BACKGROUND:Increasing volume of complex percutaneous endovascular procedures in highly anticoagulated patients generate a not negligible percentage of femoral pseudoaneurysms (PSA) with concomitant arteriovenous fistulas (AVF). While ultrasound-guided thrombin injection (UGTI) is the therapy of choice for PSA, concomitant AVF is regarded as a contraindication for UGTI, as venous thromboembolism is feared. In this retrospective, register-based cohort study, we report on and evaluate the use of UGTI for the treatment of PSA with AFV.PATIENTS AND METHODS:All patients (n = 523), who underwent UGTI for femoral PSA at the German Heart Centre Munich from January 2011 until January 2018, were retrospectively reviewed for the presence of a concomitant AVF and outcomes were recorded.RESULTS:Forty femoral PSA/AVFs treated by UGTI were identified. The mean enddiastolic arterial-flow-velocity above the AVF, an estimate of the AVF size, was 14.61 ± 1.7 cm/sec. The Majority of patients exhibited flow-velocities < 25 cm/sec (n = 31; 77.5 %) and were on either uninterrupted oral anticoagulation (n = 32; 80 %) or dual antiplatelet therapy (n = 8). Twenty-eight (70 %) PSA/AVFs could be successfully closed by UGTI. In eight multicompartmental PSAs, partial obliteration necessitated combined treatment with manual compression, while one partial occlusion was treated by observation. There were three failures, of which two underwent covered-stent-graft-implantation and one surgical repair. One DVT (2.5 %) occurred two days after UGTI in the by far largest AVF (60 cm/sec) included in the study. Besides two late PSA recurrences treated by surgery, no other complications were observed. AVF persisted in 65 %, all of them asymptomatic. The mean follow-up was 6 ± 15.5 months.CONCLUSIONS:UGTI appears to be a treatment option in femoral PSA/AVF, at least under oral anticoagulation in small fistulas with enddiastolic arterial-flow-velocities ≤ 25 cm/sec. However, caution is necessary in larger AVFs, which should remain a contraindication for UGTI.
Background Paclitaxel‐eluting balloon ( PEB ) angioplasty has superior efficacy compared with conventional balloon angioplasty ( BA ) for de novo lesions of superficial femoral artery ( SFA ). Studies investigating the angiographic and clinical performance of PEB angioplasty versus BA for in‐stent restenosis of SFA are limited. We performed a randomized trial to investigate angiographic and clinical performance of PEB versus BA for in‐stent restenosis of SFA . Methods and Results Patients with symptomatic in‐stent restenosis of SFA were randomly assigned to either PEB or BA at 2 centers in Munich, Germany. The primary end point was the percentage diameter stenosis at 6‐ to 8‐month follow‐up angiography. Secondary end points were the rate of binary restenosis at follow‐up angiography and target lesion revascularization, target vessel thrombosis, ipsilateral amputation, bypass surgery of the affected limb, and all‐cause mortality at 24‐month follow‐up. Seventy patients were assigned to PEB (n=36) or BA (n=34). Mean lesion length was 139±67 mm, and roughly one third of lesions were completely occluded at the time of the index procedure. At control angiography, the percentage diameter stenosis (44±33% versus 65±33%, P =0.01) and binary restenosis were significantly reduced with PEB versus BA (30% versus 59%, P =0.03). At 24‐month follow‐up, PEB was associated with a significant reduction of target lesion revascularization in comparison to BA (19% versus 50%, P =0.007). There was no difference with respect to other outcomes of interest. Conclusions In patients with in‐stent restenosis of SFA , a percutaneous therapy with PEB compared with BA has superior angiographic performance at 6 to 8 months and improved clinical efficacy up to 24‐month follow‐up. Clinical Trial Registration URL : http://www.clinicaltrials.gov . Unique identifier: NCT 01083394.
Background: Atherosclerosis in the superficial femoral artery is common in patients suffering from peripheral artery disease. Paclitaxel-eluting balloon (PEB) angioplasty, stenting, and directional atherectomy (DA) have provided new options for the treatment of superficial femoral artery disease; however, the comparative efficacy of these interventional strategies remains uncertain. Methods: One hundred and fifty-five patients with symptomatic peripheral artery disease due to de novo superficial femoral artery stenotic or occlusive lesions were randomized to treatment with plain balloon angioplasty (BA) followed by PEB angioplasty and stenting (n=48), BA and stenting (n=52), or DA with distal protection and bailout stenting (n=55). The primary end point of the study was percentage diameter stenosis after 6 months measured by angiography. Other end points included target lesion revascularization, thrombosis, ipsilateral amputation, binary restenosis, and all-cause mortality at 6 and 24 months. Results: Baseline and lesion characteristics were comparable in all groups with a mean lesion length of 65.9±46.8 mm and 56% total occlusions. At 6 months angiography, the percent diameter stenosis was significantly lower in patients treated by PEB angioplasty and stenting (34±31%) as compared with BA angioplasty and stenting (56±29%, P =0.009) or DA (55±29%, P =0.007). Similarly, binary restenosis was significantly lower after treatment with PEB and stenting as compared with BA and stenting or DA. Clinical follow-up at 24 months revealed a lower risk for target lesion revascularization after PEB angioplasty and stenting as compared with BA and stenting or DA. We found no difference in terms of target lesion thrombosis and mortality among groups, and no patient underwent amputation. Conclusions: Treatment of de novo superficial femoral artery lesions with PEB angioplasty and stenting is superior to BA angioplasty and stenting or DA in terms of angiographic diameter stenosis at 6 months and target lesion revascularization at 24 months. Clinical Trial Registration: URL: http://www.clinicaltrials.gov . Unique identifier: NCT00986752.
Insulin-like growth factors (IGFs) are mediators of growth hormone-induced metabolic and anabolic actions, but also regulate cell growth, differentiation, and apoptosis and show beneficial effects in acute myocardial ischemia. Since endothelial progenitor cells (EPCs) improve myocardial function after acute myocardial infarction, we sought to investigate whether overexpression of IGF-2 in expanded EPCs (eEPCs) further contributes to improvement in left ventricular function after myocardial infarction. EPCs were isolated from human cord blood and transduced by a retroviral vector expression of IGF-2 (IGF-2 eEPCs) or vector only. Expression levels were confirmed by RT-PCR. Vector only-transduced eEPCs or IGF-2 eEPCs were transplanted after ligation of the left anterior descending coronary artery in athymic nude rats. Transplantation of eEPCs improved the left ventricular ejection fraction after 2 weeks. Overexpression of IGF-2 further improved the left ventricular ejection fraction and reduced the myocardial infarction size. Immunohistological analysis revealed an increase in proliferating cells and a decrease in monocytes and apoptotic myocytes within the infarction zone after transplantation of IGF-2-overexpressing eEPCs. Transplantation of IGF-2-overexpressing eEPCs in acute myocardial infarction may improve early myocardial function by enhancing proliferation and limiting the inflammatory response and apoptosis.
OBJECTIVE:The aim of this study was to assess the impact of different access-site closure strategies, suture or closure device (Proglide, Abbott Vascular), on vascular and bleeding complications after percutaneous mitral valve repair (MitraClip, Abbott Vascular).BACKGROUND:Considering the high-risk profile in patients receiving percutaneous mitral valve repair, complications related to the large 24 Fr access sheath and its relation to the closure technique have not been evaluated so far.METHODS AND RESULTS:Between 2009 and 2015, 277 consecutive high-risk patients with severe mitral valve regurgitation (MR) underwent percutaneous mitral valve repair at our institution using Z-suture (n = 150) or closure device (n = 127) to close the access-site. Duplex sonography was performed in all patients. The primary endpoint was access-site related complications according to the Valve Academic Research Consortium (VARC) criteria. Secondary outcomes were the incidence of bleeding complications and mortality. Access-site related VARC2 major and minor complications were comparable after closure with Z-suture or closure device (2,7% vs 3.1%, P = 0.81 and 15,3% vs 15.7%, P = 0.92). Three patients (2%) in the suture and four patients (3.1%) in the closure device group experienced unplanned endovascular intervention at the access site. Access-site related major bleeding was observed in 4 (2.7%) suture and 4 (3.1%) closure device treated patients (P = 0.81). No access site related mortality occurred.CONCLUSION:Both Z-suture and closure device use after percutaneous mitral valve repair are feasible and safe. However, there is no benefit of one strategy over the other according to VARC2 major and minor complications.
Rivaroxaban and Apixaban, increasingly used for stroke prevention in non-valvular atrial fibrillation (AF), might impact platelet reactivity directly or indirectly. By inhibition of Factor Xa (FXa) they preclude not only generation of relevant thrombin amounts but also block signalling of FXa via protease activated receptors. However, weather FXa-inhibition affects platelet haemostasis remains incompletely known. One hundred and twenty-eight patients with AF on chronic anticoagulation with either Rivaroxaban or Apixaban for at least 4 weeks were included in the study. In a time course group (25 on Rivaroxaban, 13 on Apixaban) venous blood samples were taken before NOAC medication intake in the morning as well as 2 and 6 h afterwards. In 90 patients (Rivaroxaban n = 73, Apixaban n = 17) blood samples were drawn during left atrial RFA procedures before as well as 10 and 60 min after the first heparin application (RFA group). Platelet reactivity analyzed by whole blood aggregometry (Multiplate Analyzer, Roche) in response to ADP, Collagen, TRAP and ASPI (arachidonic acid) was not altered by Rivaroxaban or Apixaban neither in the time course nor in the RFA group. Moreover, soluble P-selectin, Thrombospondin, von Willebrand Factor and beta thromboglobulin plasma levels, measured by ELISA, showed no statistically significant changes in both clinical settings for either FXa-inhibitor. The present study fails to demonstrate any significant changes on platelet reactivity in patients with AF under chronic Rivaroxaban or Apixaban medication, neither for trough or peak levels nor in case of a haemostatic activation in vivo as depicted by RFA procedures.
Measuring the anticoagulant effect of heparin during radiofrequency ablation (RFA) in patients taking apixaban and rivaroxaban is challenging, since the activated coagulation time (ACT) does not seem to reflect the true anticoagulant activity of these drugs. We therefore evaluated coagulation properties of apixaban and rivaroxaban during RFA by different coagulation assays to better monitor periprocedural hemostasis.
Erythropoietin (EPO) has been suggested to promote cardiac repair after MI. However, the randomized, double-blind, placebo controlled REVIVAL-3 trial showed that short term high dose EPO in timely reperfused myocardium does not improve left ventricular ejection fraction after 6 months. Moreover, the study raised safety concerns due to a trend towards a higher incidence of adverse clinical events as well as a increase in neointima formation after treatment with EPO. The present study therefore aimed to assess the 5-year clinical outcomes.
SummaryTreatment with granulocyte-colony stimulating factor (G-CSF) mobilises cells from the bone marrow to the peripheral blood. Previous preclinical and early clinical trials may suggest that treatment with G-CSF leads to improved myocardial perfusion and function in acute or chronic ischaemic heart disease. In the REVIVAL-2 study we found that stem cell mobilisation by G-CSF does not influence infarct size, left ventricular function and coronary restenosis in patients with acute myocardial infarction (MI) that underwent successful percutaneous coronary intervention. The objective of the present analysis was to assess the impact of G-CSF treatment on seven-year clinical outcomes from the REVIVAL-2 trial. In the randomized, double-blind, placebo-controlled REVIVAL-2 study, 114 patients with the diagnosis of acute myocardial infarction were enrolled five days after successful reperfusion by percutaneous coronary intervention. Patients were assigned to receive 10 μg/kg G-CSF (n=56) or placebo (n=58) for five days. The primary endpoint for this long-term outcome analysis was the composite of death, myocardial infarction or stroke seven years after randomisation. The endpoint occurred in 14.3% of patients in the G-CSF group versus 17.2%> assigned to placebo (p=0.67). The combined incidence of death or myocardial infarction occurred in 14.3%> of the patients assigned to G-CSF and 15.5%> of the patients assigned to placebo (p=0.85). In conclusion, these long-term follow-up data show that G-CSF does not improve clinical outcomes of patients with acute myocardial infarction.
Background— Because of the risk of associated complications, femoral pseudoaneurysm (PSA) formation implies further treatment. Ultrasound-guided thrombin injection (UGTI) is becoming the accepted gold standard, but manual compression (MC) represents an established treatment option including PSAs not feasible for UGTI. This study aims to assess our experience in PSA treatment using MC or UGTI according to a potential algorithm based on morphological properties in a large patient cohort. Methods and Results— Between January 2007 and January 2011, a total of 432 PSAs were diagnosed in 29091 consecutive patients (1.49%) undergoing femoral artery catheterization. When compressible, small PSAs (<20 mm), PSAs without clearly definable neck, PSAs directly adjacent to vessels, and PSAs with concomitant arteriovenous fistula were referred to MC (n=145, 34%). All other PSAs were treated by UGTI (n=287, 66%). Follow-up duplex scans were performed within 12 to 14 hours after manual compression therapy and within 4 to 6 hours after UGTI or by the next morning and were available for 428 patients (99.1%). The overall success rate of our institutional therapeutic approach was 97.2%, which was achieved by 178 MC- and 357 UGTI-procedures, respectively. Procedural complications occurred in 5 cases (1.4%) after UGTI and in 3 cases (1.7%) after MC, respectively. The treatment algorithm was not successful in 12 patients, whereas 2 PSAs (0.5%) were successfully excluded by implantation of a covered stent-graft, and 10 patients necessitated surgical intervention (2.3%), which was associated with a high complication rate (30%). Conclusions— The presented treatment algorithm facilitates effective and safe PSA elimination.
Introduction: In the prospective, randomised, double-blind, placebo-controlled Regenerate Vital Myocardium by Vigorous Activation of Bone Marrow Stem Cells (REVIVAL)-2 trial patients with acute myocardial infarction (AMI) and successful mechanical reperfusion received granulocyte-colony stimulating factor (G-CSF, 10 mu g/kg KG s.c.) or placebo for 5 days. Aim of this substudy was to assess the impact of G-CSF on systemic inflammatory and procoagulant responses and platelet activation.Methods and Results: Before and five days after G-CSF (n=56) or placebo (n=58) circulating cytokine concentrations of interleukin (IL)-1 beta, IL-6, IL-8, IL-10, IL-12 and Tumor-Necrosis Factor-alpha (TNF-alpha were measured. Prothrombin fragment F1 + 2 and Tissue Factor activity served as a measure for activated coagulation. Platelet activation was characterized by cell surface expression of the activated fibrinogen receptor (PAC-1), P-selectin and CD40L by flow cytometry. Administration of G-CSF was associated with elevated TNF-alpha and CRP concentrations compared to the placebo group after 5 days. Other cytokines (IL-1 alpha, IL-6, IL-8, IL-10, IL-12) were comparable after treatment with G-SCF or placebo. Similarly, circulating prothrombin fragments F1 + 2, TF activity and platelet activation did not differ in both groups.Conclusion: Treatment with G-CSF in patients with AMI was associated with enhanced proinflammatory TNF-alpha and CRP levels but no activation of coagulation. (C) 2010 Elsevier Ltd. All rights reserved.
SummaryG-CSF induced mobilisation of progenitor cells is a multistep processes involving chemokines, growth factors, matrix-degrading enzymes, and cell adhesive interactions mediated by specific receptors on haematopoietic cells. This study’s aim was to investigate progenitor cells mobilised during myocardial infarction after treatment with granulocyte-stimulating factor (G-CSF). In the randomised, double-blind, placebo-controlled REVIVAL-2 study, 114 patients with acute myocardial infarction were included. Five days after successful percutaneous coronary intervention patients received either 10 μg/kg G-CSF (n=56) or placebo (n=58) subcutaneously for five days. Venous blood samples were analysed on day(s) 1, 3, 5 and 7 after therapy, and progenitor cell mobilisation and surface expression of VLA-4, LFA-1 and CXCR-4 was measured on circulating progenitor cells using flow cytometry. G-CSF induced a significant increase in circulating progenitor cells (72 ± 20 cells/μl vs. 4.5 ± 0.8 cells/μl, p<0.05). Surface expression of LFA-1, VLA-4 and CXCR4 on progenitor cells was decreased by 44%, 49% and 60% after G-CSF as compared to placebo (p<0.05). In accordance, mRNA expression of CXCR4 was reduced. Moreover, anti-proliferative transducer of ERB (TOB) mRNA was decreased, suggesting an increased proliferative potential of the mobilised progenitor cells. Decreased expression of adhesion and chemokine receptors on G-CSF mobilised progenitor cells in acute myocardial infarction may alter the homing capacity of circulating cells to the myocardium.
Objective: Within atherosclerotic lesions Tissue Factor (TF)-Factor VIIa (FVIIa) not only contributes to thrombotic events but also alters vascular remodeling through enhancement of migration. Moreover, the TF-FVIIa-FXa complex activates protease-activated receptors (PAR). TF/FVIIa/PAR-2 signaling has also been shown to promote proliferation and metastasis of tumor cells. Since coagulation factors promote inflammation which plays a major role during atherosclerosis as well as tumor metastasis this study sought to investigate the effects of FVIIa on the inflammatory response in vascular cells.Methods/results: FVIIa induces interleukin-8 (IL-8) and IL-6 in primary smooth muscle cells (SMC), which was correlated to the expression of TF and PAR-2 as shown by immunoassay and qRT-PCR. The effect was dose-dependent and required TF, the proteolytic activity of FVIIa and PAR-2. Secondary effects of downstream coagulation factors were excluded. No proinflammatory FVIIa effect was observed in endothelial cells (EC) and mononuclear cells (MNC), expressing either TF or PAR-2. In atherosclerotic lesions mRNA expression of PAR-1, PAR-2 and IL-8 was elevated compared to healthy vessels indicating a role for PAR-1 and PAR-2 signaling in atherosclerosis.Conclusion: In addition to the procoagulant and promigratory role of the TF-FVIIa complex we identify a proinflammatory role of FVIIa in human SMC dependent on expression of TF and PAR-2 that provides yet another link between coagulation and inflammation. (C) 2010 Elsevier Ireland Ltd. All rights reserved.
Summarylating platelets and CD11b, CD14 and CD15 on circulating leukocytes were evaluated by flow cytometry. Cytokine levels of IL-12p70, tumour necrosis factor (TNF), IL-8, IL-6, IL-1β and IL-10 were determined by cytometric bead array. Platelet surface expression of PAC-1, P-Selectin and GPIbα was significantly reduced after PCI in patients receiving bivalirudin as compared to heparin. Similarly, CD11b expression on CD14+ monocytes was diminished after bivalirudin. However, no differences were observed in cytokine levels between the bivalirudin and the heparin group, before or after PCI. In conclusion, our data suggest that bivalirudin may reduce platelet and monocyte activation in patients undergoing elective PCI. Thereby, bivalirudin might reduce periinterventional thrombotic complications.
Abstract Objectives and Background Tissue factor (TF) contributes to thrombosis following plaque disruption in acute coronary syndromes (ACS). Aim of the study was to investigate the impact of plasma TF activity on prognosis in patients with ACS. Methods and Results One-hundred seventy-four patients with unstable Angina pectoris (uAP) and 112 patients with acute myocardial infarction (AMI) were included with a mean follow up time of 3.26 years. On admission, plasma TF activity was assessed. Patients were categorized into 2 groups: a high-TF activity group with TF >24 pmol/L and low TF activity group with TF ≤ 24 pmol/L. Fifteen cardiovascular deaths occurred in the uAP group and 16 in the AMI group. In AMI TF activity was 24,9 ± 2,78 pmol/l (mean ± SEM) in survivors and 40,9 ± 7,96 pmol/l in nonsurvivors (P = 0.024). In uAP no differences were observed (25.0 ± 8.04 pmol/L nonsurvivors vs. 25.7 ± 2.14 pmol/L survivors; P = 0.586). Kaplan-Meier estimates of survival at 3.26 years regarding TF activity in AMI were 81.3% and 92.2% with an hazard ratio of 3.02 (95% CI [1.05–8.79], P = 0.03). The Cox proportional hazards model adjusting for correlates of age and risk factors showed that plasma TF activity was an independent correlate of survival (hazard ratio 9.27, 95% CI [1.24–69.12], P = 0.03). In an additional group of patients with uAP and AMI, we identified circulating microparticles as the prevailing reservoir of plasma TF activity in acute coronary syndromes. Conclusion Systemic TF activity in AMI has an unfavorable prognostic value and as a marker for dysregulated coagulation may add to predict the atherothrombotic risk.
Background and aim of the studyRecent studies have suggested placental growth factor (PlGF) and vascular endothelial growth factor (VEGF) as promising new biomarkers for risk stratification in acute coronary syndromes (ACS). However, little is known about the influence of percutaneous coronary intervention (PCI) on circulating PlGF and VEGF levels. MethodsThirty-five patients with ACS, 27 patients with stable coronary artery disease (sCAD), and nine healthy controls were enrolled in the study. Although all patients with ACS and 14 patients with stable angina pectoris underwent PCI, 13 patients with coronary artery disease required no revascularization (sCAD). PlGF and VEGF plasma concentrations were measured by immunoassay during and at the end of PCI and coronary angiography. ResultsPlasma PlGF levels were comparable in patients with ACS and sCAD on admission. Although coronary angiography or heparin alone did not alter PlGF and VEGF levels, immediately after PCI a dramatic increase was seen in circulating PlGF and a decrease in VEGF, which was independent of the clinical presentation of the patients, heparin administration, or the angiographic procedure itself, but was associated with the extent of coronary artery disease and the amount of the injected contrast media. In-vitro experiments revealed that radiocontrast agents induced the release of PlGF from endothelial cells without altering PlGF mRNA expression. ConclusionPatients undergoing PCI exhibit an increase in circulating PlGF, probably caused by posttranslational modifications of radiocontrast agents in endothelial cells. Therefore, analysis of plasma PlGF and VEGF levels may consider the timing of blood sampling with respect to PCI and contrast media exposure.
AimsAim of this study was to investigate the number of circulating progenitor cells, systemic inflammatory mediators, and myocardial necrosis in patients with paroxysmal atrial fibrillation (AF) undergoing pulmonary vein (PV) isolation by radiofrequency (RF) ablation. Radiofrequency ablation generates a localized myocardial necrosis that might result in a release of inflammatory mediators enhancing progenitor cell mobilization and improving tissue repair.
BACKGROUND:Endothelial progenitor cells (EPC) contribute to vascular regeneration. Since surgical injury and burns induce a pro-inflammatory and proangiogenic response, we investigated the effect of vascular injury with minimal surgical trauma after endarterectomy on the number of circulating EPC and systemic inflammatory changes. METHODS AND RESULTS:Forty-five patients with peripheral arterial occlusive disease were included in the study. Venous blood samples were taken before and 1 day after endarterectomy and plaque material was obtained. Ten patients with minor surgery served as controls. Circulating CD133+CD34+, VEGFR-2+CD34+ progenitor cells and surface expression of CD11b on circulating neutrophils were analysed using flow cytometry. EPCs were characterized in a culture assay as double-positive for DiI-LDL uptake and lectin binding. Cytokine concentrations of interleukin (IL)-6, IL-8, TNF-alpha, IL-1ss, IL-10, IL-12, SDF-1, G-CSF, and VEGF were measured in plasma and tissue samples. After endarterectomy a significant decrease in circulating EPC, CD133+CD34+, and VEGFR-2+CD34+ cells was observed. This was associated with a specific pattern of changes in circulating cytokine levels after endarterectomy with a decrease in IL-1 beta and IL-12, an increase in IL-6 and G-CSF plasma concentrations, and surface expression of CD11b on circulating neutrophils. In contrast, after minor surgery an increase in circulating CD133+CD34+ cells, IL-6, IL-8, and IL-10 was found. Interestingly there was a negative association between levels of local IL-6 within the plaque and only the preoperative levels of circulating CD133+C34+. CONCLUSION:Endarterectomy induces changes in circulating cytokines and a decline in circulating progenitor cells, which may be due to recruitment of progenitor cells to the injured vessels. This is supported by the negative association between plaque inflammation and circulating progenitor cells before endarterectomy.