Zinc chloride ingestion in a child: exocrine pancreatic insufficiency.
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Biomedical subjects
Publications and source records attributed to J Brent.
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STUDY OBJECTIVE: To determine whether hyperbaric oxygen (HBO), dapsone, or cyproheptadine decreases the severity of skin lesions resulting from experimental Loxosceles envenomation. DESIGN: Randomized, blinded, controlled study. SETTING: Animal care facility. INTERVENTIONS: We used New Zealand white rabbits. All groups received 20 micrograms of pooled L deserta venom intradermally. Our control group received 4 ml of a 5% ethanol solution by oral gavage every 12 hours for 4 days. The HBO group received hyperbaric oxygen at 2.5 ATA for 65 minutes every 12 hours for 2 days, plus 5% ethanol solution for 4 days. The dapsone group received dapsone 1.1 mg/kg in 5% ethanol by gavage every 12 hours for 4 days. The cyproheptadine group received cyproheptadine .125 mg/kg in 5% ethanol by gavage every 12 hours for 4 days. RESULTS: Total lesion size and ulcer size were followed for 10 days. The lesions were then excised, examined microscopically, and ranked by the severity of the histopathology. The groups did not differ significantly with respect to lesion size, ulcer size, or histopathologic ranking. CONCLUSION: Given the negative result in this study with adequate power to detect meaningful treatment benefits, we cannot recommend hyperbaric oxygen, dapsone, or cyproheptadine in the treatment of Loxosceles envenomation.
The interpretation of postmortem cocaine concentrations is made in an attempt to estimate drug concentrations present at the time of death and thus infer not only drug presence but drug toxicity. Previous data suggest that changes in postmortem blood cocaine concentrations over time are not predictable and interpretation of cocaine levels should be done with caution. However, these data come from autopsy case series where vital information, such as blood cocaine concentration at the time of death, dose and time since last use, and postmortem interval is often not known. The purpose of this study was to characterize postmortem changes in cocaine and metabolite concentrations relative to premortem concentrations over time at two anatomic sites: peripheral blood and vitreous humor, in a controlled, large animal model. Juvenile swine were given cocaine HCl 10 mg/kg as an IV bolus which resulted in seizures and wide complex tachycardia. Five minutes after cocaine administration, animals were euthanized. At time of death and eight hours postmortem, femoral venous blood and vitreous humor (VH) samples were obtained for quantitation of cocaine, benzoyl ecgonine (BE), and ecgonine methyl ester (EME) by GC/MS. There were no significant increases over time in mean femoral vein concentrations of cocaine or BE. However, a large interanimal variability in direction and magnitude of concentration changes was seen. Mean EME concentrations at the femoral site increased significantly over 8 hours (P < 0.03). Mean VH cocaine concentrations at time of death were significantly lower than corresponding blood concentrations (P < 0.02).(ABSTRACT TRUNCATED AT 250 WORDS)
Postmortem blood drug concentrations are obtained routinely for assessment of the cause of mortality. However, the relationship of postmortem drug concentration to blood concentrations at the time of death remains poorly characterized. Using Ketamine sedation, 10 New Zealand white rabbits were sacrificed 20 minutes after oral gavage with liquid acetaminophen 160 mg/kg as a model drug. Blood samples were obtained from peripheral (femoral vein) and central sites (heart & inferior cava) over time and compared with heart blood concentrations obtained at the time of sacrifice. The mean +/- SE antemortem acetaminophen concentration was 63.1 +/- 14.6 mcg/ml. Postmortem central blood concentrations were as follows: T = 3 h: 200.8 +/- 129.2 micrograms/mL, T = 6 h: 100.8 +/- 39.6 micrograms/mL and T = 12 h: 480.8 +/- 128.8 micrograms/mL. Postmortem peripheral site results were: T = 3 h: 50.2 +/- 21.4 micrograms/mL, T = 6 h: 100.8 +/- 18.1 and T = 12 h: 117.7 +/- 37.2 micrograms/mL. Overall, blood acetaminophen concentrations increased significantly over time for central sampling sites. Drug concentration increases seen in the central sampling sites were several times higher than that seen in peripheral blood. Blood samples taken from peripheral sites did not alter significantly. The results of this controlled study were consistent with previous autopsy case series and case reports suggesting that postmortem drug concentrations do not reflect premortem values. Variables affecting postmortem drug concentrations include both postmortem sampling time and anatomic blood collection site.
Garter snake bites are generally innocuous to human beings. We report a case of human envenomation from the Wandering Garter snake (Thamnophis elegans vagrans). The patient, who was bitten on his right third fingertip, rapidly developed local edema, ecchymosis, and hemorrhagic vesicles. Systemic signs and symptoms did not develop. The clinical picture was similar to that in three previous patients with Thamnophis envenomation in that clinical signs followed a prolonged bite. Thamnophis species have Duvernoy's glands, which may be analogous to venom glands in Crotalidae (pit viper) species. The progressive local effects produced by secretions of these glands may be confused with early Crotalidae envenomation.
STUDY OBJECTIVE: To determine the effectiveness of activated charcoal in preventing toxicity from oral methamphetamine HCI. DESIGN: Randomized, prospective, nonblinded, controlled animal study. SETTING: Animal care facility. PARTICIPANTS: CD-1 male mice. INTERVENTIONS: Mice were given 100 mg/kg methamphetamine HCI (lethal dose 60) in water by oral gavage. Within 1 minute of methamphetamine administration, mice received either 1 g/kg activated charcoal or an equivalent volume of water as control. MEASUREMENTS AND MAIN RESULTS: Mice were observed for time to onset of symptoms (piloerection, agitation, and tremor) and mortality at 1, 24, and 48 hours. Activated charcoal delayed onset of symptoms (5.53 +/- 1.25 minutes versus 4.27 +/- 1.22 minutes, P < .002) and decreased mortality compared to controls at 1 hour (1 of 20 versus 10 of 20, P < .003) and 24 hours (five of 20 versus 12 of 20, P < .05). There was no difference between groups in mortality at 48 hours. CONCLUSION: A single dose of activated charcoal given after oral methamphetamine delayed onset of toxicity and decreased early mortality in mice. There was no effect on overall mortality.
STUDY OBJECTIVE: To compare topical preparations of magnesium and calcium in the treatment of dermal hydrofluoric acid burns. DESIGN: A randomized, blinded, controlled animal model study. SETTING: Animal care facility. TYPE OF PARTICIPANTS: New Zealand rabbits. INTERVENTIONS: Each rabbit was burned with hydrofluoric acid at four sites along the thoracolumbar spine. Equimolar amounts of calcium gluconate, magnesium gluconate, and a magnesium hydroxide antacid were added into a lubricating jelly. The jelly alone was a control preparation. After a water rinse, the burns were massaged with the gels for 1 minute five times; at 4 and 20 minutes and at 1, 4, and 24 hours. Each rabbit served as its own control by receiving all four treatments. MEASUREMENTS AND MAIN RESULTS: Burn diameter and burn surface area diminished over time, but there were no statistically significantly differences among the treatments. Burn ranking and burn rating of severity also did not demonstrate differences. The histologic analysis of the burns, however, demonstrated that calcium gluconate-treated burns were less severe and more superficial than the control and magnesium gluconate-treated burns; the magnesium hydroxide antacid-treated burns were not statistically different compared to the calcium gluconate-treated burns. CONCLUSION: Topical calcium gluconate is an efficacious treatment for dermal hydrofluoric acid burns. Further research is needed to determine the role of magnesium-containing antacids in the treatment of hydrofluoric acid burns.
A 16-month-old boy ingested liquid zinc chloride/ammonium chloride soldering flux. He developed severe local burns, metabolic acidosis, hepatic damage, hyperamylasemia, lethargy, and hypertension. Peak measured plasma zinc was 1,199 micrograms/dL. Because of persistent signs of systemic toxicity, he was chelated with dimercaprol (BAL) and EDTA. Although clinical improvement was noted coincident with the initiation of chelation, there was no apparent increase in urinary zinc excretion. Scarring in the gastric antrum necessitated an antrectomy. The child recovered without other apparent complications.
The appropriate implementation of the various modalities of gastrointestinal (GI) decontamination is critical in the management of the pediatric patient who is examined in the emergency department or private office after an acute ingestion. Gastrointestinal decontamination includes gastric lavage, syrup of ipecac, activated charcoal, and whole bowel irrigation. Clinical studies have delineated the role and efficacy of these procedures. Trends in GI decontamination place less emphasis on ipecac and gastric lavage and more emphasis on activated charcoal alone in the patient with a mild overdose. Gastric lavage is indicated in serious ingestion and is most effective if done soon after the exposure. Whole bowel irrigation is the newest addition and has important clinical use in the treatment of serious iron ingestions as well as in older adolescent cocaine body suffers and packers. Indications and contraindications of the various forms of GI decontamination are discussed and relevant clinical studies are reviewed.
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STUDY OBJECTIVE: To study the effectiveness of activated charcoal in preventing toxicity after an enterally administered cocaine hydrochloride overdose in mice. DESIGN: A prospective, randomized, controlled animal laboratory investigation. INTERVENTIONS: Fasted mice were given aqueous cocaine hydrochloride (0.8% final concentration) 100 mg/kg body weight orally by gavage tube. One minute later, animals received one of three treatments by gavage: 1 g activated charcoal/kg body weight, 2 g activated charcoal/kg body weight, or an equivolume of water (control). All treatments consisted of 20 mL/kg body weight of an activated charcoal slurry with water. MEASUREMENTS: After 24-hour observation, proportions of seizures and deaths between each group were compared using Pearson chi 2 test followed by Fisher's exact test (P < .017 for significance after Bonferroni's correction). MAIN RESULTS: There were 20 seizures and 16 deaths in the control group (20 mice). There were four seizures (P = .0004) and one death (P = .0004) in the 1-g activated charcoal/kg group (ten mice) and five seizures (P = .0018) and three deaths (P = .015) in the 2-g activated charcoal/kg group (ten mice). CONCLUSION: In this mouse model, activated charcoal decreased the incidence of seizures and death after an enteral cocaine hydrochloride overdose.
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The inadvertent administration of a concentrated vancomycin solution to a 47 day-old premature male twin resulted in extremely high vancomycin levels and altered renal function. A 1.5 volume exchange transfusion did not change the measured vancomycin level. Multiple doses of oral activated charcoal, 1 g/kg, were administered beginning 5 h after the exchange transfusion. A calculated half-life of vancomycin before the exchange transfusion was 35 h. The half-life after the exchange transfusion and during charcoal administration was calculated to be 12 h. The only apparent adverse effect of this vancomycin overdose was reversible nephrotoxicity. The infant's hearing, tested by brainstem auditory responses, was normal. The higher volume of distribution of vancomycin in infants may preclude removing significant amounts of this drug by exchange transfusion. Gastrointestinal dialysis with activated charcoal warrants consideration in cases of vancomycin overdose in neonates.
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