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Biomedical subjects

T Kumai

Publications and source records attributed to T Kumai.

At least 37 records · Page 2Linked to original sources

Effect of antenatal dexamethasone treatment on Ca2+-dependent nitric oxide synthase activity in rat lung.

We investigated the effects of dexamethasone on nitric oxide synthase activity, nitrate/nitrite concentration, and cGMP concentration in the lungs of premature and full-term neonate rats. Dexamethasone or vehicle alone was administered to the mother (1 mg/kg/d, s.c., 2 d), and the neonate was killed 24 h after birth. Ca2+-dependent nitric oxide synthase activity and nitrate/nitrite and cGMP concentrations in lungs of dexamethasone-treated neonates, both premature and full-term, were significantly higher than those in the lungs of the control rats. Ca2+-dependent nitric oxide synthase activity, nitrate/nitrite concentration, and cGMP concentration in the lungs of control rats showed developmentally associated increases during late gestation and in the early postnatal period. The activation of the nitric oxide synthasenitric oxide-cGMP system by antenatal dexamethasone treatment may be related to the improvement of pulmonary function by antenatal glucocorticoid therapy to minimize respiratory distress syndrome.

Animals↗

Characteristics of event related potentials elicited by trains of teeth clenching in humans.

Event related potentials were recorded on the human scalp during a foot pedal task, a hand gripping task, and a teeth clenching task. These were carried by targeting four trains of clicks, each at an interval of 1 sec, which were repeated 20 times at random frequencies. The brain potentials were recorded from midline-frontal (Fz), -central (Cz) and -parietal (Pz) sites using surface electrodes. Positive potentials like P3 were elicited predominantly at the frontal site (Fz); those for the clenching task were slower and smaller. The magnitudes of the P3 potentials showed rough facilitation with trains of movement of the tasks. If it is assumed that the observed potentials involve an inhibition or reset of motor neurons referring to the tasks, the facilitation might be expedient for the neurons to recover the potential condition more quickly, which is important in preparing for the next action.

Adolescent↗

Multiple cytochrome P-450 subfamilies are co-induced with P-glycoprotein by both phenothiazine and 2-acetylaminofluorene in rats.

We studied the effects of two P-glycoprotein (P-gp) inducers, 2-acetylaminofluorene (2-AAF) and phenothiazine (PTZ), administered intraperitoneally, on the activities and content of hepatic cytochrome P-450 (CYP) subfamilies in hepatic microsomes of Sprague-Dawley rats. After 4-day administration of 2-AAF or PTZ, the P-gp content was increased. The total CYP content after PTZ treatment was significantly increased compared with that of controls. The CYP1A, CYP2B and CYP3A2 contents were induced, while the CYP2C6, CYP2C11 and CYP2E1 contents remained unaffected. A marked increase in CYP1A1 was found after administration of each compound. Ethoxyresorufin O-deethylase, pentoxyresorufin O-deethylase, and testosterone 6beta hydroxylation activities showed a significant increase after both 2-AAF and PTZ treatments. In particular, ethoxyresorufin O-deethylase exhibited more than ten times greater activity than that of the controls after the treatments. These results suggest that P-gp inducers affect several CYP subfamilies in addition to CYP3A, which is reported to be up-regulated coordinately with P-gp by a CYP3A inducer.

2-Acetylaminofluorene↗

Carbamazepine induces multiple cytochrome P450 subfamilies in rats.

We compared the effect of three different doses (30, 60, and 100 mg/kg) of carbamazepine (CBZ) administered intraperitoneally for 1, 3, and 7 days on the activity and protein content of hepatic cytochrome P450 (CYP) subfamilies in Sprague-Dawley rats. After 3-day- and 7-day administration with CBZ, the total CYP content had increased in a dose-dependent fashion. Among six enzyme activities examined, only aniline hydroxylase activity remained unchanged after 7-day treatment with CBZ. Pentoxyresorufin O-deethylase activity showed the most significant increase and was induced up to 7 days in a time-dependent fashion. Pretreatment of rats with cycloheximide significantly suppressed the pentoxyresorufin O-deethylase induction by one dose of 100 mg/day CBZ. Immunoblot analysis showed a significant correlation between the protein content of each isoenzyme examined and its activity except CYP2E1 after 7-day treatment with CBZ. Similar results were obtained in the mRNA levels of CYP subfamilies. These results suggested that CBZ may induce multiple CYP subfamilies, except CYP2E1, and the activity and the protein content of CYP2B showed the greatest increase with increased CYP2B mRNA.

Analgesics, Non-Narcotic↗

Effects of nitric oxide synthase inhibitor on tyrosine hydroxylase mRNA in the adrenal medulla of spontaneously hypertensive and Wistar Kyoto rats.

We studied the effects of N(G)-nitro-l-arginine methyl ester (L-NAME) on catecholamine levels, tyrosine hydroxylase (TH) activity, and TH mRNA levels in the adrenal medulla of spontaneously hypertensive rats (SHR) and Wistar Kyoto rats (WKY). L-NAME (100 mg/L in drinking water) and atropine (10 mg/L in drinking water) were administered for 2 weeks. Epinephrine and norepinephrine levels, TH activity, and TH mRNA levels in the adrenal medulla of L-NAME-treated WKY were significantly decreased. These parameters were not significantly altered in the adrenal medulla of L-NAME-treated SHR. Nitrite/nitrate levels in the adrenal medulla of L-NAME-treated WKY were significantly decreased; however, no significant change in L-NAME-treated SHR was observed. Ca(2+)-dependent nitric oxide synthase (NOS) activity in the adrenal medulla of SHR was significantly decreased compared to that of WKY. TH mRNA levels in L-NAME + atropine-treated and L-NAME-treated WKY were significantly lower than TH mRNA levels in control WKY. These results suggest that nitric oxide in the adrenal medulla may enhance the catecholamine biosynthetic pathway via increased TH mRNA expression. Our results also suggest that this effect is suppressed in SHR due to decreased NOS activity in the adrenal medulla.

Adrenal Medulla↗

Ursodeoxycholic acid prevents hepatic cytochrome P450 isozyme reduction in rats with deoxycholic acid-induced liver injury.

BACKGROUND/AIMS: Hydrophobic bile acids, such as deoxycholic acid produce cholestatic liver injury. Ursodeoxycholic acid has been shown to be useful in the treatment of cholestatic liver disease. METHODS: In this study, we investigated the effects of deoxycholic acid or ursodeoxycholic acid (1% of diet, for 14 days) and their combination (1% each) on expression of hepatic cytochrome P450 isozymes, their related enzyme activities and mRNA level in rats. RESULTS: Adding 1% deoxycholic acid to chow caused a marked increase in serum total bilirubin (47-fold) and total bile acid (8-fold) concentrations and in alkaline phosphatase (2.5-fold, p<0.01) and alanine aminotransferase activities (23.5-fold, p<0.01). Adding the same dose of ursodeoxycholic acid along with the deoxycholic acid mitigated both the rise in serum total bilirubin and bile acid concentrations and that in alkaline phosphatase and alanine aminotransferase activities, although the use of ursodeoxycholic acid alone did not affect any of the above. Feeding 1% deoxycholic acid caused a decrease (48% of control) in total cytochrome P450 content in hepatic microsomes. Addition of 1% ursodeoxycholic acid along with the 1% deoxycholic acid completely prevented the decrease in total cytochrome P450 content. Feeding ursodeoxycholic acid alone did not affect the total cytochrome P450 content. The expression of cytochrome P450 2B1, 2E1, 3A2, 2C6, 2C11 and 4A1 proteins in hepatic microsomes was decreased by deoxycholic acid (44, 51, 23, 59, 30 and 74% of control, respectively). Likewise, the activities of cytochrome P450 2B1 (pentoxyresorufin O-depentylation), 2E1 (aniline p-hydroxylation) and 3A2 (testosterone 6beta-hydroxylation) isozymes and the 3A2 mRNA levels in liver were decreased by deoxycholic acid. Addition of 1% ursodeoxycholic acid to 1% deoxycholic acid also prevented the decrease in these cytochrome P450 proteins, related enzyme activities and mRNA levels in liver. CONCLUSIONS: These results indicate that, in rats with deoxycholic acid-induced liver injury, ursodeoxycholic acid prevents the decrease in hepatic cytochrome P450 isozymes and suggest that ursodeoxycholic acid is useful for the treatment of liver injury in terms of aiding the normalization of the hepatic drug-metabolizing system.

Animals↗

Ticlopidine decreases the in vivo activity of CYP2C19 as measured by omeprazole metabolism.

AIMS: To examine the effect of ticlopidine administration on the activities CYP2C19 and CYP3 A in vivo using omeprazole as a model substrate. METHODS: A single dose of 40 mg omeprazole was administered orally with or without ticlopidine (300 mg daily for 6 days) to six Japanese extensive metabolisers with respect to CYP2C19. Blood samples were taken for the measurement of plasma concentrations of omeprazole, 5-hydroxyomeprazole and omeprazole sulphone. RESULTS: Ticlopidine administration increased omeprazole Cmax (1978+/-859/ 3442+/-569 (control phase/ticlopidine phase, nm )) and decreased the oral clearance of omeprazole (CL/F; 25.70+/-16. 17/10.76+/-1.16 (control phase/ticlopidine phase, l h-1 )) significantly. The 5-hydroxyomeprazole to omeprazole AUC ratio (0. 817+/-0.448/0.236+/-0.053 (control phase/ticlopidine phase)) and the 5-hydroxyomeprazole to omeprazole sulphone AUC ratio (1.114+/-0. 782/0.256+/-0.051 (control phase/ticlopidine phase)) were decreased significantly after ticlopidine administration. The decrease in omeprazole CL/F and the 5-hydroxyomeprazole to omeprazole AUC ratio correlated significantly with their respective absolute values when the drug was given alone. The decrease in CL/F following ticlopidine administration correlated with that in the 5-hydroxyomeprazole to omeprazole AUC ratio. CONCLUSIONS: These findings suggest that ticlopidine inhibited the in vivo activity of CYP2C19, but not, or to a lesser extent CYP3 A4, and that the magnitude of inhibition by ticlopidine is related to the in vivo activity of CYP2C19 before inhibition.

Adult↗

Role of CYP3A in bromperidol metabolism in rat in vitro and in vivo.

1. The aim was to identify whether CYP3A metabolizes bromperidol (BP), an antipsychotic drug, to form 4-fluorobenzoyl-propionic acid (FBPA) in hepatic microsomes from 8-week-old male Sprague-Dawley rats and to investigate whether an inhibitor or an inducer of CYP3A affects BP pharmacokinetics in rat. 2. In an in vitro study, only troleandomycin showed marked inhibition of FBPA formation among several specific CYP isozyme inhibitors studied including troleandomycin, diethyldithiocarbamate, furafylline and quinine. Anti-rat CYP3A2 serum inhibited FBPA formation by 80%, whereas other anti-rat CYP sera (1A1, 1A2, 2B1, 2C11, 2E1) only slightly inhibited it. 3. In a pharmacokinetic study, BP half-life was prolonged to 137% of the average control value by 7-day treatment with erythromycin, a CYP3A inhibitor, and shortened to 58% of the control by 2-day treatment with dexamethasone, a CYP3A inducer. BP clearance was reduced to 68% of the control by erythromycin and was increased to 145% of control by dexamethasone. 4. These results suggested that BP biotransformation is catalysed mainly by CYP3A to form FBPA in rat and that the modification of this enzyme activity would affect the pharmacokinetics of BP.

Animals↗

Role of CYP3A in haloperidol N-dealkylation and pharmacokinetics in rats.

Haloperidol (HP), an antipsychotic drug, is N-dealkylated by cytochrome P450 (CYP) to 4-fluorobenzoylpropionic acid (FBPA). The purpose of this study was to identify whether CYP3A metabolizes HP to FBPA in hepatic microsomes of rats and to investigate whether an inhibitor or an inducer of CYP3A affects HP pharmacokinetics in rats. The rate of FBPA formation was determined in hepatic microsomes from 8-week-old male Sprague-Dawley rats. Among several specific CYP isozyme inhibitors including troleandomycin (TAO), diethyldithiocarbamate, furafylline and quinine, only TAO showed marked inhibition of FBPA formation. Anti-rat CYP3A serum inhibited FBPA formation by 76.4%, while other anti-rat CYP sera (1A1, 1A2, 2B1, 2C11, 2E1) only slightly did. In a pharmacokinetic study, 8-week-old male Sprague-Dawley rats were given 0.5 mg/kg HP intravenously after treatment with 100 mg/kg erythromycin, a CYP3A inhibitor, or 80 mg/kg dexamethasone, a CYP3A inducer, intraperitoneally once a day for 7 days or 2 days, respectively or untreated. HP half-life was prolongated to 171% of the average control value by erythromycin and shortened to 49% of control by dexamethasone. HP clearance was reduced to 63% of control by erythromycin and was increased to 167% of control by dexamethasone. These results suggested that CYP3A mainly catalyzed HP to FBPA in rats, and the modification of this enzyme activity would affect the pharmacokinetics of HP.

Animals↗

A comparison of the effect of five phenothiazines on hepatic CYP isoenzymes in rats.

We examined the influence of five phenothiazine derivatives on the activity and the expression of hepatic cytochrome P450 (CYP) 1A, 2B, 2C6, 2C11, 2E1 and 3A2 in male Sprague-Dawley rats. Twenty mg/kg of phenothiazine, chlorpromazine, and thioridazine, or 1 mg/kg of trifluoperazine and perphenazine was administered intraperitoneally for 4 consecutive days. Phenothiazine increased the total CYP content and induced CYP1A, CYP2B, and CYP3A. Western blot analysis showed marked induction of CYP1A1 by phenothiazine. Chlorpromazine induced CYP2B, and CYP3A without a significant increase in the CYP content. Thioridazine decreased the total CYP content and reduced CYP2C11, CYP2E1, and CYP3A. Neither trifluoperazine nor perphenazine significantly altered the catalytic activity or the protein level of any enzyme examined. These results suggest that the antipsychotic phenothiazine derivatives examined here hardly affect CYP1A at the pharmacological doses, while phenothiazine does induce it. Although a relatively short period and small dose of administration might counteract the influence, trifluoperazine and perphenazine have less effect on CYP subfamilies than chlorpromazine or thioridazine.

Animals↗

Induction of hepatic CYP2B in foetal and neonatal rats after maternal administration of phenobarbital.

We examined hepatic cytochrome P450 (CYP) induction in rat foetuses and neonates by phenobarbital administered through placenta or breast feeding. In an intraperitoneal study, phenobarbital was administered intraperitoneally to mother rats once a day for 7 consecutive days before delivery. The livers were removed from foetuses, neonates, and mothers just before and 5 and 10 days after delivery. In oral administration study, water containing phenobarbital was given orally ad libitum from day 13 of pregnancy to 3 weeks after delivery (end of lactation). The livers were removed from neonates and mothers just before and one week after delactation. Phenobarbital administered intraperitoneally increased both the activity and the protein expression of CYP2B in 5-day-old neonates, even though the administration ended before delivery. This increase had disappeared in 10-day-old neonates. In mother rats, phenobarbital increased CYP2B just before and 5 days after delivery, while no increase was detected 10 days after delivery. Phenobarbital administered orally also increased both the activity and the protein expression of CYP2B of neonates and mothers during lactation and this increase also disappeared 1 week after delactation. Neither activity nor protein expression of CYP3A were induced in perinates at any age examined in either administration route. In mother rats, increase in CYP3A was found only just before delivery in the peritoneal administration study. Our results suggest that phenobarbital administered through placenta or breast milk transiently induces hepatic CYP2B in newborn rats but that the influence of phenobarbital does not last long.

Administration, Oral↗

Hindfoot alignment of hallux valgus evaluated by a weightbearing subtalar x-ray view.

A new radiographic view was proposed to evaluate alignment of the hindfoot under weightbearing condition. The ankle joint and the middle and posterior facets of the subtalar joint were clearly visualized in all radiographs. A comparative study was made of 104 feet with hallux valgus in 58 female patients and 67 normal feet in 57 normal female subjects (control group). The mean value of the angle between the axis of the tibia and a line on the surface of the ankle joint on the talus was significantly larger in the group with hallux valgus than in the control group. Likewise, the mean value of the angle between the axis of the tibia and a line on the surface of the posterior facet of the subtalar joint on the calcaneus in the group with hallux valgus was 95.3 degrees, significantly larger than the 87.9 degrees in the control group. These findings showed that the ankle joint and the posterior facet of the subtalar joint in hallux valgus have valgus deviation. The hindfoot in a foot with hallux valgus has a tendency toward pronation. No previous study has measured the inclination of the posterior facet of the subtalar joint directly in weightbearing.

Adolescent↗

Development of the ball-and-socket ankle as assessed by radiography and arthrography. A long-term follow-up report.

We studied the development of ball-and-socket deformity of the ankle by arthrography and radiography in 14 ankles of ten patients with congenital longitudinal deficiency of the fibula accompanied by various anomalies. The mean follow-up was for 18 years 10 months. In three ankles in infants less than one year old the lateral and medial sides of the ankle were already slightly round. In another seven ankles the ball-and-socket appearance developed before the age of five years. This was thought to be due to osseous coalition which limits eversion and inversion. In another four ankles in children who were over the age of one year at the initial examination, the deformity was demonstrated by arthrography and radiography at their first examination. Ball-and-socket deformity accompanied by tarsal coalition is an acquired deformity secondary to limitation of movement of the subtalar and midtarsal joints. It has completely developed by about five years of age.

Adolescent↗

Arthroscopic drilling for the treatment of osteochondral lesions of the talus.

BACKGROUND: An osteochondral lesion of the talus is a relatively rare disorder of the ankle. While a number of treatment options have been reported, it appears to be difficult to manage all lesions with a single approach. We evaluated the indications for and the results of arthroscopic drilling for the treatment of an osteochondral lesion of the talus. METHODS: Eighteen ankles (seventeen patients) with a symptomatic osteochondral lesion of the talus were examined. The ages of the patients ranged from ten to seventy-eight years (mean, 28.0 years) at the time of the operation, and the patients were followed postoperatively for two to 9.5 years (mean, 4.6 years). After the continuity of the cartilage overlying the lesion and the stability of the lesion had been confirmed, arthroscopic drilling was performed with use of a Kirschner wire that was 1.0 to 1.2 millimeters in diameter. A cast was not applied postoperatively, and full weight-bearing was allowed six weeks after the procedure. RESULTS: The clinical result was good for thirteen ankles and fair for five; all ankles had improvement. Twelve of the thirteen ankles that were in patients who were less than thirty years old had a good result. In contrast, only one of the five ankles in patients who were fifty years old or more had a good result. Thus, the clinical results tended to be better for younger patients. Improvement was seen radiographically in fifteen ankles. However, the three ankles in patients who were more than sixty years old were found to have no improvement on radiographic examination. Analysis of the group of patients who had a history of trauma revealed that the mean interval between the injury and the operation was 6.3 months for the three ankles that had a good radiographic result and 11.3 months for the six that had a fair result. Thus, the radiographic results tended to be better when the interval between the injury and the operation was shorter. CONCLUSIONS: Arthroscopic drilling for the treatment of medial osteochondral lesions of the talus does not require osteotomy of the medial malleolus or postoperative immobilization; thus, the procedure is less invasive than other types of operative treatment for the condition and it allows early resumption of daily activities and sports. On the basis of the results in this study, we believe that the procedure is effective and useful in young patients, especially those who have not yet had closure of the epiphyseal plate. A specific indication for the procedure is an early lesion with only mild osteosclerosis of the surrounding talar bone, continuity of the cartilaginous surface, and stability of the osteochondral fragment.

Adolescent↗

Dihydropyrimidine dehydrogenase activity and fluorouracil pharmacokinetics with liver damage induced by bile duct ligation in rats.

Hepatic metabolism is the main determinant in the pharmacokinetics of 5-fluorouracil (5-FU). Its disposition might be affected with liver dysfunction. In the present study, the influence of liver damage induced by bile duct ligation on dihydropyrimidine dehydrogenase (DPD), a rate-limiting enzyme in 5-FU catabolism, CYP2B, and 5-FU pharmacokinetics were compared in male Sprague-Dawley rats. After 3 weeks of the ligation in two different groups of animals for in vitro and pharmacokinetic experiments, significant increases in serum bilirubin level and spleen weight were found in both groups. No significant differences were noted in bilirubin level or spleen weight of the bile duct ligation group between the two experiment groups. In the in vitro experiment, DPD activity and protein levels determined by Western blot analysis in the bile duct ligation group were slightly but significantly greater than those of a sham-operated group, whereas CYP2B activity and protein level were significantly reduced. These findings were supported by mRNA levels of CYP2B and DPD. When 40 mg/kg 5-FU was administered i.v. in the pharmacokinetic experiment, no significant differences in pharmacokinetic parameters were found between the bile duct ligation and sham-operated groups. These results suggested that DPD activity and protein level were maintained and that 5-FU pharmacokinetics was not altered in the presence of liver damage accompanied by a significant reduction in CYP2B activity and protein level, supporting previous clinical studies showing that mild to moderate liver dysfunction does not affect 5-FU disposition.

Animals↗

Effects of anti-androgen treatment on the catecholamine synthetic pathway in the adrenal medulla of spontaneously hypertensive rats.

We investigated the effects of the antiandrogen flutamide on the activity of tyrosine hydroxylase, the levels of its encoding mRNA, and catecholamine levels in the adrenal medulla of male spontaneously hypertensive rats (SHR) and Wistar Kyoto rats (WKY). Flutamide (30 mg/kg) was administered subcutaneously daily (between 9 and 15 weeks of age). The systolic blood pressure of flutamide-treated SHR rats was lower than that of control SHR. Epinephrine and norepinephrine levels, tyrosine hydroxylase activity, and the levels of encoding mRNA in the adrenal medulla were significantly lower in flutamide-treated SHR rats than in paired controls. Systolic blood pressure, epinephrine and norepinephrine levels, tyrosine hydroxylase activity, and encoding mRNA in the adrenal medulla of WKY rats showed no significant differences between flutamide-treated and control groups. These findings suggested that flutamide may have cardiovascular effects through alteration of the catecholamine synthetic pathway caused by removal of androgen receptor stimulation on the expression of tyrosine hydroxylase in the adrenal medulla of male SHR rats.

Actins↗

Effects of glucocorticoids on pharmacokinetics and pharmacodynamics of midazolam in rats.

We investigated the effect of dexamethasone (80 mg/kg per day for 2 days) and prednisolone (600 mg/kg per day for 2 days, equivalent to dexamethasone for glucocorticoid (GC) potency) on both pharmacokinetics and pharmacodynamics of midazolam (MDZ), a substrate for cytochrome P450 (CYP) 3A, in 8-week-old male Sprague-Dawley rats. Animals received a single injection of MDZ (pharmacokinetic study, 10 mg/kg; pharmacodynamic study, 55.5 mg/kg) in the tail vein 24 h after the last dose of GC or placebo. The elimination half-life (t(1/2)) and the area under the concentration-time curve of MDZ were significantly reduced by pretreatment with dexamethasone to 58.9% and 44.7% of the control value, respectively, and the clearance of MDZ was significantly increased by dexamethasone. Similar changes observed by prednisolone pretreatment did not reach significance. The t(1/2) of the dexamethasone pretreatment group (14.4+/-0.7 min) was significantly shorter than that of the prednisolone group (20.9+/-1.5 min). The amount of CYP3A2 protein and the activity of erythromycin N-demethylase were significantly increased by dexamethasone and prednisolone pretreatments, but dexamethasone showed a greater effect than prednisolone. Sleeping time was significantly shortened by dexamethasone and prednisolone pretreatment to 38.7% and 57.1% of control value, respectively. The current study demonstrates that the anesthetic effect of MDZ would be reduced in patients treated with dexamethasone or prednisolone, and that the CYP3A induction was greater by dexamethasone than by prednisolone, implying that the potency of CYP3A induction may differ among GCs even when GC activity is the same.

Adjuvants, Anesthesia↗

A comparison of the inhibitory effects of four volatile anaesthetics on the metabolism of chlorzoxazone, a substrate for CYP2E1, in rabbits.

BACKGROUND: Halothane inhibits in vitro and in vivo activity of cytochrome P-450 (CYP) 2E1. There are several fluorinated volatile anaesthetics besides halothane, and most of them are defluorinated by CYP2E1. It is unclear whether other fluorinated anaesthetics inhibit the in vivo activity of CYP2E1. METHODS: We compared the inhibitory effects of therapeutic concentrations of four inhalational anaesthetics, halothane, enflurane, isoflurane, and sevoflurane, on chlorzoxazone metabolism in rabbits receiving artificial ventilation. RESULTS: All four inhalational anaesthetics decreased arterial blood pressure and increased plasma chlorzoxazone concentration. However, no significant differences in the plasma chlorzoxazone concentration were found between the four anaesthetics. The estimated chlorzoxazone clearance increased after beginning inhalation with all four agents, but no significant difference in clearance was noted between agents. CONCLUSIONS: At therapeutic concentrations, the in vivo inhibitory effect on chlorzoxazone metabolism was similar for all four inhalational anaesthetics examined, even though their chemical characteristics and extent of hepatic metabolism differ considerably.

Anesthetics, Inhalation↗