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Biomedical subjects

R A Asherson

Publications and source records attributed to R A Asherson.

At least 19 recordsLinked to original sources

Antiphospholipid antibodies and infections.

Many infections have been found to be associated with antiphospholipid antibodies (aPL), although a pathogenic role for these antibodies has not usually been obvious except in a few isolated cases. Two types of aPL have been referred to as "autoimmune" and "infectious" types. This distinction, however, has subsequently been found not to be absolute.

Antibodies, Antiphospholipid↗

Long term outcome of catastrophic antiphospholipid syndrome survivors.

BACKGROUND: Catastrophic antiphospholipid syndrome (APS) is defined as life threatening multiple organ thromboses developing simultaneously or over a short period. The survival rate of catastrophic APS is about 50%, but the long term outcome of patients who survive is unknown. OBJECTIVE: To determine the long term outcome of patients with catastrophic APS and provide further information on patients who survived. PATIENTS AND METHODS: The clinical characteristics and outcomes of 130 patients with catastrophic APS have been reported previously. Six new cases were recently added to this series. Based on these publications, the authors who reported patients who had survived were contacted. Each author was asked (a) what treatment they gave their patients after the catastrophic APS; (b) if their patients had any further thrombosis. RESULTS: 63/136 (46%) patients died at the initial event. Of the remaining 73 patients, information was available for 58 (79%). Thirty eight (66%) patients did not develop further APS related events during an average follow up of 67.2 months. Eleven (19%) patients developed further APS related events but were still alive. No patients developed further catastrophic APS. Nine (16%) patients died: due to multiple organ failure (three patients); myelofibrosis (one); pneumonia (one); and APS related events (four). CONCLUSION: Sixty six per cent of patients who survive an initial catastrophic APS event remained symptom free with anticoagulation during an average follow up of 67.2 months. Twenty six per cent of the survivors developed further APS related events and the mortality rate of these patients was about 25%.

Adolescent↗

Catastrophic antiphospholipid syndrome: international consensus statement on classification criteria and treatment guidelines.

The term 'catastrophic' antiphospholipid syndrome (APS) is used to define an accelerated form of APS resulting in multiorgan failure. Although catastrophic APS patients represent less than 1% of all patients with APS, they are usually in a life-threatening medical situation that requires high clinical awareness. The careful and open discussion of several proposals by all participants in the presymposium workshop on APS consensus, held in Taormina on occasion of the 10th International Congress on aPL and chaired by Munther A Khamashta and Yehuda Shoenfeld (29 September 2002), has allowed the acceptation of a preliminary set of classification criteria. On the other hand, the optimal management of catastrophic APS must have three clear aims: to treat any precipitating factors (prompt use of antibiotics if infection is suspected, amputation for any necrotic organ, high awareness in patients with APS who undergo an operation or an invasive procedure), to prevent and to treat the ongoing thrombotic events and to suppress the excessive cytokine 'storm'. Anticoagulation (usually intravenous heparin followed by oral anticoagulants), corticosteroids, plasma exchange, intravenous gammaglobulins and, if associated with lupus flare, cyclophosphamide, are the most commonly used treatments for catastrophic APS patients.

Antiphospholipid Syndrome↗

Adrenal involvement in the antiphospholipid syndrome.

Although Addison disease and hypoadrenalism are rare in patients with systemic lupus erythematosus (SLE), early reports of the association suggested the presence of antiphospholipid antibodies (aPL) in these patients. Data from literature reveal that adrenal failure was present in between 10 and 26% of patients with catastrophic APS and that one-third of patients presented with adrenal involvement during the course of catastrophic APS. Adrenal involvement may be the first clinical manifestation of this syndrome, whereas a few patients may have a history of Addison's disease in the past. The pathological mechanisms involved in the production of adrenal insufficiency in APS are still not clearly understood, but the hypercoagulable state in these patients supports the concept that adrenal haemorrhagic infarction may possibly be related to adrenal vein thrombosis. In the present article,we review the pathogenic mechanisms and main clinical, laboratory and treatment features of patients suffering adrenal involvement with aPL to support the idea that APS leads to the development of adrenal insufficiency.

Adrenal Insufficiency↗

The lung in the antiphospholipid syndrome.

Patients with antiphospholipid syndrome (APS) may develop a broad spectrum of pulmonary disease. Pulmonary thromboembolism and pulmonary hypertension are the most common complications, but microvascular pulmonary thrombosis, pulmonary capillaritis, and alveolar haemorrhage have also been reported. Clinicians should seriously consider these types of vascular injury when evaluating patients with APS who present with dyspnoea, fever, and infiltrates on chest radiography.

Antiphospholipid Syndrome↗

Catastrophic antiphospholipid syndrome: remission following leg amputation in 2 cases.

OBJECTIVE: The antiphospholipid syndrome is characterized by venous and arterial thrombotic events that are often recurrent, thrombocytopenia, recurrent fetal loss, and elevated titers of antiphospholipid antibodies. A subtype of patients with a particularly overwhelming clinical picture has been termed catastrophic antiphospholipid syndrome (CAPS). In this report, we present 2 patients who exhibited a similar multisystem disorder associated with gangrenous changes in the lower extremities. METHODS: Two patients with CAPS are presented, highlighting the impact of this disorder on the patients and the response to various therapeutic modalities. RESULTS: Both patients had pulmonary, cardiac, cutaneous, and neurologic findings consistent with CAPS. In addition, they had large purulent leg ulcers associated with livedo reticularis. Amputation of the legs in each case induced remission of the systemic illness. CONCLUSIONS: We believe that infection plays a significant role in the pathogenesis and amplification of the antiphospholipid syndrome. In certain patients, this association probably is mediated via immune mechanisms, which also enhance the genesis of atherosclerosis. After the foci of infection (suppurative leg ulcers) were removed, the underlying illness improved. These case studies provide an opportunity to study the interrelationship between several confounding factors that converge and lead to the development of this autoimmune condition.

Amputation, Surgical↗

Pathophysiology of the catastrophic antiphospholipid syndrome (CAPS).

Antiphospholipid antibodies (APA) are a common cause of acquired thrombophilia. APA recognize plasma phospholipid-binding proteins (e. g., beta(2)-glycoprotein I, prothrombin, annexin V, etc.). Catastrophic antiphospholipid syndrome (CAPS) is an uncommon variant of the antiphospholipid syndrome. CAPS patients often present with multiorgan failure. Precipitating factors include surgical procedures, drugs, and discontinuation of anticoagulant therapy. Increasingly, infections are recognized as a major precipitating condition. The majority of patients present with renal involvement as well as evidence of acute respiratory distress syndrome (ARDS). This review discusses the clinical and pathophysiologic aspects of CAPS as well as the differenital diagnosis.

Antibodies, Antiphospholipid↗

Catastrophic antiphospholipid syndrome.

In its classic presentation, the antiphospholipid syndrome manifests a combination of venous or arterial thrombosis and fetal loss, accompanied by elevations of antibodies directed toward negatively charged phospholipids, as measured by anticardiolipin antibody assays and/or positive lupus anticoagulant tests. The manifestations often include a moderate thrombocytopenia and, less commonly, hemolysis. In contrast, a less frequently encountered subset of the antiphospholipid syndrome, termed the "catastrophic" antiphospholipid syndrome, affects mainly small vessels predominantly supplying organs. The thrombocytopenia is usually marked, and a Coombs positive microangiopathic-type anemia may accompany the condition. Features of disseminated intravascular coagulation may be evident in some patients. It is fatal in approximately 50% of cases reported. Treatment should include not only adequate anticoagulation with intravenous heparin but also full doses of intravenous corticosteroids, to offset the systemic inflammatory response syndrome that occurs as a result of the extensive tissue damage, and plasmapheresis, using fresh frozen plasma. Parenteral antibiotics should be administered early if infection is suspected.

Antiphospholipid Syndrome↗

Catastrophic antiphospholipid syndrome. Clinical and laboratory features of 50 patients.

We analyzed the clinical and laboratory characteristics of 50 patients with catastrophic antiphospholipid syndrome (APS) (5 from our clinics and 45 from a MEDLINE computer-assisted review of the literature from 1992 through 1996). Thirty-three (66%) patients were female and 17 (34%) were male. Twenty-eight (56%) patients had primary APS, 15 (30%) had defined systemic lupus erythematosus (SLE), 6 (12%) had "lupus-like" syndrome, and 1 (2%) had rheumatoid arthritis. Mean age of patients in this series was 38 +/- 14 years (range, 11-74 yr). Three (6%) patients developed the clinical picture of catastrophic APS under the age of 15 years, and 11 (22%) were 50 years old or more. In 11 (22%) patients, precipitating factors contributed to the development of catastrophic APS (infections in 3, drugs in 3, minor surgical procedures in 3, anticoagulation withdrawal in 2, and hysterectomy in 1). The presentation of the acute multi-organ failure was usually complex, involving multiple organs simultaneously or in a very short period of time. The majority of patients manifested microangiopathy--that is, occlusive vascular disease affecting predominantly small vessels of organs, particularly kidney, lungs, brain, heart, and liver--with a minority of patients experiencing only large vessel occlusions. Thrombocytopenia was reported in 34 (68%) patients, hemolytic anemia in 13 (26%), disseminated intravascular coagulation in 14 (28%), and schistocytes in 7 (14%). The following antibodies were detected: lupus anticoagulant (94%), anticardiolipin antibodies (94%), anti-dsDNA (87% of patients with SLE), antinuclear antibodies (58%), anti-Ro/SS-A (8%), anti-RNP (8%), and anti-La/SS-B (2%). Anticoagulation was used in 70% of the patients, steroids in 70%, plasmapheresis in 40%, cyclophosphamide in 34%, intravenous gammaglobulins in 16%, and splenectomy in 4%. Most patients, however, received a combination of nonsurgical therapies. Death occurred in 25 of the 50 (50%) patients. In most, cardiac problems seemed to be the major cause of death. In several of these, respiratory failure was also present, usually due to acute respiratory distress syndrome and diffuse alveolar hemorrhage. Among the 20 patients who received the combination of anticoagulation, steroids, and plasmapheresis or intravenous gammaglobulins, recovery occurred in 14 (70%) patients. The use of ancrod and defibrotide appeared to be effective in the 2 respective patients in whom they were used.

Adolescent↗

The catastrophic antiphospholipid syndrome, 1998. A review of the clinical features, possible pathogenesis and treatment.

A review of 50 patients who manifest features of the catastrophic antiphospholipid syndrome (CAPS) is presented. The clinical features comprise mainly organ involvement as opposed to large-vessel venous or arterial occlusions as is seen in patients with 'simple' antiphospholipid syndrome (APS), which makes the pathogenesis of this unusually rare complication perhaps somewhat different from that of patients with the APS. The mortality of the condition is 50%, most patients dying as a result of a combination of cardiac and respiratory failure. Fifteen patients (28%) suffered from disseminated intravascular coagulation (DIC) as well, which may have contributed to the multiorgan thrombotic microangiopathy characteristic of the CAPS. Although most patients were treated with high-dose i.v. steroids, heparin, cyclophosphamide and other modalities of therapy (such as i.v. globulin), plasmapheresis (advocated for TTP, a similar microangiopathic condition) seemed to offer some benefit (68% recovery). The systemic inflammatory response syndrome (SIRS) was responsible for some of the clinical manifestations such as adult respiratory distress syndrome (ARDS) seen in 15 patients. Pathogenesis of the CAPS seems dependent on a 'two-hit' or even 'three-hit' hypothesis in patients already suffering from a hypercoagulable state. Precipitating factors include infections, trauma (surgical), drug administration and warfarin withdrawal. A recent view that the multiple thrombotic lesions themselves may contribute to further thrombosis ('thrombotic storm') is also discussed.

Adult↗

Catastrophic antiphospholipid syndrome: response to repeated plasmapheresis over three years.

The catastrophic antiphospholipid syndrome (CAPS) is rare and usually fatal. In this report, we describe an unusual patient who, 31 years after experiencing an atypical preeclampsia-eclampsia presentation known today as the HELLP syndrome (hemolysis, elevated liver enzymes, and low platelets), developed CAPS, which seemed to complicate a diagnosis of primary antiphospholipid syndrome. She responded to repeated plasmapheresis over 3 years. Anticoagulants, corticosteroids, intravenous gamma globulin, and intravenous cyclophosphamide had all failed to halt the progression of CAPS, but repeated plasmapheresis not only halted the condition, but it led to the reversal of a leukoencephalopathy. The relationship between HELLP syndrome and CAPS is discussed, and possible pathogenetic mechanisms that explain the efficacy of repeated plasmapheresis in this setting are suggested. It is postulated that perhaps plasmapheresis, through removal of cytokines or other mediators, disrupts the interaction between phospholipid-protein complexes and endothelial cells. Repeated plasmapheresis should be considered in the most refractory cases of CAPS when more conventional treatment regimens have failed.

Aged↗