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At least 19 recordsLinked to original sources

Comparison of renal disease severity and outcome in patients with primary antiphospholipid syndrome, antiphospholipid syndrome secondary to systemic lupus erythematosus (SLE) and SLE alone.

OBJECTIVE: To ascertain the clinical presentation, histopathology and outcome of renal involvement in patients with primary antiphospholipid syndrome (PAPS), antiphospholipid syndrome secondary to systemic lupus erythematosus (SAPS) and systemic lupus erythematosus alone. METHOD: A retrospective analysis was undertaken of 20 patients with PAPS, 25 patients with SAPS and 275 patients with systemic lupus erythematosus to ascertain the frequency and pattern of renal involvement. RESULTS: Renal involvement was found most frequently in patients with SAPS, in whom it occurred in 68% of patients. Renal disease was equally common in patients with PAPS and systemic lupus erythematosus alone where it was seen in 30% of patients. Patients with systemic lupus erythematosus most frequently presented with nephrotic syndrome due to glomerulonephritis, whereas those with PAPS and SAPS were more likely to present with hypertension and reduced glomerular filtration rate. No patients with PAPS developed end-stage renal failure compared with 5.9% of patients with SAPS and 16.9% of patients with systemic lupus erythematosus alone; 23.5% of patients with SAPS died compared with 15.7% of patients with systemic lupus erythematosus alone and no patients with PAPS. CONCLUSION: Renal involvement is a major feature of both PAPS and SAPS, where renal thrombosis frequently leads to reduced glomerular filtration rate and hypertension. One-third of patients with systemic lupus erythematosus alone develop glomerulonephritis leading to renal disease which most commonly presents with nephrotic syndrome. Patients with PAPS were less likely to develop end-stage renal failure or die during the follow-up period.

Adolescent↗

[A case of pulmonary adenocarcinoma accompanied by minimal change nephrotic syndrome, antiphospholipid syndrome and warm-type autoimmune hemolytic anemia].

A 49-year-old man was urgently admitted due to edema in both leg and left toe pain. A chest radiograph revealed a solitary nodule in the right lung field. Detailed investigations including bronchoscopy and renal biopsy led to a simultaneous diagnosis of clinical stage IIIB pulmonary adenocarcinoma, minimal change nephrotic syndrome, antiphospholipid syndrome, and warm-type autoimmune hemolytic anemia. Prednisolone was administered for nephrotic syndrome, antiphospholipid syndrome and warm-type autoimmune hemolytic anemia, and 6 courses of chemotherapy with 70Gy radio-therapy were performed. The pulmonary nodule significantly decreased in size and the other three autoimmune diseases appeared to be well-controlled. Thirteen months after admission, multiple brain metastases developed along with worsening antiphospholipid syndrome symptoms including lupus anticoagulant. Following whole-brain irradiation, the brain metastases decreased in size and antiphospholipid syndrome symptoms improved. Thirty-nine months after the initial visit, the primary lung cancer, its brain metastasis and the 3 other autoimmune diseases appeared to be well-controlled. The temporal correlation of the lung cancer and the three autoimmune diseases suggests the latter may be paraneoplastic syndrome.

Adenocarcinoma↗

Antiphospholipid syndrome, antiphospholipid antibodies, and atherosclerosis.

The antiphospholipid syndrome is characterized by arterial and venous thrombosis, as well as pregnancy morbidity, in the presence of elevated levels of antiphospholipid antibodies. These autoantibodies have procoagulant activity, as they affect platelets, humoral coagulation factors, and endothelial cells. In addition, they are proatherogenic, as demonstrated by animal models and by the increased prevalence of cardiovascular diseases in patients with systemic lupus erythematosus and antiphospholipid syndrome. Moreover, antiphospholipid antibodies, including anticardiolipin, anti-b2-glycoprotein-I, and anti-oxidized low-density lipoprotein, are associated with atherosclerosis and its consequences in the general population as well. This autoimmune aspect of atherosclerosis in the presence or absence of an autoimmune disease suggests benefit from development of immunomodulating therapies.

Antibodies, Antiphospholipid↗

The 'primary' antiphospholipid syndrome: antiphospholipid antibody pattern and clinical features of a series of 23 patients.

Twenty-three patients with the 'primary' antiphospholipid syndrome were studied over 2-6 years. Twenty-two (96%) had antiphospholipid antibodies detected by ELISA (87% had antibodies to thromboplastin and 70% to cardiolipin), and 18 out of the 21 tested patients (86%) had lupus anticoagulant activity by coagulative assays. Mean age of the cohort was 29.9 years and the sex ratio (female:male) 4.75:1. Eleven patients presented 18 venous and/or arterial thrombosis and 13 had 25 foetal losses (84% occurred during the second and third trimester). Other clinical features were migraine, livedo reticularis, and epilepsy. Three patients had relatives with systemic lupus erythematosus. Thrombocytopaenia was seen in 33%, antinuclear antibodies in low or moderate titre in 30%, and haemolytic anaemia in 13%. During the follow-up, two patients presented recurrent thrombosis despite anticoagulant therapy, one of them dying because of recurrent pulmonary thromboembolism. Four patients achieved successful term pregnancies after treatment with aspirin and a further patient after treatment with aspirin and low dose prednisolone. No patient developed systemic lupus erythematosus or any other definable connective tissue disease. The 'primary' antiphospholipid syndrome may exist as a distinct clinical entity and all younger patients presenting with thrombotic events, foetal losses and/or thrombocytopaenia, without any evidence of a well defined disease, should be tested for antiphospholipid antibodies in order to rule out this syndrome.

Adult↗

[Clinical relevance of the antiphospholipid syndrome. Antiphospholipid antibodies in a mixed rheumatologic patient sample].

The antiphospholipid syndrome may occur either in association with systemic lupus erythematosus (SLE) or as a primary condition. Diagnostic criteria include the detection of antiphospholipid antibodies using cardiolipin antigen (anticardiolipin antibodies, ACA) or lupus anticoagulant, and at least two clinical manifestations, primarily venous or arterial thrombosis, thrombocytopenia or repeated miscarriage. Among 200 patients with various rheumatic diseases, a pathological ACA test in excess of 44 U/ml was detected with ELISA in 81 cases (41%), and of these 30% had values exceeding 100 U/ml. Both overall positive reactions and the particularly high titers were clearly more common among patients with rheumatoid arthritis (RA) and collagen disease, namely 51% and 33%, respectively, than in patients with sero-negative spondylarthritis and non-inflammatory diseases of the locomotory system (22% pathological, 13% highly pathological, titers. Correlations were also found with miscarriage in women, positive rheumatoid and antinuclear factors, and the number of diagnostic criteria of RA or SLE presenting. A questionnaire survey - evaluating 84 subjects, half with positive and half with negative, ACA reactions - confirmed the correlation between miscarriage and the detection of ACA.

Adult↗

Antiphospholipid syndrome without antiphospholipid antibodies at the time of the thrombotic event: transient 'seronegative' antiphospholipid syndrome?

The antiphospholipid syndrome (APS) is characterized by the presence of venous and arterial thrombosis, recurrent fetal losses and thrombocytopenia, associated with the presence of antiphospholipid antibodies (aPL). This syndrome may be "primary" or may be associated with other diseases, mainly systemic lupus erythematosus (SLE). However, some patients present the clinical picture of this syndrome but without evidence of aPL in their serum. The term "seronegative" APS has been proposed to categorize these patients. Here with we present two patients with seronegativity for aPL at the time of a thrombotic event, but in whom these antibodies were detected 2 and 7 months later.

Adult↗

Antiphospholipid syndrome.

Antiphospholipid syndrome has received considerable attention from the medical community because of its association with a number of serious clinical disorders, including arterial and venous thromboembolism, acute ischemic encephalopathy, recurrent pregnancy loss, thrombocytopenia, and livido reticularis. It can occur within the context of several diseases, mainly autoimmune disorders, and is then called secondary antiphospholipid syndrome. However, it may be also be present without any recognizable disease, or so-called primary antiphospholipid syndrome. There is no defined racial predominance for primary antiphospholipid syndrome, although a higher prevalence of systemic lupus erythematosus (SLE) occurs in African Americans and the Hispanic population. Multiple terms exist for this syndrome, some of which can be confusing. Lupus anticoagulant syndrome, for example, is a misleading term, because patients may not necessarily have SLE, and it is associated with thrombotic rather than hemorrhagic complications. To avoid further confusion, antiphospholipid syndrome is currently the preferred term for this clinical syndrome. Antiphospholipid antibodies are found in 1% to 5% of young healthy control subjects; however, the incidence increases with age and coexistent chronic disease. The syndrome occurs most commonly in young to middle-aged adults; however, it also can occur in children and the elderly. Among patients with SLE, the prevalence of antiphospholipid antibodies is high, ranging from 12% to 30% for anticardiolipin antibodies, and 15% to 34% for lupus anticoagulant antibodies. In general, anticardiolipin antibodies occur approximately five times more often then lupus anticoagulant in patients with antiphospholipid syndrome. This syndrome is the most common cause of acquired thrombophilia, associated with either venous or arterial thrombosis or both. It is characterized by the presence of antiphospholipid antibodies, recurrent arterial and venous thrombosis, and spontaneous abortion. Rarely, patients with antiphospholipid syndrome may have fulminate multiple organ failure, or catastrophic antiphospholipid syndrome. This is caused by widespread microthrombi in multiple vascular beds, and can be devastating. Patients with catastrophic antiphospholipid syndrome may have massive venous thromboembolism, along with respiratory failure, stroke, abnormal liver enzyme concentrations, renal impairment, adrenal insufficiency, and areas of cutaneous infarction. According to the international consensus statement, at least one clinical criterion (vascular thrombosis, pregnancy complications) and one laboratory criterion (lupus anticoagulant, antipcardiolipin antibodies) should be present for a diagnosis of antiphospholipid syndrome. The hallmark result from laboratory tests that defines antiphospholipid syndrome is the presence of antibodies or abnormalities in phospholipid-dependent tests of coagulation, such as dilute Russell viper venom time. There is no consensus for treatment among physicians. Overall, there is general agreement that patients with recurrent thrombotic episodes require life-long anticoagulation therapy and that those with recurrent spontaneous abortion require anticoagulation therapy and low- dose aspirin therapy during most of gestation. Prophylactic anticoagulation therapy is not justified in patients with high titer anticardiolipin antibodies with no history of thrombosis. However, if a history of recurrent deep vein thrombosis or pulmonary embolism is established, long-term anticoagulant therapy with international normalized ratio (INR) of approximately 3 is needed.

Antiphospholipid Syndrome↗

[Antibodies to various phospholipids in SLE patients with primary antiphospholipid syndrome].

Antiphospholipid antibodies (aPL) represent a heterogeneous population reacting with negatively charged, less frequently neutral phospholipids and/or phospholipid-binding serum proteins. The study was made of antibodies to a wide spectrum of phospholipids: to negatively charged phospholipids such as phosphatide acid (aPA), cardiolipin (aCL), phosphatidylcholine (aPS), phosphatidylinositol (aPI), phosphatidylglycerol (aPG) and to neutrally charged phospholipid--phosphatidylcholine (aPC)--in 54 patients with systemic lupus erythematosus (SLE) and 29 patients with primary antiphospholipid syndrome (PAPS). The test for lupus anticoagulant (LAC) was also made. aPL in SLE patients free of antiphospholipid syndrome were detected in 61, 36 and 9% (aPC, aPS and aPA, aCL, respectively). aPI and aPG did not exceed normal values. 81% of SLE patients with antiphospholipid syndrome were LAC positive and 88% aPL positive. 60, 53, 44, 40, 13 and 17 were positive to aPC, aPA, aPS, aCL, aPG and aPI, respectively. Among patients with PAPS, the highest positivity was by LAC, occurrence of the other aPL was the same as in SLE patients with antiphospholipid syndrome. aCL, aPA, aPC, aPS, aPG and aPI were found in 55, 52, 41, 38, 31 and 21% of cases, respectively. In clinical manifestations of antiphospholipid syndrome and negative tests for LAC and aCL it is advisable to make tests for aPS and aPC. aPC occur in SLE patients more frequently than the other aPL: in 63% of SLE patients free of antiphospholipid syndrome and in 60% of SLE patients with this syndrome. Antibodies to other phospholipids, but not to cardiolipin, were present in SLE + APS in half of the cases but in SLE + PAPS in one third of the patients. Occurrence of aCL in the serum of SLE + PAPS patients is associated with the presence of antibodies to any other phospholipid irrespective of the charge. The severity of vascular changes did not correlate with the number of aPL variant found in the serum.

Adolescent↗

Acute myeloblastic leukemia in a patient with primary antiphospholipid syndrome.

Antiphospholipid syndrome is characterized by venous and arterial thrombosis, recurrent pregnancy loss and the presence of the lupus anticoagulant, anticardiolipin antibodies or both. Antiphospholipid syndrome may occur as a primary disease or in patients with systemic lupus erythematosus or other autoimmune, infectious or neoplastic disorders. In this paper we report a 29-year-old Saudi female, a known case of antiphospholipid syndrome, presented with complaints of fever, breathlessness and generalized fatigue. Further investigations confirmed her as a case of myeloblastic leukemia (M1, French-American-British classification). Acute myeloblastic leukemia is not described to be associated with primary antiphospholipid syndrome in the literature to date. This is the first case report of such association.

Adult↗

Myocardial infarction caused by cardiac microvasculopathy in a patient with the primary antiphospholipid syndrome.

Antiphospholipid antibodies occur in various clinical states, including the primary antiphospholipid syndrome. Clinical features in these conditions appear to be caused by vasculopathy associated with the presence of these antibodies. We report the case of a patient with primary antiphospholipid syndrome who experienced cardiac necrosis secondary to myocardial microvasculopathy in the absence of vasculitis. This case demonstrates unequivocally that noninflammatory myocardial microvasculopathy occurs in the primary antiphospholipid syndrome per se without any clinical or immunologic signs of systemic lupus erythematosus or other disease process. The histopathologic findings in the skin and myocardial biopsies showed a noninflammatory vasculopathy characterized by bland thrombi and lack of infiltration of the vessel wall by inflammatory cells. Ultrastructural examination of the myocardial biopsy confirmed the vascular thrombosis and endothelial activation and showed no deposits in basement membranes. The patient survived after appropriate treatment. Evidence presented here supports the concept that the vasculopathy in the antiphospholipid syndrome is distinct from other types of vascular occlusions seen in systemic lupus erythematosus. We suggest that myocardial biopsy can be crucial in showing an underlying myocardial ischemic process despite "normal" findings on coronary angiography. Results of the biopsy hastened the decision to use potentially lifesaving plasmapheresis and anticoagulation therapy in this patient.

Adult↗

Induction of thrombosis in a mouse model by IgG, IgM and IgA immunoglobulins from patients with the antiphospholipid syndrome.

Antiphospholipid syndrome is a disorder of recurrent thrombosis and pregnancy losses associated with production of anticardiolipin antibodies and lupus anticoagulant positivity. Recently, we have adapted a mouse model of induced venous thrombosis to study the role of autoantibodies in thrombus formation. To determine whether immunoglobulins from patients with the antiphospholipid syndrome play a role in thrombosis, we injected groups of CDI mice either with immunoglobulins purified from seven patients with the antiphospholipid syndrome (nine preparations studied: four IgG, three IgM and two IgA) or with immunoglobulins of the same isotype from healthy controls. Seventy-two h after injection, a non-occlusive thrombus was induced in the femoral veins of experimental mice by a pinch injury; the thrombus areas as well as times of formation and disappearance of the thrombi were measured. Eight of the nine antiphospholipid syndrome immunoglobulin preparations caused a significant increase in mean thrombus area and a significant delay in mean thrombus disappearance time as compared with normal controls. To determine whether anticardiolipin antibodies might be involved, separate groups of mice were injected with affinity-purified IgG (n = 2) or IgM (n = 2) anticardiolipin antibodies or with normal immunoglobulins of the same isotype, and the effects on thrombus formation compared. Mean thrombus area and mean disappearance times were again significantly increased in all four groups injected with affinity-purified antibodies. This is the first study to show that anticardiolipin antibodies of IgG, IgM and IgA isotypes may play a role in thrombosis in vivo.

Animals↗

The factor V Leiden mutation which predisposes to thrombosis is not common in patients with antiphospholipid syndrome.

Antiphospholipid syndrome is associated with venous, arterial, and placental thrombosis, possibly through autoantibody impairment of phospholipid-dependent protein C activation. Recently, a missense mutation in the factor V gene (1691 G-->A) has been identified that results in an abnormal factor V product (1). This mutation, known as the Leiden mutation, causes an amino acid substitution of glutamine for arginine at position 506 in the factor V molecule and renders the protein resistant to proteolytic inactivation by activated protein C and thus predisposes to thrombosis (2, 3). We hypothesized that some individuals with antiphospholipid syndrome may also carry the Leiden mutation, and thus have a "second hit" predisposition to thrombosis. To test this hypothesis, allele-specific hybridization and allele-specific restriction analysis were used to test for the Leiden mutation in thirty women with the antiphospholipid syndrome, 10 of whom had a history of thrombosis. None of the women were heterozygous or homozygous for the factor V mutation. We conclude that the presence of the factor V Leiden mutation is not a prerequisite for the thrombotic events in patients with antiphospholipid syndrome, due to the occurrence of thrombosis seen in patients lacking the factor V mutation.

Alleles↗

Aortic valve replacement and perioperative management in hemodialyzed patient wth antiphospholipid syndrome.

Antiphospholipid syndrome is characterized by the presence of antiphospholipid antibodies, hypercoagulability, and prolonged phospholipid-dependent coagulation indices such as activated clotting time (ACT). Perioperative thrombotic complications are frequent among patients with antiphospholipid syndrome submitted to cardiac surgery, therefore, in these patients, heparin-protamine titration for anticoagulation monitoring is particularly recommended. We demonstrate a case of 42-year-old hemodialyzed patient with antiphospholipid syndrome, submitted to the replacement of stenotic aortic valve. In our patient celite ACT and heparin concentration during cardiopulmonary bypass did not correspond to each other. Anticoagulation based on heparin concentration assessment resulted in safe perioperative hemostatic management.

Adult↗

Recurrent thrombo-embolic episodes: the association of cholangiocarcinoma with antiphospholipid syndrome.

Antiphospholipid syndrome is a disorder of recurrent vascular thrombosis, pregnancy loss and thrombocytopenia associated with persistently elevated levels of antiphospholipid antibodies. It was first described in a group of patients with systemic lupus erythematosus but has since been associated with a wide range of conditions, including other autoimmune disorders and malignancy. It can also occur in isolation, the so-called primary antiphospholipid syndrome. We describe an elderly woman with the antiphospholipid syndrome thought to be associated with a cholangiocarcinoma.

Aged↗

[Neuro-ophthalmologic aspects in antiphospholipid syndrome].

Antiphospholipid syndrome is the one autoimmune noninflammatory syndrome affecting all blood vessels at any vascular segment, irrespective of the vascular size and topography. Defined in 1983 by Hughes, this syndrome represents the actual research theme in practically all medical fields, therefore the importance of antiphospholipid syndrome is recognized. The major aim of this article is to describe the neuro-ophthalmologic manifestations of the antiphospholipid syndrome, emphasizing the latest news about this syndrome and its impact on the retina and central nervous system.

Antibodies, Anticardiolipin↗

Rituximab treatment for resistant antiphospholipid syndrome.

Antiphospholipid syndrome (APS) and catastrophic antiphospholipid syndrome (CAPS) can be challenging to treat. As they are rare, clinicians are not often exposed to these complex diseases. For the patient resistant to standard treatments new therapeutic directions can be perplexing, especially in the context of ongoing thromboses and bleeding episodes. We describe 3 patients, 2 with APS and one with CAPS, resistant to conventional medications, who responded to treatment with rituximab, an anti-CD20 monoclonal antibody. Since rituximab infusion, all the patients have had stable platelet counts and no further episodes of bleeding or thromboses.

Adult↗