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Theodore C Bania

Publications and source records attributed to Theodore C Bania.

6 recordsLinked to original sources

Physostigmine does not effect arousal but produces toxicity in an animal model of severe gamma-hydroxybutyrate intoxication.

OBJECTIVES: Physostigmine is an acetylcholinesterase inhibitor and can produce fasciculations, seizures, bradycardia, and asystole. gamma-hydroxybutyrate (GHB) increases acetylcholine levels in the central nervous system and can decrease heart rate. Despite this, physostigmine has been proposed as an arousal agent to treat coma from overdoses of GHB. The authors hypothesized that in the setting of severe GHB intoxication, physostigmine would reverse sedation without producing adverse effects such as a decrease in heart rate, seizures, and fasciculations. METHODS: GHB intoxication was induced in 20 rats by intraperitoneal injection of 700 mg/kg of the GHB precursor gamma-butyrolactone. One hour later, rats were randomly assigned to receive either physostigmine (0.06 mg/kg) intraperitoneally or an equivalent volume of saline. After administration of physostigmine, rats were continuously monitored by a blinded observer for arousal (return of righting reflex), fasciculations, and seizures. Heart rate and respiratory rate were recorded at 0, 5, 15, and 60 minutes after administration of physostigmine. Data were analyzed using repeated-measures analysis of variance and chi-square test. A pretest sample size calculation determined that 10 rats per group would detect a change in arousal from 0% to 50% and a 10% change in heart rate. RESULTS: No rats in either group had arousal within one hour (p = 1.0); however, ten of ten physostigmine-treated rats developed signs of physostigmine toxicity (fasciculations, 7; seizures, 3), while no controls developed signs of physostigmine toxicity (p = 0.00). The authors were unable to detect a decrease in heart rate. CONCLUSIONS: Physostigmine did not produce a 50% change in arousal as measured by a return of righting reflex but did produce physostigmine toxicity (fasciculations and seizures) in this rat model of severe GHB intoxication.

Animals↗

Dose-dependent hemodynamic effect of digoxin therapy in severe verapamil toxicity.

UNLABELLED: Calcium chloride (CaCl(2)) alone is an ineffective antidote in severe calcium channel antagonist overdoses. Digoxin has been evaluated as a therapy to increase the effectiveness of calcium in severe calcium channel antagonist overdoses. OBJECTIVE: To determine if there is a dose-dependent hemodynamic effect of digoxin in the setting of severe verapamil toxicity treated with high-dose CaCl(2). METHODS: Eight dogs were instrumented to measure systolic and diastolic blood pressure, cardiac output, pulmonary artery pressures, and left ventricular pressures. Verapamil toxicity (50% decrease in mean arterial pressure) was induced with verapamil 6 mg/kg/hr and maintained for 30 minutes by titrating the verapamil rate. Following verapamil toxicity, each dog received one dose of digoxin equivalent to 0, 1, 1.5, 2, 3, 4, 6, or 8 times the loading dose of digoxin (0.009 mg/kg). The verapamil rate was changed to 4 mg/kg/hr and continued for the next five hours. CaCl(2) boluses were given (0.5 g immediately following verapamil toxicity and 1 g at one, two, and three hours). Measurements were compared with the loading dose of digoxin using linear regression analysis. RESULTS: Digoxin resulted in a dose-dependent increase in systolic blood pressure at 4 hours (10.23 mm Hg/loading dose of digoxin, 95% CI = 2.74 to 17.73), 4 hours, 15 minutes (13.9 mm Hg/loading dose of digoxin, 95% CI = 8.75 to 19.01), and 5 hours (17.04 mm Hg/loading dose of digoxin, 95% CI = 1.76 to 32.32). Digoxin resulted in a dose-dependent increase in maximal ventricular pressure at the end of hour 3 (8.55 mm Hg/loading dose of digoxin, 95% CI = 3.41 to 13.69), 3 hours, 15 minutes (11.81 mm Hg/loading dose of digoxin, 95% CI = 4.89 to 18.73), hour 4 (8.26 mm Hg/loading dose of digoxin, 95% CI = 1.03 to 15.48), and 4 hours, 15 minutes (9.74 mm Hg/loading dose of digoxin, 95% CI = 4.47 to 15.00). The authors were unable to detect a dose-dependent increase in other parameters, including diastolic relaxation (diastolic change in pressure over time) and time to onset of death. No ventricular arrhythmias developed in any dogs. CONCLUSIONS: There is a dose-dependent effect of digoxin on systolic blood pressure and maximal ventricular pressure in the setting of severe verapamil toxicity treated with high-dose CaCl(2).

Animals↗

Jimson weed extract as a protective agent in severe organophosphate toxicity.

UNLABELLED: Treatment of patients following an organophosphate (OP) exposure can deplete a hospital's entire supply of atropine. Given the possibility of multiple severe exposures after a terrorist attack using OP nerve agents, there exists a need for either greater atropine stores or the development of alternative antidotes. Jimson weed (Datura stramonium) contains atropine and other anticholinergic compounds and is common and readily available. It is used recreationally for its central anticholinergic effects and is made easily into an extract by boiling the crushed seeds. The extract has rapid onset of effects and may be useful for treatment of OP poisoning. OBJECTIVES: To determine whether pretreatment with an easily stored and prepared Datura seed extract (DSE) will increase survival following a severe OP poisoning. METHODS: Datura stramonium seeds were collected, crushed, and then heated in water to make a 2-mg/mL atropine solution (100 seeds contain approximately 6 mg of atropine or 0.007 mg/seed). Male rats were randomized to pretreatment with either saline (n = 10) or 7.5 mg/kg DSE (n = 10) given as a single intraperitoneal injection 5 minutes prior to a subcutaneous injection of 25 mg/kg of dichlorvos. The endpoint was time to death recorded by a blinded observer. RESULTS: The Kaplan-Meier estimates of the 24-hour survival rate was 90% (95% CI = 56% to 100%) for the DSE-pretreated group and 10% (95% CI = 0% to 45%) for the control group. The log-rank test revealed a statistically significant longer survival for the Datura-treated animals (p = 0.0002). Median survival time was 22 minutes 30 seconds for the control group and greater than 24 hours for the DSE-pretreated group. CONCLUSIONS: Pretreatment with DSE significantly increases survival following severe dichlorvos exposure.

Animals↗

Gamma-hydroxybutyric acid tolerance and withdrawal in a rat model.

UNLABELLED: Long-term daily use of gamma-hydroxybutyrate (GHB) and related compounds has recently been associated with a withdrawal syndrome. To the best of the authors' knowledge, there are currently no animal models of GHB withdrawal. OBJECTIVES: The authors studied and described the effect of chronic dosing of GHB (3-6 days) on tolerance and withdrawal in a rat model. METHODS: Rats were administered GHB every three hours via intraperitoneal catheter. Groups of rats (2 per group) were dosed with GHB for either 3 (24 doses), 4 (32 doses), 5 (40 doses), or 6 (48 doses) days. The GHB dose was 0.25 g/kg for doses 1-8, 0.75 g/kg for doses 9-12, 1 g/kg for doses 13-16, 1.25 g/kg for doses 17-24, 1.5 g/kg for doses 25-32, 1.75 g/kg for doses 33-40, and 2 g/kg for doses 41-48. Following the last dose of GHB, the rats were scored using a 16-point ethanol intoxication-withdrawal scale rating spontaneous behaviors, response to handling, grooming, and neurological signs. Lower scores indicate intoxication, while higher scores indicate withdrawal. Scores were recorded at hours 0, 1, 2, 3, 4, 5, 6, 9, 12, and 24. RESULTS: Tolerance: Rats dosed with GHB for more days were less intoxicated one hour after their last GHB dose despite receiving higher doses. WITHDRAWAL: The scores for all rats dosed with GHB increased at hours 4 (p = 0.028), 5 (p = 0.037), 6 (p = 0.007), and 9 (p = 0.024) after the last dose, indicating withdrawal. The scores demonstrated a linear increase dependent upon the number of days of GHB dosing at hours 3 (p < 0.000), 4 (p = 0.004), 5 (p = 0.002), and 12 (p = 0.039) as well as prior to the last dose at hour 0 (p = 0.000). No rats developed seizures. CONCLUSIONS: Tolerance and mild withdrawal in rats can be induced by administering intraperitoneal GHB every three hours for 3-6 days. More prolonged dosing and higher doses of GHB may be necessary to induce severe withdrawal.

Animals↗

Ethics seminars: health care proxies and suicidal patients.

Advance directives, health care proxies, and living wills are forms of advance planning that permit patients to make decisions regarding their health care and are used when the patient becomes incapacitated. The ethics of allowing these forms of advance planning are questioned when the patient has attempted suicide. The authors present an ethical analysis of a case of an elder patient who overdosed on sustained-release diltiazem and had a health care proxy who wanted all treatments stopped.

Advance Directives↗