lipid/polymer membranes with different characteristics can detect taste in a manner similar to human gustatory sensation. Taste information is transformed into a pattern composed of electric signals of membrane potentials of the receptor part. In the present study, it was shown that the suppression of the bitterness of quinine and a drug substance by sucrose can be quantified using a multichannel taste sensor. The present method can be expected to provide a new automated method to measure the strength of bitterness of drug substance in the place of sensory evaluation.

Chemistry, Pharmaceutical↗

Identification of estrogen-modified nucleosides from calf thymus DNA reacted with 6-hydroxyestrogen 6-sulfates.

Two estrogen sulfates, pyridinium 3-methoxyestra-1,3, 5(10)-trien-6alpha-yl sulfate (3MeE-6alpha-S) and its 6beta-isomer (3MeE-6beta-S), synthesized as model compounds to demonstrate the carcinogenesis of estrogen, were found to react with calf thymus DNA to produce steroid-modified DNA adducts. Digestion of the DNA by nuclease P1 and phosphodiesterase I followed by alkaline phosphatase gave a deoxyribonucleoside fraction, of which N2-[3-methoxyestra-1,3, 5(10)-trien-6alpha-yl]deoxyguanosine, N2-[3-methoxyestra-1,3, 5(10)-trien-6beta-yl]deoxyguanosine, N6-[3-methoxyestra-1,3, 5(10)-trien-6beta-yl]deoxyadenosine, and N6-[3-methoxyestra-1,3, 5(10)-trien-6alpha-yl]deoxyadenosine (identified as a base adduct) were identified using HPLC by comparing them with authentic specimens prepared by reacting dG and dA with both sulfates. No steroid-dC adduct was detected in the digestion products of the DNA adduct, although dC reacted with the sulfates to form N4-[3-methoxyestra-1,3,5(10)-trien-6beta-yl]deoxycytidine. These results mean that estrogen 6-sulfate has an ability to modify DNA via the amino group of a guanine or adenine residue in DNA. The present studies imply that a sequential metabolism (hydroxylation and sulfation) at the C6-position of the estrogen molecule causes damage to DNA.

Animals↗

Effects of Ca2+ channel antagonists on striatal dopamine and DOPA release, studied by in vivo microdialysis.

1. To elucidate the mechanisms regulating the release of striatal dopamine and its precursor, 3,4-dihydroxyphenylalanine (DOPA), we determined the effects of various Ca2+ channel antagonists, an N-type Ca2+ channel antagonist, omega-conotoxin GVIA, a P-type Ca2+ channel antagonist, omega-agatoxin IVA, and a Q-type Ca2+ channel antagonist, omega-conotoxin MVIIC, on the basal and Ca2+- and K+-evoked release of striatal dopamine and DOPA, by use of in vivo microdialysis. 2. Omega-conotoxin GVIA strongly inhibited striatal basal dopamine release (IC50 = 0.48 nM), whereas this toxin only weakly modulated basal striatal DOPA release (IC50 = 9.55 nM). Neither omega-agatoxin IVA nor omega-conotoxin MVIIC affected the basal striatal release of dopamine and DOPA. 3. Omega-conotoxin GVIA strongly inhibited Ca2+-evoked striatal dopamine release (IC50 = 0.40 nM), whereas Ca2+-evoked striatal DOPA release only was weakly modulated (IC50 = 10.51 nM). Neither omega-agatoxin IVA nor omega-conotoxin MVIIC affected the Ca2+-evoked release of striatal dopamine and DOPA. 4. Both omega-agatoxin IVA and omega-conotoxin MVIIC inhibited the K+-evoked release of striatal dopamine (IC50 of omega-agatoxin IVA = 2.65 nM; IC50 of omega-conotoxin MVIIC = 12.54 nM) and DOPA (IC50 of omega-agatoxin IVA = 0.15 nM; IC50 of omega-conotoxin MVIIC = 3.05 nM), whereas omega-conotoxin GVIA had no effect on the K+-evoked release of striatal dopamine and DOPA. 5. An increase in the extracellular Ca2+ and K+ concentrations (Ca2+- and K+-evoked stimulation) did not affect tyrosine hydroxylase activity in vivo. 6. These findings suggest that striatal DOPA release is neurotransmitter-like and that, unlike the mechanisms of striatal dopaminergic transmission, this striatal DOPA transmission is at least partly regulated by voltage-sensitive Ca2+ channels.

Animals↗

Pharmacological detection of AMPA receptor heterogeneity by use of two allosteric potentiators in rat hippocampal cultures.

1. In order to examine whether a recently developed allosteric potentiator for AMPA receptors, 4-[2-(phenylsulphonylamino)ethylthio]-2,6-difluoro-phenoxyaceta mide (PEPA), can be utilized as an indicator of AMPA receptor heterogeneity, the action of PEPA upon the increase of intracellular free calcium ion concentration ([Ca2+]i) elicited by AMPA was investigated in rat hippocampal cultures, and the action was compared with that of cyclothiazide, a well characterized allosteric modulator of AMPA receptors. 2. PEPA dose-dependently potentiated AMPA-induced increase of [Ca2+]i. In 90% (72 out of 80) of the cells in which cyclothiazide acts, PEPA potentiated the increased [Ca2+]i induced by AMPA with pronounced cell-to-cell variation in rat hippocampal cultures. 3. The ratio of the potentiation by PEPA to the potentiation by cyclothiazide (P/C ratio) also varied with cells between 0 and 2.15. It was found that the cultured hippocampal cells consisted of multiple populations with different P/C ratios. Among them two populations exhibited characteristic P/C ratios; low (0 to 0.15; 27 out of 80 cells, 34%) and high (> or = 2.00; 1 out of 80 cells, 1%) P/C ratios. The P/C ratios of the other populations were between 0.25 and 1.20, and these cells constituted 65% (52 out of 80 cells) of the cells tested. 4. Reverse transcriptase-polymerase chain reaction analysis suggested that GluR2-flip, GluR1-flip, GluR2-flop, and GluR1-flop were abundantly expressed (in this rank order) in the cultures used. 5. In Xenopus oocytes expressing GluR1, GluR3, or these subunits plus GluR2, the potentiation of AMPA response by PEPA and by cyclothiazide varied with subunit and splice-variant combinations, and the P/C ratio was between 0.19 and 2.20. Oocytes with low P/C ratios (0.19 to 0.50) and low sensitivity to PEPA potentiation (1.9 fold to 6.41 fold) were those expressing flip variants predominantly, and oocytes with high P/C ratios (1.8 to 2.2) were those expressing flop variants predominantly. Oocytes with intermediate P/C ratios (0.51 to 1.20) were those expressing various combinations of flip and flop variants, and it was impossible to specify the relative abundance of flip and flop variants in these cells. Therefore, the P/C ratio can be used to infer subunit/splice variant expression only when the ratio is low or high. 6. These results suggest that the potentiation by PEPA alone reveals cell-to-cell heterogeneity of AMPA receptors, but a comparison of the actions of PEPA and cyclothiazide further facilitates the detection of the heterogeneity.

Allosteric Regulation↗

Interaction between Ca2+, K+, carbamazepine and zonisamide on hippocampal extracellular glutamate monitored with a microdialysis electrode.

1. Multiple components of hippocampal glutamate release were examined by study of Ca2+- and K+-evoked hippocampal extracellular glutamate release using an in vivo microdialysis glutamate biosensor in urethane-anaesthetized rats. In addition, the effects of the antiepileptic drugs, carbamazepine (CBZ) and zonisamide (ZNS) perfused through the probe on glutamate release were assessed. 2. Basal glutamate levels were below detection limits (approximately 0.1 microM). An increase in extracellular KCl (from 2.7 to 50 and 100 mM) increased extracellular hippocampal glutamate levels to 9.2+/-1.4 and 20.0+/-2.6 microM, respectively, calculated from the area under curve (AUC) for 60 min. 3. This KCl-evoked glutamate release consisted of three components: an initial transient rise, a late gentle rise, and late multiple phasic transient rises. 4. An increase in or removal of extracellular CaCl2 levels respectively enhanced and reduced the 50 mM KCl-evoked hippocampal glutamate release (AUC for 60 min) from 9.2+/-1.4 to 12.4+/-2.1 and 5.8+/-0.9 microM. 5. Perfusion with 100 microM CBZ or 1 mM ZNS inhibited both the 50 mM KCl-evoked hippocampal glutamate release (AUC for 60 min) from 9.2+/-1.4 to 5.5+/-1.1 and to 5.8+/-1.3 microM, respectively, as well as the stimulatory effects of Ca2+ on KCl-evoked hippocampal glutamate release. 6. These results suggest that both CBZ and ZNS may reduce epileptiform events by inhibiting excitatory glutamatergic transmission.

Animals↗