Search PubMed⌕ Search

Biomedical subjects

H Kotaki

Publications and source records attributed to H Kotaki.

At least 19 recordsLinked to original sources

Pharmacokinetic-pharmacodynamic analysis of the arrhythmogenic potency of a novel antiallergic agent, ebastine, in rats.

Ebastine (EBS), a novel nonsedative antiallergic agent, is similar to terfenadine in its chemical structure. However, clinical arrhythmogenicity of EBS remains controversial. In this study, we evaluated the possible arrhythmogenic potency of EBS as assessed by QT prolongation from a pharmacokinetic-pharmacodynamic viewpoint in comparison with that of terfenadine. EBS was intravenously infused into anesthetized rats at a rate of 3.0 or 10 mg/kg/h for 60 min, and electrocardiographic effects were continuously monitored from lead II. The plasma concentrations of EBS and its major metabolite, carebastine, were also measured under the same conditions. When intravenously administered, EBS exhibited QT prolongation in an infusion rate-dependent manner, with a lag time. Pharmacokinetic-pharmacodynamic analysis of EBS based on the effect-compartment model revealed values of EC50, Emax and EC(10 ms), (where 10 ms of QT prolongation was evoked) of 0.73 microg/mL, 12.5 ms and 2.90 microg/mL, respectively. The EC(10 ms) value of EBS was five times higher than that of terfenadine reported previously (Ohtani et al., J. Pharm. Pharmacol., 49, 458-462 (1997)). In conclusion, EBS was suggested to be less arrhythmogenic than terfenadine.

Animals↗

Mechanism of the uricosuric action of the anti-inflammatory drug E3040 used to treat inflammatory bowel disease I: study using a rat model of hyperuricemia.

E3040, a new class of anti-inflammatory drug, was found to reduce the plasma uric acid level in the first phase of clinical studies. In the present study, the mechanism of the uricosuric action of E3040 was investigated using the hyperuricemia model rat. The fractional excretion of uric acid (FEurate), an indicator of the excretion of uric acid in the renal tubules, at 30, 60 and 90 min after administration of E3040 (50 mg kg(-1)) was significantly elevated as compared with that in the control. This elevation of the FEurate by E3040 was dose-dependent. Although the FEurate was elevated spontaneously 30 min after administration of E3040-sulfate (E-Sul) and glucuronide (E-Glu) (100 mg kg(-1), respectively), the value was not significantly different from the control. Based on these results, it was suggested that E3040 has a uricosuric action, probably in the proximal tubules, and the uricosuric action after administration of E3040 may be mainly due to the parent drug. Concerning the tissue distribution, the kidney concentration of E-Sul after i.v. administration of the E3040 (50 mg kg(-1)) was higher than that of the parent drug (kidney/plasma ratio approximately 2).

Animals↗

Effect of itraconazole on the pharmacokinetics of digoxin in guinea pigs.

The effect of itraconazole (ITZ) on the pharmacokinetics of digoxin (DGX) was investigated in guinea pigs. The plasma concentrations of DGX in guinea pigs following treatment with ITZ (20 mg/kg intraperitoneally (i.p.)) after intravenous (i.v.) administration of DGX (0.125 mg/kg) were significantly higher than in the controls. The percentage cumulative excretion (6.9%) of DGX in bile of the ITZ-treated group up to 6 h after administration of DGX was significantly reduced (p < 0.05) compared with 10.5% in the control. The percentage cumulative excretion (3.1%) of DGX in urine of the ITZ-treated group up to 6 h after administration was also one third that in the controls. The total, biliary, renal and metabolic clearances for DGX in the ITZ-treated group were significantly reduced, while the V(dss) was unaffected. The plasma unbound fraction of DGX (ranged 47-58%) in the ITZ-treated group was generally similar to that in the controls (50-57%). The blood-to-plasma concentration ratio of DGX (range 1.28-1.42) in the absence of ITZ did not change in the presence of ITZ. Based on these results, the pharmacokinetic interaction between DGX and ITZ may be due not only to a reduction in the renal clearance but also to a reduction in the metabolic clearance of DGX by ITZ.

Animals↗

Mechanism of the uricosuric action of E3040, a drug used to treat inflammatory bowel disease II: study using DBA/2N mice.

In the initial phase of clinical studies, it was shown that E3040, a new type of anti-inflammatory drug, reduced plasma uric acid levels. The present study describes a comparison of the excretion of uric acid in the proximal tubules of the kidney after administration of E3040 and its conjugates, sulphate and glucuronide, with that of other general uricosuric agents in DBA/2N mice. The aim of this investigation was to elucidate the mechanism for the uricosuric action of E3040. It was found that E3040 increased the excretion rate of uric acid in a dose-dependent manner, and the excretion rates following 10 and 50 mg/kg doses were significantly greater than that of the control group. The paradoxical effect observed with probenecid was not seen in the E3040 dose-response curve for the uric acid excretion rate. Neither E3040-sulphate nor E3040-glucuronide increased the excretion rate of uric acid significantly, even at a high dose, such as 200 mg/kg. In the pyrazinoic acid suppression test, the uric acid excretion rate after concomitant administration of E3040 and pyrazinoic acid was significantly higher than that after administration of pyrazinoic acid alone, and the rate after concomitant administration was 30% of the level after administration of E3040 alone. The change in the excretion rate of uric acid after concomitant administration of E3040 and pyrazinoic acid was similar to that of AA193, a selective inhibitor of the presecretory reabsorption of uric acid. From these results, it appears that E3040 may exert its uricosuric action by reducing the presecretory reabsorption of uric acid rather than increasing its secretion.

Animals↗

Surgical repair of acute collateral ligament injuries in digits with the Mitek bone suture anchor.

Eighteen acute grade III collateral ligament injuries were treated by using the Mitek bone suture anchor. Seven were thumb metacarpophalangeal joint injuries, and eleven were finger proximal interphalangeal joint injuries. Seventeen patients were followed more than 12 months after surgery. All patients were able to use the digits in daily living activities within 5 weeks after surgery, and return to their original work or sports activities within 12 weeks. Pain was completely relieved in 15 patients. Loss of joint motion averaged 7 degrees. In all joints the postoperative lateral stress angle was within 10 degrees of that of the contralateral digit.

Adolescent↗

Pharmacodynamic analysis of the electrocardiographic interaction between disopyramide and erythromycin in rats.

Disopyramide (DP) is known to induce QT prolongation and Torsades de Pointes (TdP) when administered concomitantly with erythromycin (EM). To define and evaluate quantitatively the arrhythmogenic risk of the concomitant administration of DP and EM, we investigated the influence of EM on the pharmacokinetics and pharmacodynamics of DP in rats. The time profiles of change in QT interval and plasma concentration of each drug were evaluated during and after constant intravenous infusion of DP (6.0 or 15.0 mg/kg/h), EM (4.0 or 8.0 mg/kg/h), and coadministration of DP and EM (DP 6.0 mg/kg/h plus EM 4.0 mg/kg/h). Each agent induced QT prolongation at plasma concentrations within the therapeutic range in humans. DP-induced QT prolongation was proportional to its plasma concentration. In the case of EM, the Emax model with an "effect compartment" could explain the relationship between plasma EM concentrations and changes in QT interval. Although coadministration of EM with DP gave enhanced QT prolongation compared to dosing with DP alone, EM did not affect the pharmacokinetics of DP. In conclusion, it was shown that a pharmacodynamic interaction contributes to the electrocardiographic adverse reaction (i.e., QT prolongation) induced by coadministration of DP and EM in rats.

Animals↗

Inhibitory effects of the antihistamines epinastine, terfenadine, and ebastine on potassium currents in rat ventricular myocytes.

We examined and compared the inhibitory effects of three non-sedating antihistamines, terfenadine, ebastine, and epinastine, on delayed rectifier potassium current (IK) and transient outward potassium current (Ito) of rat isolated ventricular myocytes, using a patch clamp technique. Terfenadine, ebastine and epinastine were found to inhibit IK with IC50 values of 5.96, 15.3 and 145 microM, respectively. Ito was suppressed by epinastine with an IC50 value of 69.5 microM. The order of arrhythmogenicity, assessed by the inhibition of IK, was ranked as terfenadine > ebastine > epinastine, consistent with that of the potencies of each drug for QT prolongation reported in rats.

Animals↗

[Pharmacokinetic analysis of antiplatelet effect of sarpogrelate hydrochloride and its application to drug dosage regimen--modeling based on reversible inhibition of 5-HT2 serotonergic receptor in the platelet membrane by sarpogrelate hydrochloride and its metabolite].

Sarpogrelate hydrochloride is an antiplatelet drug, and expected to be useful in the treatment of chronic arterial occlusive diseases. Sarpogrelate and its active metabolite (M-1) are potent inhibitors of human platelet aggregation, and selectively inhibit 5-HT2-serotonergic receptors on human platelets. However, the plasma concentrations of these inhibitors do not correlate to the inhibitory effect on platelet aggregation after administration. Sarpogrelate disappears from the plasma more rapidly in comparison to the duration of its pharmacological effect, and the plasma concentration of M-1 is very low (< 1/10 of sarpogrelate). In this paper, we describe a pharmacokinetic-pharmacodynamic model for ascertaining the antiplatelet effects of sarpogrelate and M-1, by considering both the competitive reversible inhibition and the association/dissociation process of these drugs at the 5-HT2 receptors on platelets (Most data used for analysis were obtained from the literatures, except for the serum protein binding rate of M-1). The developed model was well fitted to the actual data, and suggested that M-1 was more effective for the inhibition of platelet aggregation than sarpogrelate. On the basis of these findings, a new method was developed for predicting inhibitory effects on platelet aggregation after oral administration of sarpogrelate hydrochloride. This method is useful for planning a rational dosage regimen of sarpogrelate hydrochloride and predicting the duration of antiplatelet activity after the discontinuance of the drug.

Administration, Oral↗

[Effects of the rational use of corticosteroids eye drops for the prevention of ocular toxicity in high-dose cytosine arabinoside therapy].

Although the use of corticosteroid (CS) eye drops of the use of eye washing by artificial tears was effective for the prevention of ocular toxicity such as keratitis and photophobia in the high-dose cytosine arabinoside (Ara-C) therapy, the toxicity was not prevented perfectly. We studied the effects of the rational use of CS eye drops, and the combined use of CS eye drops and eye washing by physiological saline in order to prevent the ocular toxicity. Before the study, the instillation of 0.1% sodium bethamethazone phosphate (BM) eye drops was carried out at 4-6 times per day during the high-dose Ara-C therapy, and continued for several days after the high-dose Ara-C therapy. However, the rational use of "eyelid closure" and "naso-lacrimal occlusion" after the instillation was not performed Consequently, the ocular toxicity was observed in 3 (19%) of 16 cases of the patients. When the instillation of BM eye drops at 4 times per day was carried out rationally according to the consultation of pharmacist during the high-dose Ara-C therapy and for additional 10 days after the therapy, no ocular toxicity was observed in all cases (0 of 6 cases). Furthermore, the combined use of eye washing by physiological saline and instillation of BM eye drops was effective for the decrease of the risk of ocular toxicity, because no ocular toxicity was observed in the high-dose Ara-C therapy (0 of 34 cases). Our procedure in this study would be effective for the prevention of ocular toxicity in the high-dose Ara-C therapy.

Adolescent↗

[Effects of mouth wash on the removing beclomethasone dipropionate delivered by pressurized aerosol metered-dose inhaler in the mouth].

Effects of mouth wash (mouth rinsing and gargling) on the removal of drug residues in both mouth and pharynx after the use of pressurized aerosol metered-dose inhaler (MDI) were studied. The concentration of beclomethasone dipropionate (BM) in mouth wash after a splay of Becotide inhaler was measured by the method using HPLC. The total amount of the removed BM was measured by a sum of the concentrations of BM in 4 or 5 times of mouth washes in the following 4 kinds of methods. In method 1, mouth wash was done with 5 times of water change after a splay of MDI on wetted mouth. In method 2, mouth wash was done with 5 times of change water on dried mouth. In method 3, mouth wash was done with 4 times of change saliva on wetted mouth. In these methods, the actual inhalation of BM was not done. In method 4, mouth wash was done with 5 times of change water after a splay and a inhalation on wetted mouth. The mouth wash procedures removed totally 47.9%, 51.1%, 31.3%, and 33.3% of a splayed amount of BM in each method, respectively. It was required for the removal of 90% of the totally recovered BM to do one time of mouth wash in method 1, two times in method 2, three times in method 3, and two times in method 4, respectively. These data suggest that the mouth wash procedure is shown to have prophylactic benefit for candidiasis induced by steroid delivered by MDI.

Administration, Inhalation↗

[Kinetic analysis of therapeutic doses of beta-blockers for angina pectoris based on receptor occupancy theory--relationship between beta 1-receptor occupancy or vasodilative action and dose].

Beta-adrenoceptor blocking agents (beta-blockers) have been widely used for the treatment of angina pectoris. The average/standard therapeutic doses vary widely among beta-blockers with the maximum of about a 120-fold difference. In order to clarify the mechanism of this difference, we analyzed retrospectively the pharmacological effects of beta-blockers in consideration of the beta 1-receptor binding affinity and the vasodilative activity on the basis of pharmacokinetics and the receptor occupancy theory. The analysis was performed on eight beta-blockers without a vasodilative effect and on four beta-blockers with a vasodilative effect. The beta 1-receptor occupancies at the steady-state condition after oral administration of standard doses were calculated by the use of the data on the concentration of unbound agents in plasma and on the dissociation constant of receptors. The estimated receptor occupancies were 87 +/- 6% or 88 +/- 10% for the beta-blockers with or without a vasodilative effect, respectively, and a significant difference was not observed between these groups. These results suggest that the beta 1-receptor occupancies may be a principal indicator for the therapeutic effects for angina pectoris regardless of their vasodilative effects.

Administration, Oral↗

Quantitative prediction of metabolic inhibition of midazolam by itraconazole and ketoconazole in rats: implication of concentrative uptake of inhibitors into liver.

To evaluate the extent of drug-drug interaction concerning metabolic inhibition in the liver quantitatively, we tried to predict the plasma concentration increasing ratio of midazolam (MDZ) by itraconazole (ITZ) or ketoconazole (KTZ) in rats. MDZ was administered at a dose of 10 mg/kg through the portal vein at 60 min after bolus administration of 20 mg/kg ITZ or during 0.33 mg/h/body of KTZ infusion. The ratio values in the area under the plasma concentration curve of MDZ in the presence of ITZ and KTZ was 2.14 and 1.67, respectively. The liver-unbound concentration to plasma-unbound concentration ratios of ITZ and KTZ were 11 approximately 14 and 1.3, respectively, suggesting a concentrative uptake of both drugs into the liver. ITZ and KTZ competitively inhibited the oxidative metabolism of MDZ in rat liver microsomes, and Ki values of ITZ and KTZ were 0.23 microM and 0.16 microM, respectively. We predicted the ratio values of MDZ in the presence of ITZ and KTZ, using Ki values and unbound concentrations of both drugs in the plasma or liver. The predicted ratio values in the presence of ITZ or KTZ calculated by using unbound concentration in the plasma were 1.03 approximately 1.05 and 1.39, whereas those calculated using unbound concentration in the liver were 1.73 approximately 1.97 and 1.51, respectively, which were very close to the observed ratio values. These findings indicated the necessity to consider the concentrative uptake of inhibitors into the liver for the quantitative prediction of the drug-drug interactions concerning metabolic inhibition in the liver.

Animals↗

Correlation between in vivo and in vitro hepatic uptake of metabolic inhibitors of cytochrome P-450 in rats.

To predict the degree of accumulation of hepatic metabolic inhibitors in the liver from the in vitro data, we investigated the relationship between cell/medium concentration ratios (C/M ratios) in isolated rat hepatocytes and liver/blood unbound concentration (K(Bf)) after i.v. administration of various metabolic inhibitors such as itraconazole, ketoconazole, verapamil, diltiazem, enoxacin, ciprofloxacin, clarithromycin, cimetidine, and nizatidine. The C/M ratios of itraconazole were approximately 6,000 and 200 at the concentrations of 0.1 and 10 microg/ml, respectively, and the uptake of ketoconazole and verapamil into the hepatocytes also showed a concentration dependence, although the degree was smaller than that of itraconazole. The uptake of diltiazem, enoxacin, ciprofloxacin, and clarithromycin into the hepatocytes showed linear profiles on concentration dependence. There was an excellent correlation between C/M ratios and K(Bf) values of all nine drugs with a slope of 1. This finding suggested the possibility of predicting drug concentrations in the liver (C(H)) from C/M ratios, the blood concentrations of drugs (C(B)) and unbound fraction in blood (f(B)), which was expressed by C(H) = (C/M). C(B). f(B). It may be possible to predict the drug concentrations in human liver from K(Bf) values estimated with isolated human hepatocytes and concentrations in the blood in a similar manner as in rats.

Animals↗

Quantitative determination of domperidone in rat plasma by high-performance liquid chromatography with fluorescence detection.

A sensitive and selective analytical method for the determination of domperidone in rat plasma is described. The procedure involves liquid-liquid extraction followed by reversed-phase high-performance chromatographic analysis with fluorometric detection at 282 nm for excitation and 328 nm for emission. The detection limit was 1 ng ml(-1) using 1 ml of plasma. This assay procedure should be useful for the pharmacokinetic study of domperidone in small animals such as rats.

Animals↗

Catalepsy induced by calcium channel blockers in mice.

It is known that calcium channel blockers induce Parkinsonism. In this study, amlodipine-, diltiazem-, and verapamil-induced catalepsy was investigated in mice. All of these three calcium channel blockers induced catalepsy. Dopamine D1, D2, and mACh receptor occupancies were estimated under the same conditions, and the affinities of these drugs for each receptor were also estimated in vitro. Intensity of catalepsy was predicted by dopamine D1, D2, and mACh receptor occupancies with the dynamic model which had already been constructed and was compared with the observed values. The predicted and the observed values were comparable (r = 0.98, p < 0.001). In conclusion, the dynamic model considering D1, and D2, and mACh receptor occupancy may be useful for quantitative prediction of drug-induced catalepsy.

Amlodipine↗

Simvastatin-tacrolimus and simvastatin-cyclosporin interactions in rats.

The effect of simvastatin (SV)-tacrolimus (TL) and simvastatin-cyclosporin (CyA) interactions on creatine phosphokinase levels and renal and hepatic function were investigated in rats. Animals were divided into seven groups; (1) SV (150 mg kg-1 oral) alone, (2) SV + TL (150 mg kg-1 oral + 0.5 mg kg-1 intraperitoneal (i.p.)), (3) TL (0.5 mg kg-1 i.p.) alone, (4) SV + CyA (150 mg kg-1 oral + 10 mg kg-1 oral), (5) CyA (10 mg kg-1 oral) alone, (6) control vehicle for oral administration, and (7) control vehicle for i.p. administration. A marked reduction in body weight and mortality was observed in the (SV + CyA) and (SV + TL) groups. Plasma creatine kinase levels in the (SV), (TL), (SV + CyA) and (SV + TL) groups, 7 days postadministration, were significantly higher compared with those before administration (p < 0.05). The plasma urea nitrogen levels in the (TL), (SV + CyA) and (SV + TL) groups after 7 days of administration were significantly higher than those of the controls. In addition, a marked increase in the plasma levels of alanine and aspartate amino transferases were observed in the (SV + CyA) groups.

Animals↗

Effects of hypokalaemia on arrhythmogenic risk of quinidine in rats.

Plasma potassium concentration plays an important role in the induction of arrhythmia and is closely related to the arrhythmogenicity of various drugs. We quantitatively analyzed the influence of plasma potassium concentration on QT intervals before drug administration and on drug-induced QT prolongation, to estimate the risk of drug-induced arrhythmia under hypokalaemic conditions. The hypokalaemic models were produced by intraperitoneal administration of furosemide and hydrochlorothiazide in male Sprague-Dawley rats. The relationship between the changes in QT intervals and time profiles of plasma quinidine (QND) concentration were analyzed during constant intravenous infusion of QND (10 or 30 mg/kg/h) and post infusion in normal and hypokalaemic rats. The plasma QND concentration reached the therapeutic range (3-7 microg/ml) at the high infusion rate (30 mg/kg/h). No pharmacokinetic differences between normal and hypokalaemic rats were observed. QND induced QT prolongation in parallel with the plasma concentration without hysteresis. Although the potency of QND for QT prolongation was not affected by hypokalaemia, the QT intervals before drug administration were significantly prolonged in hypokalaemic rats (65.90 +/- 1.40 vs 56.60 +/- 0.748 msec, mean +/- SEM, p < 0.0001). Thus, the prolongation of QT intervals before drug administration may act as a risk factor of arrhythmia under hypokalaemic conditions.

Animals↗

Effect of cilastatin on renal handling of vancomycin in rats.

To provide insights into the possibility of reducing the nephrotoxicity of vancomycin (VCM) by cilastatin, the effect of cilastatin on the renal handling of VCM, as well as on glomerular filtration rate (GFR) and plasma protein binding of VCM, were studied using rats. After a bolus intravenous (iv) dose of VCM (100 mg/kg), concomitant cilastatin administration (100 mg/kg, iv) resulted in a significant increase in the total VCM clearance and significant decrease in the kidney uptake clearance of VCM, defined as kidney VCM concentration vs AUC ratio. Moreover, after a 3-h continuous iv infusion of VCM (18 or 90 mg/h/kg), significant decrease in the kidney uptake clearance of VCM was observed with concomitant cilastatin iv infusion (300 mg/h/kg). On the other hand, GFR and VCM plasma protein binding did not show any significant change with cilastatin. From the observation that cilastatin decreased the kidney uptake clearance of VCM and enhanced its urinary excretion, it was suggested that cilastatin inhibited the reabsorption of VCM in the renal proximal tubular cells. Thus, it may be possible that cilastatin alleviates the nephrotoxicity of VCM due to reduced accumulation and accelerated renal excretion of VCM.

Animals↗