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PubMed · 7582656

Rational polypharmacy.

Abstract

The development of assays for plasma antiepileptic drug concentrations has led to the discovery of many pharmacokinetic interactions, some causing drug intoxication and others resulting in ineffective drug concentrations. In the 1970s, a number of epileptologists began to argue that single drug therapy was desirable in the treatment of epilepsy and this has become the accepted policy when initiating therapy. About 75% of patients treated in this way will achieve remission with a minimum of adverse drug reactions. The remainder, however, continue to have unacceptable seizures and usually receive combinations of drugs. Evidence indicates that the response rate on adding a second drug is low, although in some studies of new drugs such as vigabatrin up to one-half of patients receiving add-on therapy experience a 50% or greater reduction in seizure frequency, and 10-15% are seizure-free in the short term. Unfortunately, randomized placebo-controlled studies have not been undertaken to compare the relative merits of monotherapy and combination therapy with respect of seizure control and adverse effects. It is argued that the time has come to do so, particularly in view of the known mode of action of some of the new drugs. Perhaps blocking excitation with one drug at the same time as enhancing inhibition with another may be better than doing only one or the other.

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BibTeXRIS

A Richens. 1995. Rational polypharmacy.. https://doi.org/10.1016/s1059-1311(05)80063-9

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Normal serum free thyroid hormone concentrations in patients treated with phenytoin or carbamazepine. A paradox resolved.

OBJECTIVE: To address the paradox that phenytoin- and carbamazepine-treated patients have decreased serum free thyroxine (T4) and triiodothyronine (T3) concentrations but appear clinically euthyroid and have normal serum thyroid-stimulating hormone (TSH) concentrations. DESIGN: In vitro studies comparing measurements of total and free T4 and T3 by ultrafiltration assay (undiluted serum) and a commercial free T4 estimate kit in control serum samples or serum samples containing added therapeutic levels of phenytoin or carbamazepine. These measurements were made in serum samples diluted 1:5 with either identical serum or phospate buffer, pH 7.4, and in serum samples from patients with seizure disorders who were treated with phenytoin or carbamazepine. SETTING: A 650-bed teaching hospital. PATIENTS: Selected patients (n=19) who were in good health except for seizure disorder, with stable anticonvulsant drug levels in the upper half of the therapeutic range, and were not taking any other drugs that could affect thyroid parameters. MAIN OUTCOME MEASURE: Serum concentrations of free T4 and free T3 in patients taking phenytoin or carbamazepine vs normal controls. RESULTS: Addition of phenytoin or carbamazepine to normal human serum in vitro resulted in a significant increase in free T4 fraction and free T4 (P<.001). In patients taking phenytoin or carbamazepine, serum total T4 decreased significantly to 60% and 74%, respectively, of the control serum concentration (P<.001 for both phenytoin and carbamazepine); free T4 fraction (by ultrafiltration assay) increased 65% and 44%, respectively (P<.001 for phenytoin, P<.01 for carbamazepine); and free T4 remained unchanged. Free T4 concentration measured by a commercial kit (1:5 serum dilution) was significantly lower than the control concentration in both phenytoin- and carbamazepine-treated patients. Serum free T3 and serum TSH were also normal in phenytoin- and carbamazepine-treated patients. CONCLUSIONS: Therapeutic levels of phenytoin and carbamazepine displace T4 and T3 from serum binding proteins. When added to serum, the drugs effect an increase in free hormone fractions and free T4 and T3. In drug-treated patients, increased free T4 and T3 fractions offset the significant decrease in serum T4 and T3, resulting in normal free T4 and free T3 concentrations. Since currently available clinical tests will continue to show decreased free T4 concentrations in patients taking phenytoin or carbamazepine, clinicians should rely on serum TSH measurements to confirm the euthyroid status of these patients.

Anticonvulsants