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Alexander Woywodt

Publications and source records attributed to Alexander Woywodt.

At least 19 recordsLinked to original sources

Engulfment of apoptotic cells by microvascular endothelial cells induces proinflammatory responses.

Circulating endothelial cells (CECs) have been detected in a variety of vascular disorders, but their interactions with healthy endothelium remain unknown. The aim of this study was to evaluate the response of human endothelial cells (ECs) to apoptotic or necrotic ECs in an in vitro model and to delineate pathogenetic pathways. Here we show that incubation of the human microvascular endothelial cell line (HMEC-1) with apoptotic ECs resulted in increased expression of chemokines and enhanced binding of leukocytes to HMEC-1 cells, whereas exposure of HMEC-1 cells to necrotic ECs caused no changes in leukocyte-binding affinity. Both apoptotic and necrotic cells were bound and engulfed by HMEC-1 cells and primary human umbilical vein endothelial cells (HUVECs). We therefore suggest that exposures to apoptotic and necrotic ECs induce different patterns of chemokine synthesis and leukocyte adhesion in healthy ECs. These data indicate that CECs are not only markers of vascular damage but may induce proinflammatory signals in the endothelium.

Apoptosis↗

Circulating endothelial cells: a novel marker of endothelial damage.

Circulating endothelial cells (CECs) were first described over 30 years ago in smears of peripheral blood. Since then, more sophisticated techniques for CEC isolation have become available. In particular, immunomagnetic isolation and fluorescence-activated cell sorting (FACS) have been employed with success. We provide a short historical perspective and a comprehensive review on the subject. We review isolation and enumeration of CECs with an emphasis on CD146-driven immunomagnetic isolation and FACS. We describe, in great detail, advantages and pitfalls of both approaches and compare their specificity. Moreover, we provide a comprehensive list of clinical studies in this field and describe the possible clinical use of CECs. We also describe the phenotype of these cells and list typical surface markers. In addition, we review the phenotype of CECs and discuss mechanisms of detachment. We speculate about potential interactions between CECs and other cell subsets. We also describe other serum markers of endothelial damage and compare CECs with these markers. Finally, we highlight differences between circulating endothelial cells and endothelial progenitor cells. In summary, CECs must now be regarded as a sensitive and specific marker of endothelial damage. We emphasize that use of CECs in a clinical setting is on the horizon and pathogenetic clues may also be obtained.

Blood Cells↗

Circulating endothelial cells as a prognostic marker in thrombotic microangiopathy.

BACKGROUND: Circulating endothelial cells (CECs) are a reliable marker of disease activity in a variety of vascular disorders. Damage to microvascular endothelial cells is a hallmark of thrombotic microangiopathy (TMA). The aim of this study is to identify and count CECs during the course of TMA and evaluate whether cell numbers may serve as a prognostic marker in patients undergoing plasma exchange. METHODS: Fifteen patients (8 women, 7 men) aged 31 to 66 years with TMA of different causes were studied before and after 4 sessions of plasma exchange. CECs were isolated by using anti-CD146-driven immunomagnetic isolation and counted after staining with Ulex Europaeus lectin-1. RESULTS: Numbers of CECs were markedly elevated in all patients before treatment (64 to 672 CEC/mL; mean, 320 +/- 205 CEC/mL) compared with healthy controls (0 to 16 CEC/mL; mean, 6.4 +/- 4.2 CEC/mL; P < 0.001). Patients with a favorable outcome had significantly greater initial CEC levels (mean, 426 +/- 175 CEC/mL; P < 0.001), and cell numbers decreased significantly after 4 treatments of plasma exchange (mean, 101 +/- 53 CEC/mL; P = 0.001). Patients with disease unresponsive to plasma exchange presented with lower initial CEC levels (mean, 108 +/- 36 CEC/mL), and numbers failed to decrease after plasma exchange (mean, 114 +/- 57 CEC/mL; P = 0.827). CONCLUSION: Markedly elevated numbers of CECs reflect severe and widespread endothelial damage in patients with TMA. Cell numbers at presentation and their degree of decrease after 4 sessions of plasma exchange could provide important prognostic clues.

Adult↗

Circulating endothelial cells. Biomarker of vascular disease.

Recent research has recognised new populations of non-hematopoietic cells in the blood. One of these, circulating endothelial cells (CECs), often defined by the expression of membrane glycoprotein CD146, are rarely found in the blood in health, but raised numbers are present in a wide variety of human conditions, including inflammatory, immune, infectious, neoplastic and cardiovascular disease, and seem likely to be evidence of profound vascular insult. An additional population are endothelial progenitor cells, defined by the co-expression of endothelial and immaturity cell surface molecules and also by the ability to form colonies in vitro. Although increased numbers of CECs correlate with other markers of vascular disease, questions remain regarding the precise definition, cell biology and origin of CECs. For example, they may be damaged, necrotic or apopototic, or alive, and could possess procoagulant and/or proinflammatory properties. However, since these cells seem to be representative of in situ endothelium, their phenotype may provide useful information. Indeed, whatever their phenotype, there is growing evidence that CECs may well be a novel biomarker, the measurement of which will have utility in various clinical settings related to vascular injury. Despite this promise, progress is impeded by the diversity of methodologies used to detect these cells. Accordingly, results are sometimes inconclusive and even conflicting. Nevertheless, increased CECs predict adverse cardiovascular events in acute coronary syndromes, suggesting they may move from being simply a research index to having a role in the clinic. The objective of the present communication is to condense existing data on CECs, briefly compare them with progenitor cells, and summarise possible mechanism(s) by which they may contribute to vascular pathology.

Animals↗

Serologic evidence of Chlamydia pneumoniae infection as a long-term predictor of cardiovascular death in renal transplant recipients.

BACKGROUND: Cardiovascular disease is the main cause of death with a functioning graft in renal transplant recipients. Elevated levels of C-reactive protein (CRP) and evidence of chronic Chlamydia pneumoniae infection have been linked to cardiovascular disease and survival in patients with normal renal function and patients with end-stage renal disease on dialysis. So far, no such data have been available in renal transplant recipients. METHODS: CRP, immunoglobulin (Ig)G and IgA antibodies to C. pneumoniae, and classic risk factors were compiled in 143 patients who underwent renal transplantation between January 1989 and April 1991. Samples were collected at transplantation, 1 year later, and at study end. Cardiovascular disease, death, and graft loss were documented during follow-up. RESULTS: A total of 44 patients died during a mean follow-up of 10 years. Cardiac events were responsible for 37% of deaths. Age, gender, number of antihypertensive drugs, and seropositivity for IgG and IgA antibodies to C. pneumoniae, but not CRP levels, were significantly associated with cardiac death. C. pneumoniae serology and CRP levels, however, did not influence graft survival. Age, presence of diabetes, calcium phosphorus ion product, number of antihypertensive drugs, serum creatinine at 1 year, and presence of chronic rejection were all negatively correlated with graft survival. CONCLUSIONS: Serologic evidence of chronic C. pneumoniae infection is associated with mortality as the result of cardiovascular disease in renal transplant recipients. CRP serum levels do not predict cardiac death in renal transplant recipients, in contrast with patients with normal renal function and patients on dialysis.

Adult↗

Circulating endothelial cells as a marker of endothelial damage in allogeneic hematopoietic stem cell transplantation.

Damage to endothelial cells is the common feature of vascular disorders associated with hematopoietic stem cell transplantation (HSCT). Elevated numbers of circulating endothelial cells reflect the extent of endothelial damage in a variety of disorders but their use in HSCT has not been investigated so far. We studied 39 patients undergoing allogeneic HSCT with different conditioning regimens and 22 healthy controls. Circulating endothelial cells were enumerated with immunomagnetic isolation during the course of HSCT. After conditioning, cell numbers were significantly elevated (median 44 cells/mL) compared with baseline (median 16 cells/mL) and controls (median 8 cells/mL). Patients who received radiation had an earlier peak when compared with patients who received chemotherapy. Patients who received reduced-intensity conditioning had significantly lower cell numbers (median 24 cells/mL) than those who received standard conditioning. These observations provide a novel marker to investigate microvascular endothelial damage and the effects of different conditioning regimens in patients undergoing HSCT.

Adult↗

No association of G-463A myeloperoxidase gene polymorphism with MPO-ANCA-associated vasculitis.

BACKGROUND: The activation of neutrophils and monocytes by ANCA, resulting in the release of reactive oxygen species and proteases like myeloperoxidase (MPO), is essential to the pathogenesis of ANCA-associated vasculitis. As the A allele of the G-463A MPO gene polymorphism is associated with diminished activity of MPO, it is conceivable that the presence of this allele protects against MPO-ANCA-associated vasculitis. METHODS: Allelic frequencies of the G-463A polymorphism were studied in 119 ANCA-associated vasculitis patients, 48 with MPO-ANCA and 71 with proteinase 3 (PR3)-ANCA. RESULTS: Allelic frequencies of MPO G-463A promoter polymorphism did not differ between MPO-ANCA- and PR3-ANCA-associated vasculitis patients. Moreover, allelic distribution was similar to that of the normal population. CONCLUSIONS: The data suggest that G-463A polymorphism does not seem to contribute to either MPO-ANCA- or PR3-ANCA-associated vasculitis formation.

Adult↗

Circulating endothelial cells and vasculitis.

Systemic vasculitides are a heterogeneous group of disorders with inflammation of blood vessels as their common pathogenetic hallmark. They often pose difficulties with regard to diagnosis and monitoring of disease activity, both at the initial presentation and during follow-up. Novel markers of disease activity are therefore eagerly awaited. Circulating endothelial cells have recently emerged as one such marker and we have demonstrated their clinical use in ANCA-associated small-vessel vasculitis. Not only entire cells but also endothelial microparticles can be detected in vasculitis although their use is not established to date. Repair of endothelial damage is believed to occur via endothelial progenitor cells and their precise role in vasculitis is also unclear at present. Circulating endothelial cells may complement, rather than replace, conventional markers of disease activity. The ultimate aim of our studies may thus be a panel of various laboratory markers for systemic vasculitis.

Biomarkers↗

Elevated numbers of circulating endothelial cells in renal transplant recipients.

BACKGROUND: Damage of microvascular endothelial cells is a salient feature of acute vascular rejection and chronic allograft nephropathy, yet specific blood markers of ongoing endothelial injury are currently unavailable. Circulating endothelial cells have recently been established as a novel marker of endothelial damage in a variety of vascular disorders. METHODS: We studied 129 renal transplant recipients who underwent percutaneous graft biopsy. Circulating endothelial cells were isolated with immunomagnetic anti-CD146-coated Dynabeads. Cells were stained with acridine and counted. To verify their endothelial origin, staining for Ulex europaeus lectin 1 (UEA-1) was performed in parallel. Twenty-one healthy controls were also studied. RESULTS: On biopsy, seven patients had acute vascular rejection, 15 patients had acute tubulointerstitial rejection, 14 patients had borderline rejection, and 93 patients had no rejection. Patients with acute vascular rejection had the highest cell numbers (72+/-39 cells/mL) when compared with all other patients (P<0.02). Regardless of their biopsy findings, however, all other renal transplant recipients had significantly higher numbers of circulating endothelial cells (25+/-20 cells/mL) than healthy controls (7+/-5 cells/mL, P<0.001). Finally, there was a significant correlation of cell numbers and serum cyclosporine A trough levels. By contrast, there was no correlation with serum creatinine, age, or the number of immunosuppressive drugs. CONCLUSIONS: The number of circulating endothelial cells is a novel marker of endothelial damage in renal transplant recipients. Further studies must now evaluate the origin of these cells, corroborate the clinical significance of our findings, and delineate the influence of calcineurin inhibitors.

Acute Disease↗

Circulating endothelial cells are a novel marker of cyclosporine-induced endothelial damage.

Microvascular endothelial cells play a key role in transplant immunology. They are also important targets for calcineurin inhibitors. We recently demonstrated elevated numbers of circulating endothelial cells in renal transplant recipients with and without rejection in comparison with healthy controls. Because these patients received either cyclosporine or tacrolimus, we speculated that endothelial damage from calcineurin inhibitors might be responsible for these findings. In the present study, we tested the hypothesis that treatment with calcineurin inhibitors leads to an increase in circulating endothelial cells. We studied 57 renal transplant recipients: 19 on a calcineurin inhibitor-free immunosuppressive regimen and 38 patients on a standard immunosuppressive regimen, including cyclosporine, and matched them for age and serum creatinine. Endothelial cells were isolated from peripheral blood with anti-CD-146-coated immunomagnetic Dynabeads and were counted by fluorescence microscopy. Patients with cyclosporine therapy had elevated numbers of circulating endothelial cells (median 26, range 12 to 82 cells/mL) compared with healthy controls (median 6, range 0 to 82 cells/mL; P<0.001). Patients without calcineurin inhibitor treatment had significantly lower cell numbers (median 12, range 0 to 32 cells/mL; P<0.003) and were not significantly different from normal, untreated controls. In conclusion, renal transplant recipients who do not receive calcineurin inhibitors have significantly lower numbers of circulating endothelial cells than their age- and creatinine-matched counterparts who receive these drugs. We suggest that elevated numbers of circulating endothelial cells indicate damage from calcineurin inhibitors in renal transplant recipients and that circulating endothelial cells are a novel marker of endothelial damage.

Adult↗

Circulating endothelial cells as markers for ANCA-associated small-vessel vasculitis.

BACKGROUND: Histological findings in small-vessel vasculitis associated with antineutrophil cytoplasmic antibodies (ANCAs) suggest that damaged endothelial cells undergo necrosis and detachment from the basement membrane. We postulated that isolation of these cells from peripheral blood might provide a novel marker of the disease and elucidate pathogenetic events. METHODS: 18 patients with active ANCA-associated vasculitis, 20 patients in remission, 20 healthy controls, 12 patients with infection, and 12 patients with glomerular disease not associated with ANCA were studied. Endothelial cells were isolated from peripheral blood by use of Dynabeads coated with antibodies against CD146, and were stained for von Willebrand factor (vWF), CD31, and Ulex Europaeus lectin 1 (UEA-1). Tissue-factor immunocytochemistry and assays for markers of apoptosis and necrosis were also done. FINDINGS: Few circulating endothelial cells were seen in healthy controls (0-20 cells/mL, median 5 cells/mL), patients with infection (0-16 cells/mL, median 8 cells/mL), and patients with non-ANCA glomerulonephritis (0-21 cells/mL, median 4 cells/mL). By contrast, large numbers of circulating endothelial cells were detected in patients with active vasculitis (20-5700 cells/mL, median 136 cells/mL, p<0.0001 when compared with healthy controls). Cell numbers fell substantially during 6 months of successful immunosuppressive treatment among those with active disease. Patients in remission had moderately raised cell numbers (0-60 cells/mL, median 16 cells/mL). 84% of cells obtained from patients with active disease stained positive for annexin/propidium iodide and 86% stained tissue factor positive, indicating a necrotic and procoagulant phenotype. INTERPRETATION: Circulating endothelial cells are a novel marker of active ANCA-associated small-vessel vasculitis. The clinical use of this tool and the pathogenic mechanisms leading to these findings require further investigation.

Adult↗

A swollen neck.

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Adolescent↗