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Biomedical subjects

E N Harris

Publications and source records attributed to E N Harris.

At least 19 recordsLinked to original sources

A re-appraisal of the normal cut-off assignment for anticardiolipin IgM tests.

BACKGROUND: Recent reports show an apparent large number of individuals with low to moderate titers of anticardiolipin antibodies (ACA), particularly of the IgM isotype with no clinical signs of antiphospholipid syndrome (APS). The significance of these results is unknown. This study examined the prevalence of low positive titers of IgM ACA antibodies in a large number (n = 982) of normal blood donors (Group 1) and in a group of 159 individuals > 60 years of age (Group 2). The effect of re-defining the currently used cut-off values for the IgM ACA tests was also examined. METHODS: IgM ACA antibodies were tested in three ELISA assays: the Bindazyme Anti-IgM Cardiolipin EIA kit (assay A), an 'in-house' ACA test (assay B), and the APhL ELISA kit (assay C). RESULTS: THE normal range cut-offs were re-calculated using the 95th percentile of the data for Group 1 (12.4 MPL U mL(-1) for assay A, 5.4 MPL U mL(-1) for assay B and 9.5 MPL U mL(-1) for assay C) and Group 2 (9.9 MPL U mL(-1) for assay A, 5.5 MPL U mL(-1) for assay B and 13.2 MPL U mL(-1) for assay C). These values were not significantly different from the current cut-off values for each assay. The prevalence of low positive results in Group 1 relative to the re-defined cut-off for that group were: 1.0%, 1.1% and 0.9% in assay A, B and C; and in Group 2: 0.6%, 0.6% and 0.6%, respectively. An indeterminate zone (between the 95th and 99th percentile) was then established for the two groups. The prevalence in Group 1 was 3.8%, 3.9% and 3.9% for assays A, B and C, respectively, and for Group 2: 4.4% in all three assays. CONCLUSIONS: The data confirm that the current cut-off point for each of the three assays is correct. We suggest based on this study that the low positive range is re-assigned 'indeterminate' and recommend that samples falling in this category should be retested to confirm positivity at a later date.

Adolescent↗

Fluvastatin inhibits up-regulation of tissue factor expression by antiphospholipid antibodies on endothelial cells.

BACKGROUND: Mechanisms of thrombosis induced by antiphospholipid (aPL) antibodies include up-regulation of tissue factor (TF) expression on endothelial cells (ECs). Statins have been shown to reduce levels of TF induced by tumor necrosis factor (TNF-alpha) and lipopolysaccharide (LPS) on ECs. In a recent study, fluvastatin inhibited thrombogenic and proinflammatory properties of aPL antibodies in in vivo models. The aim of this study was to determine whether fluvastatin has an effect on aPL-induced expression of TF on ECs. METHODS: IgGs were purified from four patients with APS (IgG-APS) and from control sera (IgG-NHS). Cultured human umbilical vein endothelial cells (HUVEC) were treated with IgG-APS or IgG-NHS or with medium alone or with phorbol myristate acetate (PMA), as a positive control. In some experiments, cells were pretreated with fluvastatin (2.5, 5 or 10 micro m) with and without mevalonate (100 micro m). TF expression on HUVECs was measured by ELISA. RESULTS: PMA and the four IgG-APS preparations increased the expression of TF on EC significantly (4.9-, 2.4-, 4.2-, 3.5- and 3.1-fold, respectively), in a dose-dependent fashion. Fluvastatin (10 micro m) inhibited the effects of PMA and the four IgG-APS on TF expression by 70, 47, 65, 22 and 68%, respectively, and this effect was dose-dependent. Mevalonate (100 micro m) completely abrogated the inhibitory effects of fluvastatin on TF expression induced by aPL. CONCLUSION: Because of the suggested pathogenic role of aPL on induction of TF on ECs, our data provide a rationale for using statins as a therapeutic tool in treatment of thrombosis in APS.

Adult↗

E-Selectin mediates pathogenic effects of antiphospholipid antibodies.

Antiphospholipid (aPL) antibodies, detected in patients with antiphospholipid syndrome (APS) are associated with thrombosis, pregnancy loss and thrombocytopenia. Studies have shown that aPL are thrombogenic in vivo, but the mechanism(s) involved are not completely understood. Several studies have demonstrated that aPL antibodies activate endothelial cells (ECs) in vitro, as determined by up-regulation of adhesion molecules: E-selectin (E-sel); intercellular adhesion molecule-1 (ICAM-1) and vascular cell adhesion molecule-1 (VCAM-1), and in vivo. The objectives of these study were to determine the effects of aPL antibodies on the expression of E-selectin on ECs, on the adhesion of monocytes to ECs and to study the role of E-selectin on aPL antibodies enhanced thrombus formation and activation of ECs in vivo. We demonstrated that the surface expression of E-selectin on HUVEC by ELISA was increased 400-fold when treated with tumor necrosis factor-alpha (TNF-alpha) and 421-fold when treated with aPL antibodies during 4 h. APL antibodies also induced activation of the nuclear factor-kappa B (NF-kappaB). APL antibodies increased significantly the number of adhering leukocytes to ECs in vivo in C57BL/6 J mice when compared to IgG-NHS treated mice. This effect was abrogated in E-selectin-deficient mice. The thrombus size was significantly increased in C57BL/6 J mice treated with aPL antibodies when compared to mice treated with IgG-NHS. This enhancement in thrombus size by aPL antibodies was abrogated in E-selectin-deficient mice treated with aPL antibodies.

Animals↗

Probing antiphospholipid-mediated thrombosis: the interplay between anticardiolipin antibodies and endothelial cells.

The association of antiphospholipid (aPL) antibodies with thrombosis in patients with antiphospholipid syndrome (APS) is well documented in humans and in animal studies. However, the mechanisms by which aPL antibodies induce thrombosis are the subject of much current study. It has been suggested that aPL may activate endothelial cells (ECs), thus creating a hypercoagulable state that precedes and contributes to thrombosis in patients with APS. Several studies have shown that aPL upregulate ECs' adhesion molecules (CAMs): intercellular cell adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule-1 (VCAM-1) and E-selectin (E-sel) or induce tissue factor (TF) in monocytes in vitro. Similarly, the incubation of EC with antibodies reacting with beta2glycoprotein I (beta2GPI) has been shown to induce EC activation with concomitant upregulation of CAMs, IL-6 production and alteration of prostaglandin metabolism. Our group has shown that aPL-mediated upregulation of adhesion molecules on ECs correlates with an increased adhesion of leukocytes to endothelium in the microcirculation of mouse cremaster muscle, a n indication of EC activation in vivo, andwith enhanced thrombosis in vivo. In another series of studies, investigators have shown that upregulation of expression of adhesion molecules by some murine monoclonal anti-beta2glycoprotein I (anti-beta2GPI) antibodies correlated with fetal resorption in mice in vivo. More recently, one study showed that the anti-hypercholesterolaemic drug fluvastatin inhibited the aPL-mediated enhanced adhesion of monocytes to ECs in vitro. Data from our laboratories indicate that fluvastatin also reverses thrombus formation and activation of EC induced by aPL in an in vivo mouse model. As additional support for the hypothesis that aPL antibodies activate ECs and may create an hypercoagulable state in APS patients, two recent studies indicated that levels of soluble ICAM-1 and VCAM-1 were significantly increased in the plasma of patients with APS and recurrent thrombosis. Furthermore, studies utilizing knockout mice and specific monoclonal anti-VCAM-1 antibodies have demonstrated that expression of ICAM-1, P-selectin, E-selectin and VCAM-1 are important in in vivo aPL-mediated thrombosis and EC activation in mice. Recent data suggests that aPL antibodies also induce expression of TF not only in monocytes but in ECs. Hence, the interference of aPL with the TF mechanism may be another important mechanism by which these antibodies create a hypercoagulable state and prone patients to thrombosis. Specifically, how aPL alters EC activation state and the molecular and intracellular mechanisms involved have not yet been defined. APL may interact with specific cell surface receptors (proteins and/or lipids) induce signals that have consequences downstream, and that ultimately will result in upregulation of cell surface proteins (i.e., CAMs and TF) and subsequently induce EC activation. In that regard, our group recently showed that aPL-mediated upregulation of adhesion molecules in ECs is preceded by activation of the nuclear factor kappa B (NFkappaB). Other intracellular mechanisms triggered by aPL are not completely understood and are the subject of current investigation. In conclusion, studies suggest that activation of ECs by aPL is an important mechanism that may precede thrombus formation in patients with APS. Hence, the interplay between aPL antibodies and ECs is important inthe pathogenesis of thrombosis in APS.

Animals↗

Revisiting the anticardiolipin test and its standardization.

Although the importance of the anticardiolipin test in diagnosis of antiphospholipid syndrome (APS) is widely accepted, there remains much misunderstanding about the strengths and weaknesses of this assay. Several disorders result in formation of low levels of the antibody, hence the anticardiolipin test is not specific when results are low positive. In general, the higher the anticardiolipin level the greater the likelihood of a diagnosis of APS. Hence there have been numerous efforts to enable reproducible measurement of anticardiolipin levels. Standard calibrators were introduced to construct calibration curves from which levels of unknown samples can be derived. Those standard calibrators were made by mixing varying quantities of high positive with normal sera. More recently, calibrators derived from monoclonal anticardiolipin antibodies have been introduced. There are advantages and disadvantages with both types of calibrators. Determination of a precise and reproducible anticardiolipin level is difficult, whatever the calibrators used, because the assay is dependent on several variable components, any of which may fail on any given day. Utilization of a semi-quantitative measure (low, medium, high) may suffice in most clinical settings and would be less subject to error. Validated ELISA kits may offer greater reproducibility, since there is less variability than bench assays set up in very different laboratories. Whether using a kit or a bench assay, meticulous attention to detail offers the best opportunity for precision and reproducibility.

Antibodies, Anticardiolipin↗

Thrombogenic effects of antiphospholipid antibodies are mediated by intercellular cell adhesion molecule-1, vascular cell adhesion molecule-1, and P-selectin.

Recent studies have shown that antiphospholipid (aPL) enhances expression of intercellular cell adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule-1 (VCAM-1), and E-selectin on endothelial cells (ECs) and that these effects are correlated with increased adhesion of leukocytes to endothelium in cremaster muscle in vivo and with thrombosis in a mouse model. Activation of ECs by aPL may create a hypercoagulable state that precedes and contributes to thrombosis in patients with aPL syndrome (APS). This study proposed to examine whether this in vivo activation of ECs and enhanced thrombosis by aPL are mediated by ICAM-1, P-selectin, or VCAM-1. The dynamics of thrombus formation and the number of adhering leukocytes were studied in ICAM-1-deficient (ICAM-1(-/-)) mice or ICAM-1-/P-selectin-deficient (ICAM-1(-/-)/P-selectin(-/-)) mice treated with affinity-purified aPL antibodies (ap IgG-APS) or with control IgG and compared with wild-type mice treated in a similar fashion. In another set of experiments, the adhesion of leukocytes to cremaster muscle and the dynamics of thrombus formation were studied in CD1 mice treated with aPL or control IgG before and 30 minutes after intravenous infusion with 100 microg monoclonal antibody anti-VCAM-1. The results indicate that the enhanced adhesion of leukocytes to endothelium in wild-type mice was significantly reduced in ICAM-1(-/-) and completely abrogated in ICAM-1(-/-)/P-selectin(-/-) mice treated with ap IgG-APS compared with wild-type mice treated with ap IgG-APS (6.9+/-2.3, 0.4+/-0.4 versus 35+/-12, respectively). More importantly, this correlated with a significant reduction in thrombus size compared with wild-type mice treated with ap IgG-APS (895+/-259 microm(2), 859+/-243 microm(2) versus 3816+/-672 microm(2), respectively). Infusion of the mice with anti-VCAM-1 antibodies significantly reversed the enhanced adhesion of leukocytes (14.9+/-3 to 11.3+/-2.1) and thrombus size 3830+/-1008 microm(2) versus 876+/-548 microm(2)) in mice treated with ap IgG-APS. The data indicate that ICAM-1, P-selectin, and VCAM-1 expression are important in thrombotic complications by aPL antibodies and may provide novel targets for therapy in patients with APS.

Adult↗

Identification of an Fc gamma receptor-independent mechanism by which intravenous immunoglobulin ameliorates antiphospholipid antibody-induced thrombogenic phenotype.

OBJECTIVE: Patients with the antiphospholipid antibody syndrome (APS) often experience recurrent arterial and venous thrombosis and pregnancy losses. Intravenous immunoglobulin (IVIG) therapy has prevented pregnancy loss in some women with APS and has reversed fetal resorption rates in murine models of pregnancy loss. Although the basis for these effects is unknown, effector mechanisms of pathogenic antibodies often involve receptors for IgG (Fc gamma receptors [Fc gammaR]). We examined the potential mechanisms of action of WIG in an in vivo murine model of antiphospholipid antibody (aPL)-induced thrombosis and endothelial cell activation. METHODS: Mice infused with IgG containing human anticardiolipin antibodies (aCL) were treated with IVIG (36 microg i.v.), saline, or ovalbumin. Surgically induced thrombus formation and in vivo leukocyte adhesion to endothelial cells were measured. Circulating levels of aCL were measured by enzyme-linked immunosorbent assay. To determine whether Fc gammaR are required for the effects of IVIG, we treated mice deficient in stimulatory Fc gammaR. To examine the effects of IVIG on endogenously generated antibody, we treated mice immunized with beta2-glycoprotein I (beta2GPI). RESULTS: IVIG treatment inhibited aPL-induced endothelial cell activation and enhancement of thrombosis in mice passively infused with human aPL-containing IgG, and this was associated with a decrease in aPL levels. Similarly, IVIG lowered aPL levels and inhibited thrombogenesis in mice immunized with beta2GPI. The thrombophilic effects of aPL were evident in Fc gammaR-deficient mice. CONCLUSION: Treatment with IVIG inhibits the thrombogenic effects of aPL in vivo and reduces the levels of aCL in the circulation. Blockade of stimulatory Fc gammaR on inflammatory cells is not necessary for this effect. The mechanism of action of IVIG is more likely saturation of the IgG transport receptor, leading to accelerated catabolism of pathogenic aPL. These results have implications in the management of thrombosis in APS and may have applications for pregnant patients with a history of APS.

Animals↗

Origin of antiphospholipid antibodies.

Our observations and those from others give further support to our hypothesis that "autoimmune aPL" may be generated by immunization with products from bacteria or viruses after incidental exposure or infection. We also were able to generate an APS-like syndrome in a strain of mice susceptible to autoimmunity, indicating that other factors such as genetic factors are likely to be involved in development of APS. Furthermore, not all aPL generated by immunization with bacterial or viral products were pathogenic. Based on the clinical experience and on the numerous reports indicating the presence of aPL in large number of infectious diseases, it may be expected that not all aPL produced during infection are pathogenic. We hypothesize that a limited number aPL induced by certain viral or bacterial products would be pathogenic in certain groups of predisposed individuals. Identification of those bacterial or viral agents may help to find strategies for the prevention of production of "pathogenic" aPL. Alternatively, free peptides may be used to induce tolerance against aPL production.

Animals↗

Mechanisms of pregnancy loss in antiphospholipid syndrome.

Antiphospholipid antibodies are associated with intrauterine fetal growth retardation and fetal distress leading to premature birth or fetal death. These complications are caused by uteroplacental insufficiency that is the result of multiple placental thromboses, infarcts, and spiral artery vasculopathy, which are almost certainly provoked by the hypercoagulable state induced by aPL antibodies. Available data indicate that the thrombogenic function of aPL antibodies involves their general effect on platelets, endothelial cells, anticoagulant mechanisms, and fibrinolytic pathways, as well as their local effect on trophoblasts and villi cells, leading to reduction of annexin V (placental anticoagulant protein-I) production and inhibition of its anticoagulant function.

Abortion, Spontaneous↗

Testing for antiphospholipid antibodies: problems and solutions.

The first aCL test was developed in 1983 and subsequently standardized. Although new and more specific tests have become available, the aCL ELISA and the LA tests are still the first choice to be used in diagnosis of APS. Newer tests such as the anti beta 2 GP1 ELISA and the APhL ELISA Kit (Louisville APL Diagnostics) use somewhat different antigens and likely provide a more specific (and possibly more reliable) diagnosis of APS while retaining good-to-excellent sensitivity. Other tests, such as ELISA for prothrombin antibodies and annexin V antibodies, are still undergoing development and will require standardization and extensive evaluation. We thank Dr Isabel Abreu and Dr Mittermeyer B. Santiago for performing some of the studies reported in this review.

Antibodies, Anticardiolipin↗

New developments in viral peptides and APL induction.

The associations of antiphospholipid antibodies (aPL) with thrombosis and fetal death are well recognized, but the mechanism(s) that induce their production are not. We demonstrated induction of pathogenic aPL antibodies by immunization with foreign beta(2)-GPI, or synthetic peptides representing the PL-binding site of the beta(2)-GPI. These antibodies caused intrauterine fetal death and transverse myelopathy due to spinal cord infarction in mice, and activated endothelial cells in vitro. We also introduced aPL in mice by immunization with PL-binding viral peptides and observed their pathogenic effects. This study demonstrated that pathogenic effects of aPL antibodies induced by immunization with a human CMV-derived PL-binding synthetic peptide. We hypothesize that in APS patients aPL is induced by beta(2)-GPL-like PL-binding products of human common bacteria or viruses.

Amino Acid Sequence↗

Early and late endosomal compartments of Entamoeba histolytica are enriched in cysteine proteases, acid phosphatase and several Ras-related Rab GTPases.

Pure populations of early and late endosomes of Entamoeba histolytica were isolated by magnetic fractionation and characterized. It was shown that these vesicles were enriched in acid phosphatase and cysteine protease activities. An important virulence factor, a 27-kDa cysteine protease, was also enriched in early and late endosomes of E. histolytica. These data suggest that E. histolytica hydrolases reside in compartments that are part of or communicate with the endosomal pathway. To begin to identify the role of Rab GTPases in E. histolytica, an oligonucleotide approach was employed to screen an E. histolytica cDNA library for genes encoding Rab-like proteins. cDNAs encoding a Rab11-like protein (EhRab11) and a novel Rab protein (EhRabA) were isolated and characterized. The EhRab11 cDNA predicts a polypeptide of at least 206 amino acids with a molecular mass of at least 23.2 kDa. Phylogenetic analysis and alignment of EhRab11 with other Rab proteins demonstrated that EhRab11 shared significant homology at the amino acid level with Rab11-like proteins from a number of other eukaryotes, suggesting that EhRab11 is a Rab11 homolog for E. histolytica. The EhRabA clone predicts a polypeptide of 219 amino acids with a molecular mass of at least 24.5 kDa. EhRabA shared only limited homology at the amino acid level with other Rab proteins, suggesting that it is a novel member of this family of GTP-binding proteins. Finally, Western blot analysis demonstrated that EhRab11 and a previously described Rab7-like GTPase from E. histolytica was enriched in magnetically purified endosomal compartments of this organism.

Acid Phosphatase↗

GDKV-induced antiphospholipid antibodies enhance thrombosis and activate endothelial cells in vivo and in vitro.

Antiphospholipid (aPL) Abs are associated with thrombosis, pregnancy loss, and thrombocytopenia in patients with systemic lupus erythematosus or primary antiphospholipid syndrome (APS). beta2-Glycoprotein I (beta2GPI), a phospholipid-binding serum protein, is involved in aPL binding to phospholipids. aPL can be generated in mice by immunization with beta2GPI, and these Abs are thrombogenic and cause pregnancy loss in mice. The objective of this study is to determine whether aPL induced by immunization with the phospholipid-binding site of beta2GPI are thrombogenic and whether they activate endothelial cells (EC) in vivo and in vitro. Murine monoclonal aPL were generated from spleen cells of a mouse immunized with GDKV, a synthetic 15-aa peptide spanning Gly274-Cys288 in the fifth domain of human beta2GPI, which represents the phospholipid-binding site of beta2GPI. The Abs generated had aPL and anti-beta2GPI activities. The effect of these Abs on thrombus formation and on EC activation in vivo was determined using a mouse model of thrombosis and microcirculation that enables examination of the adhesion of leukocyte to EC as an indication of EC activation as well as adhesion molecule expression using in vitro ELISA analysis. Mice injected with this monoclonal aPL showed a significant increase in leukocyte sticking and also produced larger thrombi that persisted longer. Exposure to GDKV-induced aPL for 4 h significantly increased surface Ag expression of E-selectin, ICAM-1, and VCAM-1. These data indicate that aPL induced by immunization with the phospholipid binding site of beta2GPI are thrombogenic and activate endothelial cells.

Adjuvants, Immunologic↗

Antiphospholipid antibodies from antiphospholipid syndrome patients activate endothelial cells in vitro and in vivo.

BACKGROUND: Antiphospholipid (aPL) antibodies are associated with thrombosis in patients diagnosed with antiphospholipid syndrome (APS) and enhance thrombus formation in vivo in mice, but the mechanism of thrombosis by aPL is not completely understood. Although aPL antibodies have been shown to inhibit protein C activation and activate endothelial cells (ECs) in vitro, no study has examined whether these antibodies activate ECs in vivo. Therefore, human affinity-purified aPL (ap aPL) antibodies from APS patients were tested in a mouse model of microcirculation using the cremaster muscle that allows direct microscopic examination of thrombus formation and adhesion of white blood cells (WBCs) to ECs as an indication of EC activation in vivo. Adhesion molecule expression on human umbilical vein endothelial cells (HUVECs) after aPL exposure was performed to confirm EC activation in vitro. METHODS AND RESULTS: All 6 ap aPL antibodies significantly increased the expression of VCAM-1 (2.3- to 4.4-fold), with one of the antibodies also increasing the expression of E-selectin (1.6-fold) on HUVECs in vitro. In the in vivo experiments, each ap aPL antibody except for 1 preparation increased WBC sticking (mean number of WBCs ranged from 22.7 to 50.6) compared with control (14.4), which correlated with enhanced thrombus formation (mean thrombus size ranged from 1098 to 6476 versus 594 microm2 for control). CONCLUSIONS: Activation of ECs by aPL antibodies in vivo may create a prothrombotic state on ECs, which may be the first pathophysiological event of thrombosis in APS.

Adult↗