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Biomedical subjects

V F Mauro

Publications and source records attributed to V F Mauro.

At least 19 recordsLinked to original sources

New recommendations from the 1999 American College of Cardiology/American Heart Association acute myocardial infarction guidelines.

OBJECTIVE: To review literature relating to significant changes in drug therapy recommendations in the 1999 American College of Cardiology (ACC)/American Heart Association (AHA) guidelines for treating patients with acute myocardial infarction (AMI). DATA SOURCES: 1999 ACC/AHA AMI guidelines, English-language clinical trials, reviews, and editorials researching the role of drug therapy and primary angioplasty for AMI that were referenced in the guidelines were included. Additional data published in 2000 or unpublished were also included if relevant to interpretation of the guidelines. STUDY SELECTION: The articles selected influence AMI treatment recommendations. DATA SYNTHESIS: Many clinicians and health systems use the ACC/AHA AMI guidelines to develop treatment plans for AMI patients. This review highlights important changes in AMI drug therapy recommendations by reviewing the results of recent clinical trials. Insights into evolving drug therapy strategies that may impact future guideline development are also described. CONCLUSIONS: Several changes in drug therapy recommendations were included in the 1999 AMI ACC/AHA guidelines. There is emphasis on administering fibrin-specific thrombolytics secondary to enhanced efficacy. Selection between fibrin-specific agents is unclear at this time. Low response rates to thrombolytics have been noted in the elderly, women, patients with heart failure, and those showing left bundle-branch block on the electrocardiogram. These patient groups should be targeted for improved utilization programs. The use of glycoprotein (GP) IIb/IIIa receptor inhibitors in non-ST-segment elevation MI was emphasized. Small trials combining reduced doses of thrombolytics with GP IIb/IIIa receptor inhibitors have shown promise by increasing reperfusion rates without increasing bleeding risk, but firm conclusions cannot be made until the results of larger trials are known. Primary percutaneous coronary intervention (PCI) trials suggest lower mortality rates for primary PCI when compared with thrombolysis alone. However, primary PCI, including coronary angioplasty, is only available at approximately 13% of US hospitals, making thrombolysis the preferred strategy for most patients. Clopidogrel has supplanted ticlopidine as the recommended antiplatelet agent for patients with aspirin allergy or intolerance following reports of a better safety profile. The recommended dose of unfractionated heparin is lower than previously recommended, necessitating a separate nomogram for patients with acute coronary syndromes. Routine use of warfarin, either alone or in combination with aspirin, is not supported by clinical trials; however, warfarin remains a choice for antithrombotic therapy in patients intolerant to aspirin. Beta-adrenergic receptor blockers continue to be recommended, and emphasis is placed on improving rates of early administration (during hospitalization), even in patients with moderate left ventricular dysfunction. New recommendations for drug treatment of post-AMI patients with low high-density lipoprotein cholesterol and/or elevated triglycerides are included, with either niacin or gemfibrozil recommended as an option. Supplementary antioxidants are not recommended for either primary or secondary prevention of AMI, with new data demonstrating lack of efficacy vitamin E in primary prevention. Estrogen replacement therapy or hormonal replacement therapy should not be initiated solely for prevention of cardiovascular disease, but can be continued in cardiovascular patients already taking long-term therapy for other reasons. Bupropion has been added as a new treatment option for smoking cessation. As drug therapy continues to evolve in treating AMI, more frequent updates of therapy guidelines will be necessary.

Adrenergic beta-Antagonists↗

Spironolactone in the treatment of congestive heart failure.

OBJECTIVE: To evaluate evidence supporting the use of spironolactone in managing congestive heart failure. DATA SOURCES: Literature accessed through MEDLINE (January 1966-December 1999) and cross-referencing of selected articles. Search terms included spironolactone and heart failure. DATA SYNTHESIS: Heart failure is a leading cause of morbidity and mortality. Through aldosterone antagonism, spironolactone may be an effective pharmacotherapeutic addition to patients not responding to standard drug therapy for heart failure. RESULTS: Clinical trials have demonstrated that, in patients with heart failure, spironolactone improves laboratory indices, quality of life, and morbidity. Recently, spironolactone has been demonstrated to improve the survival of patients with New York Heart Association (NYHA) III or IV heart failure. CONCLUSIONS: Spironolactone use should be considered in patients with NYHA Class III or IV heart failure.

Clinical Trials as Topic↗

Dofetilide: a class III-specific antiarrhythmic agent.

OBJECTIVE: To review published reports on the pharmacology and clinical use of dofetilide in the management of cardiac dysrhythmias. DATA SOURCES: A MEDLINE search (January 1966-June 1999) was performed using dofetilide and UK-68,798 as key words. English-language articles were identified, and the references of these articles were used to further identify pertinent articles. STUDY SELECTION: All acquired studies and reviews discussing the pharmacology, pharmacokinetics, chemistry, and clinical efficacy of dofetilide were reviewed. DATA EXTRACTION: Articles were selected based on quality of review of the pharmacology and clinical use of dofetilide. Given the paucity of data on the clinical pharmacology and use of dofetilide, most articles obtained were used, including abstracts when full reports were not available. DATA SYNTHESIS: Dofetilide is a relatively specific class III antiarrhythmic agent. It increases action potential duration and effective refractory period without impacting conduction velocity. These actions of dofetilide are explained by its ability to inhibit the rapid component of the delayed, outward-rectifying potassium current, thus blocking the efflux of potassium during repolarization. Introductory investigations suggest that dofetilide may be of use in treating and preventing atrial dysrhythmias such as atrial fibrillation, atrial flutter, and paroxysmal supraventricular tachycardia. Dofetilide may also have a role in preventing ventricular tachycardia from occurring. Some data also suggest that dofetilide may improve the morbidity of heart failure patients. Currently, the most troublesome adverse effect of dofetilide is its propensity to induce ventricular proarrhythmias, especially torsade de pointes. CONCLUSIONS: Based on the data currently available, dofetilide should have a role in the pharmacotherapy of cardiac dysrhythmias, especially those of atrial origin. More data on its efficacy and tolerability are needed, however, to fully delineate dofetilide's role amid currently available antiarrhythmic agents.

Adult↗

A hypertensive reaction induced by concurrent use of selegiline and dopamine.

OBJECTIVE: To describe a hypertensive reaction induced by concurrent use of selegiline and dopamine. CASE SUMMARY: A 75-year-old critically ill white man who was receiving selegiline 5 mg twice daily for Parkinson's disease was initiated on an intravenous dopamine infusion for decreased urine output and hypotension. Within minutes of starting the dopamine infusion, the patient's systolic blood pressure increased from 105 to 228 mm Hg. Similar reactions occurred during two subsequent rechallenges. DISCUSSION: Since monoamine oxidase is involved in the metabolism of catecholamines, selegiline may have affected the metabolism of the dopamine administered to the patient. Although selegiline is known to be a monoamine oxidase inhibitor specific for type B, evidence exists stating that selegiline may not be as specific as previously thought. CONCLUSIONS: Dopamine should be used cautiously, if at all, in patients who are chronically receiving selegiline or who have received selegiline within the prior two weeks.

Aged↗

The use of HMG-CoA reductase inhibitors to prevent accelerated graft atherosclerosis in heart transplant patients.

Initial trials hint that HMG-CoA reductase inhibitors may have a role in preventing or retarding the progression of AGAS. Whether the potential of HMG-CoA reductase inhibitors to prevent AGAS is due to their lipid-lowering effect, immunomodulating properties, or a combination of both is also not completely known at present. Further study is needed to fully identify their mode of preventing AGAS and, more important, to determine their usefulness and role in preventing AGAS, especially since concurrent HMG-CoA reductase inhibitor use with cyclosporine is not innocuous. Potential for a pharmacokinetic drug interaction, which results in an elevation of HMG-CoA reductase inhibitor concentrations, exists when these two agents are used together, thus increasing the potential for the HMG-CoA reductase inhibitor to cause musculoskeletal complications. When such combination therapy is used, the likelihood of this interaction can be reduced by prescribing the HMG-CoA reductase inhibitor conservatively--using the smallest effective dose and increasing the daily dosage slowly. Although the risk of musculoskeletal toxicity exists at any HMG-CoA reductase inhibitor dosage, most patients should be able to tolerate daily dosages of up to 20 mg of lovastatin, 10 mg of simvastatin, and 40 mg of pravastatin. Patients also need to be made aware of and monitored for musculoskeletal symptoms suggestive of myositis and/or myalgias. In addition, the avoidance of elevated cyclosporine concentrations and when practical, monitoring of HMG-CoA reductase inhibitor concentrations are recommended.

Coronary Artery Disease↗

Digoxin-macrolide drug interaction.

Macrolide antibiotics appear to be able to enhance the oral bioavailability of digoxin by altering the gastrointestinal flora that metabolize digoxin to less active dihydro metabolites, thus leading to increased serum digoxin concentrations and possible digoxin toxicity in select patients stabilized on digoxin therapy. This interaction may be of clinical importance in up to 10% of the population. Currently, the orally administered erythromycin, clarithromycin, and roxithromycin have been implicated. Although realistically this interaction may be encountered rarely, when it does occur, it can be of clinical significance.

Aged↗

ABCIXIMAB: a new antiaggregant used in angioplasty.

OBJECTIVE: To review the scientific literature on the pharmacology and clinical uses of abciximab. DATA SOURCES: MEDLINE, Index Medicus, and bibliographic literature searches of English-language articles pertaining to abciximab, 7E3, m7E3, and c7E3 were performed. Eli Lilly also provided unpublished results of the Evaluation of 7E3 for the Prevention of Ischemic Complications trial. DATA SELECTION: The selection of data presented focused on controlled trials using abciximab at doses currently approved by the Food and Drug Administration. DATA SYNTHESIS: Abciximab is a humanized chimeric Fab fragment of 7E3. 7E3 is a murine antibody directed against the integrin glycoprotein IIb)/IIIa receptor (GPIIb/IIIa) located on platelets. These receptors play an integral part in platelet aggregation by allowing fibrinogen to bind to them and interconnect platelets. When administered intravenously, abciximab binds to GPIIb/IIIa and hinders platelet aggregation. Bleeding times and activated clotting times are increased and the platelets' response to adenosine diphosphate is reduced with the use of abciximab. Clinical trials have indicated that abciximab can reduce the incidence of abrupt closure and restenosis associated with percutaneous transluminal coronary angioplasty (PTCA) performed in high-risk patients. Clinical trials also suggest that abciximab may have a role in the treatment of unstable angina and the acute therapy of myocardial infarctions. Complications associated with abciximab include bleeding and thrombocytopenia. The thrombocytopenia is likely related to immunologic mechanisms. In addition, the production of antimurine antibodies has been demonstrated with abciximab use. Abciximab is currently approved for the prevention of abrupt coronary closure associated with PTCA in patients at high risk for this event. CONCLUSIONS: Abciximab is effective in preventing platelet aggregation and has been proven to be of clinical benefit in selected high-risk patients receiving PTCA.

Abciximab↗

Syncope: pathophysiology, diagnosis, and pharmacotherapy.

OBJECTIVE: To review the pathophysiology, diagnosis, and pharmacotherapy of syncope, with emphasis placed on neurocardiogenic syncope. DATA SOURCES: A MEDLINE search (1980-1995) using the term syncope and cross-referencing selected articles. STUDY SELECTION: Articles selected were those considered to assist in providing the reader with a basic introduction the pathophysiology, diagnosis, and pharmacotherapy of syncope, with emphasis placed on neurocardiogenic syncope. DATA SYNTHESIS: Syncope is a common disorder with many different etiologies. The patient's history and physical examination are extremely important in making the diagnosis. The recent availability of head-upright tilt testing and electrophysiologic studies of the myocardium have helped define the etiology in many patients in whom an etiology would not have been found in the past. When the cause of syncope has been diagnosed, the appropriate therapy to prevent future attacks will be defined in many instances. One form of syncope, known as neurocardiogenic syncope, can be difficult to treat. Recent trials have suggests the use of beta-blockers, fludrocortisone, disopyramide, or selective serotonin reuptake inhibitors may be helpful in some patients.

Adrenergic beta-Antagonists↗

Extrapyramidal symptoms associated with calcium-channel blockers.

Flunarizine and cinnarizine have been well documented to cause EPS. Other CCBs, on rare occasions, also have been reported to cause EPS. Theoretical explanations for these events include the inhibition of calcium influx into striatal cells and direct dopaminergic antagonistic properties. In addition, the chemical structures of flunarizine and cinnarizine, which are related to neuroleptics, may explain the relatively greater incidence of EPS with these agents. Suggested risk factors for acquiring EPS with flunarizine or cinnarizine use appear to be age, although experience with using these agents in younger patients is limited, and a family history of tremors and/or Parkinson's disease. The onset and type of presentation is unpredictable and, in most instances, discontinuation of the medication relieves the symptoms within a few days to months. Pharmacologic management of EPS with continued use of the offending agent generally has not been of clinical benefit. In conclusion, patients receiving CCBs, particularly flunarizine and cinnarizine, should be monitored for EPS.

Basal Ganglia Diseases↗

Comparison of tobramycin pharmacokinetics after administration by CRIS and a traditional intravenous piggyback infusion.

OBJECTIVE: To compare the administration pharmacokinetics of a 30-minute intravenous piggyback (ivpb) infusion of tobramycin with those of controlled-release infusion system (CRIS) using a 20-mL vial at rates of 60 and 120 mL/h. DESIGN: Randomized, controlled, crossover, prospective, open-label trial. SETTING: Medical college-affiliated hospital. PARTICIPANTS: Eight healthy volunteer men between the ages of 22 and 24 years weighing between 60 and 90 kg. INTERVENTIONS: Volunteers received, in random order, tobramycin sulfate 2 mg/kg i.v. on 3 occasions separated by 1 week. The drug was administered using a 50-mL ivpb infusion at 100 mL/h for 30 minutes, and with the CRIS using a 20-mL vial with flow rates of 60 mL/h for 1 hour (slow) and 120 mL/h for 1 hour (fast). MAIN OUTCOME MEASURES: Primary endpoints were area under the time-concentration curve (AUC), time to reach maximum concentration (tmax), and maximum concentration (Cmax). Secondary endpoints were elimination rate constant (ke), clearance (Cl), and half-life (t1/2). RESULTS: Six volunteers successfully completed the trial. The tmax values observed following fast CRIS and ivpb were 28 +/- 8 and 32 +/- 4 minutes, respectively, and not significantly different from each other. Both occurred significantly earlier than the tmax associated with slow CRIS (44 +/- 7 min). The Cmax values observed following ivpb (11.2 +/- 1.5 mg/L) and slow CRIS (10.9 +/- 0.9 mg/L) administration were not significantly different from each other, but both were significantly lower than that of fast CRIS (13.4 +/- 1.5 mg/L). The AUCs of slow and fast CRIS were 29.8 +/- 4.8 and 31.2 +/- 3.8 mg/L.h, respectively, and were not significantly different from each other. The AUC of fast CRIS was significantly greater than that observed with ivpb (27.4 +/- 4.3 mg/L.h). No significant difference in ke (fast CRIS 0.32 +/- 0.03 h-1; slow CRIS 0.33 +/- 0.04 h-1; ivpb 0.34 +/- 0.0 h-1) was observed among any of the methods. CONCLUSIONS: CRIS administration of tobramycin resulted in higher AUCs than did ivpb administration. Compared with ivpb, fast CRIS resulted in a higher Cmax, but the tmax values of fast CRIS and ivpb administration were not statistically different. Compared with ivpb, slow CRIS resulted in a more delayed tmax, but the Cmax values of slow CRIS and ivpb were not statistically different.

Adult↗

Adenosine in acute theophylline intoxication.

Although it appears that adenosine would be theoretically useful in the emergent therapy of theophylline toxicity, published clinical data supporting the efficacy and safety of using adenosine for such a situation are currently lacking. The use of adenosine also is not without some risk. In addition, the use of adenosine infusions can be relatively expensive. Until more clinical evidence can be obtained, the routine use of adenosine in the treatment of acute theophylline ingestion cannot be recommended.

Adenosine↗

Meperidine-related seizures associated with patient-controlled analgesia pumps.

OBJECTIVE: To report three cases of meperidine-related seizures when meperidine was administered via patient-controlled analgesia pump (PCAP) and to review literature related to meperidine-associated seizures. DATA SOURCES: Case reports and review articles identified by a computerized search (MEDLINE) and manual search (Index Medicus). DATA SYNTHESIS: PCAPs are being used frequently to relieve the pain of sickle cell crisis as well as pain from many other etiologies. We report three cases of meperidine-related seizures associated with its administration via PCAP. Each of the patients received either relatively high doses, long-term therapy, or both. Meperidine has been associated with seizure activity when administered via traditional routes. Previously identified risk factors for the development of meperidine-related seizures include renal failure, high meperidine dosages, and coadministration of hepatic enzyme-inducing medications or phenothiazines. CONCLUSIONS: Meperidine administered via PCAP may be associated with seizures. Optimally, an alternative analgesic should be administered when this route is used.

Adult↗

Clinical pharmacokinetics and practical applications of simvastatin.

Simvastatin is a methyl analogue of lovastatin and acts as an HMG-CoA reductase inhibitor effective in the treatment of hypercholesterolaemia. Like lovastatin, it is an inactive hydrophobic lactone prodrug which is metabolised in vivo to several more polar, pharmacologically active compounds, most notably the corresponding hydroxy acid form, simvastatin acid. HPLC techniques have been developed to assay simvastatin and its metabolites. In addition, a pharmacodynamic assay has been developed that measures HMG-CoA reductase inhibitory activity. This latter assay may be more applicable to clinical situations since simvastatin is not active, while its metabolites are. Simvastatin is well absorbed from the gastrointestinal tract but is highly extracted by the liver and only 7% of the dose reaches the general circulation intact. The peak inhibition of HMG-CoA reductase activity occurs within 2 to 4 hours. Increasing the dose of simvastatin from 5 to 120 mg increases the pharmacological activity in a linear fashion. The several metabolites tend to remain within the liver and the intestines (via biliary excretion). Some gastrointestinal reabsorption of metabolites may occur. Simvastatin is eliminated mainly in the faeces due to biliary excretion but only a small percentage of the dose is found in the stool in the form of the parent compound or simvastatin acid. Since simvastatin is metabolised by the cytochrome P450 system, a potential for drug interactions exists. Elevated HMG-CoA reductase inhibitory activity has been observed when simvastatin was administered concurrently with cyclosporin, possibly increasing the risk of myopathy and subsequent rhabdomyolysis which are associated with simvastatin use. Simvastatin has also been shown to potentiate the effects of warfarin [corrected].(ABSTRACT TRUNCATED AT 250 WORDS)

Anticholesteremic Agents↗

Comparison of pentoxifylline pharmacokinetics between smokers and nonsmokers.

Pentoxifylline is a synthetic xanthine derivative and is hepatically cleared. The natural dimethylxanthines theobromine and theophylline have been shown to have enhanced metabolism in smokers when compared with nonsmokers. Subsequently, the effect of smoking on pentoxifylline plasma concentrations was investigated. Twenty healthy volunteers (10 smokers and 10 nonsmokers) received pentoxifylline 400 mg as a controlled-release tablet every 8 hours for 17 doses. Several blood samples were collected for 8 hours after the final dose. These samples were assayed for pentoxifylline and its metabolites. The mean values of the smokers were compared with those of the nonsmokers. With respect to pentoxifylline, no statistically significant differences in maximum concentration and time of maximum concentration were observed between the two groups. Although no statistical differences in plasma concentrations and area-under-the-curve at steady state (AUCss) were observed, the oral clearance of pentoxifylline among the smokers (.22 +/- .08 L/minute/kg) was significantly greater (P < .05) than that among the nonsmokers (0.15 +/- 0.06 L/minute/kg) when corrected for body weight. With respect to the pentoxifylline metabolite 1-(5-hydroxy-hexyl)-3,7-dimethylxanthine (MI), the maximum concentration and AUCss of the smokers were significantly decreased when compared with the nonsmokers. The AUCss of the smokers was 1438 +/- 819 ng.hour/mL and of the nonsmokers was 2864 +/- 1375 ng.hour/mL (P < .02). The results of this trial suggest that smoking tends to reduce pentoxifylline plasma concentrations and significantly reduces MI plasma concentrations.

Adult↗

Use of fish oil to prevent coronary angioplasty restenosis.

OBJECTIVE: To review the literature investigating the use of fish oil in preventing restenosis postangioplasty (RPA). DATA SOURCES: An Index Medicus and bibliographic search of the English-language literature pertaining to the use of fish oil in preventing RPA. The key terms used were fish oil, angioplasty, and eicosapentaenoic acid. STUDY SELECTION AND DATA EXTRACTION: The results of all trials, including abstracts, that were obtained are reviewed and critiqued. DATA SYNTHESIS: Restenosis of a coronary vessel at the site of angioplasty occurs 30-40 percent of the time. Because fish oil has been theorized to prevent atherosclerosis and because atherosclerotic-like processes are theorized to be involved in RPA restenosis, fish oil has been studied to determine whether it can prevent RPA. Results of such trials have been mixed. Some have observed a reduction in the number of patients with angiographic or clinical evidence of restenosis. Two trials have failed to observe such an effect. Reasons for the differences are unknown. Possible explanations include differences in study design, endpoint parameters, definition of restenosis, and dosing methods of the fish oil. Bleeding was not of significant concern in any of the trials, even when fish oil was combined with antiplatelet therapy. CONCLUSIONS: Fish oil may be considered for use in patients to prevent RPA. It probably should be continued for only six months following the procedure. Current data suggest that at least 3 g/d of eicosapentaenoic acid and 1 g/d of docosahexaenoic acid should be used. If possible, therapy should be started as soon as it is known that angioplasty will be performed or at least as soon as possible following the procedure. Many patients may not be able to tolerate fish oil because of its gastrointestinal effects.

Angioplasty, Balloon, Coronary↗

Effect of serum separator tubes on free and total phenytoin and carbamazepine serum concentrations.

The effect of serum separator tubes (SSTs) on free and total serum phenytoin and carbamazepine concentrations was determined by comparing standard no-additive tubes with SSTs (Becton Dickinson SST and Terumo Autosep). The influence of time prior to centrifugation, sample volume, and initial drug concentration on the effects were also studied. Results were analyzed using repeated measures two-way analysis of variance with tube type and either time, sample volume, or concentration as main effects. The most significant reductions noted were with Becton Dickinson SSTs in free and total serum phenytoin and total carbamazepine concentrations, where all reductions were less than 10%. The only factor to significantly influence extent of reduction was the effect of time on total serum phenytoin concentration in Becton Dickinson SSTs. Terumo Autosep tubes caused no major reductions in free or total phenytoin or carbamazepine serum concentrations. Autosep tubes should provide accurate measurements of total and free serum phenytoin and carbamazepine concentrations. With Becton Dickinson SSTs, the reductions noted in free and total phenytoin and total carbamazepine concentrations were not large enough to preclude their clinical use. Becton Dickinson SSTs should not be used for determining free or total phenytoin or total carbamazepine concentrations for purposes of research.

Blood Component Removal↗