Staffing level and treatment effectiveness.
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Biomedical subjects
Publications and source records attributed to R E Becker.
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Tardive dyskinesia, a syndrome of involuntary motor movements, can be a permanent consequence of the long-term use of antipsychotic drugs. While there is no well-established drug treatment, case reports and the results of a few clinical studies suggest that drugs that facilitate the GABA-ergic system may decrease the abnormal movements. One such class of drugs is the benzodiazepines. We administered diazepam to 13 subjects in a 24-week, crossover design study. Tardive dyskinesia and psychopathology were assessed by blind raters using the Abnormal Involuntary Movement Scale and the Brief Psychiatric Rating Scale (BPRS). The means of all movement measurements improved from the baseline, with orofacial, subtotal, symptom severity, and total reaching significance. However, we were unable to demonstrate a drug effect; the patients improved to a similar degree whether or not they received diazepam. Their psychiatric disorders did not worsen with diazepam administration and, in fact, improved slightly; the activation factor of the BPRS was significantly improved over baseline. Our results suggest that diazepam is not effective in managing the movements of tardive dyskinesia and that behavior modification strategies be investigated to help patients control symptoms.
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Transdermal delivery of cholinesterase inhibitors (ChEI) for treatment of dementia would have advantages associated with continuous dosing and enhanced compliance, but feasibility depends on achieving desired levels of central nervous system enzyme inhibition. We developed a patch technique for assessing delivery of ChEI in rats and examined two organophosphate compounds, metrifonate and DDVP, and a carbamate, heptylphysostigmine, for production of peripheral and central nervous system ChE inhibition at target levels. With DDVP, a log-dose/percent brain AChE inhibition was obtained over a range of 10-65% inhibition within a 10-fold concentration of inhibitor in the patch. Brain cholinesterase was inhibited up to seven days after a 24-h patch application. Long-term inhibition was greater than that attained after intramuscular injection, but without the rapid initial inhibition peak seen with the latter route. In contrast to DDVP, sustained high levels of brain enzyme inhibition could not be produced by transdermal delivery of metrifonate or heptylphysostigmine. Apparently DDVP has features, i.e., liquid state in pure form and high inhibitor potency, which make it particularly suitable for patch administration.