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Familial antithrombin III deficiency and Mycoplasma pneumoniae pneumonia.

A 10 year old girl presented with a massive femoral vein thrombosis associated with Mycoplasma pneumoniae pneumonia. Subsequently type I familial antithrombin III deficiency was diagnosed. It is suggested that prophylactic measures aimed at preventing thrombosis should be considered in acutely ill subjects with infection and familial thrombophilia.

Antithrombin III Deficiency↗

Management of pregnancy with congenital antithrombin III deficiency: two case reports and a review of the literature.

Women with antithrombin (AT) III deficiency are prone to pregnancy-associated venous thromboembolism. We report 2 cases with genetically confirmed ATIII deficiency, one with a mutation in exon 3A and the other with an exon 4 deletion, in whom the pregnancies were successfully managed with prophylactic therapies for thrombosis. A 35-year-old pregnant woman was treated with intravenous infusions of ATIII concentrate alone, and the other 22-year-old pregnant woman was mainly treated with subcutaneous injections of heparin and oral low-dose aspirin therapy. Both pregnancies resulted in vaginal deliveries of healthy neonates. The literature concerning prophylactic therapies for thrombosis in ATIII deficiency-complicated pregnancy is reviewed, and the clinical problems, including the adverse effects of the therapies, are discussed.

Adult↗

Comparison between the effect of pentosan polysulphate heparin and antithrombin III injections in antithrombin III deficient patients.

Pentosan polysulphate is an heparin analogue which acts via an antithrombin III (AT III) independent pathway. We compared the effect of this drug to that of heparin and AT III infusions in AT III deficient patients. Four patients with AT III congenital deficiency received on three different occasions: (i) an infusion of human AT III concentrate (20 U/kg or 40 U/kg), (ii) an intramuscular injection of pentosan polysulphate (2 mg/kg), (iii) a subcutaneous calcium heparin injection (100 U/kg). AT III infusion inhibits the excessive thrombin generation (46% of inhibition) observed in the plasma of AT III deficient patients during at least 12 hours, but does not modify the factor Xa formation. On the contrary, pentosan polysulphate has a marked effect on both thrombin (62% of inhibition) and factor Xa generation (57% of inhibition) still present 8 hours after injection. Heparin injection has the same effect, more prolonged, as pentosan polysulphate on thrombin generation but is not so effective on impairing factor Xa generation (27% of inhibition). The marked effect of pentosan polysulphate on thrombin and factor Xa generation in these patients is due to its AT III independent mechanism of action.

Antithrombin III↗

[Clinical study of the therapeutic value of Kybernin in the treatment of antithrombin III deficiency].

Together with a detailed presentation of the physiological role of antithrombin III and a description of the pathological states in which it's acquired deficiency requires substitutional therapy with an antithrombin preparation, this report contains the results of a clinical trial of such a preparation which is in use under the name of Kybernin. Patients with severe diseases and traumas, of a septic nature mostly, were included in the trial. The experimental group includes 20 such patients treated with Kybernin, and the control group had 12 patients who did not receive this preparation. The level of antithrombin III at the time of entering the study was an average of 40.1% in the experimental group, and 53.2% in the control group. The mortality of the treated group was 45%, and in the control group it was 66.7%. Clinical and laboratory results point to a favorable effect of Kybernin therapy in the suppression of disseminated intravascular coagulation.

Adolescent↗

An antithrombin III assay based on factor Xa inhibition provides a more reliable test to identify congenital antithrombin III deficiency than an assay based on thrombin inhibition.

OBJECTIVES: To determine whether functional antithrombin III (AT-III) levels measured by a factor Xa inhibition (AT-III-Xa) assay identifies AT-III deficient individuals more reliably than functional AT-III levels measured by a thrombin inhibition (AT-III-IIa) assay. STUDY DESIGN: Cross-sectional study. PATIENT POPULATION: Sixty-seven members of a large family with type 2 AT-III deficiency. INTERVENTION: DNA analysis was used as the reference diagnostic standard for AT-III status and subjects were classified as AT-III deficient or non deficient according to these results. Functional AT-III levels were measured in all subjects using: 1) a chromogenic substrate for thrombin and added human thrombin (AT-III-IIa), and 2) a chromogenic substrate for factor Xa and added bovine factor Xa (AT-III-Xa). Functional heparin cofactor II (HC-II) levels were measured using a commercially available kit. The proportions of 125I-alpha-thrombin complexed to AT-III and HC-II were measured by polyacrylamide gel electrophoresis and autoradiography. RESULTS: Thirty-one (46%) individuals were classified as AT-III deficient and 36 (54%) as AT-III non deficient. AT-III-Xa assay measured a significantly lower mean AT-III value and a narrower range for individuals classified as AT-III deficient than the AT-III-IIa assay. Using the AT-III-IIa assay, six subjects had borderline AT-III levels compared to none with the AT-III-Xa assay.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

[Perioperative plasma antithrombin activity with "low-dose" heparin prophylaxis. Perioperatively acquired antithrombin III deficiency as a cause for the failure of heparin prophylaxis?].

Antithrombin III activity was estimated using a chromogenic substrate perioperatively in the plasma of 200 patients undergoing major elective abdominal surgery during low-dose heparin prophylaxis. With an initial value of 10.9 +/- 2 IU/ml there was a mean postoperative lowering of plasma antithrombin activity in all patients with a minimum on the second postoperative day. In patients with empirically established increased risk of thromboembolism the postoperative depression of antithrombin was significantly more pronounced (P less than 0.01) than in the control groups. An increased risk prevailed particularly in patients with malignant diseases and in major surgery, i.e. of prolonged duration. In such cases with increased risk of thromboembolism routine assessment of antithrombin III is recommended.

Abdomen↗

Familial functional antithrombin III deficiency.

A family with a tendency to thrombosis and decreased antithrombin III (AT III) activity in plasma, but normal immunoreactive AT III is reported. 7 members of the family had the AT III defect, 4 of whom have had thrombotic episodes. The importance of biological determination of AT III when studying patients with recurrent thrombotic episodes is emphasized.

Adult↗

Familial antithrombin-III deficiency during cardiopulmonary bypass: a case report.

The serine protease inhibitor antithrombin-III (AT-III) is the principal in vivo inhibitor of blood coagulation, inactivating mainly thrombin, but also other serine proteases. Binding of AT-III to heparin dramatically increases its inhibitory effect. AT-III deficiency during cardiopulmonary bypass (CPB) can lead to insufficient anticoagulation which cannot be treated by higher doses of heparin. A 60-year-old male with familial AT-III deficiency was admitted to our hospital for coronary artery bypass surgery and aortic valve replacement. Four days before the operation, acenocoumarol was stopped and anti-Xa nadroparincalcium (Fraxiparine) was started. AT-III activity at that time was 56%. Two hours before the operation, a single dose of 4500 IU AT-III concentrate was administered. Heparinization was performed with 400 IU/kg of porcine mucosal heparin, increasing the activated coagulation time (ACT) from a baseline of 115 to 549 s. AT-III activity at that time was above 100% and the plasma D-dimer concentration was 230 ng/l. ACTs during CPB remained above 999 s, whereas the AT-III activity dropped to 54% and the D-dimer increased up to 500 ng/l at the end of CPB. CPB was terminated uneventfully. Heparin was reversed with 3 mg/kg protamine chloride, decreasing the ACT to 155 s. In the intensive care unit (ICU), the patientreceived prophylactic Fraxiparine and 1500 IU AT-III, increasing the AT-III activity to 84%. Postoperatively, there was continued blood loss, which necessitated the administration of whole blood and eventually re-exploration. The case presented illustrates an uneventful treatment of a patient with a hereditary AT-III deficiency undergoing CPB. In spite of an uneventful treatment with AT-III pre-CPB, administration of prophylactic AT-III concentrate after surgery should be considered with caution, as this might increase the postoperative morbidity.

Animals↗

[Antithrombin III deficiency and tendency to thrombosis (author's transl)].

Antithrombin III (AT III) was determined in 290 patients with deep venous thrombosis and/or pulmonary embolism by immunological methods (radial immunodiffusion, Laurell technique) and by biological activity (heparin cofactor activity and anti-Xa activity). Patients with venous thrombosis had a significantly lower AT III concentration, as determined by the immunological methods or biological method (heparin cofactor activity), than normal persons without any history of venous thrombosis. A decreased level of AT III was found in 27 patients. In these patients the immunoreactive antithrombin III was decreased to the same degree as biological activity (heparin cofactor activity or anti-Xa activity). Thirteen out of these 27 patients belonged to 9 families and, hence, congenital AT III deficiency can be assumed in these cases. The aetiology was unknown in the other half. Patients with AT III deficiency are prone to spontaneous and/or recurrent venous thrombosis. A high incidence of pulmonary embolism and particularly, of fatal pulmonary embolism is remarkable. In more than half of the patients the first thrombotic event occurred before the age of 35. The treatment of choice in such patients is with oral anticoagulants of the coumarin group.

Adult↗

Alpha-2-macroglobulin may provide protection from thromboembolic events in antithrombin III-deficient children.

Antithrombin III (ATIII) deficiency has been implicated in adults as a predisposing factor to thrombosis; however, thromboembolic complications are rare in children with the same deficiency. We hypothesized that because of the elevated levels of plasma alpha-2-macroglobulin (alpha 2M) throughout childhood, plasmas of ATIII-deficient children inhibit thrombin more efficiently than those of ATIII-deficient adults. In total, 14 ATIII-deficient adults (ages 25 to 46 years), 13 ATIII-deficient children (ages 2 to 13 years), 9 normal children (ages 3 to 15 years), and 16 normal adults were studied. We measured thrombin inhibition in these plasmas, as well as the contributions of ATIII, alpha 2M, and heparin cofactor II (HCII) as thrombin inhibitors in each plasma. 125I-alpha-thrombin, 25 nmol/L, was added to each plasma (defibrinated with Arvin at 37 degrees C), and 90 seconds later the free thrombin and thrombin-inhibitor complexes were quantitated after sodium dodecyl sulfate-polyacrylamide gel electrophoresis, autoradiography, and densitometric scanning. Plasma from ATIII-deficient adults inhibited significantly less thrombin (12.8 +/- 0.6 nmol/L) than both normal adults (16.1 +/- 0.3 nmol/L, P less than .01), normal children (15.7 +/- 0.4 nmol/L, P less than .01), or ATIII-deficient children (15.5 +/- 0.3 nmol/L, P less than .01). There was no significant difference between the total concentration of thrombin inhibited by ATIII-deficient children and either normal adult or normal children groups. In addition, plasmas of ATIII-deficient children inhibited thrombin significantly more efficiently than plasma of ATIII-deficient adults (P less than .01). In the ATIII-deficient patients there was a significant correlation between the alpha 2M level and ability to inhibit thrombin (P less than .01), but no correlation between either ATIII or HCII levels and thrombin inhibition. On the addition of heparin (0.4 U/mL) to plasma, all four types of plasma inhibited thrombin to the same extent. Although ATIII was the predominant inhibitor in all heparinized plasmas, HCII inhibited more thrombin in the ATIII-deficient patients than in normal patients (2.8 +/- 0.3 v 1.2 +/- 0.2 nmol/L, P less than .01). We hypothesize that the lower risk of thromboembolic complications in ATIII-deficient children may be due in part to the protective effect of elevated alpha 2M levels during childhood.

Adolescent↗

Recurrent renal vein thrombosis and renal failure associated with antithrombin-III deficiency.

This paper describes a healthy 13-year-old girl presenting with acute flank pain and anuria due to renal vein thrombosis. A similar spontaneous and unexplained thrombosis resulted in the loss of the contralateral kidney 1 year earlier. Urgent surgical thrombectomy and anticoagulation resulted in moderate recovery of renal function. Predisposition to venous thrombosis in this child was secondary to a marked familial deficiency of circulating antithrombin-III. An early diagnosis of this condition is essential for the formulation of preventive measures and may lead to specific therapeutic intervention at the onset of acute thrombotic complications.

Acute Kidney Injury↗

Chronic pulmonary thromboendarterectomy complicated by antithrombin III deficiency and antiphospholipid syndrome.

Pulmonary thromboendarterectomy was performed on two patients with chronic pulmonary thromboembolism showing thrombotic tendency. Patient 1 was a 25-year-old male with the disease complicated by congenital antithrombin III deficiency. Patient 2 was a 21-year-old male with the disease complicated by antiphospholipid syndrome. Both patients were admitted to the center upon showing dyspnea. Lung perfusion scintigraphy revealed multiple defects in the right and left lungs. Pulmonary arteriography showed occlusion and stenosis from lobar to segmental arteries. Cardiac catheterization showed marked pulmonary hypertension. Pulmonary angioscopy confirmed the presence of organized thrombi while an intravascular ultrasound revealed a thickening of the pulmonary arterial walls in both lungs. After the insertion of an inferior vena cava filter in each patient, surgery was performed. Following a median sternotomy, a cardiopulmonary bypass was utilized to induce deep hypothermia at a pharyngeal temperature of 16 degrees C, after which a thromboendarterectomy of the bilateral pulmonary arteries was performed under intermittent circulatory arrest. A large amount of organized thrombi was extracted from these arteries. After surgery, both patients showed good postoperative outcome with improved blood flow in both lungs, reduced pulmonary arterial pressure and increased cardiac output.

Adult↗

Budd-Chiari syndrome due to antithrombin III deficiency.

Budd-Chiari syndrome is a disease complex with varied etiology and is one of the causes of post-hepatic portal hypertension. We report a 2 year-old boy who presented with Budd-Chiari syndrome due to congenital antithrombin III deficiency, who was managed with an expandable metal stent placed in the inferior vena cava and oral anticoagulation.

Antithrombin III Deficiency↗

Mesenteric venous thrombosis due to antithrombin III deficiency.

A 19-year-old woman developed gradually worsening abdominal pain, signs of peritonitis, and hematemesis. Laparotomy revealed peritonitis due to segmental small-bowel infarction, and the underlying pathologic condition was mesenteric vein thrombosis. A primary thrombotic disorder was suggested and antithrombin III deficiency was found. Before anticoagulant therapy could be initiated, she developed hemorrhagic cerebral infarction and died. Her history included three episodes of deep vein thrombosis while taking oral contraceptives. Her father died of spontaneous mesenteric and portal vein thrombosis at age 29 years. This report underlines the importance of careful interpretation of the vascular pathology in cases of intestinal ischemia.

Adult↗