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Biomedical subjects

B A Boucher

Publications and source records attributed to B A Boucher.

At least 19 recordsLinked to original sources

Intermittent and continuous ceftazidime infusion for critically ill trauma patients.

BACKGROUND: The adequacy of intermittent and continuous infusion ceftazidime for the treatment of nosocomial pneumonia in critically ill trauma patients was assessed by analyzing ceftazidime pharmacokinetics in relation to the minimum inhibitory concentration (MIC) and treatment outcome. METHODS: Serial blood samples were obtained during ceftazidime therapy in 31 trauma patients. Ceftazidime pharmacokinetics were compared with that of previously studied healthy volunteers. Ceftazidime pharmacokinetics were analyzed according to the time above the MIC and treatment outcome. RESULTS: Critically ill trauma patients had a significantly increased volume of distribution and clearance (0.32 +/- 0.14 L/kg and 2.35 +/- 0.89 mL. min(-1). kg(-1), respectively) compared with healthy volunteers (0.21 +/- 0.03 and 1.58 +/- 0.23 mL. min(-1). kg(-1)). The time above the MIC was >/=92% of the dosing interval for all patients and treatment outcomes were similar between the two treatment groups. CONCLUSIONS: Ceftazidime pharmacokinetics are significantly altered in critically ill trauma patients. Both intermittent and continuous ceftazidime regimens were equally effective for the treatment of nosocomial pneumonia caused by less virulent bacteria.

Adolescent↗

Aerosolized antimicrobial therapy in acutely ill patients.

Recent data are sparking renewed interest in therapy with aerosolized antimicrobials in critically ill patients as well as other populations such as those with neutropenia, human immunodeficiency virus infection, and cystic fibrosis. Pneumonia is a common complication in these patients and is associated with substantial morbidity and increased mortality. Clinical trials evaluated aerosolized antimicrobials for the prevention and treatment of pneumonia in hospitalized patients. In addition, factors that affect the pulmonary deposition of aerosolized drugs in mechanically ventilated patients were identified.

Acute Disease↗

Role of aztreonam in the treatment of nosocomial pneumonia in the critically ill surgical patient.

In 1995 the American Thoracic Society issued an official consensus statement on the treatment of hospital-acquired pneumonia (HAP). Classes of antimicrobials included in the list of antimicrobials deemed to be suitable for the empiric treatment of severe HAP were the aminoglycosides, quinolones, antipseudomonal penicillins, carbapenems, and beta-lactam/beta-lactamase inhibitor combinations. Aztreonam, a monobactam, was also listed and is unique among these agents based on its spectrum of activity being limited to the gram-negative bacillary bacteria combined with an excellent safety profile. This review focuses on the role of aztreonam in the treatment of nosocomial pneumonia in the critically ill patient.A review of the literature was performed using PubMed and secondary literature sources as to the clinical efficacy of aztreonam in the treatment of lower respiratory tract infections as well as its pharmacokinetic and safety profiles. An analysis of aztreonam's potential pharmacoeconomic advantages compared with other agents was also performed. Numerous studies have documented that aztreonam has effectiveness that is equal or superior to that of other suitable antibiotics in the treatment of nosocomial pneumonia. Its excellent safety profile makes it a particularly attractive agent compared with the aminoglycosides. Considering the potential costs of bacterial resistance from the use of broader-spectrum alternatives, a case can be made that aztreonam is a pharmacoeconomically sound choice as well.

Aztreonam↗

Fluconazole pharmacokinetics in burn patients.

The pharmacokinetics of fluconazole in nine adult patients with severe (30 to 95% total body surface area) burns were studied. There was no significant difference in half-life (t1/2), clearance (CL), or volume of distribution (V) over time in five patients on days 3 and 8 of the study (P > 0.05). Combined parameter estimates (means +/- standard deviations) for all nine patients for the two study periods were as follows: t1/2, 24.4 +/- 5.8 h; CL, 0.36 +/- 0.09 ml/min/kg; and V, 0.72 +/- 0.12 liters/kg. These estimates of t1/2 and CL in burn patients were approximately 13% shorter and 30% more rapid, respectively, than the most extreme estimates reported for other populations.

Adult↗

Pharmacokinetic alterations after severe head injury. Clinical relevance.

Pharmacological therapy, present and future, will undoubtedly continue to play a large role within the overall management of patients with severe head injury. Nevertheless, limited clinical data are available to evaluate the effect of severe head injury on pharmacokinetics. The disruption of the blood-brain barrier secondary to trauma and/or subsequent hyperosmolar therapy can be expected to result in higher than expected brain drug concentrations. Aggressive dietary protein supplementation may result in increased oxidative drug metabolism. These effects may counterbalance inhibitory influences on drug metabolism secondary to cytokine release during the acute phase response. Alterations in protein binding can also be anticipated with the hypoalbuminaemia and increases in alpha 1-acid glycoprotein typically observed in these patients. Based on studies in other patient populations, moderate hypothermia, a treatment strategy in patients with head injury, can decrease drug metabolism. The pharmacokinetics of the following drugs in patients with severe head injury have been studied: phenytoin, pentobarbital (pentobarbitone), thiopental (thiopentone), tirilazad, and the agents used as marker substrates, antipyrine, lorazepam and indocynanine green (ICG). Several studies have documented increase in metabolism over time with phenytoin, pentobarbital, thiopental, antipyrine and lorazepam. Increases in tirilazad clearance were also observed but attributed to concurrent phenytoin therapy. No changes in the pharmacokinetics of ICG were apparent following head injury. With the frequent use of potent inhibitors of drug metabolism (e.g., cimetidine, ciprofloxacin) the potential for drug interaction is high in patients with severe head injury. Additional pharmacokinetic investigations are recommended to optimise pharmacological outcomes in patients with severe head injury.

Aminopyrine↗

Effect of acute phase response on phenytoin metabolism in neurotrauma patients.

The purpose of this prospective study was to correlate measures of the acute phase response, associated therapeutic interventions, and other clinical variables with the process of altered drug metabolism previously observed in patients with severe neurotrauma. Nine patients with severe head injury (Glasgow Coma Scale < or = 8) requiring intravenous phenytoin were included in the study. A loading dose of phenytoin was followed by daily maintenance doses. Serial blood samples were taken after the loading dose and every even-numbered study day for 10 to 14 days for measurement of total and unbound concentrations of phenytoin, interleukin-1 beta, interleukin-6 (IL-6), tumor necrosis factor alpha, alpha 1-acid-glycoprotein, C-reactive protein, and albumin. Time-invariant and time-variant Michaelis-Menten models were fit to the phenytoin concentration-time data. Protein intake was closely monitored. The mean (+/- SEM) unbound fraction of phenytoin increased from 0.17 +/- 0.02 on day 1 to 0.24 +/- 0.04 on day 10 (P < 0.05). The time-variant model was superior in describing the concentration-time data of unbound phenytoin in eight of nine patients. Mean (+/- SEM) pharmacokinetic parameter estimates for unbound phenytoin were: Vmax delta = 605 +/- 92 mg/day, VmaxB = 149 +/- 26.3 mg/day, K(ind) = 0.013 +/- 0.004 hr-1. Interleukin-6 was the only cytokine with significant concentration changes over time; it was inversely correlated with Vmax,t. Peak concentrations of interleukin-6 also proved to be inversely correlated with VmaxB. The daily amount of protein administered was significantly correlated with Vmax,t. Significant alterations in the metabolism of phenytoin occur after severe neurotrauma. The etiology of these changes is probably multifaceted. These results suggest that low initial phenytoin Vmax may be explained by the presence of interleukin-6. An increase in oxidative metabolism that correlated with nutritional protein administration was observed later in these patients.

Acute-Phase Reaction↗

Incidence and risk factors of thrombocytopenia in critically ill trauma patients.

OBJECTIVE: To determine the incidence of thrombocytopenia (< 100 platelets x 10(3)/mm3) and potential risk factors, including medications, associated with the development of thrombocytopenia in critically ill trauma patients. DESIGN: Prospective, observational study. SETTING: A 20-bed trauma intensive care unit (ICU) at a university hospital. PATIENTS: Sixty-three critically ill trauma patients without baseline thrombocytopenia admitted to the trauma ICU for at least 48 hours. INTERVENTIONS: Patients were followed for up to 14 days. Platelet counts were determined daily. The following data were collected and analyzed as potential risk factors for the development of thrombocytopenia: medications, age, sex, race, trauma score, mode and type of injury, alcohol history, units of packed red blood cells (PRBC) and platelets transfused, surgical procedures, duration of ICU stay, and the development of systemic inflammatory response syndrome or disseminated intravascular coagulation. RESULTS: Thrombocytopenia occurred in 26 (41%) of the patients. Among risk factors studied, nonhead injury, age, trauma score, duration of ICU stay, and the number of PRBC transfusions were significantly associated with the development of thrombocytopenia (p < 0.05). However, nonhead injury, age, and trauma score were useful variables in predicting the development of thrombocytopenia by using multivariate analysis. Medications were not associated with the development of thrombocytopenia. CONCLUSIONS: The type of injury sustained, the quantity of platelet-deficient, transfusions, and age are the greatest risk factors associated with the development of thrombocytopenia in critically ill trauma patients. Drug-induced thrombocytopenia appears to play a minor role in the development of thrombocytopenia; therefore, medications should not be automatically discontinued or substituted when thrombocytopenia occurs.

Adolescent↗

Antibiotic pharmacokinetics following fluid resuscitation from traumatic shock.

OBJECTIVE: To describe the pharmacokinetic profile of aztreonam and vancomycin hydrochloride in a clinically relevant experimental model of hemorrhagic shock and trauma. METHODS: Ten mongrel pigs (mean +/- SD weight, 26.7 +/- 6.4 kg) were anesthetized with fentanyl citrate and ventilated, and an indwelling catheter was placed in the jugular vein. On day 3, all pigs were subjected to fentanyl administration, ventilation, soft-tissue injury, and an arterial hemorrhage (mean +/- SD, 40% +/- 8%). After a 1-hour shock period, baseline hemodynamics were restored by reinfusing shed blood plus twice the shed volume as lactated Ringer's solution. Aztreonam and vancomycin were infused on day 1, after resuscitation on day 3, and on days 4 and 8. Serial plasma samples were collected for 6 hours after treatment, and differences were compared with analysis of variance. RESULTS: Aztreonam clearance initially decreased with trauma, but subsequently increased by 48% (P < .02) by day 8. Aztreonam steady-state volume decreased by 34% (P = .05, baseline value vs that on day 8). Vancomycin clearance was increased between 25% and 52% (P < .001) on days 3, 4, and 8 compared with the baseline value. Vancomycin steady-state volume initially increased with trauma (P = .009), but it subsequently decreased by 29% (P < .001) on day 8. These data cannot be explained by changes in plasma volume per se because levels of plasma sodium, potassium, chloride, and calcium were within normal reference ranges at all time points. Neither liver nor renal functions were severely impaired because levels of serum urea nitrogen, bilirubin, liver enzymes, creatinine, and plasma proteins were within normal reference ranges. Furthermore, our previous work demonstrated that systemic and splanchnic organ oxygen delivery and demand were near normal immediately after fluid resuscitation and for at least 3 days thereafter; thus, there were probably no major perfusion abnormalities in the liver or kidney. CONCLUSIONS: For at least 5 days after trauma, clearance and steady-state volume of aztreonam and vancomycin are altered. These changes suggest that the interval and magnitude of dosing should be adjusted, relative to the standard recommended dosages of each antibiotic, to maximize their efficacy. Similar studies should be done for other antibiotics.

Animals↗

Superiority of aztreonam/clindamycin compared with gentamicin/clindamycin in patients with penetrating abdominal trauma.

There were 73 evaluable patients entered into a prospective, double-blinded trial comparing aztreonam/clindamycin (A/C) to gentamicin/clindamycin (G/C) for the prevention of infection after penetrating abdominal trauma. Aztreonam was administered at a dosage of 2 g every 8 hours and gentamicin at 5 mg/kg for the first 24 hours and then adjusted by serum monitoring to a peak of 6 to 8 micrograms/mL and a trough of less than 2 micrograms/mL; all patients received 900 mg of clindamycin every 8 hours. Patients with colon wounds received 4 days of antibiotics, and the remaining patients received a 24-hour course. Gunshot wounds occurred in 69% of patients: 74% of all patients had some hollow viscus injury, and 26% had only solid viscus injury. The groups were well matched according to abdominal trauma index, percentage with colon injury, and transfusion requirements. Failures occurred in eight patients (11%): two wound infections, five intra-abdominal infections, and one case of necrotizing fasciitis. Seven infections occurred in 36 (19%) G/C patients compared with 1 in 37 (3%) A/C patients (p < 0.03). The hospital stay was 12 +/- 11 days for G/C patients and 8 +/- 7 for A/C patients (p < 0.12). The superiority of the A/C regimen may be partially attributable to relative underdosing of gentamicin (approximately half of the patients had inadequate levels after 24 hours) combined with a favorable pharmacokinetic profile (significantly prolonged half-life) of aztreonam in this clinical setting.

Abdominal Injuries↗

Advances in pharmacotherapy: treatment of hypertensive crisis.

A hypertensive crisis can be caused by many factors. Frequently, the mechanism involved is complex and highly variable among patients. Without drug therapy, this condition is associated with very high mortality and morbidity. There are a number of oral and intravenous hypotensive agents available, which can effectively control blood pressure in a hypertensive crisis. The relative advantages and disadvantages of each treatment option is discussed.

Humans↗

Pneumonia and stress ulceration in severely injured patients. A prospective evaluation of the effects of stress ulcer prophylaxis.

Stress ulcer prophylaxis is a routine aspect of the care of critically injured patients. Recent reports have suggested that patients undergoing prophylaxis with histamine antagonists are predisposed to nosocomial pneumonia, and that treatment with sucralfate can prevent this problem. An open, prospective randomized trial of three regimens was conducted with 278 evaluable patients. The patients were assigned to one of three group: the group receiving sucralfate, the group receiving a cimetidine hydrochloride bolus, and the group undergoing continuous infusion with cimetidine. Stress ulceration developed in 8% of patients in the sucralfate group, 13% of patients in the cimetidine bolus group, and 12% of patients in the cimetidine infusion group, while nosocomial pneumonia developed in 29% of patients in the sucralfate group, 32% of patients in the cimetidine bolus group, and 23% of patients in the cimetidine infusion group. Multivariate analysis of risk factors associated with pneumonia demonstrated independent significance for score on the Glasgow Coma Scale, Injury Severity Score, cord injury, shock, and head injury. Only spinal cord injury was associated with stress ulceration. We conclude that sucralfate and cimetidine are both effective for stress ulcer prophylaxis and that there is no association of cimetidine with nosocomial pneumonia.

Administration, Oral↗

Pharmacokinetics of systemically administered antibiotics in patients with thermal injury.

Patients who sustain thermal injury may require adjustments of antibiotic dosing because of pharmacokinetic alterations and pathological changes that occur in this patient subset. In general, studies of gentamicin, tobramycin, and amikacin have demonstrated lower elimination half-lives in burn patients than in nonburn patients and healthy volunteers. Other studies have shown a strong correlation between vancomycin clearance and creatinine clearance and the need for higher vancomycin dosages for burn patients than for nonburn patients. Studies of ceftazidime, ticarcillin, enoxacin, and aztreonam have shown increases in the volume of distribution or decreases in the maximum concentration achieved. Total and renal drug clearance of aztreonam was highly correlated with creatinine clearance. With imipenem, the half-life, clearance, and volume of distribution observed in burn patients were not significantly different from those in nonburn patients, although substantial interpatient variability existed. Imipenem clearance was significantly correlated with creatinine clearance. Individualization of antibiotic therapy for burn patients is recommended with use of measured serum concentrations of the antibiotic or creatinine clearance as an estimate of renal function.

Aminoglycosides↗

Effect of neurotrauma on hepatic drug clearance.

Lorazepam, antipyrine, and indocyanine green were administered to 10 patients with severe head injuries as marker substrates of hepatic glucuronidation, oxidation, and hepatic blood flow, respectively. Pharmacokinetic parameter estimates were determined at baseline (20 to 80 hours after injury) and up to three additional times thereafter (study days 4, 7, and 14). Antipyrine clearance was increased significantly from baseline (0.50 +/- 0.31 ml/min/kg) on study days 4, 7, and 14 (p less than 0.0001). Increases in antipyrine clearance from baseline to the last study day were observed in all study patients ranging from 14% to 207%. A significant increase was also observed in lorazepam clearance on study day 14 relative to baseline (1.39 +/- 0.56 ml/min/kg) (p less than 0.005). Increases in lorazepam clearance occurred in seven of nine patients over time ranging from 9% to 130%. The unbound fraction of lorazepam did not change significantly over the study period. Likewise, no significant change was observed in the clearance of indocyanine green over time. Antipyrine clearance and alpha 1-acid glycoprotein (r = 0.41), and lorazepam clearance and C-reactive protein (r = -0.38) were significantly correlated (p less than 0.05). Similarly, antipyrine and lorazepam clearances were significantly correlated with injury severity based on the Acute Physiologic and Chronic Health Evaluation (APACHE II) score (r = -0.43 and r = -0.37, respectively). These findings suggest that hepatic oxidative and conjugative metabolism increase significantly over time in patients after acute head injury. An awareness of the potential for pharmacokinetic alterations in similarly metabolized drugs used for patients with severe head injuries is recommended.

Adult↗