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Barbiturate and nonbarbiturate sedative hypnotic intoxication in children.

This article reviews the pharmacology, toxicology, and treatment of both barbiturate and nonbarbiturate sedative hypnotic overdose. Although poisoning with these agents has declined over recent years, intoxication with them can still result in a life-threatening situation requiring immediate assessment and treatment.

Anti-Anxiety Agents↗

Overdose of cyclobenzaprine, the tricyclic muscle relaxant.

A case of cyclobenzaprine (Flexeril) overdose in a 31-year-old woman is presented. The treatment rendered was analogous to treatment protocols implemented for tricyclic overdose. A review of the pharmacology of cyclobenzaprine, as well as the management of patients who overdose on this drug, is presented.

Adult↗

New developments in the therapy of intoxications.

There has been a significant evolution in the clinical management of the poisoned patient over the last decade. Interventions that were once the cornerstone of treating the poisoned patient have become passé or have come under intense scrutiny. The advent of evidence-based medicine has forced clinical scientists to re-evaluate standard therapies. Gastrointestinal decontamination with either emesis or gastric lavage was the foundation of the initial management of most poisoned patients. Examination of the published literature demonstrated that neither emesis nor lavage changed the ultimate outcome of poisoned patients, and most poison centers have abandoned their use. Even the use of activated charcoal has been questioned. A multitude of studies demonstrated that the effectiveness of activated charcoal diminished significantly 30-60 min after the ingestion of a poison. No study has demonstrated that charcoal changed patient outcome. Cathartics have been deemed to be ineffective and potentially dangerous and are never indicated. Whole bowel irrigation should not be used routinely in the management of the poisoned patient. Multiple dose activated charcoal and urinary alkalinization, commonly used to enhance the elimination of some poisons, have limited usefulness. While these 'old' and more general methods of 'detoxification' have thus failed in most cases to improve or change patient outcome, the use of more specific antidotes, tailored to the exact cause of intoxication is to be considered. Very few antidotes, however, are used on a consistent basis in the management of poisoned victims. The indiscriminate use of antidotes may even be harmful to the patient and incur an inordinate expense. In addition to the commonly known antidotes N-acetylcysteine (acetaminophen, paracetamol), naloxone (opioids) and flumazenil (benzodiazepines), new antidotes include fomepizole to treat ethylene glycol and methanol poisoning and Crotalidae Polyvalent Immune Fab (Ovine) for pit viper envenomation.

Antidotes↗

Gastrointestinal decontamination after poisoning. Where is the science?

The approach to the use of gastrointestinal decontamination procedures in the treatment of ingested toxins has changed in recent years. Many toxicologists and physicians have taken strong positions either for or against the use of emesis, gastric lavage, activated charcoal, or other procedures. What is the scientific basis for these positions? This article reviews and comments on the published studies comparing the effectiveness of these widely used procedures.

Animals↗

Tubulosine: an antitumor constituent of Pogonopus speciosus.

From the antitumor-bioactive sap of Pogonopus speciosus, tubulosine [1] was isolated, by activity-directed fractionation using the brine shrimp lethality test, as the major antitumor constituent. 1H-nmr assignments, obtained from HETCOR and COSY, and X-ray crystallographic results are reported for the first time. Psychotrine [2] was also isolated, and its spectral data are also reported.

Antineoplastic Agents, Phytogenic↗