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Biomedical subjects

S M Bates

Publications and source records attributed to S M Bates.

At least 19 recordsLinked to original sources

Single-arm study of bridging therapy with low-molecular-weight heparin for patients at risk of arterial embolism who require temporary interruption of warfarin.

BACKGROUND: When warfarin is interrupted for surgery, low-molecular-weight heparin is often used as bridging therapy. However, this practice has never been evaluated in a large prospective study. This study was designed to assess the efficacy and safety of bridging therapy with low-molecular-weight heparin initiated out of hospital. METHODS AND RESULTS: This was a prospective, multicenter, single-arm cohort study of patients at high risk of arterial embolism (prosthetic valves and atrial fibrillation with a major risk factor). Warfarin was held for 5 days preoperatively. Low-molecular-weight heparin was given 3 days preoperatively and at least 4 days postoperatively. Patients were followed up for 3 months for thromboembolism and bleeding. Eleven Canadian tertiary care academic centers participated; 224 patients were enrolled. Eight patients (3.6%; 95% CI, 1.8 to 6.9) had an episode of thromboembolism, of which 2 (0.9%; 95% CI, 0.2 to 3.2) were judged to be due to cardioembolism. Of these 8 episodes of thromboembolism, 6 occurred in patients who had warfarin deferred or withdrawn because of bleeding. There were 15 episodes of major bleeding (6.7%; 95% CI, 4.1 to 10.8): 8 occurred intraoperatively or early postoperatively before low-molecular-weight heparin was restarted, 5 occurred in the first postoperative week after low-molecular-weight heparin was restarted, and 2 occurred well after low-molecular-weight heparin was stopped. There were no deaths. CONCLUSIONS: Bridging therapy with subcutaneous low-molecular-weight heparin is feasible; however, the optimal approach for the management of patients who require temporary interruption of warfarin to have invasive procedures is uncertain.

Anticoagulants↗

Use of different D-dimer levels to exclude venous thromboembolism depending on clinical pretest probability.

Currently, the same D-dimer cut-off point is used to define a positive result for all patients with suspected venous thromboembolism, regardless of their pretest probability. However, use of a relatively high D-dimer cut-off point (lower sensitivity) for those with a low clinical pretest probability, and a low D-dimer cut-off point (higher sensitivity) for those with a high clinical pretest probability, may be preferable. To determine if using three different D-dimer cut-off points according to low, moderate or high clinical pretest probability has greater utility for exclusion of venous thromboembolism than using the same single D-dimer cut-off point in all patients. Data from a previously published study of 571 patients was used to identify the highest D-dimer cut-off point with a negative predictive value of at least 98% for the subgroup of patients with low and high pretest probability. The D-dimer cut-off point for those with moderate clinical pretest probability remained unchanged [0.5 fibrinogen equivalent units (FEU) microgram mL(-1)]. Accuracy of D-dimer testing for venous thromboembolism using three cut-off points vs. one cut-off point was than determined. D-dimer cut-off points of 0.2 and 2.1 FEU microgram mL(-1) were selected for the high and low pretest probability groups, respectively. When three pretest probability-specific cut-off points were used instead of the previously determined single D-dimer cut-off point (0.5 FEU microgram mL(-1)), sensitivity and negative predictive value were unchanged (95 and 98%, respectively), but specificity increased from 44.7 to 60.4% (P < 0.001). This resulted in exclusion of venous thromboembolism in 80 additional patients. Use of three pretest probability-specific D-dimer cut-off points rather than a single D-dimer cut-off point for all patients, has the potential to increase the utility of D-dimer testing for the diagnosis of venous thromboembolism.

Algorithms↗

Management of venous thromboembolism during pregnancy.

The incidence of venous thromboembolism (VTE) probably increases 2-4-fold in pregnancy and is higher after a caesarean section than after vaginal delivery. Management of VTE in pregnancy is challenging. Many diagnostic tests are less accurate in pregnant than in non-pregnant patients and some radiologic procedures expose the fetus to ionizing radiation, although this can be reduced by taking appropriate precautions. Compression ultrasonography (CUS) is the test of choice for deep vein thrombosis (DVT), whereas for PE, V/Q lung scan is the first-line test, followed by CUS if the results are non-diagnostic. Anticoagulants that have been evaluated for the prevention and treatment of VTE in pregnancy include heparin and heparin compounds, and coumarin derivatives. When determining the optimal treatment regimens, it is important to consider: (i) the safety of the drug for the fetus and mother; (ii) the efficacy of the regimen; and (iii) the dose regimens for acute and secondary treatment, and during delivery and postpartum. Heparins are safer than coumarins for the fetus, as they do not cross the placental barrier. Heparins, particularly unfractionated heparin (UFH) and low molecular weight heparin (LMWH) tend also to be safer for the mother than other compounds. Of the two, LMWHs, although more expensive, are associated with lower rates of bleeding complications, and heparin-induced thrombocytopenia and osteoporosis, than UFH, and should therefore be the treatment of choice in VTE during pregnancy. Patients with prior VTE or a hypercoagulable state have an increased risk of VTE during pregnancy. Depending on the presence of one or both of these factors, clinical surveillance, with anticoagulant treatment where necessary, is recommended.

Anticoagulants↗

Decrease in sensitivity of D-dimer for acute venous thromboembolism after starting anticoagulant therapy.

D-dimer testing is useful for the exclusion of acute venous thromboembolism (VTE). Anticoagulant therapy is expected to reduce D-dimer levels in patients with thrombosis and, consequently, it may not be safe to use D-dimer levels to exclude VTE after anticoagulant therapy has been started. The objectives of this study were to estimate the decrease in D-dimer levels after 24 h of heparin therapy and, applying this estimate to the results of a recent study, to calculate the expected reduction in sensitivity. Using pre-defined criteria, we first performed a literature review to determine whether, and by how much, D-dimer levels decrease within 24 h of starting heparin therapy in patients with acute VTE. Using D-dimer levels that were measured in a prospective study of patients with confirmed deep vein thrombosis and/or pulmonary embolism as baselines, we then determined the change in sensitivity (and specificity) that would result from the fall in D-dimer levels that the literature review suggested would have occurred after 24 h of heparin therapy. On the basis of the literature review, we calculated that mean D-dimer levels decrease by 25%, 24 h after starting heparin therapy in patients with acute VTE. This 25% decrease in D-dimer levels resulted in a decrease in sensitivity from 95.6% (95% confidence interval, 90.0-98.6) to 89.4% (95% confidence interval, 83.7-95.1). There is a decrease in D-dimer levels in patients with acute VTE 24 h after starting heparin therapy that is expected to result in a clinically important drop in sensitivity.

Adult↗

Clinical trials that have influenced the treatment of venous thromboembolism: a historical perspective.

In 1960, Barritt and Jordan performed the first randomized trial demonstrating the efficacy of anticoagulant therapy in the treatment of venous thromboembolism. Since then, important therapeutic advances have been made in the treatment of deep venous thrombosis and pulmonary embolism. This paper reviews the important clinical trials involving anticoagulant therapy and vena caval interruption. The studies are discussed from a historical perspective, and an attempt is made to analyze both the thought processes that prompted their design and the reasons why they changed practice.

Anticoagulants↗

Use of a fixed activated partial thromboplastin time ratio to establish a therapeutic range for unfractionated heparin.

BACKGROUND: The commonly recommended therapeutic range for patients receiving unfractionated heparin of 1.5 to 2.5 times the control activated partial thromboplastin time (aPTT) is not universally applicable. It has been suggested that the therapeutic range for each aPTT reagent should be based on plasma heparin levels. We sought to identify an aPTT ratio that corresponds to therapeutic anti--factor Xa heparin levels for combinations of several reagents and coagulometers that are commonly used. METHODS: Citrated plasma was collected from 126 unselected patients receiving unfractionated heparin. Four automated coagulometers and 6 commercial aPTT reagents were used to measure the aPTT. Plasma anti--factor Xa levels were measured by means of a commercially available assay. The relationship between the aPTT results and anti-factor Xa heparin levels for each reagent-coagulometer combination was determined by linear regression analysis, and the aPTT results corresponding to therapeutic anti--factor Xa heparin levels were calculated. RESULTS: For all reagent-coagulometer combinations studied, an aPTT ratio of 1.5 resulted in anti--factor Xa heparin levels considerably below the lower limit of the therapeutic range. When the aPTT was performed on any of the coagulometers assessed with the use of Actin (Dade Diagnostics, Aguada, Puerto Rico) and IL Test (Instrumentation Laboratories, Fisher Scientific, Unionville, Ontario) reagents, aPTT ratios necessary to achieve therapeutic anti--factor Xa heparin levels approximated 2.0 to 3.5. CONCLUSION: For laboratories that cannot perform heparin levels, the use of less responsive reagents and any of the coagulometers studied, along with target aPTT ratio between 2.0 and 3.5, appears to be a reasonable alternative.

Antithrombin III↗

A latex D-dimer reliably excludes venous thromboembolism.

BACKGROUND: D-Dimer, a cross-linked fibrin degradation product, has a high sensitivity in patients with suspected venous thrombosis. Traditional latex D-dimer assays, however, have not been sufficiently sensitive to exclude venous thromboembolism. METHODS: To determine the clinical utility of a latex D-dimer assay (MDA D-Dimer; Organon Teknika Corporation, Durham, NC) in patients with suspected venous thromboembolism, we conducted a retrospective cohort study involving 595 unselected patients at 4 tertiary care hospitals. Patients had blood drawn for performance of the D-dimer assay and underwent objective testing for venous thromboembolism. Pretest probability was determined using validated models in 571 patients. Patients were classified as venous thromboembolism positive or negative according to results of objective tests and 3-month follow-up. The sensitivities, specificities, predictive values, and negative likelihood ratios of the assay were calculated for all patients and for subgroups of patients with known cancer or a low, moderate, or high pretest probability of venous thromboembolism. RESULTS: The prevalence of venous thromboembolism was 19.0% (113/595). Of those who had a pretest probability assessment, 35.9% had a low pretest probability, 49.7% a moderate pretest probability, and 14.4% a high pretest probability. Using a discriminant value of 0.50 microg fibrinogen equivalent units per milliliter, the assay showed an overall sensitivity of 96%, a negative predictive value of 98%, a specificity of 45%, and a negative likelihood ratio of 0.09. In patients with a low or moderate pretest probability, the sensitivity, negative predictive value, and negative likelihood ratio were 97%, 99%, and 0.07, respectively. CONCLUSIONS: The MDA D-Dimer assay is the first latex agglutination assay with sufficient sensitivity to be clinically useful in the exclusion of venous thromboembolism. A negative result has the potential to be used as the sole test to exclude venous thromboembolism in patients with a low or moderate pretest probability of disease.

Female↗

Pregnancy and deep vein thrombosis.

The diagnosis, treatment, and prevention of deep vein thrombosis (DVT) during pregnancy remain problematic. This article reviews the pathophysiology of pregnancy-related DVT and suggests diagnostic strategies, highlighting the pitfalls specific to this patient population. The treatment of DVT in pregnant patients is difficult because unfractionated heparin and low-molecular-weight heparins, the cornerstones of initial therapy, may have significant maternal side effects and warfarin can cause embryopathy and other adverse fetal effects. As well, there are limited data regarding the efficacy of anticoagulant therapy in the treatment and prophylaxis of DVT during pregnancy. This article briefly reviews the areas of controversy and provides recommendations for the treatment of acute DVT and thromboprophylaxis in pregnant patients.

Anticoagulants↗

The prevalence of Chlamydia trachomatis infection in male undergraduates: a postal survey.

OBJECTIVES: To determine the prevalence of Chlamydia trachomatis infection in male undergraduates and to investigate whether prevalence increases with time spent at university. To investigate the feasibility of screening men for C trachomatis by self sampling and posting of urine specimens. METHODS: The study design was a postal survey undertaken by the Department of Genito-Urinary Medicine (GUM) and Student University Health Service (SUHS) in SHEFFIELD: 2607 male undergraduates from the SUHS patient list were invited to participate in the study by providing a first void urine specimen and posting it to the laboratory. The main outcome measure was the detection of C trachomatis infection. RESULTS: 758 students participated in the study, a response rate of 29.1%. Nine students (1.2%) tested positive for C trachomatis. The prevalence of infection in the first, second, and third year of study was 0.7%, 1.5%, and 1.6% of participants respectively. There was no statistically significant difference in prevalence of infection between first and third year students (chi(2) test, p = 0.32). However, students with chlamydia had a higher median age (Mann-Whitney U test, p < or = 0.05). Contact tracing identified four further cases of C trachomatis infection. CONCLUSION: Screening for C trachomatis infection by postal survey is feasible. However, the response rate in this study was poor and the estimated sample size was not reached. Therefore, it has not been possible to determine the true prevalence of infection in this population or to accurately assess changes in prevalence with time spent at university.

Adolescent↗

Criteria for evaluating evidence that laboratory abnormalities are associated with the development of venous thromboembolism.

The identification of conditions associated with an increased risk of venous thromboembolism may indicate the need for aggressive prophylaxis during periods of high risk, prolonged anticoagulant therapy after an initial venous thromboembolic episode, the investigation of asymptomatic family members and the avoidance of oral contraceptives. Advances in laboratory medicine have led to the identification and assessment of many proteins responsible for normal hemostasis, and associations between abnormalities in a number of these proteins and venous thromboembolism have been reported. Without the ability to appraise this information critically, physicians may be unable to determine whether or how they should modify their clinical practice. Criteria for determining whether specific laboratory abnormalities have a relationship with venous thromboembolism are proposed here, and one example of the application of these guidelines is provided.

Anticoagulants↗

Beyond heparin and aspirin: new treatments for unstable angina and non-Q-wave myocardial infarction.

The goals of therapy for unstable angina and non-Q-wave myocardial infarction (MI) are to maintain myocardial perfusion by inhibiting platelet aggregation and fibrin deposition at sites of plaque rupture, thereby preventing ongoing or new myocardial ischemia and cardiac death. Although aspirin and heparin sodium are cornerstones in the management of unstable angina and non-Q-wave MI, both have significant limitations that have prompted the development of new agents. The thienopyridines, ticlopidine hydrochloride and clopidogrel, appear to be at least as effective as aspirin in the management of unstable angina. Glycoprotein IIb/IIIa receptor antagonists are a new class of platelet inhibitors that are more potent than aspirin, because they target the final common pathway of platelet aggregation. Low-molecular-weight heparins provide a more stable pharmacodynamic response and are more convenient to use than unfractionated heparin. Direct thrombin inhibitors show promise for inhibiting thrombin-mediated platelet aggregation and fibrin deposition. We focus on the opportunities presented by these agents, detailing mechanisms of action, advantages over aspirin and heparin, and performance in recent clinical trials.

Angina, Unstable↗

The mechanism of action of thrombin inhibitors.

Although heparin is widely used to treat arterial thrombosis, it has limitations in this setting. These limitations reflect heparin's inability to inactivate fibrin-bound thrombin, a major stimulus for thrombus growth, and the fact that heparin is neutralized by platelet factor 4, large quantities of which are released from platelets at the site of plaque rupture. Heparin also has a propensity to bind non-specifically to other plasma proteins. Because plasma levels of these heparin-binding proteins vary from patient to patient, the anticoagulant response to heparin is unpredictable and careful laboratory monitoring is necessary to ensure that an adequate anticoagulant effect is achieved. Direct thrombin inhibitors, such as bivalirudin and hirudin, overcome many of the limitations of heparin. These agents inhibit fibrin-bound thrombin, as well as fluid-phase thrombin. Direct thrombin inhibitors also produce a more predictable anticoagulant response than heparin because they do not bind to plasma proteins and are not neutralized by platelet factor 4. Bivalirudin appears to have a wider therapeutic window than hirudin. Because this may permit administration of higher doses of bivalirudin, this agent may also have an efficacy advantage over hirudin. Differences observed between hirudin and bivalirudin demonstrate that not all direct thrombin inhibitors have the same risk-benefit profile.

Angioplasty, Balloon, Coronary↗