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PubMed · 1560293

Malignant hyperthermia: a review.

Abstract

Malignant hyperthermia (MH) is a rare genetic myopathy that was first described as a fatal complication of general anesthesia in 1960. It is estimated to affect approximately 1 in 15,000 pediatric patients and 1 in 40,000 adult middle-aged patients. The mode of transmission is genetic: the severest form is autosomal dominant, and the less severe, autosomal recessive. Thus, both men and women can have MH, although there is a slightly higher incidence in the male pediatric population. Malignant hyperthermia is usually triggered by halogenated anesthetic agents with or without depolarizing muscle relaxants. The classic diagnostic triad consists of skeletal muscle rigidity, metabolic acidosis, and elevated body temperature. The definitive diagnosis is suspected susceptible individuals is revealed by exposing an intact muscle fiber to caffeine and halothane in varying concentrations. An abnormal contracture response is hypothesized to be the result of an increase in the release of calcium ion from the sarcoplasmic reticulum in response to neuronal stimulation leading to a hypermetabolic state. The mainstay of treatment is dantrolene, given either prophylactically in susceptible patients or immediately whenever a malignant hyperthermic episode is suspected.

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BibTeXRIS

C Johnson, K J Edleman. 1992. Malignant hyperthermia: a review.. https://pubmed.ncbi.nlm.nih.gov/1560293/

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Dantrolene reconstitution: can warmed diluent make a difference?

STUDY OBJECTIVE: To evaluate the drug constitution of dantrolene by comparing reconstitution with diluent at ambient and warmed temperatures, so as to determine whether differences in reconstitution time might provide clinical or therapeutic advantages. DESIGN: Randomized study. SETTING: University-affiliated medical center. MEASUREMENTS AND MAIN RESULTS: We reconstituted 10 vials of dantrolene, 5 with room-temperature diluent (sterile water) and 5 with diluent warmed to approximately 41 degrees C. Injection of diluent (10 seconds) was followed by 5 seconds of observation and recurring 15-second cycles (10 seconds of moderate manual agitation followed by 5 seconds of observation) until full reconstitution. In a second series of reconstitutions, warmed diluent injection was immediately followed by predetermined lengths of moderate manual agitation, and reconstitution status was noted at the end of each trial. Time to full reconstitution was based on a series of predetermined objective criteria. In experiment 1, with ambient-temperature diluent (22.0 degrees C -23.1 degrees C), reconstitution occurred in 90 to 130 seconds; whereas warmed diluent (40.7 degrees C-41.3 degrees C) reconstitution occurred in less than 30 seconds (P<0.004). In experiment 2, with warmed diluent (40.9 degrees C), full reconstitution occurred after 10 seconds of injection and 18 seconds of moderate manual agitation. CONCLUSION: The use of prewarmed diluent to 41 degrees C significantly reduces dantrolene reconstitution time. Further studies should evaluate the efficacy of dantrolene reconstituted with warmed diluent.

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