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Biomedical subjects

B Weksler

Publications and source records attributed to B Weksler.

At least 19 recordsLinked to original sources

Structure and function of a vimentin-associated matrix adhesion in endothelial cells.

The alpha4 laminin subunit is a component of endothelial cell basement membranes. An antibody (2A3) against the alpha4 laminin G domain stains focal contact-like structures in transformed and primary microvascular endothelial cells (TrHBMECs and HMVECs, respectively), provided the latter cells are activated with growth factors. The 2A3 antibody staining colocalizes with that generated by alphav and beta3 integrin antibodies and, consistent with this localization, TrHBMECs and HMVECs adhere to the alpha4 laminin subunit G domain in an alphavbeta3-integrin-dependent manner. The alphavbeta3 integrin/2A3 antibody positively stained focal contacts are recognized by vinculin antibodies as well as by antibodies against plectin. Unusually, vimentin intermediate filaments, in addition to microfilament bundles, interact with many of the alphavbeta3 integrin-positive focal contacts. We have investigated the function of alpha4-laminin and alphavbeta3-integrin, which are at the core of these focal contacts, in cultured endothelial cells. Antibodies against these proteins inhibit branching morphogenesis of TrHBMECs and HMVECs in vitro, as well as their ability to repopulate in vitro wounds. Thus, we have characterized an endothelial cell matrix adhesion, which shows complex cytoskeletal interactions and whose assembly is regulated by growth factors. Our data indicate that this adhesion structure may play a role in angiogenesis.

Antibodies, Monoclonal↗

Anti-endothelial cell antibodies from patients with thrombotic thrombocytopenic purpura specifically activate small vessel endothelial cells.

Thrombotic thrombocytopenic purpura (TTP) is an uncommon disease of an unknown etiology, characterized by consumptive thrombocytopenia, microangiopathic hemolytic anemia, fever and acute thrombotic complications, especially within the cerebral circulation. Although anti-endothelial cell antibodies (AECA) have occasionally been shown to be present in TTP, their role in the pathogenesis of the disease has never been ascertained. In the current study we demonstrated the pathogenic activity of affinity-purified anti-endothelial cell F(ab)2 antibodies (AECA/TTP) from four consecutive patients with active TTP. These AECA/TTP bound to and activated only microvascular endothelial cells (EC) and not large vessel EC. The specificity of AECA/TTP binding to microvascular EC was confirmed by competition assay employing membranes derived from small and large vessels EC. Activation included enhanced IL-6 and von Willebrand factor release from the EC followed by increased expression of adhesion molecules P-selectin, E-selectin and vascular cell adhesion molecule-1 on the EC, as evaluated by ELISA. Increased expression of adhesion molecules was followed by an increase in monocyte adhesion to EC. The level of soluble thrombomodulin (TM) also increased in the culture medium of activated microvascular EC upon exposure to AECA/TTP antibodies and was directly correlated to a decrease in cell-associated TM. Our data suggest that AECA/TTP directed against microvascular EC could play a pathogenic role in the development of endothelial injury in TTP that leads to thrombosis.

Antibody Specificity↗

Effects of tobacco smoke and benzo[a]pyrene on human endothelial cell and monocyte stress responses.

Smoking is an important risk factor for atherosclerosis. We compared tobacco smoke filtrate with benzo[a]pyrene (a prominent xenobiotic component of tobacco smoke) for the capacity to induce stress proteins and cause cell death in human monocytes and vascular endothelial cells, two cell types that are involved in the formation of atherosclerotic lesions. Exposure to freshly prepared filtrates of tobacco smoke induced in both monocytes and endothelial cells expression of the inducible heat shock protein (HSP)70 and heme oxygenase-1 (HO-1) and produced loss of mitochondrial membrane potential. Later, cell death by apoptosis or necrosis occurred depending on the concentration of tobacco smoke. These toxic effects could be prevented by the antioxidant N-acetylcysteine. In contrast, exposure of these cells to benzo[a]pyrene alone evoked neither stress proteins nor mitochondrial damage but did induce cell death by necrosis. Thus our results indicate that tobacco smoke rapidly induces complex oxidant-mediated stress responses in both vascular endothelial cells and circulating monocytes that are independent of the benzo[a]pyrene content of the smoke.

Acetylcysteine↗

Anti-endothelial cell antibodies (AECA) in systemic sclerosis--increased sensitivity using different endothelial cell substrates and association with other autoantibodies.

OBJECTIVE: One of the main features of systemic sclerosis (SSc) is vascular damage, the mechanism of which is not understood. In the present study we examined whether screening of SSc patients for different anti-endothelial cells antibodies (AECA) of various origins increase the sensitivity of AECA detection in SSc patients. Secondary aim was an attempt to correlate AECA with other common autoantibodies. MATERIALS & METHODS: 478 SSc patients were studied for the presence AECA, anti-cardiolipin (aCL), anti-dsDNA, anti-heparin (AHA), anti-pyruvate dehydrogenase (PDH) and anti-PDC-E2 autoantibodies. AECA levels were detemined using human umbilical vein EC (HUVEC), bone marrow EC (BMEC), EC hybridoma (EA.hy 926) and Kaposi sarcoma EC (KS). RESULTS: Positive AECA were found in 49.5% of SSc patients (27.1% HUVEC; 34.3% BMEC; 26.3% EaHy 926 and 22.7% KS). The highest percent reactivity of AECA was obtained using microvascular BMEC. When combining BMEC and either other cell lines the reactivity ranged from 41.4% to 46%. A significant association between AECA on the one hand and AHA (p<0.001)) and anti-PDH (p<0.05) on the other was secn. Cross-reactivity with anti-PDC-E2 was excluded by inhibition tests, but AHA and anti-PDH may be part of the spectrum of AECA. CONCLUSIONS: Since false-negative AECA may result from lack of expression of various antigens on a specific EC, analysis of AECA in SSc patients requires using several EC types, including microvascular EC.

Antibodies, Anticardiolipin↗

CD40-ligand stimulates myelopoiesis by regulating flt3-ligand and thrombopoietin production in bone marrow stromal cells.

CD40 ligand (CD40L)/CD40 interactions play a central role in T-cell-dependent B-cell activation as previously shown by in vitro studies, the phenotype of CD40L knockout mice and the defective expression of CD40L in patients who have X-linked immunodeficiency with hyper-IgM. The distribution of CD40 in cells other than of myeloid and lymphoid lineages has suggested additional functions for this receptor/ligand couple. Here we show that CD40L stimulates myelopoiesis with a noticeable effect on megakaryocytopoiesis in cocultures of hematopoietic progenitor cells and bone marrow stromal cells. These results suggest a mechanism by which T-cell or platelet-associated or soluble CD40L may regulate myelopoiesis. (Blood. 2000;95:3758-3764)

Animals↗

Expression of Flt3-ligand by the endothelial cell.

Flt3-ligand (FL) is a cytokine that is of paramount importance in the proliferation of primitive hematopoietic progenitors. In this study, we show that endothelial cells (EC) produce large amounts of soluble FL and express a membrane-bound form of the molecule. Bone marrow microvascular EC also produce FL, suggesting that EC are an important source of FL in the bone marrow. High concentrations of FL in EC supernatants contrast with its undetectable levels in long-term bone marrow cultures. A single mRNA for FL is detected, suggesting that soluble FL derives from the membrane-bound species by proteolytic release. FL mRNA is stable with a half-life of about 3 h. II-1alpha increases FL mRNA levels and membrane and soluble FL expression. Glucocorticoids, known inhibitors for many hematopoietic growth factors do not down-regulate the expression of FL. On the contrary, GC increase the expression of both species of FL. The neutralization of FL in cocultures EC/ hematopoietic progenitors results in an acceleration of the maturation of the progenitors. IFN-alpha, MIP-1 alpha and TGF-beta stimulate production of membrane-bound and soluble FL. This stimulation is essential to explain their modulatory effect on the generation of clonogenic cells in cocultures EC/hematopoietic progenitors. Leukemia (2000) 14, 153-162.

Base Sequence↗

Enhanced endothelial cell apoptosis in splenic tissues of patients with thrombotic thrombocytopenic purpura.

Idiopathic thrombotic thrombocytopenic purpura (TTP) is a thrombotic microangiopathy of obscure etiology. The fundamental pathologic lesion is a hyaline thrombus composed of platelets and some fibrin accompanied by endothelial cell proliferation and detachment, in the absence of an inflammatory response. We have previously demonstrated that plasmas from patients with both idiopathic TTP and a related disorder, sporadic hemolytic-uremic syndrome (HUS), induce apoptosis and expression of the apoptosis-associated molecule Fas (CD95) in vitro in those lineages of microvascular endothelial cells (MVECs) that are affected pathologically. We now demonstrate the presence of enhanced MVEC apoptosis in splenic tissues from patients with TTP, documented by terminal deoxynucleotidyl-transferase-mediated dUTP nick-end labeling (TUNEL) and morphology. This is accompanied by elevated Fas expression. It contrasts with the absence of apoptosis in splenic tissues obtained after splenectomy for trauma or immune thrombocytopenic purpura. TUNEL-positive cells, identified by immunohistochemistry as MVECs or macrophages, presumably engulfing apoptotic ECs, are noted in numerous areas, including those apart from microthrombi. Thus, it is unlikely that EC apoptosis is simply a sequela of thrombus formation. Based on these data, we propose that MVEC apoptosis is of pathophysiologic significance in idiopathic TTP/sporadic HUS.

Adolescent↗

Monoclonal anti-endothelial cell antibodies from a patient with Takayasu arteritis activate endothelial cells from large vessels.

OBJECTIVE: To create monoclonal anti-endothelial cell antibodies (mAECA) from a patient with Takayasu arteritis to evaluate their ability to activate human umbilical vein endothelial cells (HUVEC), and to characterize the mechanism of EC activation. METHODS: A panel of mAECA was generated from peripheral blood lymphocytes of a patient with Takayasu arteritis, using Epstein-Barr virus transformation. Activity against macrovascular EC (HUVEC) and microvascular EC (human bone marrow EC immortalized by SV40) antigens was detected by enzyme-linked immunosorbent assay. Inhibition studies were used to select the monoclonal antibodies (mAECA) which share the same EC epitope binding specificity as the total IgG-AECA from the Takayasu arteritis patient. The binding of the mAECA to human aortic EC was studied by immunohistochemistry. The secretion levels of interleukin-6 (IL-6) and von Willebrand factor (vWF) were determined, to serve as markers for EC activation. The activated EC were examined for the adherence of a monocytic cell line (U937), as well as for expression of vascular cell adhesion molecule 1, intercellular adhesion molecule 1, and E-selectin. In addition, nuclear extracts of the mAECA-treated EC were analyzed for the induction of translocation of nuclear factor kappaB (NF-kappaB), using a specific NF-kappaB oligoprobe in an electrophoretic mobility shift assay. RESULTS: Six mAECA were selected, the mixture of which produced 100% inhibition of binding of the original IgG (from the patient with Takayasu arteritis) to HUVEC. All mAECA possessed high activity against macrovascular EC, but none had significant antimicrovascular EC activity. The mAECA, but not normal human IgG, had anti-human aortic EC activity. Four of the 6 mAECA activated EC, manifested by increased IL-6 and vWF secretion. The 4 mAECA induced EC expression of adhesion molecules and increased adhesion of U937 monocytic cells to EC. In addition, these mAECA stimulated the nuclear translocation of the NF-kappaB transcription factor. CONCLUSION: Our findings suggest that AECA may directly stimulate EC in Takayasu arteritis through elevation of adhesion molecule expression associated with NF-kappaB activation and adhesion of monocytes, and may therefore play a pathogenic role in the development of the vasculopathy in Takayasu arteritis.

Adult↗

Up-regulation of endothelial cell binding proteins/receptors for complement component C1q by inflammatory cytokines.

Endothelial cells express a variety of receptor systems involved in humoral defense, including receptors for the collagen-like and globular domains of the complement component C1q, designated cC1qR and gC1qR, respectively. In the present study a microvascular endothelial cell line was used to test the hypothesis that expression of these C1q-binding proteins may be affected by vascular inflammatory reactions. The results demonstrate that the expression of both cC1qR and gC1qR by bone marrow vascular endothelial cells is up-regulated by inflammatory mediators, interferon-gamma, tumor necrosis factor-alpha, and lipopolysaccharide (Escherichia coli, 055:B5) in a dose- and time-dependent manner, as detected by enzyme-linked immunosorbent assay. cC1qR and gC1qR expression increased significantly (P < .05) within 4 to 7 hours and doubled after 22 hours of stimulation. 3H-thymidine incorporation studies and direct cell counts confirmed that increased C1qR expression was not due to increased cell proliferation. Northern blot analysis revealed that the up-regulation of cC1qR and gC1qR protein expression was preceded by increases in corresponding mRNA levels, suggesting increased gene transcription. Indeed C1qR mRNA up-regulation was prevented by actinomycin D, and C1qR protein synthesis was inhibited by cycloheximide. Bone marrow vascular endothelial cell exposure to C1q, however, did not alter cC1qR or gC1qR expression, but up-regulation of the leukocyte adhesion molecule ICAM-1 was noted in the presence of aggregated C1q. The up-regulation of C1qR by inflammatory mediators and the ability of C1q itself to increase ICAM-1 expression suggest a potential role for these binding sites in vascular inflammation and immune injury.

Blotting, Northern↗

Characterization of the response of human bone marrow endothelial cells to in vitro irradiation.

Endothelial cell dysfunction is a classic consequence of radiation damage. Bone marrow endothelial cells (BMEC) are a critical component of the stroma in the regulation of haemopoiesis. In animal models, radiation-induced injury of BMEC has been described and a role for BMEC in haemopoietic regeneration after irradiation has been suggested. However, functions of BMEC involved in the haemopoietic regeneration have not been assessed. Therefore we studied the functional response of human BMEC to irradiation using the transformed human BMEC line (TrHBMEC) irradiated with 2. 5 or 10Gy. Our results showed a time- and a dose-dependent increase in damage to irradiated TrHBMEC measured by a decreased number of adherent cells which correlated with increased apoptosis and augmented release of soluble ICAM-1 and von Willebrand factor. 2 Gy irradiated TrHBMEC expressed more ICAM-1 on their surface than non-irradiated cells, whereas no change in VCAM-1, E-selectin and PECAM-1 expression was observed. An increased production of G-CSF, GM-CSF, IL-8, IL-6, IL-1alpha, IL-11, MIP-1alpha and SCF and no production of LIF, TNF-alpha, TPO and IL-3 by 2 Gy irradiated TrHBMEC was observed. The haemopoietic supportive function of TrHBMEC was not altered after a 2 Gy exposure. These results suggest that although radiation induces endothelial cell damage, irradiated cells still support the proliferation and the differentiation of CD34+ haemopoietic cells.

Apoptosis↗

Anti-endothelial cell antibodies in the sera of hyperprolactinemic women.

Prolactin (PRL) is closely associated with autoimmune diseases in animal models and humans, and several disease-related autoantibodies were reported in increased titers in patients with hyperprolactinemia (HPRL). We studied the presence of anti-endothelial cell antibodies (AECA) and other autoantibodies in sera of female patients with HPRL. Sera from 25 HPRL patients and 10 healthy female controls were tested for AECA (against both macrovascular and microvascular endothelial cell antigens), anti-dsDNA, and anti-cardiolipin (anti-CL) using ELISA. Sera were considered positive for the autoantibody when the optical density (OD) value was more than 3 s.d. above the mean of the OD in normal controls. Sera from 13 patients were obtained repeatedly during dopaminergic anti-PRL treatment, to relate PRL level or anti-PRL treatment with the autoantibody levels. Elevated micro and/or macrovascular AECA were observed in sera from 19/25 patients (76%). Elevated titers of anti-CL Abs, all beta2-GPI-dependent, and low levels of anti-dsDNA antibodies (Abs) were also observed in the HPRL patients. Inhibition studies showed that the affinity purified AECAs bound the endothelial cell (EC) antigens in a dose-dependent manner. Titers of AECA as well as anti-DNA and anti-CL autoantibodies did not correlate with PRL level nor with the use or duration of anti-PRL treatment. None of the HPRL patients presented clinical manifestations of autoimmune disease. We conclude that elevated levels of AECA as well as anti-DNA and anti-CL autoantibodies are frequent in hyperprolactinemia. Our results further support the association of PRL and autoimmunity, and may point to a relationship between AECA-associated diseases and HRPL. The presence of autoantibodies in patients with HPRL might portend an increased risk for future development of autoimmune disease.

Antibodies, Anticardiolipin↗

Isolated lung perfusion with antineoplastic agents for pulmonary metastases.

Lung metastases is a major cause of death in cancer patients. A technique of isolated lung perfusion that uses infusions of high doses of local chemotherapy was developed in an attempt to control local disease. This technique prevents systemic side effects. Animal experiments have been encouraging and human trials are pending.

Animals↗

Tumors of the diaphragm.

Primary tumors of the diaphragm are rare, and more than half are benign. Diaphragmatic tumors arise from mesenchymal tissue because of their mesodermal origin, and all varieties of these tumors have been reported. An interesting paraphenomenon is hypertrophic osteoarthropathy, most commonly seen in tumors of neurogenic origin. In most instances, these tumors are small and can be excised with a primary repair anticipated. Secondary involvement of the diaphragm from lung cancer is more common, but is rarely associated with a resectable lesion. Direct extension from other intra-abdominal or intrathoracic tumors can occur, commonly from mesothelioma, lung cancer, and hepatic carcinoma. In some cases, en bloc excision of the diaphragm is required, and in many instances diaphragmatic replacement is necessary using a variety of thin plastic prostheses, if a wide resection is required. Attempts at primary repair under tension, especially on the left side, may lead to diaphragmatic rupture and herniation.

Carcinoma, Hepatocellular↗

Characterization of signal transduction pathways in human bone marrow endothelial cells.

Human bone marrow endothelial cells immortalized with the T antigen of SV40 (TrHBMEC) have previously been characterized by us with regard to their properties that are similar to primary marrow endothelial cells and their utility as a model system. We now report that TrHBMEC express a recently discovered signal transduction molecule termed RAFTK (related adhesion focal tyrosine kinase), also called Pyk2 or CAK-beta. RAFTK, the second member of the focal adhesion kinase (FAK) family, is known to be activated in response to calcium flux in neuronal cells and integrin stimulation in megakaryocytes and B cells. We have studied the effects of cytokines on RAFTK activation in TrHBMEC. Treatment of TrHBMEC with the vascular endothelial growth factor (VEGF), as well as the VEGF-related protein (VRP), the recently identified ligand for the FLT-4 receptor, resulted in enhanced tyrosine phosphorylation of RAFTK. Similar changes in RAFTK phosphorylation were observed upon stimulation of TrHBMEC with basic fibroblast growth factor (bFGF) or oncostatin M (OSM). Stimulation of these cells with growth factors also resulted in an increase in RAFTK activity and the c-Jun NH2-terminal kinase (JNK). RAFTK coimmunoprecipitated with the cytoskeletal protein paxillin through its C-terminal proline-rich domain in TrHBMEC. These results suggest that, in marrow endothelium, activation of RAFTK by VEGF, VRP, OSM, and bFGF represents a new element in the signal transduction pathways used by these growth factors and likely acts to coordinate signaling from their surface receptors to the cytoskeleton, thereby modulating cell growth and function.

Bone Marrow↗

Thrombotic thrombocytopenic purpura and sporadic hemolytic-uremic syndrome plasmas induce apoptosis in restricted lineages of human microvascular endothelial cells.

Thrombotic thrombocytopenic purpura (TTP) and sporadic hemolytic-uremic syndrome (HUS) are thrombotic microangiopathies that occur in the absence of an inflammatory response. Ultrastructural features of tissues involved in TTP/sporadic HUS suggest an apoptotic process. Consistent with these findings, we observed that TTP plasmas induce apoptosis in primary human endothelial cells (EC) of dermal microvascular but not umbilical vein origin (Laurence et al, Blood 87:3245, 1996). We now document the ability of plasmas from both TTP and sporadic HUS patients, but not from a patient with childhood/diarrhea-associated HUS, to induce apoptosis and expression of the apoptosis-associated molecule Fas (CD95) in restricted lineages of microvascular EC. EC of small vessel dermal, renal, and cerebral origin were susceptible to induction of Fas and an apoptotic cell death. In contrast, microvascular EC of pulmonary and hepatic origin, as well as EC of a large vessel, coronary artery, were resistant to both processes. This dichotomy parallels the in vivo pathology of TTP/sporadic HUS, with notable sparing of the pulmonary and hepatic microvasculature. Apoptotic EC also had some features of a procoagulant phenotype, including depressed production of prostaglandin I2 (prostacyclin). These phenomena support the pathophysiologic significance of microvascular EC apoptosis in TTP, extend it to a related disorder (sporadic HUS), and suggest consideration of apoptosis inhibitors in the experimental therapeutics of these syndromes.

Adult↗

Prostaglandin H synthase 1 and 2 immunoreactivities in the bronchial mucosa of asthmatics.

Prostaglandin H synthases or cyclooxygenases 1 (PGHS-1) and 2 (PGHS-2) catalyze the conversion of arachidonic acid to prostaglandin endoperoxides, leading to the formation of prostaglandin and thromboxane mediators of inflammation. The expression of these enzymes in the respiratory epithelium has not been determined, although they may be relevant to the pathophysiology of inflammatory disorders such as asthma and chronic bronchitis (CB). We studied PGHS-1 and PGHS-2 immunoreactivity in bronchial biopsies obtained from 22 patients with chronic stable asthma, seven patients with CB, and 12 normal subjects. Both types of PGHS were mainly expressed in the epithelium (basal and ciliated cells), and PGHS-1 and PGHS-2 were found in 21 of 41 and 34 of 41 biopsies, respectively. We did not find any differences in PGHS expression between the patient populations. There were no correlations between any of the clinical parameters studied or the pathologic patterns and the presence and characteristics of the PGHS immunoreactivities. Thus, both PGHS enzymes are expressed in normal human respiratory epithelium and are not quantitatively upregulated in the main bronchi in stable asthma and CB.

Adrenal Cortex Hormones↗

Serum levels of GM-CSF are elevated in patients with thrombocytopenia.

Serum levels of GM-CSF, IL-3 and IL-6 were measured in patients with immune thrombocytopenia (ITP), non-immune thrombocytopenia (NIT), autoimmune haemolytic anaemia (AIHA) and neutropenia. 8/10 children with ITP had elevated serum levels of GM-CSF (mean 18.4 pg/ml) while thrombocytopenic, but only two had detectable levels (mean 4.5 pg/ml) after normalization of the platelet count. In patients with NIT a significant inverse correlation between platelet count and serum levels of GM-CSF was observed. IL-3 and IL-6 levels were not significantly elevated in thrombocytopenic patients and only two of the nine patients with either AIHA or neutropenia had detectable levels of GM-CSF. Thus, GM-CSF may play a role in the response of severe thrombocytopenia.

Adolescent↗