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Biomedical subjects

N S Key

Publications and source records attributed to N S Key.

At least 19 recordsLinked to original sources

Prospective study of subclinical atherosclerosis as a risk factor for venous thromboembolism.

BACKGROUND: Whether atherosclerotic disease predisposes to venous thrombosis is uncertain. OBJECTIVE: To determine whether subclinical atherosclerosis, manifested as increased carotid intima-media thickness (IMT) or presence of carotid plaque, is associated with increased incidence of venous thromboembolism (VTE). PATIENTS AND METHODS: The Atherosclerosis Risk in Communities study is a prospective cohort of adults aged 45-64 years, examined at baseline (1987-89) and followed for cardiovascular events. Bilateral carotid ultrasound for IMT measurements was done at baseline for portions of the common and internal carotid arteries, and carotid bifurcation and also to detect the presence of carotid plaque. Exclusion criteria included baseline anticoagulant use, history of coronary heart disease, stroke, or VTE, and incomplete data. First VTE during follow-up was validated using abstracted medical records. RESULTS: Among 13,081 individuals followed for a mean of 12.5 years, 225 first VTE events were identified. Unadjusted hazard ratios (HR) (95% CI) of VTE across quartiles of baseline IMT were 1.0, 1.16 (0.77-1.75), 1.64 (1.12-2.40), and 1.52 (1.03-2.25). However, this association disappeared after adjustment for age, sex, and ethnicity (HRs: 1.0, 1.06, 1.40, and 1.18). Further adjustment for body mass index and diabetes weakened the relative risks even further. Presence of carotid plaque at baseline also was not associated with VTE occurrence; adjusted HR = 0.97, 95% CI = 0.72-1.29. CONCLUSION: Increased carotid IMT or presence of carotid plaque was not associated with an increased incidence of VTE in this middle-aged cohort, suggesting subclinical atherosclerosis itself is not a VTE risk factor.

Atherosclerosis↗

Polymorphism in the tissue factor region is associated with basal but not endotoxin-induced tissue factor-mRNA levels in leukocytes.

OBJECTIVE: Tissue factor (TF) plays a central role during disseminated intravascular coagulation (DIC) in sepsis. We hypothesized that a frequent D/I polymorphism, at nucleotide position -1208 in the promoter region, could influence TF-mRNA and downstream coagulation. METHODS: Basal- and lipopolysaccharide (LPS)-induced TF-mRNA expression, microparticle-associated TF-procoagulant activity and coagulation were determined in healthy men (n = 74) before and after endotoxin (LPS) infusion (2 ng kg(-1)). Basal values of TF-mRNA ranged between 34 and > 37.5 cycles. RESULTS: Baseline TF-mRNA levels significantly differed between genotypes: I/I carriers had almost 2-fold higher TF-mRNA levels compared to D/D carriers at baseline (P < 0.01). In accordance, higher levels of microparticle-associated TF-procoagulant activity could be seen in I/I carriers. However, the genotype did not affect basal or LPS-induced levels of prothrombin fragment F1+2, D-dimer or cytokines including tumor necrosis factor and interleukin-6. CONCLUSION: The TF-1208 polymorphism is functional in that it regulates basal TF-mRNA in circulating monocytes and circulating microparticle-associated TF-procoagulant activity in vivo, but does not influence the relative increase in TF-mRNA or coagulation activation during low-grade endotoxemia.

Disseminated Intravascular Coagulation↗

Successful liver transplantation in a patient with severe haemophilia A and a high-titre factor VIII inhibitor.

We present the case of a 61-year-old man with severe haemophilia A and a high-titre factor VIII inhibitor who underwent successful orthotopic liver transplantation (OLT) for hepatocellular carcinoma. Postoperatively, a modest early anamnestic response to FVIII was followed by immunological tolerance to FVIII. This case illustrates the technical feasibility of OLT in some patients with high-titre inhibitors to FVIII, and suggests that immune tolerance may be induced by endogenously produced FVIII from the transplanted organ.

Blood Loss, Surgical↗

Iliopsoas haemorrhage in patients with bleeding disorders--experience from one centre.

Iliopsoas haemorrhage in patients with bleeding disorders is a potentially life-threatening condition, with significantly associated morbidity. Despite its clinical importance, little has been published on the frequency, complications or outcomes of this entity since the advent of modern therapies for haemophilia. In a retrospective review of 297 patients with bleeding disorders followed at our centre, we identified 46 episodes of iliopsoas haemorrhage in 31 patients. Patients presented primarily with thigh, hip and/or groin pain, and frequently had flexion hip contracture, femoral nerve paresthesia, and >2 g dL(-1) haemoglobin drop. The duration of symptoms prior to seeking medical attention was 3.8 +/- 4 days. Nineteen of 155 patients (12.3%) with haemophilia A had 28 episodes of iliopsoas bleed; 52.6% of these patients had severe haemophilia. Of these 19 patients with haemophilia A who had iliopsoas haemorrhage, seven (36.8%) had an inhibitor to factor VIII (FVIII), and accounted for one-half of the bleeding episodes. Nine of 66 patients (13.6%) with haemophilia B had 15 episodes of iliopsoas haemorrhage; 22.2% of these patients had severe haemophilia, including one patient with an inhibitor to FIX who had two iliopsoas bleeds. The mean duration of therapy was 18.7 +/- 11.9 days, and the duration of hospitalization was 12.3 +/- 9.1 days. The length of hospital stay was significantly longer in patients with inhibitors, when compared with patients without inhibitors (19.1 +/- 5.8 days vs. 7.6 +/- 7.8 days; P<0.0001) with higher factor consumption, although the total duration of therapy was not significantly different. Patients with inhibitors were over-represented in the cohort of haemophiliacs with iliopsoas bleed. Patients with inhibitors who had iliopsoas bleeds remained hospitalized longer, although the duration of therapy was the same as patients with no inhibitors. There was a low frequency of recurrent bleed (2.8%).

Adolescent↗

Acquired factor VII deficiency in hematopoietic stem cell transplant recipients.

Acquired factor VII (FVII) deficiency in the absence of vitamin K deficiency, oral anticoagulant therapy, synthetic liver dysfunction, or DIC is rare, with only a handful of cases thus far reported. In the period from 1990 to 1996 we identified eight patients with acquired FVII deficiency, all of whom presented with prolongation of the prothrombin time (PT) in the first 2 weeks following stem cell transplantation (SCT). The mean plasma FVII clotting activity (FVII:c) was 22% (range 8-35%) with an approximately equivalent reduction in FVII antigen (FVII:Ag) level. Mean plasma levels of fibrinogen and factors II, V, IX, and X were normal. Protein C activity was significantly depressed in only one of the three patients in whom it was measured. Several patients experienced bleeding complications, and hemorrhage directly accounted for death in two cases. Veno-occlusive disease of the liver developed in three patients. We conclude that FVII deficiency should be considered in the differential diagnosis of prolonged PT in patients who have recently undergone SCT. The mechanism of this acquired deficiency state remains to be defined.

Adult↗

Thrombotic stroke associated with the use of porcine factor VIII in a patient with acquired haemophilia.

Porcine factor VIII (pFVIII), which is used to control bleeding in patients with congenital or acquired haemophilia who have high-titre neutralizing antibodies to human FVIII, is not known to increase the risk of arterial or venous thrombosis. We have recently encountered a patient with acquired haemophilia who developed a thrombotic left middle cerebral artery distribution stroke while being treated with pFVIII. To our knowledge, this is the first such reported thrombotic event. We speculate that platelet activation induced by pFVIII may have contributed to thrombosis and suggest that pFVIII be used with caution in elderly patients with pre-existing cardiovascular risk factors.

Aged↗

CD4+ T cells specific for factor VIII as a target for specific suppression of inhibitor production.

The studies we reviewed here have begun to clarify the complex cellular mechanisms involved in the immune response to fVIII, and the circumstances under which fVIII inhibitors develop. Further characterization and comparison of the immune response to fVIII in both hemophilia patients and healthy subjects will help to further elucidate these mechanisms. The murine hemophilia model will hopefully provide further insights into the mechanisms of inhibitor formation, and prove to be a suitable tool for the design and testing of therapeutic strategies aimed at preventing the development of fVIII inhibitors.

Animals↗

Whole blood tissue factor procoagulant activity remains detectable during severe aplasia following bone marrow and peripheral blood stem cell transplantation.

Using a novel whole blood assay, we recently demonstrated that tissue factor procoagulant activity (TF PCA) is present in normal individuals. Preliminary experiments suggested that this activity is localized in the mononuclear cell fraction. Postulating that whole blood TF PCA would therefore be undetectable when monocytes and neutrophils are absent from peripheral blood, we assayed TF PCA during the peri-transplant period in 15 consecutive patients undergoing allogeneic (n = 12) or autologous (n = 3) bone marrow transplantation (BMT) or peripheral blood stem cell transplantation (PBSCT). Baseline (pre-transplant) mean TF PCA was higher in patients compared to normal controls (P <0.005). Unexpectedly, although TF PCA during the period of profound aplasia was significantly reduced compared to baseline (p <0.05), fully 55% of the initial activity remained detectable. During the engraftment phase, TF PCA returned to pre-transplant levels, with a linear correlation between monocyte counts and TF PCA (r = 0.63). In contrast to normal whole blood, incubation of aplastic samples with E. Coli lipopolysaccharide ex vivo failed to induce TF PCA. Throughout the period of study--but especially during the aplastic phase--the absolute number of circulating endothelial cells (CECs) that were TF antigen-positive was increased compared to normals (P <0.001). However, removal of these cells from whole blood samples failed to significantly diminish total TF PCA indicating that CECs alone could not account for the detectable TF PCA during aplasia. We conclude that neither circulating mature myelo-monocytic cells nor endothelial cells can account for all the functionally intact TF in peripheral blood. Further studies are needed to identify the other source(s) of TF PCA.

Adolescent↗

Induction of tissue factor procoagulant activity in myelomonocytic cells inoculated by the agent of human granulocytic ehrlichiosis.

Human granulocytic ehrlichiosis (HGE) is a recently recognized rickettsial tick-borne febrile illness that may occasionally be complicated by coagulopathy. The agent of HGE (aHGE) is an obligate intracellular pathogen, which replicates in endosomes within neutrophils and their precursors. We hypothesized that aHGE might cause DIC via induction of monocyte tissue factor procoagulant activity (TF PCA). Peripheral blood mononuclear cells (PBMNC) and HL-60 cells were used to model the effect of aHGE infection on monocytes/macrophages. Mononuclear cells inoculated with aHGE in vitro demonstrated approximately a 12-15-fold increase in TF PCA, with peak activity occurring at 8-12 h. HL-60 cells inoculated with aHGE also manifested a 4-6 fold induction of TF PCA, with maximal activity occurring at about 8 h. By comparison, E. Coli lipopolysaccharide (LPS) also induced an increase in TF PCA of an equivalent magnitude, and with a similar time course. Induction of TF did not require inoculation of HL-60 cells with live organism, since heat-inactivated aHGE still stimulated TF PCA expression in the target cells. Furthermore, filtered supernatants from heat-inactivated organisms induced TF PCA suggesting that the effect is due to a soluble mediator produced by the organism. Although aHGE is a gram negative organism, the soluble mediator did not appear to be classic endotoxin in that the supernatants tested negative for endotoxin by the Limulus Amoebocyte assay, and polymixin had no inhibitory effect on aHGE supernatants. We conclude that aHGE induces cells of the myelo-monocytic lineage to synthesize TF, which may contribute to the clinical coagulopathy that can be observed in this condition. An atypical soluble mediator or cellular component of the organism appears to be critically important in TF induction by aHGE.

Blood Coagulation↗

Sensitization of CD4+ T cells to coagulation factor VIII: response in congenital and acquired hemophilia patients and in healthy subjects.

Antibodies (Ab) that inhibit factor VIII (fVIII) may develop in patients with hemophilia A and rarely in individuals without congenital fVIII deficiency (acquired hemophilia). Synthesis of fVIII inhibitors requires CD4+ T cells. We investigated the proliferative response of blood CD4+ cells from 11 patients with congenital or acquired hemophilia and 12 healthy subjects, to recombinant human fVIII, and to pools of overlapping synthetic peptides spanning the sequences of individual fVIII domains. All patients had CD4+ cells that responded to fVIII. The intensity of the responses fluctuated over time: several patients had brief periods when they did not respond to fVIII. All healthy subjects had transient CD4+ responses to fVIII, that were significantly lower than those of hemophilia patients. Also, healthy subjects responded to fVIII less frequently and for shorter periods than hemophilia patients. All patients and healthy subjects recognized several fVIII domains: the A3 domain was recognized most strongly and frequently. The transient sensitization of CD4+ cells to fVIII in healthy subjects suggests that inadequate tolerization of CD4+ cells to fVIII, due to lack of endogenous fVIII, is an important factor in the development of clinically significant anti-fVIII antibodies in hemophilia A.

Adult↗

Anaphylactic response to factor IX replacement therapy in haemophilia B patients: complete gene deletions confer the highest risk.

Haemophilia B is an X-linked recessive coagulopathy due to mutations in the factor IX gene. Occasionally, patients receiving factor IX replacement therapy develop inhibiting antibodies to the factor IX protein, and it has been recently documented that a subset of these patients have had anaphylactic responses to factor IX replacement therapy in association with the development of inhibiting antibodies. To determine the relationship between mutation type and the risk of anaphylaxis, eight unrelated patients from families in whom anaphylaxis had occurred were genotyped. The mutations were compared to those in 550 haemophilia B patients and to those in 276 patients with clinically severe disease. Individuals with complete gene deletions were found to be at greatest risk for anaphylaxis, with an estimated risk of 26% or greater. Anaphylaxis was less likely to occur in patients with protein truncation mutations or partial gene deletions and least likely to occur with missense mutations. Genotypes can help physicians and patients anticipate the likelihood of anaphylaxis, a potentially life-threatening complication of factor IX replacement therapy. The very high risk of anaphylaxis associated with a complete gene deletion suggests that the lack of expression of a partial protein product may predispose to anaphylaxis and/or that the absence of a closely linked, codeleted gene enhances the anaphylactic immune response.

Anaphylaxis↗

CD4+ T cell response to factor VIII in hemophilia A, acquired hemophilia, and healthy subjects.

These studies have begun to clarify the complex cellular mechanisms involved in the immune response to factor VIII. Although vigorous sensitization of CD4+ cells occurs in healthy subjects, the absence of clinically significant levels of inhibitor antibodies is likely related to the prompt down-regulation of the immune response. It may also be possible that the specific epitope repertoire recognized by CD4+ cells plays a role in the outcome of the immune response to factor VIII. Further characterization and comparison of the CD4+ repertoire in healthy subjects with that of hemophilia patients with and without inhibitors will help clarify which mechanism explains the absence of productive inhibitor synthesis in certain individuals. Also, it might identify CD4+ epitopes recognized by T helper cells that are essential for inhibitor synthesis. Additional studies to further characterize the role of Th1 and Th2 cells in the immune response to factor VIII may also be needed for the design of novel therapeutic strategies aimed at preventing inhibitor development.

Antibodies↗

Whole blood tissue factor procoagulant activity is elevated in patients with sickle cell disease.

We developed a simple assay for the measurement of tissue factor procoagulant activity (TF PCA) in whole blood samples that avoids the need for mononuclear cell isolation. This method combines convenience of sample collection and processing with a high degree of sensitivity and specificity for TF. Using this method, we have determined that TF PCA is detectable in whole blood samples from normal individuals, which is itself a novel observation. Essentially all PCA could be shown to be localized in the mononuclear cell fraction of blood. Compared with controls, whole blood TF levels were significantly (P < .000001) elevated in patients with sickle cell disease (SCD), regardless of the subtype of hemoglobinopathy (SS or SC disease). No significant difference in TF PCA was observed between patients in pain crisis compared with those in steady-state disease. Because TF functions as cofactor in the proteolytic conversion of FVII to FVIIa in vitro, it was expected that an increase in circulating TF PCA would lead to an increased in vivo generation of FVIIa. On the contrary, FVIIa levels were actually decreased in the plasma of patients with SCD. Plasma TF pathway inhibitor (TFPI) antigen levels were normal in SCD patients, suggesting that accelerated clearance of FVIIa by the TFPI pathway was not responsible for the reduced FVIIa levels. We propose that elevated levels of circulating TF PCA may play an important role in triggering the activation of coagulation known to occur in patients with SCD. Because TF is the principal cellular ligand for FVIIa, it is possible that increased binding to TF accounts for the diminished plasma FVIIa levels.

Adolescent↗