Systemic dermatitis with eosinophilia due to epsilon-aminocaproic acid.
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Despite the beneficial effects of pharmacological interventions to prevent bleeding and to reduce the need for autogeneic blood, there are concerns that these agents induce a prothrombotic state. The purpose of this study was to examine the coagulation phenomena influenced by the coadministration of epsilon-aminocaproic acid (EACA) and aprotinin during cardiopulmonary bypass (CPB). A swine model of CPB was utilized in this study. During 120 min of CPB, treatment animals (N = 5) received 6 x 10(6) Kiu of aprotinin and 30 grams of EACA; whereas, control animals (N = 3) received an equal volume of 0.9% saline. Indices of thrombogenicity included hematological variables, gross pathology, and circuit examination for the presence of thrombus. The application of both antifibrinolytics resulted in an increase use of heparin. Total heparin requirements were significantly different between treatment group (58,800 +/- 3493 iu) versus control group (51,000 +/- 3464 iu). D-dimer concentration was also significantly higher in the control group (500-1000 ng mL-1) than in the treatment group (250-500 ng mL-1) at 5 and 30 min postprotamine. Other coagulation markers tested were not observed to be statistically significant between groups. Thromboelastographic (TEG) index decreased in the treatment group during the surgical procedure and bypass from 2.74 +/- 2.9 to -1.36 +/- 4.1 as compared to an increase from 2.62 +/- 2.9 to 4.05 +/- 0.4 in the control group. Pathologic analysis revealed occurrences of thrombus formation in small vessels in the lung and kidney glomeruli of treatment animals. The concurrent use of both aprotinin and EACA may induce a prothrombotic or coagulant state as determined by histological assessment.
Excessive bleeding during and after cardiac surgery with cardiopulmonary bypass is a real problem in this kind of surgery. The use of prophylactic high doses of aprotinin (APROT) reduces blood loss in this context but this treatment is expensive. Some investigators have advocated that epsilon-aminocaproic acid (EACA), a cheaper antifibrinolytic drug, could reduce blood loss in cardiac surgery. The goal of this prospective study was to determine if EACA is as effective as APROT for this clinical condition. Sixty patients undergoing elective surgery for cardiac disease were randomly allocated to one of the two groups. Drugs were administered after induction of anesthesia at a dose of 2.10(6) UIK in the APROT group or 5 g in the EACA group. The same dose was added to the priming of the cardiopulmonary bypass circuit. Until the skin closure the patients received 5.10(5) UIK/h of APROT or 2 g/h of EACA. Bleeding during and after surgery was not different between the two groups. No complication, directly due to the treatment administered, was observed. EACA seems to be as effective as APROT to reduce intra and post cardiac surgery blood loss. EACA has the advantage of being cheaper (treatment is approximately 200 times cheaper), therefore allowing a wider use.
Analysis of the effectiveness of antifibrinolytic therapy for liver transplant recipients is hampered by lack of quantitative assays for assessing drug effects. We adapted chemical engineering tools used in polymerization studies to quantify fibrinogen cross-linking by plasma from liver transplant patients obtained before and after epsilon aminocaproic acid (EACA) therapy. A target fluorescein isothiocyanate-fibrinogen (FITC-fibrinogen) molecule was constructed; it fluoresces in a quantifiable pattern when in solution, and undergoes cross-linking in the presence of plasmin inhibitors. Cross-linking quenches the fluorescent signal, and the quenching is a quantifiable endpoint. Thus fluorescence from this reporter molecule can be used to assess functional improvement in fibrinogen cross-linking as a result of antifibrinolytic therapies, and it is sensitive to picomolar amounts of plasmin inhibitors and activators. Cross-linking of FITC-fibrinogen by patient plasma, before and after EACA therapy, was assessed using fluorescence spectrometry. Fluorescence patterns from FITC-fibrinogen indicated no significant cross-linking of the target fibrinogen as a consequence of EACA in posttreatment plasma. When the fibrinogen-FITC target was assayed without plasma in the presence of EACA at concentrations that bracket therapeutic levels (100 and 400 microg/ml), significant fluorescence quenching (target FITC-fibrinogen cross-linking) was achieved. These results suggest that fibrinogen-FITC fluorescence is sensitive enough to detect EACA activity in clinically relevant ranges, but that EACA given in usual doses is insufficient to promote fibrinogen cross-linking in patients with end-stage liver disease.
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Point-of-care testing (POCT) of coagulation parameters can help optimize transfusion practice in cardiac surgery. Antifibrinolytic agents may interfere with the laboratory and/or POCT coagulation assays. This randomized controlled study compared coagulation parameters obtained from a whole blood POCT coagulation device with a typical laboratory instrument in cardiac surgery patients receiving aprotinin, epsilon-aminocaproic acid, or normal saline before undergoing cardiopulmonary bypass. Aliquots of arterial blood samples from 42 patients were collected perioperatively, and their prothrombin times (PTs) and activated partial thromboplastin times (aPTTs) were measured by POCT and laboratory instrumentation. Linear regression and error analyses were used for the method comparison. For PT, the POCT device compared favorably with the laboratory method. For aPTT, the POCT device did not compare well with the laboratory method. Treatment with antifibrinolytic agents does not interfere with determination of PT.
PURPOSE: We demonstrate the effectiveness of intraureteral streptokinase instillations for the resolution of an insoluble blood clot in the renal pelvis. MATERIALS AND METHODS: A patient with renal adenocarcinoma had prolonged hematuria related to involvement of the "pyelum" by the tumor. An insoluble blood clot obstruction of the left renal collecting system developed as a consequence of epsilon aminocaproic acid therapy, which was treated with low dose streptokinase through a ureteral catheter. RESULTS: Complete resolution of the clot and obstruction occurred within 3 days of therapy. CONCLUSIONS: This relatively simple approach should be used for the treatment of obstruction before radical surgery is performed.
BACKGROUND: Cell expression of inducible nitric oxide synthase (iNOS) is increased by cytokines, resulting in high endogenous levels of nitric oxide. Expression of iNOS has been implicated in organ injury, including myocardial reperfusion injury. Serine protease inhibitors reduce cytokine-induced iNOS expression. The protease inhibitors aprotinin and epsilon-aminocaproic acid (EACA), used to reduce blood loss after cardiac operations, were evaluated in vitro on cytokine-induced iNOS expression and nitric oxide production. METHODS: A murine bronchial epithelial cell line was stimulated with a mixture of cytokines (tumor necrosis factor-alpha, interleukin-1 beta, and interferon-gamma) with or without aprotinin or EACA. The resultant iNOS expression was measured by northern blot analysis, and nitric oxide production was assessed by cell supernatant nitrite levels. RESULTS: Nitrite concentrations in the supernatant were significantly increased after cytokine stimulation; they were not affected by any concentration of EACA but were significantly (p < 0.05) reduced by aprotinin. Aprotinin significantly (p < 0.05) reduced cytokine-induced iNOS expression, whereas EACA had no effect. CONCLUSIONS: Aprotinin, but not EACA, reduces cytokine-induced nitric oxide production by inhibition of iNOS expression. Because increased endogenous nitric oxide levels secondary to iNOS activation have been implicated in organ injury, aprotinin may have clinical benefit compared with EACA when used for cardiac operations.
Radiologic contrast materials activate complement by both the classical and alternative pathways. This activation is time, dose, and temperature dependent and is able to proceed with equal facility in either the presence or absence of Ca++ or Mg++ chelating reagents (EGTA, EDTA). All the components examined (C1, C4, C2, Factor B, C3, and C5) were consumed during complement activation. Immune complexes are produced during interaction of serum with contrast materials. The activation of complement by contrast materials appears to be principally initiated by the activation of plasminogen to plasmin. Inhibition of plasminogen activators by epsilon-aminocaproic acid affects complement activation markedly.
We observed two cases of maculopapular eruption occurring 12-72 h after the administration of aminocaproic acid (ACA). Patch tests performed with ACA were positive. Clinical and allergologic patterns suggest the type IV mechanism of hypersensitivity. We present what we believe are the first two cases described of hypersensitivity to this drug.
Hemorrhagic cystitis (HC) is a known complication of allogenic BMT. We report a case of a 28-year-old female with CML in chronic phase, which was treated with a matched unrelated donor (MUD) transplant, complicated by hemorrhagic cystitis on day +42 after the transplant. Adenovirus was isolated from the urine and she was treated with ribavirin, 1 g twice a day for 8 days. We report the use of Amicar (E-aminocaproic acid), 2.5 g solution as bladder instillation to treat the intractable hematuria.
Neutrophil-derived proteinases cause glomerular injury by proteolysis of the glomerular basement membrane and alterations in glomerular metabolism. Recently, a marked elevation of the plasma elastase complex with alpha1-proteinase inhibitor (alpha 1-PI) both in the acute phase and during remission of nephrotic syndrome (NS) compared with age-matched controls was reported. In experimental immune-mediated glomerulonephritis epsilon-aminocaproic acid (EACA) significantly reduced albuminuria, and it was suggested that this may be linked with the antiproteolytic activity of the drug. We studied plasma antithrombin III (AT-III), alpha 1-PI, alpha 2-antiplasmin (alpha 2-A), alpha 2-macroglobulin (alpha 2-M) activity, and some blood coagulation and fibrinolysis tests in children with frequently relapsing prednisone-responsive NS. Also, the effect of prednisone alone (Group I, n = 9) and prednisone plus EACA (Group II, n = 10) treatment regimens on the studied parameters was estimated. All investigations were performed on admission to the hospital and after approximately 13 days of prednisone alone therapy (Group I), as well as before the administration of prednisone plus EACA and 24 hours after the last dose of EACA, ie, after approximately 5 days of treatment (Group II). Prednisone was administered at the usual dose of approximately 2 mg/kg/d and EACA was given orally at the doses of 72 to 230 mg/kg of body weight per day for 3 to 10 days. In the acute phase of disease, NS patients (n = 19) were shown to have a statistically significant decrease of plasma AT-III (16.4 +/- 4.7 vs. 21.9 +/- 2.5 IU/mL) and alpha 1-PI (1.28 +/- 0.6 vs. 1.97 +/- 0.34 IU/mL) activity, as well as a marked increase in plasma alpha 2-M activity (14.96 +/- 5.81 vs. 9.6 +/- 1.6 IU/mL), and fibrinogen concentration (5.51 +/- 1.78 vs. 2.96 +/- 0.34 g/L) compared to the age-matched controls; no significant changes in plasma alpha 2-A activity, plasminogen concentration, euglobulin clot lysis time, activated partial thromboplastin time (APTT), or thromboplastin time were noted. In children treated with prednisone alone, a marked increase in plasma AT-III (by 76%, P < 0.001) and alpha 2-A (36%, P < 0.019) activity, and a significant decrease of the plasma fibrinogen concentration (6.07 +/- 1.66 vs. 3.17 +/- 1.64 g/L, P < 0.001), and APTT (45.1 +/- 7.6 vs. 33.8 +/- 4.4 s, P < 0.001) were found. Prednisone plus EACA therapy resulted in a significant increase in plasma AT-III activity (by 53%, P < 0.003), whereas plasma fibrinogen concentration and APTT remained unchanged. However, statistically significant differences between the pre- and posttreatment plasma AT-III, alpha 1-PI, and alpha 2-A activities in these patients were observed. There was also a relationship between EACA dose and the percentage change in plasma alpha 2-A activity. In a few patients receiving prednisone plus EACA regimen, side effects that included purulent rhinitis, pharyngitis, increases in body temperature, loose stools, and an approximately 20% to 30% decrease in systolic and diastolic arterial blood pressure were observed. Thus, although the prednisone plus EACA treatment regimen seems to offer new therapeutic possibilities in some patients with NS, it should not be used in acute phase of the disease.
Haemophilia patients with inhibitors pose a formidable challenge for patient management. This is particularly problematic in developing countries, where porcine factor VIII, FEIBA, factor VIIa or immunoadsorption column are generally unavailable or unaffordable. Under these circumstances, any effective modality of affordable treatment is welcome. We investigated, both in vivo and in vitro, the effect of epsilon-aminocaproic acid (EACA) on the inhibitory activity of factor VIII inhibitor. It was found that in vitro EACA (final concentration 1.25-5 mg/ml) substantially inhibited the activity of the inhibitors, while the same concentration of EACA had no effect on other immunological reactions like red cell agglutination and immunofluorescence. The inhibitory action of EACA on factor VIII inhibitor was also confirmed in an improvised antigen-binding ELISA system. Further, the inhibitory activity of EACA was confirmed in 2 patients, in whom the inhibitory activity persisted for 15 min following infusion of EACA (100 mg/kg over 10 min). EACA was found to be even more effective in local wound application in patients of haemophilia A with inhibitors. EACA at the concentration cited did not act as an inhibitor of factor VIII inhibitor through occupancy of lysine binding sites. The inhibitory activity of EACA on factor VIII inhibitor was equally seen with recombinant factor VIII also; hence this action cannot be explained by its antifibrinolytic activity.