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R C Prielipp

Publications and source records attributed to R C Prielipp.

At least 19 recordsLinked to original sources

Pharmacokinetics of epsilon-aminocaproic acid in patients undergoing aortocoronary bypass surgery.

BACKGROUND: Epsilon-aminocaproic acid (EACA) is commonly infused during cardiac surgery using empiric dosing schemes. The authors developed a pharmacokinetic model for EACA elimination in surgical patients, tested whether adjustments for cardiopulmonary bypass (CPB) would improve the model, and then used the model to develop an EACA dosing schedule that would yield nearly constant EACA blood concentrations. METHODS: Consenting patients undergoing elective coronary artery surgery received one of two loading doses of EACA, 30 mg/kg (group I, n = 7) or 100 mg/kg (group II, n = 6) after CPB, or (group III) a 100 mg/kg loading dose before CPB and a 10 mg x kg(-1) x h(-1) maintenance infusion continued for 4 h during and after CPB (n = 7). Two patients with renal failure received EACA in the manner of group III. Blood concentrations of EACA, measured by high-performance liquid chromatography, were subjected to mixed-effects pharmacokinetic modeling. RESULTS: The EACA concentration data were best fit by a model with two compartments and corrections for CPB. The elimination rate constant k10 fell from 0.011 before CPB to 0.0006 during CPB, returning to 0.011 after CPB. V1 increased 3.8 l with CPB and remained at that value thereafter. Cl1 varied from 0.08 l/min before CPB to 0.007 l/min during CPB and 0.13 l/min after CPB. Cl2 increased from 0.09 l/min before CPB to 0.14 l/min during and after CPB. Two patients with renal failure demonstrated markedly reduced clearance. Using their model, the authors predict that an EACA loading infusion of 50 mg/kg given over 20 min and a maintenance infusion of 25 mg x kg(-1) x h(-1) would maintain a nearly constant target concentration of 260 microg/ml. CONCLUSIONS: EACA clearance declines and volume of distribution increases during CPB. The authors' model predicts that more stable perioperative EACA concentrations would be obtained with a smaller loading dose (50 mg/kg given over 20 min) and a more rapid maintenance infusion (25 mg x kg(-1) x h(-1)) than are typically employed.

Adolescent

A multicenter, randomized, blind comparison of amrinone with milrinone after elective cardiac surgery.

UNLABELLED: Amrinone and milrinone are phosphodiesterase inhibitors with positive inotropic effects useful for the treatment of ventricular dysfunction after cardiac surgery. Forty-four patients undergoing elective cardiac surgery at four centers received either amrinone (n = 22) or milrinone (n = 22) in a randomized, blind fashion. Immediately after separation from cardiopulmonary bypass (CPB), two bolus doses of either amrinone 0.75 mg/kg or milrinone 25 microg/kg were administered over 30 s, separated by 5 min. Hemodynamic measurements were recorded before each dose and at the end of the 10-min study. Both amrinone and milrinone increased the cardiac index (48% vs 52%, P = not significant [NS] for amrinone and milrinone, respectively). There was a small increase in mean arterial pressure (MAP) after amrinone administration (from 68 +/- 3 to 72 +/- 3 mm Hg at 10 min, P < 0.05) with no significant change in MAP after milrinone administration. Central venous pressure was significantly higher in the amrinone group at baseline and 5 min (12 vs 10 mm Hg and 11 vs 10 mm Hg, respectively; P < 0.05). Systemic and pulmonary vascular resistances decreased significantly and to a similar extent after either amrinone or milrinone administration. Phenylephrine was required in 11 of 22 patients receiving amrinone and in 11 of 22 patients receiving milrinone to maintain arterial blood pressure. The proportion of patients requiring an intravascular volume infusion (15 of 22 vs 17 of 22, P = NS) and the total fluid volume infused were similar (402 +/- 57 vs 350 +/- 49 mL, P = NS for amrinone and milrinone, respectively). Amrinone and milrinone seem to have similar hemodynamic effects after CPB, with the exception of blood pressure, although the need for vasopressor support of blood pressure did not differ. Selection between these two drugs may include nonhemodynamic considerations such as cost. IMPLICATIONS: Amrinone and milrinone are drugs that improve cardiac contraction. Their effects have never been directly compared in patients. We found that amrinone and milrinone produced similar hemodynamic effects in adult patients undergoing cardiac surgery. Choice between the two drugs can be based on nonhemodynamic considerations such as cost.

Adult

Do shorter-acting neuromuscular blocking drugs or opioids associate with reduced intensive care unit or hospital lengths of stay after coronary artery bypass grafting? CABG Clinical Benchmarking Data Base Participants.

BACKGROUND: The authors hypothesized that shorter-acting opioid and neuromuscular blocking drugs would be associated with reductions in duration of intubation, length of stay (LOS) in the intensive care unit (ICU) after tracheal extubation, or postoperative (exclusive of ICU) LOS, and that shorter durations of intubation would be associated with reduced ICU LOS after extubation and postoperative (exclusive of ICU) LOS. METHODS: One-thousand ninety-four patients undergoing primary coronary artery bypass graft surgery at 40 academic health centers were studied. Multiple patient-related factors were included in multivariate models for hypothesis testing. RESULTS: The duration of tracheal intubation, ICU LOS after extubation, and postoperative (exclusive of ICU) LOS all varied significantly by site. There was no difference between vecuronium and pancuronium in duration of intubation, ICU LOS after extubation, or postoperative (exclusive of ICU) LOS. Use of sufentanil rather than fentanyl was associated with a significant (P=0.045) reduction of 1.9 h (95% CI, 0.04 to 4.1 h) in duration of tracheal intubation but had no significant effect on ICU LOS after extubation, total ICU LOS, postoperative (exclusive of ICU) LOS, or total postoperative LOS. The authors' best model predicts a complex association between increasing duration of intubation and both ICU LOS after tracheal extubation and postoperative (exclusive of ICU) LOS, which was associated with an increase in those measures when duration of intubation exceeded 7.3 or 3 h, respectively. CONCLUSIONS: The LOS measures varied considerably among the institutions. Use of shorter-acting opioid and neuromuscular blocking drugs had no association with ICU LOS after tracheal extubation or with postoperative (exclusive of ICU) LOS. Only when the duration of intubation exceeded threshold values was it associated with increased LOS measures.

Aged

Dobutamine antagonizes epinephrine's biochemical and cardiotonic effects: results of an in vitro model using human lymphocytes and a clinical study in patients recovering from cardiac surgery.

BACKGROUND: Patients may receive more than one positive inotropic drug to improve myocardial function and cardiac output, with the assumption that the effects of two drugs are additive. The authors hypothesized that combinations of dobutamine and epinephrine would produce additive biochemical and hemodynamic effects. METHODS: The study was performed in two parts. Phase 1 used human lymphocytes in an in vitro model of cyclic adenosine monophosphate (cAMP) generation in response to dobutamine (10(-8) to 10(-4) M) or epinephrine (10(-9) M to 10(-5) M), and dobutamine and epinephrine together. Phase 2 was a clinical study in patients after aortocoronary artery bypass in which isobolographic analysis compared the cardiotonic effects of dobutamine (1.25, 2.5, or 5 microg x kg(-1) x min(-1)) or epinephrine (10, 20, or 40 ng x kg(-l) x min(-1)), alone or in combination. RESULTS: In phase 1, dobutamine increased cAMP production 41%, whereas epinephrine increased cAMP concentration approximately 200%. However, when epinephrine (10(-6) M) and dobutamine were combined, dobutamine reduced cAMP production at concentrations between 10(-6) to 10(-4) M (P = 0.001). In patients, 1.25 to 5 microg x kg(-1) x min(-1) dobutamine increased the cardiac index (CI) 15-28%. Epinephrine also increased the CI with each increase in dose. However, combining epinephrine with the two larger doses of dobutamine (2.5 and 5microg x kg(-1) x mi(-1)) did not increase the CI beyond that achieved with epinephrine and the lowest dose of dobutamine (1.25 microg x kg(-1) x min(-1)). In addition, the isobolographic analysis for equieffective concentrations of dobutamine and epinephrine suggests subadditive effects. CONCLUSIONS: Dobutamine inhibits epinephrine-induced production of cAMP in human lymphocytes and appears to be subadditive by clinical and isobolographic analyses of the cardiotonic effects. These findings suggest that combinations of dobutamine and epinephrine may be less than additive.

Adrenergic Agonists

Stethoscopy.

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Anesthesia

Topical ice slurry prevents brain rewarming during deep hypothermic circulatory arrest in newborn sheep.

OBJECTIVES: To measure the effect of ice slurry topical cooling on brain surface temperature during deep hypothermic circulatory arrest. DESIGN: This was a prospective, controlled experiment. SETTING: Animal laboratory at a university hospital. PARTICIPANTS: Five control lambs, five treatment (ice slurry) lambs. INTERVENTIONS: Animals were studied in two groups: the study group had topical cooling of the head with ice slurry started immediately before circulatory arrest and continued throughout the period of circulatory arrest; control group lambs received no supplemental topical cooling. MEASUREMENTS AND MAIN RESULTS: Brain surface temperature, scalp, nasopharyngeal, and rectal temperatures were measured at 5-minute intervals during 45 minutes of circulatory arrest. Lambs receiving topical cooling of the head with ice slurry had a statistically significant decrease in brain surface temperature of 2.2 +/- 1.2 degrees C during circulatory arrest, whereas brain surface temperature increased 1.2 +/- 0.3 degrees C, in control lambs. Equilibration of temperature between the scalp and brain in control lambs produced rewarming of the brain surface. CONCLUSIONS: Topical cooling of the head with ice slurry in newborn lambs lowers brain surface temperature during deep hypothermic circulatory arrest. Surrogate temperature monitoring locations such as nasopharyngeal and rectal temperatures varied significantly and do not accurately reflect changes in brain surface temperature.

Animals

Dose response, recovery, and cost of doxacurium as a continuous infusion in neurosurgical intensive care unit patients.

OBJECTIVES: To determine the optimal dosing of doxacurium as a continuous infusion in neurosurgical patients with traumatic brain injury; to determine the effects of bolus administration of doxacurium on heart rate (HR), blood pressure (BP), and intracranial pressure (ICP); to monitor neuromuscular recovery after discontinuation of prolonged doxacurium infusion; and to compare the cost of doxacurium with other current neuromuscular blocking drugs. DESIGN: Prospective, open-label study. SETTING: Neurosurgical intensive care unit (ICU) of a university-affiliated teaching hospital. PATIENTS: Eight critically ill, mechanically ventilated patients with traumatic head injury and normal renal and hepatic function. Patients had ICP monitoring. INTERVENTIONS: A bolus injection of doxacurium (0.05 mg/kg) followed by a continuous infusion (0.015 mg/kg/hr), adjusted to maintain one twitch during Train-of-Four nerve stimulation of the adductor pollicis muscle. MEASUREMENTS AND MAIN RESULTS: Bolus injections of doxacurium did not alter the HR, BP, or ICP. Patients were paralyzed 66 +/- 12 (SEM) hrs, with recovery of the fourth twitch occurring 118 +/- 19 mins after infusion of the doxacurium was discontined. There were no incidences of prolonged weakness, myopathy, or other adverse events. CONCLUSIONS: Continuous infusion of doxacurium provides stable neuromuscular blockade for neurosurgical patients with traumatic brain injury. Doxacurium is devoid of clinically important interactions with HR, BP, or ICP and is less costly than other neuromuscular blockers used in the ICU.

Adult

Renal dose dopamine does not alter the response to beta-adrenergic stimulation by isoproterenol in healthy human volunteers.

OBJECTIVES: To determine if renal dose dopamine (3 microg/kg/min) alters the heart rate (HR) by itself, or if a dopamine infusion alters the HR response to bolus doses of the beta-adrenergic agonist isoproterenol in healthy human subjects. DESIGN: Prospective study. SETTING: Clinical laboratory of a university-affiliated academic medical center. SUBJECTS: A total of 15 healthy nonpregnant women and men aged 21 to 44 years. INTERVENTIONS: Subjects were monitored continuously with bedside ECG, pulse oximetry, and ambulatory ECG recording to measure the maximal HR response to separate injections of 10, 20, and 30 ng/kg of isoproterenol, given before, during, and after the infusion of 3 microg/kg/min of dopamine. MEASUREMENTS AND MAIN RESULTS: Dopamine in the absence of isoproterenol did not alter baseline HR significantly (62.7+/-2.2 beats/min without dopamine; 65.4+/-2.2 with dopamine; p=0.15). All three doses of isoproterenol increased HR significantly above baseline, both in the presence and absence of dopamine (p<0.001). Dopamine infusion resulted in a higher HR following isoproterenol only for the 20-ng/kg dose. The incremental increases in HR, defined as the difference between peak HR following isoproterenol and baseline HR, were not increased during dopamine infusion for any of the doses of isoproterenol. Nausea was reported by 5 of the 15 subjects during the dopamine infusion. CONCLUSIONS: In healthy human subjects, infusion of 3 microg/kg/min of dopamine does not significantly increase the HR when combined with beta-adrenergic stimulation using isoproterenol, suggesting neither an additive nor antagonistic interaction between the two drugs. While our study did not demonstrate an increase in HR in healthy subjects, the risk of increasing the chronotropic response to beta-adrenergic inotropic medications with "renal dose" dopamine in critically ill patients needs to be investigated. The frequency of nausea during dopamine infusion also may influence consideration of using dopamine to augment splanchnic blood flow and renal function in conscious patients.

Adrenergic beta-Agonists

Relative efficacy and potency of beta-adrenoceptor agonists for generating cAMP in human lymphocytes.

BACKGROUND: Dopexamine and dobutamine are traditionally described as having primarily beta 2-adrenergic agonist properties; norepinephrine is generally classified as beta 1-selective; and epinephrine, isoproterenol, and dopamine are considered mixed beta 1- and beta 2-receptor agonists. Much of this selectivity is designated from studies conducted with intact cardiovascular systems in which indirect actions (eg, norepinephrine release from presynaptic nerve terminals) are not separated from direct agonist-receptor interactions. OBJECTIVE: To assess the relative efficacy and potency of dopamine, dobutamine, dopexamine, epinephrine, isoproterenol, and norepinephrine for directly stimulating cyclic adenosine monophosphate (cAMP) production in human lymphocytes, a model of beta 2-adrenoceptor function. DESIGN: Open-label, prospective paired studies of lymphocytes from nine healthy human volunteers (seven men). SETTING: Experimental laboratory of a large, university-affiliated medical center. INTERVENTIONS: Concentration-response curves were generated for each adrenergic agonist; maximal cAMP production was used to compare efficacy. For the agonists that more than doubled basal cAMP concentrations, EC50 calculations were used to compare potency. MEASUREMENTS AND MAIN RESULTS: Isoproterenol and epinephrine produced the greatest concentrations of cAMP of the agonists tested. cAMP production was increased by isoproterenol at concentrations 1/10 to 1/10,000 that of the other agonists. Norepinephrine stimulated cAMP production only one third as much as epinephrine and isoproterenol, but more than double the level of dopamine, dobutamine, and dopexamine. EC50 concentrations for norepinephrine were 10-fold higher than epinephrine and 50-fold higher than isoproterenol. CONCLUSIONS: Epinephrine and isoproterenol are the most efficacious and potent direct-acting beta 2-adrenergic receptor agonists using this lymphocyte cAMP model. Norepinephrine exhibits significant effects on the beta-receptors on lymphocytes, suggesting beta 2-adrenoceptor effects with high concentrations of this drug. The very low cAMP levels generated by dopamine, dobutamine, and dopexamine (even in high concentrations) support other evidence that these agents have little direct effect on the beta 2-adrenoceptor.

Adrenergic beta-Agonists

Pharmacodynamics and pharmacokinetics of milrinone administration to increase oxygen delivery in critically ill patients.

OBJECTIVES: The positive inotropic and vasodilator actions of phosphodiesterase (PDE) inhibitor drugs may offer therapeutic alternatives to beta-agonists in critically ill patients. We hypothesized that milrinone administration would increase cardiac index (CI) and oxygen delivery (Do2) in ICU patients, and that a pharmacokinetic model previously developed in cardiac surgery patients may be used to predict milrinone plasma concentrations in a medical-surgical ICU population. SETTING: ICU in two tertiary-care, university medical centers. DESIGN AND INTERVENTIONS: A prospective, open-label, multicenter, dose-escalating study in three successive groups of eight ICU patients who received a 10-min loading dose of milrinone (25 micrograms/kg [LOW], 50 micrograms/kg [MED], and 75 micrograms/kg [HIGH]). In addition, all patients then received a milrinone infusion of 0.5 microgram/kg/min for 1 h. MEASUREMENTS: Hemodynamic measurements included heart rate (HR); mean arterial, pulmonary artery, central venous, and pulmonary artery occlusion pressures; and thermodilution cardiac output. Oxygen transport indexes included arterial and venous blood oxygen tensions to determine Do2 and oxygen consumption (Vo2). Data were analyzed by univariate repeated measures analysis of covariance, with baseline values utilized as covariate regressors. RESULTS: Twenty-four adult ICU patients 20 to 84 years of age completed the study. The three groups did not differ, except that the patients in the MED group were significantly older (67 +/- 4 years, mean +/- SEM) compared with either the patients in the LOW (48 +/- 7 years) or HIGH (47 +/- 6 years) group. While HR did not change in the LOW group (90 +/- 4 to 93 +/- 3 beats/min), HR increased significantly in the HIGH group (94 +/- 5 to 112 +/- 8 beats/min) (baseline to 60 min infusion time points). All milrinone doses increased both CI and Do2. At the end of the 10-min loading dose, CI increased 0.3 L/min/m2 in the LOW group, 1.1 L/min/m2 in the MED group, and 0.9 L/min/m2 in the HIGH group. Do2 increased 8% in the LOW group, 33% in the MED group, and 23% in the HIGH group, similar to the changes in CI. Mixed venous oxygen saturation increased 3 to 5% during the 10-min loading dose of milrinone. During this same time period, mean arterial pressure decreased 6 to 16% and pulmonary artery pressures decreased 9 to 15%. Peak plasma milrinone concentrations increased as a function of the loading dose (159 +/- 9 ng/mL in the LOW group, 302 +/- 33 ng/ml in the MED group, and 411 +/- 45 ng/mL in the HIGH group). However, milrinone concentrations were similar in all three groups after the 1-h infusion; 113 +/- 14 ng/ml (LOW), 147 +/- 22 ng/mL (MED), and 119 +/- 14 ng/ml (HIGH). In all patients with final plasma milrinone concentrations greater than 100 ng/mL (15/23), the CI increased by at least 0.4 L/min/m2 (range, 0.4 to 1.8 L/min/m2). CONCLUSIONS: Our study confirms that a milrinone loading dose of 50 micrograms/kg/min followed by an infusion of 0.5 microgram/kg/min achieves adequate plasma concentrations of 100 ng/mL or greater, which significantly increases both CI and Do2. In addition, a previously established pharmacokinetic model of milrinone disposition is confirmed in this mixed ICU population.

Adult

A linear approximation of Brody's equation to predict oxygen consumption in adult humans.

OBJECTIVE: The objective of our study was to derive a linear approximation to Brody's equation for oxygen consumption as a simpler alternative for the clinician. METHODS: The approximation was derived by using calculus to construct a line tangent to Brody's equation at 81 kg. RESULTS: The linear approximation was derived to be: VO2 = (2.5w + 67.5) ml/min, where w is the subject's weight in kilograms. The error introduced by this linear approximation is 10.9% at 30 kg and 1.35% at 120 kg. CONCLUSIONS: This linear equation may have utility for approximating oxygen consumption when an approximation is required, as in closed circuit anesthesia. The utility of this equation is that it is linear and produces a result similar to Brody's equation.

Adult

Use of esophageal or precordial stethoscopes by anesthesia providers: are we listening to our patients?

STUDY OBJECTIVE: To ascertain current anesthesia utilization of esophageal and precordial stethoscopes in U.S. anesthesia training programs. DESIGN: Prospective, single-blind, incidence study. SETTING: Operating rooms of three tertiary care hospitals with major academic anesthesiology departments. SUBJECTS: Anesthesia faculty [MD and certified registered nurse-anesthetist (CRNA) staff] and anesthesia trainees (anesthesiology residents and student nurse-anesthetists). INTERVENTIONS: observe and record the placement (stethoscope device appropriately positioned) and utilization (stethoscope in place and connected to the ear piece of the anesthesia provider) of the esophageal or precordial stethoscope during general, regional, and monitored anesthesia care. MEASUREMENTS AND MAIN RESULTS: During 520 anesthetics, an esophageal stethoscope was inserted in 68% of subjects, a precordial stethoscope was positioned in 16%, and an anesthetic stethoscope was absent in 16% of cases. Utilization (stethoscope connected to earpiece) ranged from a low of 11% of cases to a high of 45%, depending on the institution. Overall, providers were listening via an anesthetic stethoscope in only 28% of anesthetics. CONCLUSIONS: Our data suggest infrequent utilization of esophageal and precordial stethoscopes in anesthesia training institutions. Thus, current anesthesia training may be fostering an environment where providers overlook a valuable minimally invasive, and cost-effective continuous monitor of patients' dynamic vital organ function.

Anesthesia Department, Hospital