Circadian rhythm of pulmonary embolism in patients with acute spinal cord injury.
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Biomedical subjects
Publications and source records attributed to G V Sharma.
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BACKGROUND: The clinical usefulness of intravenous thrombolytic therapy in unstable angina is currently unknown, despite the pathogenetic similarity of this entity to acute myocardial infarction, for which thrombolysis has enjoyed great success. To compare the clinical benefit of intravenous urokinase with that of conventional antithrombotic therapy in preventing the progression of unstable angina to new myocardial infarction, intractable angina, or death within the first 96 hours after hospitalization, 149 patients with unstable angina were randomized to one of two intravenous thrombolytic strategies. METHODS AND RESULTS: Forty-nine patients received 3 million units urokinase i.v. over 90 minutes plus intravenous heparin (group A); 47 patients received unblinded 3 million units urokinase i.v. plus 325 mg aspirin p.o. daily (group B); and 53 patients received placebo thrombolytic infusion plus full-dose heparin (group C). The primary end point of this trial was 96-hour clinical status. There were no significant differences in the baseline characteristics (age, sex, previous myocardial infarction, hypertension prevalence, diabetes, tobacco use, or previous revascularization) among the three groups. Despite an excess of minor untoward reactions for the urokinase groups (chills, 26.5% and 23.4% for groups A and B versus 0% for group C; p < 0.01), there was no significant difference with respect to major bleeds (two, none, and two for groups A, B, and C, respectively; p = NS). At 96 hours after presentation, no significant difference emerged in the incidence of new cardiac events: new myocardial infarctions developed in 10.2% of group A, 6.4% of group B, and 3.8% of group C (p = NS); intractable angina occurred in 6.1% of group A, 10.6% of group B, and 9.4% of group C (p = NS). There were no deaths. All three groups encountered a similar incidence of overall cardiac events: 16.3%, 17.0%, and 13.2% for groups A, B, and C, respectively (p = NS). Although trial enrollment was to extend to 600 patients, interim analysis led to early cessation of enrollment due to a negative trend in respect to outcome after thrombolysis. CONCLUSIONS: High-dose intravenous urokinase followed by either heparin or aspirin can be safely administered to a broad, unselected group of patients with unstable angina. However, this study suggests that no clinical advantage is conferred by urokinase, with either adjunctive antithrombotic therapy over standard heparin therapy alone, when given relatively late (mean, 8.7 hours) after admission for unstable angina. A possible detrimental effect cannot be excluded.
This study assessed the efficacy and safety of increasing durations of constant-dose intravenous recombinant tissue-type plasminogen activator (rt-PA) in the treatment of deep vein thrombosis. Patients with venogram-documented proximal lower limb (popliteal, iliofemoral) or upper limb (axillary, subclavian) thrombi were given an initial 2-hour rt-PA infusion at 4 micrograms/kg/min, followed by a maintenance infusion of 1 microgram/kg/min for an additional 4, 22, or 33 hours (mean total rt-PA dosages of 54, 127, and 185 mg). A new quantitative venogram scoring system was applied to the study, based on measurements of thrombus volume before and after completion of treatment. Whereas none of the seven patients given treatment for 6 hours and only one of four given treatment for 24 hours showed significant lysis, four of seven who received a prolonged infusion for 35 hours showed lysis of more than 40% of the original thrombus. Overall, the prolonged 35-hour infusion induced 51% lysis of original thrombus, representing a thrombus volume of 16.7 ml dissolved. Hemorrhagic complications were common in all three groups, with four of 18 patients having significant bleeding, including one massive gastrointestinal hemorrhage, two patients with a decrease in hematocrit of more than 10%, and one patient with an intracranial hemorrhage who recovered completely. Pharmacokinetics of the rt-PA showed a steady state antigen concentration of 240 ng/ml and activity of 200 IU/ml during the initial 2-hour infusion and a postinfusion half-life of 5 minutes. Plasma fibrinogen concentrations decreased to approximately 40% to 50% of initial values with all three treatment regimens, but the nadir fibrinogen concentrations did not correlate with either therapeutic efficacy or bleeding complications. One patient with systemic lupus erythematosus had an unusual allergic reaction that manifested primarily as angioedema. This study suggests that rt-PA infusion of 35 hours induces greater thrombolysis of deep vein thrombosis than does a shorter course of 6 or 24 hours, without an increase in hemorrhagic complications.
Glycopyranosiduronic acids, amidically linked to amino acids (alanine, serine, threonine, and lysine) were prepared. O-tert-Butyl and N epsilon-tert-butyloxycarbonyl protected amino acid tert-butyl esters were used in ethyl 2-ethoxy-1,2-dihydroquinoline-1-carboxylate promoted condensation with 2-azidoethyl glycosides of glucuronic and galacturonic acid. Reduction of the azido-function followed by N-acryloylation and removal of blocking groups with trifluoroacetic acid gave the target monomers. These were converted into neoglycoconjugates of copolymer type, potentially useful for immunochemical studies.
BACKGROUND: Although aspirin therapy started before operation improves vein graft patency after coronary artery bypass grafting, it also causes bleeding. The objective of this prospective, centrally directed, randomized, double-blind, placebo-controlled trial was to compare the effects of aspirin therapy started before operation with aspirin started 6 hours after operation on early (7-10-day) graft patency. METHODS AND RESULTS: Patients were randomized to receive either aspirin 325 mg or placebo the night before surgery; after operation, all patients received aspirin 325 mg daily, with the first dose administered through the nasogastric tube 6 hours after operation. Angiography was performed in 72% of the analyzed patients an average of 8 days after operation, and the primary end point was saphenous vein graft patency in 351 patients. Internal mammary artery graft patency was also assessed in 246 patients because many individuals received both internal mammary artery and vein grafts. In the patients given preoperative aspirin, the vein graft occlusion rate was 7.4 +/- 1.3% compared with 7.8 +/- 1.5% in those who received preoperative placebo (p = 0.871). In the subgroup of patients receiving Y grafts, 0.0% of the grafts were occluded in the preoperative aspirin group compared with 7.0 +/- 3.6% in the preoperative placebo group (p = 0.066). The internal mammary artery occlusion rate was 0.0% (0 of 131) in the aspirin group compared with 2.4 +/- 1.4% (three of 125) in the placebo group (p = 0.081). Patients in the aspirin group received more transfusions than those in the placebo group (median, 900 versus 725 ml, p = 0.006). The reoperation rate for bleeding in the aspirin group was 6.3% compared with 2.4% in the placebo group (p = 0.036). Median chest tube drainage within the first 6 hours after operation was 500 ml in the aspirin group compared with 448 ml in the placebo group (p = 0.011). CONCLUSIONS: Thus, preoperative aspirin is associated with increased bleeding complications and offers no additional benefit in early vein graft patency compared with starting aspirin therapy 6 hours after operation. There was a trend, although not significant, toward improved early patency for Y grafts and internal mammary artery grafts with preoperative aspirin.
To identify high-risk subgroups, 468 patients with unstable angina were prospectively stratified according to the clinical presentation of unstable angina (type I or type II) and left ventricular function (normal or abnormal) and were randomized to conventional medical therapy or surgical treatment with coronary bypass surgery. Type I patients (n = 374) were those who had progressive effort angina or recent angina at rest. Type II patients (n = 94) were those who had severe rest angina associated with ST-T changes on the electrocardiogram. Follow-up for 8 years showed that the cumulative mortality rates for type II patients with abnormal left ventricular function were significantly lower in the surgical patients compared with the medical cohorts (13% versus 46%, p less than 0.04). In the other subgroups, cumulative medical and surgical mortality rates were not different. Thus, type II patients with abnormal left ventricular function appear to be the subgroup of patients who are at the highest risk with medical therapy. Coronary bypass surgery significantly reduces the mortality in this high-risk subgroup of patients with unstable angina.
As part of two Department of Veterans Affairs Cooperative Trials, we obtained angiographic patency data for internal mammary artery (IMA) and saphenous vein grafts to the left anterior descending (LAD) coronary artery at 1 year after coronary artery bypass surgery. Patients received either aspirin 325 mg q.d., aspirin 325 mg t.i.d., aspirin 325 mg and dipyridamole 75 mg t.i.d., or placebo. Aspirin was initiated either 12 hours before or 6 hours after operation. Patients were stratified preoperatively for extent of disease and randomized to the therapies outlined above. There was no randomization to IMA versus saphenous vein grafts to the LAD. When the patients taking placebo were compared with those taking aspirin, there were no differences in the IMA (100.0% versus 92.1%, p = 0.385) or vein graft (88.8% versus 90.4%, p = 0.675) patency rates. The patency rate, irrespective of treatment, for all IMA grafts was 92.8% (220 of 237) versus 90.1% (345 of 383) for all vein grafts to the LAD (p = 0.309). Thus, both the IMA and vein grafts had excellent patency rates at 1 year. Aspirin did not alter this at 1 year, and there were no differences between IMA and vein graft patency to the LAD.
We evaluated medical in comparison to surgical plus medical (surgical) treatment of unstable angina using a prospective randomized protocol that stratified patients by clinical presentation and by invasive evaluation of left ventricular (LV) function. Clinical presentations were as follows--type 1: progressive or new onset angina relieved by medication; type 2: prolonged bouts of angina poorly or incompletely relieved by medication. Abnormal LV function was arbitrarily defined as ejection fraction less than 0.50 or LV end-diastolic pressure 16 mm Hg or more. Of 468 patients, 237 were assigned to medical and 231 to surgical therapy. There were 374 type 1 and 94 type 2 patients. LV function was normal in 334 and abnormal in 134 patients. Compared with results at 24 months, this 60-month follow-up study showed important differences in survival for patients with three-vessel disease: 75% for medical and 89% for surgical patients (p less than 0.02). The cumulative 5-year rate of repeat hospitalizations for cardiac reasons was less with surgical patients for either clinical presentation. For type 1, medical patients had a 56% rate, and surgical patients had a 42% rate (p = 0.004). For type 2, medical patients had a 62% rate, and surgical patients had a 43% rate (p = 0.05). Overall mortality did not differ between the two treatments, and this remained true in type 1 versus type 2 patients and in those with normal versus abnormal LV function. However, regression analysis of medical and surgical groups with ejection fraction as a continuous variable showed that mortality of medical patients depended on ejection fraction (p = 0.004), whereas the mortality of surgical patients did not (p = 0.76), and survival in the surgical group was higher in the lowest ejection fraction tercile-73% for medical and 86% for surgical patients, p = 0.03. We conclude that surgery improves survival in patients with three-vessel disease and leads to fewer subsequent hospitalizations for cardiac reasons. An impaired ejection fraction had an adverse impact on survival of medical patients but not on surgical patients, and mortality in surgical patients was improved compared with medical patients in the lowest ejection fraction tercile.
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The effect of intravenous recombinant human tissue-type plasminogen activator (rt-PA) was compared with that of urokinase in 45 patients with angiographically documented pulmonary embolism (PE) in a randomised controlled trial. The two principal end-points were clot lysis at 2 h, as assessed by angiography, and pulmonary reperfusion at 24 h, as assessed by perfusion lung scanning. All patients received the full dose of rt-PA but urokinase infusions were terminated prematurely (on average after 18 h) in 9 patients because of allergy in 1 and uncontrollable bleeding in 8. By 2 h, 82% of rt-PA-treated patients showed clot lysis, compared with 48% of urokinase-treated patients (p = 0.008; 95% CI for the difference = 10-58%). Improvement in lung scan reperfusion at 24 h was identical in the two treatment groups. The reduction in fibrinogen did not differ significantly between the rt-PA and urokinase groups (45% vs 39% at 2 h and 34% vs 40% at 24 h). The results indicate that in the dose regimens employed, rt-PA acts more rapidly and is safer than urokinase in the treatment of acute PE.
We assessed the efficacy and safety of peripheral intravenous recombinant human tissue-type plasminogen activator (rt-PA) in 47 patients with angiographically documented pulmonary embolism (PE). We administered 50 mg/2 h and, if necessary, an additional 40 mg/4 h. By 6 hours, 94% of the patients had angiographic evidence of clot lysis that was slight in 5, moderate in 12, and marked in 27 patients. Among the 34 patients with pulmonary hypertension prior to treatment, average pulmonary artery pressure decreased from 43/17 (27) to 31/13 (19) mm Hg (P less than 0.0001). The average lung scan perfusion defect decreased from 37% before therapy to 16% (P less than 0.01) after therapy among the 19 patients who had pre- and post-treatment lung scans. Of 7 patients with pre- and post-treatment imaging and Doppler echocardiograms, hypokinetic right ventricular wall movement (mild in 1, moderate in 2, and severe in 4) normalized in 5 and improved to mild hypokinesis in 2. Right ventricular diameter decreased from 3.9 +/- 1.0 to 2.0 +/- 0.5 cm (P less than 0.005). Fibrinogen decreased 33% from baseline at 2 h and 42% from baseline at 6 h. However, patients with the greatest degree of angiographic clot lysis at 2 h had a preponderance of fibrinogenolysis over fibrinolysis, demonstrated by a lower ratio of cross-linked fibrin degradation products to fibrin(ogen) degradation products (0.14 +/- 0.09 vs. 0.54 +/- 0.82) (P less than 0.04). Among selected patients, peripheral intravenous rt-PA is associated with rapid lysis of PE, improved pulmonary perfusion, and improved right ventricular function.
Early attempts to treat thromboembolic disorders focused on the prevention of thrombus formation, along with the prevention of extension and/or embolization of an existing thrombus. Antithrombotic therapy for these conditions included intravenous and oral anticoagulants and later antiplatelet agents, all of which remain in use today. Subsequent research sought a thrombolytic agent that could lyse a clot directly. Intravenously administered streptokinase and urokinase were found to act on the inactive proenzyme plasminogen to produce the active enzyme plasmin that could safely and effectively lyse fresh fibrin clots. These agents have proved effective for the treatment of myocardial infarction and pulmonary embolism, as well as peripheral arterial and venous thromboembolic conditions. Recent efforts have been directed toward a search for clot-specific agents that would avoid the systemic lytic state associated with the use of urokinase and streptokinase. Three clot-specific plasminogen activators are currently being evaluated: recombinant tissue-specific plasminogen activator, anisoylated streptokinase plasminogen activator complex, and pro-urokinase.
Recombinant human tissue-type plasminogen activator (rt-PA), a relatively clot-specific fibrinolytic agent, represents a novel and promising approach to thrombolytic therapy of pulmonary embolism. Therefore, the efficacy and safety of peripheral intravenous rt-PA therapy were assessed in 47 patients with angiographically documented pulmonary embolism. The drug regimen was 50 mg over 2 hours followed by repeat angiography and, if necessary, an additional 40 mg over 4 hours. By 6 hours, 44 of the 47 patients had angiographic evidence of clot lysis that was slight (n = 5), moderate (n = 12) or marked (n = 27). Among the 34 patients with pulmonary hypertension before treatment (mean pulmonary artery pressure exceeding 17 mm Hg), the pressure decreased from 43/17 (mean 27) to 31/13 (mean 19) mm Hg (p less than 0.0001). Fibrinogen decreased 33% from baseline at 2 hours and 42% from baseline at 6 hours. There were two major complications that required surgical control of bleeding: hemorrhage from a pelvic tumor and mediastinal tamponade in a patient 8 days after coronary artery bypass surgery. The initial results demonstrate that, among selected patients, peripheral intravenous rt-PA can rapidly and, for the most part, safely lyse pulmonary embolism within 6 hours.
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Recombinant human tissue-type plasminogen activator (rt-PA) was given via a peripheral vein to 36 patients with angiographically documented pulmonary embolism. The regimen was 50 mg/2 h followed by repeat angiography and, if necessary, an additional 40 mg/4 h. By 6 h, 34 of 36 patients had angiographic evidence of clot lysis, slight in 4, moderate in 6, and marked in 24. The quantitative score improved 21% by 2 h and 49% by 6 h. Fibrinogen decreased 30% from baseline at 2 h and 38% from baseline at 6 h. 2 patients had major complications: in one, bleeding from a pelvic tumour required surgery; in the other, who had had coronary artery bypass surgery eight days earlier, pericardial tamponade developed. These initial results in selected patients make a case for expanded investigational use of peripheral intravenous rt-PA in pulmonary embolism.