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Biomedical subjects

Diana Bonderman

Publications and source records attributed to Diana Bonderman.

9 recordsLinked to original sources

Medical conditions increasing the risk of chronic thromboembolic pulmonary hypertension.

Chronic thromboembolic pulmonary hypertension (CTEPH) is characterized by organized thromboemboli that obstruct the pulmonary vascular bed. Although CTEPH is a serious complication of acute symptomatic pulmonary embolism in 4% of cases, signs, symptoms and classical risk factors for venous thromboembolism are lacking. The aim of the present study was to identify medical conditions conferring an increased risk of CTEPH. We performed a case-control-study comparing 109 consecutive CTEPH patients to 187 patients with acute pulmonary embolism that was confirmed by a high probability lung scan. Splenectomy (odds ratio=13, 95% CI 2.7-127), ventriculo-atrial (VA-) shunt for the treatment of hydrocephalus (odds ratio=13, 95% CI 2.5-129) and chronic inflammatory disorders, such as osteomyelitis and inflammatory bowel disease (IBD, odds ratio=67, 95% CI 7.9-8832) were associated with an increased risk of CTEPH.

Adult↗

Bosentan therapy for inoperable chronic thromboembolic pulmonary hypertension.

BACKGROUND: Bosentan, an oral endothelin (ET)-A/ET-B receptor antagonist, is effective in the treatment of pulmonary arterial hypertension. OBJECTIVE: To investigate the safety and efficacy of bosentan therapy in patients with inoperable chronic thromboembolic pulmonary hypertension (CTEPH). DESIGN: Case series. SETTING: Pulmonary Hypertension Unit of the Medical University of Vienna, Austria. PATIENTS: Sixteen patients (9 women and 7 men; mean age +/- SD, 70 +/- 13 years). INTERVENTION: Off-label bosentan treatment over 6 months. MEASUREMENTS: Changes from baseline in liver enzymes, New York Heart Association (NYHA) functional class, 6-min walking distance (6-MWD), and serum amino-terminal pro-brain natriuretic peptide (proBNP). RESULTS: After 6 months, NYHA functional class improved by one class in 11 patients. Mean 6-MWDs increased from 299 +/- 131 m at baseline to 391 +/- 110 m at 6 months (p = 0.01). In parallel, proBNP decreased from 3,365 +/- 2,923 to 1,755 +/- 1,812 pg/mL (p = 0.01). Neither aspartate aminotransferase (25 +/- 2 U/L vs 25 +/- 2 U/L, p = 0.25) nor alanine aminotransferase (23 +/- 12 U/L vs 24 +/- 9 U/L, p = 0.57) changed significantly. Limitations of the study were uncontrolled design and small sample size. CONCLUSIONS: Our study suggests a beneficial effect of the oral dual ET receptor antagonist bosentan in patients with inoperable CTEPH, urging the need for a randomized, placebo-controlled trial.

Adult↗

Paediatric pulmonary vascular disease.

Pulmonary vascular disease comprises any congenital or acquired pathology of the intrinsic pulmonary vessels with the unique feature of pulmonary arteries carrying unsaturated blood and pulmonary veins carrying oxygenated blood. Pulmonary hypertension (PH) ensues when pulmonary vascular disease affects at least 50% of the capillary resistance vessels, i.e. pulmonary pre-acinar and intra-acinar arteries (so-called pre-capillary PH), or when pressure in the pulmonary venous system distal to the capillaries rises above a mean of 15 mmHg (so-called post-capillary PH). PH is defined by a mean pulmonary arterial pressure above 25 mmHg at rest. Vasoconstriction, remodelling and thrombosis of small pulmonary arteries lead to an increase in pulmonary vascular resistance. The consequence is failure of the afterload-intolerant right ventricle. In this review, pulmonary vascular disease in children will be addressed according to the 2003 World Health Organisation (Venice) classification of PH.

Child↗

[Pulmonary hypertension in rheumatic diseases].

Pulmonary hypertension (PH) is a progressive disease of the pulmonary vasculature characterized by increased vascular resistance and pressure overload of the right ventricle. Histologically, PH lungs demonstrate medial hypertrophy of small pulmonary arteries and proliferation of endothelial cells resulting in plexiform lesions. Recent studies have identified mutations of the bone morphogenetic protein receptor 2 (BMPR2) gene and the activin-receptor-like kinase 1 (ALK1) gene, that affect the transforming growth factor beta (TGF-beta) receptor superfamily, a group of transmembrane signaling molecules with serine-threonine kinase activity that are involved in the regulation of cell growth. Several lines of evidence indicate that the development of PH is a multi-hit process, where one of the events is having a gene mutation and another might be a circumstantial condition or other disease-modifying genes. It is unknown which mechanism that is critical in rheumatic diseases causes pulmonary vascular disease. PH is most frequently associated with systemic sclerosis (SS), systemic lupus erythematosus (SLE) and mixed connective tissue disease (MCTD), however, it is still a rare manifestation of these disorders. For example, approximately 10% of SS cases manifest pulmonary vascular disease. In recent years symptomatic vasodilator therapies have been employed and have been able to improve exercise capacity and survival in these patients.

Activin Receptors, Type I↗

Fibrinolytic balance of the arterial wall: pulmonary artery displays increased fibrinolytic potential compared with aorta.

Classic pulmonary thromboembolism research has documented that large pulmonary thromboemboli lyse spontaneously, suggesting potent fibrinolytic activity in human pulmonary artery (Pa). This concept conflicts with published animal studies in which the proximal Pa was reported to be devoid of tissue plasminogen activator (t-PA) expression. The current study used in situ hybridization protocols to demonstrate t-PA expression in samples of human main Pa (n = 30). Real-time PCR was used to demonstrate quantitatively that the levels of t-PA transcripts were higher than those of its primary regulator [ie, plasminogen activator-inhibitor 1 (PAI-1)] in the Pa samples. Immunologic and functional assays extended these observations by demonstrating that levels of t-PA antigen were higher than PAI-1 antigen, which resulted in the detection of free t-PA activity. This contrasted with the fibrinolytic balance of matched samples of aorta (n = 6) in which PAI-1 transcripts and antigen values were higher than the corresponding t-PA values, and only M(r) 110 kDa t-PA-PAI-1 complexes could be detected in functional assays. To assess the relative fibrinolytic contribution of the endothelial cell layer, Pa endothelial cells and aortic endothelial cells were scraped and propagated in culture for 20 +/- 6 days. Pa endothelial cell-conditioned media revealed increased t-PA/PAI-1 antigen ratios. Taken together, our data indicate that the balance between t-PA and PAI-1 is shifted in human main Pa to favor net PA activity.

Aorta, Thoracic↗

High prevalence of elevated clotting factor VIII in chronic thromboembolic pulmonary hypertension.

Chronic thromboembolic pulmonary hypertension (CTEPH) is an enigmatic disorder lacking signs, symptoms and classical risk factors for venous thromboembolism. The objective of the prospective case controlled study, carried out at the Pulmonary Hypertension Unit, University Hospital Vienna, Austria, was to investigate whether plasma FVIII is elevated in CTEPH patients. The study examined 122 consecutive patients diagnosed with CTEPH. Plasma FVIII was measured and compared with plasma FVIII of healthy controls (n = 82) and of patients with nonthromboembolic pulmonary arterial hypertension (PAH, n = 88). Results show that CTEPH patients had higher FVIII levels than controls (233 +/- 83IU/dl versus 123 +/- 40IU/dl, p < 0.0001) and PAH patients (158 +/- 61IU/dl, p < 0.0001). Plasma FVIII one year after surgery (212 +/- 94IU/dl) was statistically unchanged compared with preoperative values (FVIII: 226 +/- 88IU/dl, n = 25). FVIII > 230IU/dl was more prevalent in CTEPH patients (41%) than in controls (5%, p < 0.0001) and PAH patients (22%, p = 0.022). We can conclude that elevated plasma FVIII is the first prothrombotic factor identified in a large proportion of CTEPH patients.

Adult↗

Inhibition of interleukin-1beta convertase is associated with decrease of neointimal hyperplasia after coronary artery stenting in pigs.

Inhibition of IL-1beta convertase has been shown to decrease inflammation and apoptosis, which are features of the neointimal development after vascular interventions. The aim of our study was to reduce neointimal proliferation after stenting of the porcine coronary artery, using the irreversible IL-1beta convertase and caspase-1 inhibitor acetyl-tyrosinyl-valyl-alanyl-aspartyl-chloromethyl-ketone (Ac-YVAD-cmk). Before coronary stent implantation, 8 pigs received an intracoronary infusion of 50 mg Ac-YVAD-cmk into the left coronary artery (group 1, n = 8), while 8 animals served as untreated controls (group 2). After 4 weeks, coronary angiography and intracoronary ultrasound (IVUS) with 3D measurements were performed. IVUS revealed a smaller in-stent intimal volume (27.3 +/- 11.6 vs. 75.8 +/- 18.4 mm3, p < 0.005) and a decreased maximal percentage area stenosis (36.1 +/- 8.5 vs. 69.0 +/- 8.2%, p < 0.001) in group 1 vs. group 2. A smaller maximal neointimal thickness (0.63 +/- 0.28 vs. 1.75 +/- 0.94 mm, p < 0.005) and a decreased maximal neointimal area (2.14 +/- 1.29 vs. 5.03 +/- 1.92 mm2, p < 0.005), assessed by computerized planimetry, were found in group 1 vs. group 2. Lower apoptotic indices of the neointimal cells were observed in the treated animals (3.0 vs. 13.4% of total intimal cells, p < 0.05). The coronary arterial tissue IL-1beta level was significantly decreased in the animals treated with Ac-YVAD-cmk (0.254 +/- 0.162 vs. 0.463 +/- 0.307 pg/mg protein, p < 0.05), and exhibited a positive linear correlation (r = 0.581, p = 0.013) with the in-stent plaque volume. In conclusion, intracoronary administration of Ac-YVAD-cmk before coronary artery stenting results in significantly decreased neointimal hyperplasia due to the inhibition of local IL-1beta production and decreased neointimal apoptosis.

Amino Acid Chloromethyl Ketones↗

Coronary no-reflow is caused by shedding of active tissue factor from dissected atherosclerotic plaque.

Defined angiographically, no-reflow (NR) manifests as an acute reduction in coronary flow in the absence of epicardial vessel obstruction. One candidate protein to cause coronary NR is tissue factor (TF), which is abundant in atherosclerotic plaque and a cofactor for activated plasma coagulation factor VII. Scrapings from atherosclerotic carotid arteries contained TF activity (corresponding to 33.03 +/- 13.00 pg/cm(2) luminal plaque surface). Active TF was sedimented, indicating that TF was associated with membranes. Coronary blood was drawn from 6 patients undergoing coronary interventions with the distal protection device PercuSurge GuardWire (Traatek, Miami, FL). Fine particulate material that was recovered from coronary blood showed TF activity (corresponding to 91.1 +/- 62.16 pg/mL authentic TF). To examine the role of TF in acute coronary NR, blood was drawn via a catheter from coronary vessels in 13 patients during NR and after restoration of flow. Mean TF antigen levels were elevated during NR (194.3 +/- 142.8 pg/mL) as compared with levels after flow restoration (73.27 +/- 31.90 pg/mL; P =.02). To dissect the effects of particulate material and purified TF on flow, selective intracoronary injection of atherosclerotic material or purified relipidated TF was performed in a porcine model. TF induced NR in the model, thus strengthening the concept that TF is causal, not just a bystander to atherosclerotic plaque material. The data suggest that active TF is released from dissected coronary atherosclerotic plaque and is one of the factors causing the NR phenomenon. Thus, blood-borne TF in the coronary circulation is a major determinant of flow.

Angioplasty↗