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Biomedical subjects

A Fazio

Publications and source records attributed to A Fazio.

75 records · Page 5Linked to original sources

Sodium valproate and valpromide: differential interactions with carbamazepine in epileptic patients.

To evaluate the comparative effects of valproic acid (VPA) and valpromide (VPM) on plasma levels and protein binding of carbamazepine (CBZ) and CBZ-10,11-epoxide (CBZ-E), 12 adult epileptic patients stabilized on CBZ monotherapy were divided into two groups. One group (n = 6) received sodium valproate (1,100 mg/day) for 2 weeks, while the other group (n = 6) was given, for the same period, a dosage of VPM (1,200 mg/day) expected to produce VPA levels equivalent to those achieved with valproate. Plasma CBZ levels were not affected by either treatment. In the valproate-treated group, plasma CBZ-E levels increased by 101% (range, 29-238%) within 1 week of combined therapy (p less than 0.02) and returned to baseline values after VPA treatment was stopped. In the VPM-treated patients, the elevation of plasma CBZ-E levels was much greater. In this group, plasma CBZ-E increased by 330% (range, 110-864%), and this was associated in two patients with the appearance of adverse effects which subsided after reducing the VPM dosage. The plasma protein binding of CBZ and CBZ-E was not affected significantly by VPM or valproate therapy. Plasma VPA levels were similar in the two groups. It is concluded that VPM is not simply a prodrug of VPA. Although both VPA and VPM increase CBZ-E levels--probably by inhibiting the enzyme epoxide hydrolase--the interaction caused by VPM is of much greater magnitude and potential clinical significance.

Carbamazepine↗

Interaction of carbamazepine-10,11-epoxide, an active metabolite of carbamazepine, with valproate: a pharmacokinetic study.

The mechanism responsible for the valproate (VPA)-induced elevation of serum carbamazepine-10,11-epoxide (CBZ-E) levels was investigated in 6 normal subjects who received single oral doses of CBZ-E (100 mg) in a control session and during concurrent treatment with sodium VPA [500 mg twice daily (b.i.d.)]. VPA caused a significant prolongation of CBZ-E terminal half-life (t1/2 from 6.3 +/- 1.2 to 9.0 +/- 2.0 h, mean values +/- SD) and decreased CBZ-E clearance (from 90.6 +/- 18.8 to 63.2 +/- 16.1 ml h-1 kg-1, mean values +/- SD) without affecting CBZ-E apparent volume of distribution (from 0.82 +/- 0.19 to 0.81 +/- 0.24 l kg-1, mean values +/- SD). These findings indicate that VPA impairs the elimination of CBZ-E, presumably by inhibiting its metabolism.

Absorption↗

Carbamazepine-valnoctamide interaction in epileptic patients: in vitro/in vivo correlation.

Six patients stabilized with carbamazepine (CBZ) therapy received an 8-day "add-on" supplement of valnoctamide (VCD), a tranquilizer available over the counter (OTC) in several European countries that exhibits promising anticonvulsant activity in animal models. During VCD intake, serum levels of the active CBZ metabolite, carbamazepine-10,11-epoxide (CBZ-E), increased fivefold from 1.5 +/- 0.7 micrograms/ml at baseline to 7.4 +/- 4.4 micrograms/ml after 4 days of VCD therapy and 7.7 +/- 3.1 micrograms/ml after 7 days of VCD therapy (means +/- SD, p < 0.01). In 4 patients, the increase in serum CBZ-E levels was associated with clinical signs of CBZ intoxication. CBZ-E levels returned to baseline after VCD therapy was discontinued. Serum CBZ levels remained stable throughout the study. The interaction observed in this study is similar to that described in patients treated with CBZ and valpromide (VPD, an isomer of VCD). In a mechanistic study, therapeutic concentrations of VCD inhibited hydrolysis of styrene oxide in human liver microsome preparations. Thus, VCD is a potent inhibitor of microsomal epoxide hydrolase (IC50 15 microM). There was a striking similarity between in vitro and in vivo inhibition potencies. In this study, VCD clearance was higher in epileptic patients (treated with CBZ) than in healthy subjects.

Adult↗