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Amphetamines

Chapter by: Spyres, Meghan B; Jang, David H
in: Goldfrank's toxicologic emergencies by Nelson, Lewis; et al (Ed)
New York : McGraw-Hill Education, [2019]
pp. ?-?
ISBN: 1259859614
CID: 3700092

Calcium channel blockers

Chapter by: Jang, David H
in: Goldfrank's toxicologic emergencies by Nelson, Lewis; et al (Ed)
New York : McGraw-Hill Education, [2019]
pp. ?-?
ISBN: 1259859614
CID: 3700002

In response to: "A systematic analysis of methylene blue for drug-induced shock" [Comment]

Harding, Stephen A; Hoffman, Robert S; Jang, David H
PMID: 28073321
ISSN: 1556-9519
CID: 3137342

Measurement of Mitochondrial Respiration and Motility in Acute Care: Sepsis, Trauma, and Poisoning

Jang, David H; Greenwood, John C; Spyres, Meghan B; Eckmann, David M
Metabolic biomarkers have potentially wider use in disease diagnosis and prognosis as well as in monitoring disease response to treatment. While biomarkers such as interleukins, microRNA, and lactate have been proposed for disease surveillance, there are still conflicting results regarding their clinical utility. Treatment of commonly encountered disease of acute care such as sepsis, trauma, and poisoning often relies on clinical diagnosis and therapy guided by use of surrogate markers of illness severity. The measurement of mitochondrial function, including respiration and motility, may offer superior alternatives to such markers. Assessing mitochondrial function in a clinical context has the potential to impact the area of acute care in terms of diagnosis, prognosis, and treatment. The study of mitochondrial bioenergetics has become critical in understanding the pathophysiology and treatment of complex diseases such as diabetes and cardiovascular disorders.
PMID: 27443317
ISSN: 1525-1489
CID: 2694932

Efficacy of methylene blue in an experimental model of calcium channel blocker-induced shock

Jang, David H; Donovan, Sean; Nelson, Lewis S; Bania, Theodore C; Hoffman, Robert S; Chu, Jason
STUDY OBJECTIVE: Calcium channel blocker poisonings account for a substantial number of reported deaths from cardiovascular drugs. Although supportive care is the mainstay of treatment, experimental therapies such as high-dose insulin-euglycemia and lipid emulsion have been studied in animal models and used in humans. In the most severe cases, even aggressive care is inadequate and deaths occur. In both experimental models and clinical cases of vasodilatory shock, methylene blue improves hemodynamic measures. It acts as a nitric oxide scavenger and inhibits guanylate cyclase that is responsible for the production of cyclic guanosine monophosphate (cGMP). Excessive cGMP production is associated with refractory vasodilatory shock in sepsis and anaphylaxis. The aim of this study is to determine the efficacy of methylene blue in an animal model of amlodipine-induced shock. METHODS: Sprague-Dawley rats were anesthetized, ventilated, and instrumented for continuous blood pressure and pulse rate monitoring. The dose of amlodipine that produced death within 60 minutes was 17 mg/kg per hour (LD50). Rats were divided into 2 groups: amlodipine followed by methylene blue or amlodipine followed by normal saline solution, with 15 rats in each group. Rats received methylene blue at 2 mg/kg during 5 minutes or an equivalent amount of normal saline solution in 3 intervals from the start of the protocol: minutes 5, 30, and 60. The animals were observed for a total of 2 hours after the start of the protocol. Mortality risk and survival time were analyzed with Fisher's exact test and Kaplan-Meier survival analysis with the log rank test. RESULTS: Overall, 1 of 15 rats (7%) in the saline solution-treated group survived to 120 minutes compared with 5 of 15 (33%) in the methylene blue-treated group (difference -26%; 95% confidence interval [CI] -54% to 0.3%). The median survival time for the normal saline solution group was 42 minutes (95% CI 28.1 to 55.9 minutes); for the methylene blue group, 109 minutes (95% CI 93.9 to 124.1 minutes). Pulse rate and mean arterial pressure (MAP) differences between groups were analyzed until 60 minutes. Pulse rate was significantly higher in the methylene blue-treated group beginning 25 minutes after the start of the amlodipine infusion (95% CI 30 to 113 minutes) that was analyzed until 60 minutes. MAP was significantly higher in the methylene blue-treated group starting 25 minutes after the amlodipine infusion (95% CI 2 to 30 minutes) that was analyzed until 60 minutes. CONCLUSION: Methylene blue did not result in a significant difference in mortality risk. There was an increased pulse rate, MAP, and median survival time in the methylene blue group.
PMCID:4565597
PMID: 25441767
ISSN: 1097-6760
CID: 1520352

Amphetamines

Chapter by: Jang, David H
in: Goldfrank's toxicologic emergencies by Hoffman, Robert S; Howland, Mary Ann; Lewin, Neal A; Nelson, Lewis; Goldfrank, Lewis R; Flomenbaum, Neal [Eds]
New York : McGraw-Hill Education, [2015]
pp. ?-?
ISBN: 0071801847
CID: 2505942

Calcium channel blockers

Chapter by: Jang, David H; DeRoos, Francis Jerome
in: Goldfrank's toxicologic emergencies by Hoffman, Robert S; Howland, Mary Ann; Lewin, Neal A; Nelson, Lewis; Goldfrank, Lewis R; Flomenbaum, Neal [Eds]
New York : McGraw-Hill Education, [2015]
pp. ?-?
ISBN: 0071801847
CID: 2505932

Toxin-induced cardiovascular failure

Jang, David H; Spyres, Meghan B; Fox, Lindsay; Manini, Alex F
Adverse cardiovascular events comprise a large portion of the morbidity and mortality in drug overdose emergencies. Adverse cardiovascular events encountered by emergency physicians treating poisoned patients include myocardial injury, hemodynamic compromise with shock, tachydysrhythmias, and cardiac arrest. Early signs of toxin-induced cardiovascular failure include bradycardia, tachycardia, and specific ECG findings. Treatment of toxicologic tachycardia relies on rapid supportive care along with proper use of benzodiazepines for sedation. Treatment of toxicologic bradycardia consists of the use of isotonic fluids, atropine, calcium salts, and glucagon. High-dose insulin euglycemia should be used early in the course of suspected severe poisoning and intravenous lipid emulsion given to patients who suffer cardiac arrest.
PMID: 24275170
ISSN: 0733-8627
CID: 745922

Tight junction protein claudin-5 in a murine model of asthma [Meeting Abstract]

Seo, H-J; Moon, K-Y; Lee, P-H; Jang, D; Leikauf, GD; Jang, A-S
ISI:000341139400745
ISSN: 1398-9995
CID: 2326672

Response to methylene blue does not have to be considered only as rescue therapy for distributive shock

Jang, David H; Nelson, Lewis S; Hoffman, Robert S
PMCID:3846966
PMID: 24081615
ISSN: 1556-9039
CID: 666092