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Biomedical subjects

J T DiPiro

Publications and source records attributed to J T DiPiro.

At least 19 recordsLinked to original sources

Heparin versus citrate regional anticoagulation during autotransfusion in a porcine intra-abdominal hemorrhage model.

Our objective was to determine the effects of anticoagulants and blood loss on hemodynamic, hematologic, and coagulation parameters following autotransfusion in an animal model of intraabdominal hemorrhage. We performed a prospective, randomized observational animal study at an animal research laboratory at a university medical center. Eight Landrace, domestic pigs, weighing 17-23 kg, each underwent jugular venous and iliac arterial catheterization and laparotomy with retroperitoneal dissection for aortic exposure to simulate an operative environment. Following baseline laboratory and hemodynamic determinations, intra-abdominal hemorrhage was accomplished via aortotomy in three sequential 10 mL/kg blood volumes. After allowing pooling in the exposed retroperitoneum to ensure tissue contact, the shed blood was suctioned, processed, and washed in an autotransfusion device utilizing either heparin (n = 4) or acid-citrate-dextrose (n = 4) as a system anticoagulant. Prior to autologous transfusion, each pig received a 20 mL/kg intravenous bolus of 0.9 per cent saline to treat shock. The processed blood was then infused, and laboratory and hemodynamic measurements were repeated following each cycle of hemorrhage and autotransfusion. Sequential fixed volume hemorrhage resulted in significant reductions in mean arterial pressure. Despite crystalloid infusion and transfusion of processed shed blood, postresuscitation mean arterial pressure did not return to baseline values, with no difference noted between anticoagulant groups. Infusion of increasing volumes of autologous blood resulted in significant reductions in hematocrit, platelet count, fibrinogen, antithrombin III, ionized calcium, and total protein. The decrease in concentration of each variable was independent of the choice of anticoagulant with the exception of antithrombin III, with higher levels noted in animals receiving blood anticoagulated with acid-citrate-dextrose. Prothrombin time and partial thromboplastin time were unaffected by volume of autologous transfusion or choice of anticoagulant. We conclude that changes in hemodynamic, hematologic, and coagulation parameters associated with hemorrhage and autotransfusion appear related more to the volume of blood loss and the cumulative pheresis of plasma than to the choice of anticoagulant.

Animals

Pharmacodynamics of antimicrobial therapy in surgery.

INTRODUCTION: "Pharmacodynamics" refers to the relationship of drug concentrations in serum or tissues to effects on biologic systems. Concepts used to describe antimicrobial pharmacodynamics include the minimal inhibitory concentration (MIC), the minimal bactericidal concentration (MBC), and serum bactericidal titers (SBT), as well as post-antibiotic effect. METHODS: Pertinent published literature was identified through a MEDLINE search. RESULTS: Aminoglycosides have a concentration-dependent effect on bacteria killing and possess a relatively long postantibiotic effect. Given these characteristics, single-daily dosing, where the total daily dose with a traditional aminoglycoside regimen is given as one dose, may be more efficacious compared with more frequent dosing. For beta-lactam antimicrobials, bacterial killing is related to the duration of time that the free drug concentration exceeds the bacterial MIC. Beta-lactam antimicrobials have been shown to have no, or a short postantibiotic effect. Beta-lactam antimicrobials may be more effective when administered as continuous intravenous infusions. CONCLUSIONS: Pharmacodynamic variation may result from differences in drug sensitivity among individuals and the nature of the interaction between antimicrobials and microorganisms. Proper use of pharmacokinetic and pharmacodynamic principles can result in more effective and less toxic antimicrobial regimens.

Aminoglycosides

Pharmacokinetics of reconstituted human high-density lipoprotein in pigs after hemorrhagic shock with resuscitation.

OBJECTIVES: Reconstituted human high-density lipoprotein (HDL) can inhibit lipopolysaccharide effects in vivo. The major objectives of this study were to characterize the pharmacokinetics of reconstituted HDL in a stressed large-animal model and to provide preclinical tolerance information in support of use of reconstituted HDL in humans. DESIGN: A randomized, blinded, placebo-controlled trial where each animal received either reconstituted human HDL at a dose of 100 mg/kg (apolipoprotein A-I) or placebo, immediately after hemorrhagic shock and resuscitation. SETTING: Animal laboratory. SUBJECTS: Twelve immature female swine (18 to 25 kg) were studied. INTERVENTIONS: Six to 8 days before shock and study drug administration, animals were anesthesized and catheters were placed in the external jugular vein and abdominal aorta. These catheters were secured to the dorsal surface. On the day of shock, the animals were sedated (alpha-chloralose) and 50 mL/kg of arterial blood was removed over 0.5 hr. One half hour after blood removal, shed blood was infused, which was immediately followed by study drug (reconstituted HDL or placebo), and then by 1 L of lactated Ringer's solution. MEASUREMENTS AND MAIN RESULTS: Physiologic (arterial blood pressure, heart rate, respiratory rate) and laboratory (serum chemistries, hematologic and coagulation studies, and blood gases) measurements were determined intermittently for 96 hrs after the induction of shock. Blood was collected intermittently for 48 hrs after shock for assay of apolipoprotein A-I and phosphatidylcholine in plasma. Reconstituted HDL was well tolerated and did not appear to alter the physiologic responses to shock and resuscitation. HDL transient increase in aspartate aminotransferase concentration was noted in the reconstituted group but this increase normalized by 24 hrs after drug administration. Mean apolipoprotein A-I pharmacokinetic parameters were as follows: half-life 24.5+/-5.3 (SD) hrs; clearance 41.9+/-10 mL/hr; and volume of distribution 1.39+/-0.08 L. The apparent mean half-life of phosphatidylcholine was 5.4+/-0.8 hrs. CONCLUSIONS: Reconstituted human HDL was well tolerated in animals that had undergone hemorrhagic shock with resuscitation. The apolipoprotein component of reconstituted HDL had a relatively long half-life, with distribution limited to the vascular space. These findings support the investigational use of this product in humans.

Analysis of Variance

Interleukin-10 is associated with the development of sepsis in trauma patients.

Interleukin-10 (IL-10) is a potent regulator of proinflammatory cytokines, including tumor necrosis factor-alpha, IL-1, IL-6, and interferon-gamma. We retrospectively evaluated 66 severely injured patients for detectable plasma IL-10. the presence or absence of IL-10 was correlated with clinical parameters. Forty of 66 patients had detectable levels of IL-10. Plasma IL-10 was associated with admission hypotension (p < 0.01) and the development of sepsis (p < 0.05). There was no difference between IL-10-positive and -negative patients with respect to age, mechanism or severity of injury, blood transfusion, operative interventions, or the subsequent development of ARDS, hepatic dysfunction, or renal insufficiency. We conclude that IL-10 can be detected in the plasma of some severely injured patients and that it is associated with the development of sepsis. Further investigation of the immunoregulatory effects of IL-10 after trauma is indicated.

Adult

Pharmacokinetics of vancomycin in critically ill infants undergoing extracorporeal membrane oxygenation.

Extracorporeal membrane oxygenation (ECMO) is a widely used therapy for neonates with respiratory failure. Because of sepsis, many of these infants require antibiotics like vancomycin during ECMO treatment. ECMO transiently alters renal function and increases the circulating blood volume by 75%. Initial vancomycin pharmacokinetics were determined in 12 infants undergoing ECMO to determine an adequate drug administration regimen. Vancomycin dosage was based on current recommendations for weight and gestational age. Pharmacokinetic parameters were determined by fitting the data to a two compartment model. This study yielded a mean steady-state volume of distribution of 1.1 +/- 0.5 (range, 0.6 to 2.1) liters/kg and a mean vancomycin clearance of 0.78 +/- 0.19 (range, 0.49 to 1.07) ml/min/kg. The mean vancomycin half-life was 16.9 +/- 9.5 (range, 8.8 to 42.9) h. Nomogram-calculated creatinine clearance was a significant predictor of vancomycin terminal rate constant and clearance. These data suggest alterations in the pharmacokinetics of vancomycin in infants on ECMO. With the goal of achieving vancomycin concentrations in serum above the MIC for the offending pathogen while using the least amount of the drug necessary, new administration guidelines for term infants without renal impairment undergoing ECMO should be 20 mg of vancomycin per kg at an interval of 24 h. With significant renal impairment, the interval should be extended on the basis of concentrations in serum. In comparison with previously published data, the neonates undergoing ECMO in our study demonstrated a much larger volume of distribution, a lower clearance, and consequently a longer vancomycin half-life.

Anti-Bacterial Agents

Association of interleukin-4 plasma levels with traumatic injury and clinical course.

OBJECTIVES: To determine if interleukin-4 (IL-4) could be detected in plasma of trauma patients and if IL-4 activity is associated with patterns of clinical events, complications, or outcomes. METHODS: A prospective case series conducted in a tertiary care referral center with a level I trauma center. One hundred patients admitted to the trauma intensive care unit for at least 3 days were included. Plasma concentrations of IL-4 and IgE were determined from admission to intensive care unit discharge. Data on clinical outcome were collected, including death, sepsis, severe sepsis, adult respiratory distress syndrome, pneumonia, and renal dysfunction. RESULTS: Interleukin-4 was detected in the plasma of 87 patients. Patients with an Injury Severity Score of greater than 25 had higher admission IL-4 levels (P = .03) and greater maximal IL-4 levels (P < .001). Admission hypotension (P = .04) and age 30 years or younger (P < .001) were also associated with higher admission IL-4 levels. Increases in IL-4 levels were significantly greater for patients in whom sepsis, severe sepsis, or pneumonia developed (P < .05). A low admission IL-4 level was associated with a greater incidence of nosocomial pneumonia (P < .001). Additional indirect evidence of IL-4 activation included increased plasma IgE levels. CONCLUSIONS: Anti-inflammatory cytokine mechanisms are activated after injury and are associated with the development of infectious complications (sepsis, severe sepsis, and pneumonia). Exogenous administration of interleukin-4 should be evaluated as an experimental therapeutic approach after trauma and associated sepsis.

Adult

Antipyrine pharmacokinetics in the tail-suspended rat model.

As space flight becomes more commonplace, the influence of physiologic changes associated with the microgravity environment become of greater concern. Exposure to weightlessness has been shown to have numerous effects on body composition and organ function in animals and humans. However, studies examining possible alterations in drug metabolism and pharmacokinetics are not readily available. Antipyrine is a marker of hepatic oxidative function and total body water. The purpose of our study was to examine the effects of simulated weightlessness on the pharmacokinetics of antipyrine. Weightlessness was simulated through the use of the tail-suspended rat model. Rats were suspended for a total of 7 days. During the study period, antipyrine pharmacokinetics, after a single 20 mg/kg i.v. or p.o. dose, were evaluated at base line (day-1) and 1, 3 and 7 days after the initiation of suspension. Total body clearance was significantly elevated in the tail suspended rats from both the i.v. and p.o. dosing groups after 3 and 7 days of simulated weightlessness. In addition, clearance was elevated after 1 day of tail-suspension in the p.o. dosing group. Steady-state volume of distribution was not statistically different over the entire study period in either dosing group. Data from the present study suggest that brief periods of tail-suspension may markedly alter the pharmacokinetics of drugs in the rat and that more studies are required in models of weightlessness and actual space flight to understand the complex interaction between microgravity and hepatic metabolic activity.

Administration, Oral

Reconstituted high density lipoprotein inhibits physiologic and tumor necrosis factor alpha responses to lipopolysaccharide in rabbits.

OBJECTIVE: To determine the effect of reconstituted human high density lipoprotein (rHDL) on physiologic and cytokine responses to infusion of lipopolysaccharide. DESIGN: A blinded, randomized trial of three preparations of a purified human rHDL with apolipoprotein A-I-phosphatidyl choline-cholesterol molar ratios of 1:100:10, 1:150:10, and 1:200:0 and placebo in a rabbit lipopolysaccharide intravenous infusion model. INTERVENTIONS: Groups of six New Zealand white rabbits received either placebo or one of the three human rHDL preparations above as a single, 75-mg/kg (apolipoprotein A-I equivalent) dose intravenously over 10 minutes ending 5 minutes before the start of a 3-hour infusion of lipopolysaccharide. MAIN OUTCOME MEASURES: Mean arterial pressure, base excess, and plasma tumor necrosis factor alpha (TNF-alpha) production were determined. RESULTS: The human rHDL suppressed TNF-alpha production with the products having the highest fraction of phosphatidyl choline producing the greatest suppression of TNF-alpha production. The human rHDL 1:200:0 group maintained a low, near-baseline TNF-alpha concentration and minimal decline in mean arterial pressure and base excess throughout the lipopolysaccharide infusion in contrast to the placebo group. CONCLUSION: Reconstituted human high density lipoprotein appears to be useful in inhibiting the physiologic effects and cytokine release associated with endotoxemia and may provide adjunctive treatment for patients with gram-negative sepsis.

Acidosis

Lipopolysaccharide-reactive immunoglobulin E is associated with lower mortality and organ failure in traumatically injured patients.

Antilipopolysaccharide (anti-LPS) immunoglobulin G (IgG) and IgM have been associated with protection from LPS effects in vivo. We investigated the presence of IgE and anti-LPS in 32 patients that had experienced severe traumatic injury and in 35 healthy volunteers; we also investigated whether IgE anti-LPS was associated with important clinical events. Plasma samples were collected daily from patients in the intensive care unit and on one occasion from volunteers; the samples were assayed for IgE anti-LPS. IgE anti-LPS was assayed by enzyme-linked immunosorbent assay with monoclonal anti-human IgE as the capture antibody. Detection was accomplished with biotin-labeled LPS (Escherichia coli J5 mutant) followed by streptavidin-peroxidase with 2,2'-azino(3-ethylbenzthiazoline)sulfonic acid as the substrate. The assay was demonstrated to be specific for IgE and LPS-biotin by nonreactivity of control sera with high-titer anti-LPS IgG and IgM and by inhibition with unlabeled LPS. IgE anti-LPS was detected in 1 of 35 healthy controls (2.9%) and 25 of 32 traumatically injured patients (78%) (P < 0.001). The presence of IgE anti-LPS was associated with a lower incidence of death (P = 0.026) and of renal failure (P = 0.0012). There was no apparent temporal relationship between detection of IgE anti-LPS and clinical events. IgG anti-LPS was detected more frequently in patients that were positive for IgE anti-LPS (P = 0.06) but was not associated with clinical events. The inability to detect IgE anti-LPS may be related to adverse clinical events through depletion of specific IgE due to LPS exposure after trauma or through saturation of the assay by IgE with other specificities. We have reported increased total IgE concentrations in these patients. (J.T. DiPiro, R.G. Hamilton, T. R. Howdieshell, N. F. Adkinson, and A. R. Mansberger, Ann. Surg. 215:460-466, 1992).

Acute Kidney Injury

Serum antipyrine concentrations determined by micellar electrokinetic capillary chromatography.

We developed an assay for antipyrine in serum using micellar electrokinetic capillary chromatography. A capillary electrophoresis system with a 70-cm fused-silica capillary and pH 8.2 borate-sodium dodecyl sulfate buffer was used. Standard curves ranging from 0.5 microgram/ml to 25 micrograms/ml were analyzed. The resulting electropherograms showed no interfering endogenous peaks and the assay was linear in the range of concentrations analyzed. The intra-day and inter-day relative standard deviations ranged from 0.7 to 5.2% and 1.7 to 8.1%, respectively. Analytical recovery of antipyrine ranged from 78.2 to 105.0%. The theoretical plate number for antipyrine was calculated to be 561,000 +/- 79,000 plates/m.

Acetaminophen

Combination antibiotic therapy in the management of intra-abdominal infection.

Combination antimicrobial regimens consisting of an agent with activity against gram-negative bacilli (an aminoglycoside) plus an agent with anaerobic activity (usually clindamycin or metronidazole) have traditionally been accepted as the standards for the treatment of intra-abdominal infection. Because of the problems of nephrotoxicity and ototoxicity in patients treated with aminoglycosides, clinical trials have been conducted using alternative combination therapy (e.g., aztreonam plus clindamycin) or single beta-lactam antimicrobial agents. Most clinical trials of intra-abdominal infections have been conducted in relatively small patient populations with a variety of low- and high-risk patients. The newer regimens have demonstrated efficacy equivalent to traditional combination therapy in selected patient populations. When selecting an antimicrobial regimen for treatment of intra-abdominal infection, multiple issues should be considered, including demonstrated efficacy in clinical trials, potential for adverse effects, and cost.

Abdomen

In vitro protein binding of cefonicid and cefuroxime in adult and neonatal sera.

The levels of in vitro protein binding of cefonicid and cefuroxime in human adult and neonatal sera were compared. Binding parameters for each drug were determined within the concentration range of 25 to 3,000 micrograms/ml. Cefonicid exhibited concentration-dependent protein binding in both types of sera, with more extensive binding in adult serum at all concentrations. Two classes of binding sites were found: a high-affinity, saturable site and a low-affinity, nonspecific site. Cefuroxime also showed two-class, concentration-dependent protein binding in adult serum, but binding in neonatal serum was to a single class and was independent of drug concentration. Parameters for class 1 binding sites for cefonicid indicated one binding site per albumin molecule in both adult and neonatal sera, with association constants of 7.0 x 10(4) and 1.3 x 10(4) M-1, respectively. These parameters were also derived for cefuroxime in adult serum and were 0.15 and 7.1 x 10(4) M-1, respectively. In neonatal serum, the combined value (number of binding sites per molecule x equilibrium association constant) was similar to combined values calculated for class 2 binding sites for cefuroxime in adult serum and for cefonicid in neonatal serum (287 versus 195 and 261 M-1, respectively). Cephalosporins have been shown to compete with bilirubin for albumin binding sites. Lower levels of protein binding of cefuroxime in the therapeutic range may mean a lower potential for drug displacement of bilirubin in neonates, on the basis of these results. It may be prudent to select less highly protein-bound agents when treating neonatal infections.

Adult

Facilitation of penicillin haptenation to serum proteins.

Traditionally, penicillin binding to serum proteins was believed to be a passive chemical process; however, it appears to be facilitated by serum factors. The objectives of this in vitro investigation were to examine facilitated penicillin haptenation, to study the kinetics of haptenation, and to determine the nature of haptenation-facilitating factors. The model involved addition of [3H]benzylpenicillin to serum or albumin solutions (at pH 7.3 to 7.4) and incubation at 37 degrees C for up to 72 h. The extent of penicillin binding to proteins in serum was found to be four- to fivefold higher than with solutions having comparable concentrations of purified albumin, total protein, or total immunoglobulin. Ultrafiltration of serum reduced penicillin binding to serum proteins substantially. An ultrafiltrable haptenation-facilitating factor(s) was found to be less than 0.5 kDa but was not calcium or magnesium. Finally, the extent of penicillin binding was related to albumin purity, as binding substantially increased with albumin purity. These findings suggest that there is a factor(s) in serum that facilitates covalent binding of penicillin to serum proteins. The factor(s) can be removed and then restored to increase penicillin binding to albumin. It appears that at least one component of the facilitation factor is less than 0.5 kDa, which suggests that it is not a peptide and that it is some simple serum component other than calcium or magnesium.

Adult

Buprenorphine versus morphine for patient-controlled analgesia after cholecystectomy.

Buprenorphine is an opioid agonist-antagonist that has emerged as an option for postoperative analgesia. We compared the postoperative hospital course of patients undergoing open cholecystectomy who received buprenorphine hydrochloride with those who received morphine sulfate. Patients in both groups administered the analgesic using a patient-controlled analgesia infusion device. Comparison of the two groups demonstrated no difference with respect to clinical indicators of intestinal motility, visual analog pain scores and hospitalization period. Postoperative nausea occurred more frequently in the buprenorphine group, but the difference was not significant. We concluded that the patient-controlled analgesia device is a valuable tool for comparing different analgesics. Both analgesics tested provide adequate analgesia with a similar postoperative course.

Adolescent

Novel drug-delivery systems for hypertension.

Although novel controlled-release drug-delivery systems have been used in other areas of medicine, their application in the treatment of hypertension has been relatively recent. Biotechnical use of chemical-dispensing systems has been applied to propranolol, clonidine (the transdermal therapeutic system), nifedipine (the gastrointestinal therapeutic system), verapamil (the sodium alginate and spheroidal oral-delivery absorption system), felodipine (the hydrophilic gel principle), metoprolol succinate (the multiple-unit pellet system), and diltiazem (one system comprising sustained-release beads and the other utilizing the patented Geomatrix extended-release system). Oral drug-delivery systems allow antihypertensive agents that previously had to be administered two to four times daily to be administered once each day. Potential disadvantages of the oral controlled-release products include delayed attainment of pharmacodynamic effect, unpredictable or reduced bioavailability, enhanced first-pass hepatic metabolism, dose dumping, sustained toxicity, dosing inflexibility, and increased cost. Potential advantages include reduced dosing frequency, enhanced compliance and convenience, reduced toxicity, stable drug levels, uniform drug effect, and decreased total dose. Although skin reactions are common, the transdermal drug delivery of clonidine provides another innovative approach to supplying transcutaneous, controlled, continuous delivery of drug for 7 days. It is possible that future research will prove that the agents that provide complete 24-hour control may reduce the cardiovascular events associated with the early-morning blood pressure surge. This evolution in antihypertensive therapy to achieve once-daily dosing may prove to be of great value to both physicians and patients in the 1990s.

Administration, Cutaneous

Novel antibody drug products.

Recent developments in protein and genetic engineering methods have allowed the production of antibody-derived molecules that have important potential as therapeutic agents. Although monoclonal antibodies of murine origin have been used for therapeutic purposes, limitations due to anti-antibody responses and suboptimal effectiveness for some indications, such as tumor cell killing, have led to the development of human monoclonal antibodies, chimeric and complementarity determining-region grafted antibodies, immunotoxins, and other engineered products. These novel antibodies are being tested for the treatment and prevention of infectious diseases and for the diagnosis and treatment of cancers, as well as for indications considered nontraditional for antibodies (e.g., as antithrombotics or inhibitors of neutrophil adherence). The availability of antibody drug products raises a number of issues for clinicians. Among these are new patterns of adverse effects, immunogenicity (development of anti-antibody response), important questions regarding administration and dosage, and substantial cost implications.

Antibodies

Total IgE in plasma is elevated after traumatic injury and is associated with sepsis syndrome.

Gamma E immunoglobulin (IgE) is associated with allergic reactions, but has not been described as being activated after trauma or sepsis. Total plasma IgE concentrations were determined in 32 patients with major traumatic injury, 29 patients undergoing elective abdominal operations, and 30 healthy volunteers. Mean total IgE concentrations were 271.7 ng/mL, 52.3 ng/mL, and 41.3 ng/mL, respectively (p less than 0.01 for each comparison with the trauma group). Total IgE concentrations in trauma patients at the time of admission were not significantly different from elective surgical controls, and tended to increase during the intensive care unit stay. In the trauma group, total IgE concentration was significantly greater in the 18 patients that developed sepsis syndrome compared with those that did not (p = 0.034). These data suggest that allergic mechanisms may be involved in the physiologic response to major traumatic injury and sepsis syndrome, or that other cells known to be involved in the immune responses to trauma and sepsis (macrophages, platelets, and B lymphocytes) may become activated by IgE-dependent mechanisms.

Acute Kidney Injury