Search PubMed⌕ Search

Biomedical subjects

V Fuster

Publications and source records attributed to V Fuster.

At least 55 records · Page 3Linked to original sources

Cardioprotective effect of prior beta-blocker therapy in reducing creatine kinase-MB elevation after coronary intervention: benefit is extended to improvement in intermediate-term survival.

BACKGROUND: Both retrospective studies and prospective randomized trials have shown that beta-blockers improve survival and reduce the risk of reinfarction in patients with myocardial infarction. To evaluate whether beta-blockers exert similar protective benefits during and after coronary intervention, we studied the incidence of postprocedure creatine kinase (CK)-MB elevation in patients with or without prior beta-blocker therapy and its effect on intermediate-term ( approximately 1 year) survival. METHODS AND RESULTS: We prospectively analyzed 1675 consecutive patients undergoing coronary intervention; of these patients, 643 (38.4%) were on beta-blocker therapy before the intervention. The incidence of CK-MB elevation after coronary intervention was 13.2% in patients on beta-blocker therapy before intervention and 22.1% in patients who were not on beta-blockers (P<0.001). Patients with prior beta-blocker therapy had lower persistent/recurrent postprocedure chest pain and lower preprocedure and postprocedure heart rates and mean blood pressures compared with patients who were not on beta-blockers (P<0.001). Multiple linear regression analysis revealed prior beta-blocker therapy as the sole independent factor for lower CK-MB release after coronary intervention. During intermediate-term follow-up at 15+/-3 months, patients on beta-blocker therapy before intervention had lower mortality rates compared with those not on beta-blockers (0.78% versus 1.96%; P=0. 04), although the benefit was independent of the reduction in CK-MB release. CONCLUSIONS: Our nonrandomized, prospective analysis suggests that prior beta-blocker therapy has a cardioprotective effect in limiting CK-MB release after coronary intervention and that it is associated with a lower mortality at intermediate-term follow-up.

Adrenergic beta-Antagonists↗

Noninvasive in vivo magnetic resonance imaging of experimental coronary artery lesions in a porcine model.

BACKGROUND: The ability to characterize and quantify coronary artery atherosclerotic lesions accurately, reproducibly, and noninvasively may allow the stratification of risk for future acute coronary syndromes and help direct therapeutic management. MRI has been shown to accurately characterize and quantify atherosclerosis; however, because of the combination of cardiac and respiratory motion artifacts, nonlinear course, and relatively small size of the coronary arteries, these techniques have not been able to be translated to the coronary system in vivo. METHODS AND RESULTS: Coronary lesions were induced in Yorkshire albino swine (n=6) with balloon angioplasty, and 4 weeks later MRI of the coronary artery lesions was performed. High-resolution in vivo images of the coronary artery wall and lesions were obtained with a double-inversion-recovery fast-spin-echo sequence in a 1.5-T MR system. There was good agreement between measurements of vessel wall thickness and area from MR images of the coronary arteries and the matched histopathology sections (n=43). The mean difference (MRI minus histopathology +/- SD) for mean wall thickness was 0.26+/-0.18 mm, and for vessel wall area, 5.65+/-3.51 mm(2). MRI was also able to visualize intralesion hematoma (sensitivity 82%, specificity 84%). CONCLUSIONS: Using a clinical MR system, we were able to image coronary artery lesions in vivo in an experimental porcine model. Further studies are needed to assess the ability of MRI to characterize coronary atherosclerotic lesions in vivo.

Animals↗

Comparative study of antithrombotic effect of a low molecular weight heparin and unfractionated heparin in an ex vivo model of deep arterial injury.

Thrombosis after plaque rupture triggers the onset of acute coronary events. The treatment of choice for patients with acute coronary syndromes is conventional unfractionated heparin. Low molecular weight heparin has recently been reported to be as effective and even safer than unfractionated heparin. In this study, the effects of the low molecular weight heparin reviparin and unfractionated heparin on thrombus formation were examined under dynamic conditions using an extracorporeal perfusion chamber in a porcine model. Thrombus formation was assessed by the deposition of porcine 123I-fibrin(ogen) and autologous 111In-platelets on porcine tunica media at high and low shear rates. Reviparin reduced the fibrinogen molecules deposited on injured vessels at high shear rates (252+/-80 molecules x 10(12)/cm2 for reviparine (200 U/kg/hour) vs. 624+/-70 x 10(12)/cm for unfractionated heparin (200 U/kg/hour) (p<0.05). At low shear rates, fibrinogen deposition was also significantly reduced by reviparin (130+/-15 molecules x 10(12)/cm2) compared to unfractionated heparin (192+/-40 x 10(12)/cm2 at 200 U/kg/hour; p<0.05). No change in platelet deposition was detected after heparin administration in either treatment group. In conclusion, the low molecular weight heparin reviparin has a higher antithrombotic potential than unfractionated heparin. Reviparin may have advantages over unfractionated heparin in treatment and prevention of acute coronary syndromes.

Adenosine Diphosphate↗

In vivo magnetic resonance evaluation of atherosclerotic plaques in the human thoracic aorta: a comparison with transesophageal echocardiography.

BACKGROUND: The structure and composition of aortic atherosclerotic plaques are associated with the risk of future cardiovascular events. Magnetic resonance (MR) imaging may allow accurate visualization and characterization of aortic plaques. METHODS AND RESULTS: We developed a noninvasive MR method, free of motion and blood flow artifacts, for submillimeter imaging of the thoracic aortic wall. MR imaging was performed on a clinical MR system in 10 patients with aortic plaques identified by transesophageal echocardiography (TEE). Plaque composition, extent, and size were assessed from T1-, proton density-, and T2- weighted images. Comparison of 25 matched MR and TEE cross-sectional aortic plaque images showed a strong correlation for plaque composition (chi(2) = 43.5, P<0.0001; 80% overall agreement; n = 25) and mean maximum plaque thickness (r = 0.88, n = 25; 4.56+/-0.21 mm by MR and 4.62+/-0.31 mm by TEE). Overall aortic plaque extent as assessed by TEE and MR was also statistically significant (chi(2) = 61.77, P<0.0001; 80% overall agreement; n = 30 regions). CONCLUSIONS: This study demonstrates that noninvasive MR evaluation of the aorta compares well with TEE imaging for the assessment of atherosclerotic plaque thickness, extent, and composition. This MR method may prove useful for the in vivo study of aortic atherosclerosis.

Adult↗

Antithrombotic effects of abciximab.

The observation that platelet-platelet interaction and thrombosis are ultimately regulated by the glycoprotein (GP) IIb/IIIa receptor complex, triggered the development of agents capable of interfering with this platelet receptor complex. Several large clinical trials have demonstrated the effectiveness of this class of agents. The first of these agents to show beneficial effects after coronary interventions was the mouse/human chimeric Fab fragment antibody c7E3 (abciximab; ReoPro). This study analyzes whether the addition of heparin to the GP IIb/IIIa antagonist abciximab would enhance the antithrombotic effect. Blood drawn directly from patients on aspirin who underwent interventional procedures perfused an ex vivo perfusion chamber containing a severely injured arterial wall at local rheologic conditions of a mildly stenosed coronary artery. Blood was perfused directly from patients at baseline and following administration of heparin, abciximab, or both. The antithrombotic effects of the 3 treatments were assessed by reduction of the thrombus formation on the perfused specimens. Thrombus formation at baseline was not significantly modified by the administration of heparin (13,897 +/- 1,316 vs 11,917 +/- 1,519 microm(2)). Abciximab produced a 58% reduction in thrombus formation (11,631 +/- 861 vs 4, 925 +/- 585 microm(2); p <0.001). The addition of heparin to abciximab did not further reduce thrombus area versus abciximab alone (5,651 +/- 581 vs 4,925 +/- 585 microm(2)). Thus, our data show that abciximab dramatically decreases mural thrombus formation and that combining heparin with abciximab did not add any additional antithrombotic effect to abciximab alone.

Abciximab↗

Serial in vivo MRI documents arterial remodeling in experimental atherosclerosis.

BACKGROUND: Arterial remodeling in response to atherosclerosis may be outward (positive) or inward (negative) and is an important mechanism in the clinical manifestations of atherosclerosis and restenosis after percutaneous coronary interventions. Postmortem and intravascular ultrasound studies of arterial remodeling do not allow serial and noninvasive data to be obtained. In a rabbit model of atherosclerosis, we sought to validate MRI as a new tool for documentation of arterial remodeling. METHODS AND RESULTS: Watanabe heritable hyperlipidemic rabbits underwent serial MRI at baseline and 6 months after aortic balloon denudation. The lumen area had a small but significant (P=0.006) increase, from 4.36+/-0.16 to 4. 89+/-0.12 mm(2). There was a large, significant (P<0.0001) increase in the outer wall area, from 7.96+/-0.19 to 10.46+/-0.19 mm(2). The vessel wall area (a marker of atherosclerotic burden) increased significantly (P<0.0001), from 3.61+/-0.07 to 5.57+/-0.09 mm(2). Thus, the increase in atherosclerotic burden over time was completely accounted for by positive arterial remodeling. The subgroup used for histopathological validation confirmed a significant (P<0.0001) agreement between histopathology and MRI for assessment of all 3 parameters. CONCLUSIONS: MRI can provide serial and noninvasive data about the arterial wall, allowing assessment of arterial remodeling in this rabbit model. Thus, MRI appears to be a useful tool for the investigation of arterial remodeling both in native atherosclerosis and after percutaneous coronary intervention.

Animals↗

Redefining medical treatment in the management of unstable angina.

In 1994, the Agency for Health Care Policy and Research sponsored the development of guidelines for diagnosing and managing patients with unstable angina. Since their publication, several important developments have occurred. The prognostic value of biochemical assays for cardiac-specific troponins T and I have been shown in many studies. The possible role for C-reactive protein in determining prognosis deserves further investigation. Substantial clinical benefits have been obtained with intravenous inhibitors of the platelet glycoprotein (GP) IIb-IIIa receptor (abciximab, eptifibatide, tirofiban) and with one of the low-molecular-weight heparins (enoxaparin). The therapeutic potential of other low-molecular-weight heparins, direct thrombin inhibitors, and oral GP IIb-IIIa inhibitors remains to be clarified. On the basis of this evidence, consideration should be given to measuring serum levels of a cardiac troponin (either T or I) and using intravenous GP IIb-IIIa inhibitors and low-molecular-weight heparin in the standard management of patients with unstable angina.

Abciximab↗

Statins and cardiovascular diseases: the multiple effects of lipid-lowering therapy by statins.

Cholesterol lowering involving different therapies improves the clinical outcome of patients. To define the underlying pathomechanism, we studied whether treatment with statins was associated with changes in blood thrombogenicity, endothelial dysfunction and soluble adhesion molecule levels. Fifty hypercholesterolemic patients were treated with pravastatin (40 mg/day, n=24) or simvastatin (20 mg/day, n=26). Lipid profile and blood thrombogenicity were assessed in all patients before and after 3 months of cholesterol reducing therapy. Blood thrombogenicity was assessed as thrombus formation, perfusing non-anticoagulated blood directly from the patients' vein through the Badimon perfusion chamber (shear rate 1690/s). Endothelial-dependent vasomotor response was tested by laser-Doppler flowmeter. Soluble adhesion molecule level were measured by ELISA. Total and LDL cholesterol were reduced in the two treatment groups by statin therapy. Statin therapy was associated with a significant reduction in blood thrombogenicity and endothelium-dependent vasoresponse. No differences were observed between simvastatin or pravastatin treatment. Lipid lowering by statins had no effect on plasma levels of fibrinogen, sL-selectin, sP-selectin and sICAM-1 antigen. Cholesterol lowering by both statins reduced the increased blood reactivity and endothelial dysfunction present under hypercholesterolemia. The multiple effects of lipid lowering therapy by statins may explain the benefits observed in recent epidemiological trials.

Anticholesteremic Agents↗

Modulation of apoptosis, proliferation, and p27 expression in a porcine coronary angioplasty model.

Smooth muscle cell (SMC) proliferation is a prominent feature of intimal hyperplasia after percutaneous coronary interventions. p27 is a critical regulator of cell proliferation. Our aims were to analyze the time course of p27 expression, Ki67 proliferative index, and apoptosis after angioplasty in the porcine coronary artery. We also investigated the effects of rapamycin--an antiproliferative drug--on these events. The expression of p27 and Ki67, and apoptosis were determined in porcine coronary arteries harvested at timed intervals from 1 h to 28 days after angioplasty. A gradual increase in p27 expression was observed from 7 to 28 days. Ki67 expression peaked by 7-14 days after angioplasty. By 21-28 days, Ki67 expression decreased, while p27 reached maximal levels. An early apoptotic response was found by 6 h, followed by a gradual return to baseline. Rapamycin induced a reduction in Ki67 proliferative index (2 +/- 0.5%) and an increase in apoptosis (7 +/- 1%) versus untreated animals at the 28-day time point (5 +/- 1 and 1 +/- 0.5%, respectively; P < 0.05). In summary, coronary angioplasty induced a rapid apoptotic response, followed by a progressive increase in proliferation. Later on, as p27 expression increased in the vessel wall, cell proliferation decreased. Modulation of cell cycle progression may be a useful therapeutic approach in the treatment of intimal hyperplasia after angioplasty.

Angioplasty, Balloon, Coronary↗

High resolution ex vivo magnetic resonance imaging of in situ coronary and aortic atherosclerotic plaque in a porcine model.

Atherosclerotic plaque composition is central to the pathogenesis of plaque disruption and acute thrombosis. Thus, there is a need for accurate imaging and characterization of atherosclerotic lesions. Even though there is no ideal animal model of atherosclerosis, the porcine model is considered to most closely resemble human atherosclerosis. We report the feasibility of MR imaging and characterizing of atherosclerotic lesions from in situ coronary arteries and aortas in an ex vivo setting and validate this with histopathology. Coronary and aortic atherosclerosis was induced in Yucatan mini-swine (n=4) by a combination of atherogenic diet (6 months) and balloon injury. All coronary arteries were imaged ex vivo on the intact heart, preserving the curvature of their course. The aorta also underwent MR imaging. The MR images were correlated with the matched histopathology sections for both the coronary arteries (n=54) and the aortas (n=43). MR imaging accurately characterized complex atherosclerotic lesions, including calcified, lipid rich, fibrocellular and hemorrhagic regions. Mean wall thickness for the coronary arteries (r=0.94, slope: 0.81) and aortas (r=0.94, slope: 0.81) as well as aortic plaque area (r=0.97, slope: 0.90) was accurately determined by MR imaging (P<0.0001). Coronary artery MR imaging is not limited by the curvature of the coronary arteries in the heart. MR imaging accurately quantifies and characterizes coronary and aortic atherosclerotic lesions, including the vessel wall, in this experimental porcine model of complex atherosclerosis. This model may be useful for future study of MR imaging of atherosclerosis in vivo.

Animals↗

Inhibition of tissue factor reduces thrombus formation and intimal hyperplasia after porcine coronary angioplasty.

OBJECTIVES: We investigated the in vivo effects of tissue factor (TF) inhibition with recombinant tissue factor pathway inhibitor (rTFPI) on acute thrombus formation and intimal hyperplasia and the in vitro effects on smooth muscle cell migration and proliferation. BACKGROUND: Inhibition of TF with TFPI has been shown to reduce intimal hyperplasia in experimental models. However, its effects after coronary angioplasty and the cellular mechanisms involved have not been investigated. METHODS: Twenty-three swine underwent multivessel coronary angioplasty. Fifteen (n = 25 arteries) were euthanized at 72 h to assess thrombus formation and eight (n = 24 arteries) at 28 days to assess intimal hyperplasia. Animals in the 72-h time point received: 1) human rTFPI (0.5 mg bolus plus 25 microg/kg/min continuous infusion for 3 days) plus heparin (150 IU/kg intravenous bolus) plus acetyl salicylic acid (ASA) (325 mg/day); 2) rTFPI regimen plus ASA and 3) heparin (150 IU/kg intravenous bolus) plus ASA. RESULTS: On histology the control group had evidence of mural thrombus (area 0.8+/-0.4 mm2). Treatment with TFPI plus heparin abolished thrombus formation (mean area: 0.0+/-0.0 mm2, p < 0.05) but was associated with prolonged activated partial thromboplastin time and extravascular hemorrhage. Recombinant TFPI alone inhibited thrombosis without bleeding complications (mean area: 0.03+/-0.02 mm2, p < 0.05 vs. control). Animals in the 28-day time point received continuous intravenous infusion of rTFPI or control solution for 14 days. Tissue factor pathway inhibitor reduced neointimal formation with mean intimal area of 1.2+/-0.3 mm2 versus 3.2+/-0.4 mm2 in the control group; p < 0.01. Recombinant TFPI had no effect on human aortic smooth muscle cell growth but inhibited platelet-derived growth factor BB-induced migration. CONCLUSIONS: Inhibition of TF with rTFPI can prevent acute thrombosis and intimal hyperplasia after injury. Tissue factor plasma inhibitor may prove useful as an adjunct to intracoronary interventions.

Angioplasty, Balloon, Coronary↗

Apoptosis, proliferation, and p27 expression during vessel wall healing: time course study in a mouse model of transluminal femoral artery injury.

OBJECTIVE: The balance between cell death and proliferation in the vessel wall influences neointimal formation, remodeling, and eventual luminal narrowing after arterial injury. In this study, the time course of apoptosis, proliferation, and expression of p27-a critical regulator of cell-cycle progression-is characterized in a mouse model of transluminal arterial injury associated with substantial neointimal formation. METHODS: C57BL/6 mice underwent bilateral femoral artery injury by passage of an angioplasty guidewire. Expression of p27, Ki67 proliferative index, and apoptosis, as well as histomorphometry, were analyzed in cross sections of uninjured arteries and arteries harvested at different time intervals after injury. RESULTS: In the uninjured arteries, no apoptotic cells were detected, and p27 and Ki67 were expressed in less than 5% of medial cells. After injury, apoptosis increased markedly in medial smooth muscle cells from 1 to 24 hours and decreased gradually thereafter. Ki67 proliferative index increased after 1 week, peaked at 2 weeks in both the media and neointima, and decreased thereafter. p27 expression was undetectable from 1 to 48 hours, and increased gradually from 1 to 4 weeks. Well-developed neointima was present at 2 and 4 weeks. CONCLUSIONS: In vivo injury to the mouse femoral artery evokes a rapid apoptotic response and downregulation of p27, followed by gradual increase in proliferation. During later phases of arterial repair, p27 expression increases while a shift of proliferation rates toward baseline occurs. Future experiments using this model in genetically modified mice may help identify specific cell-cycle regulatory molecules as therapeutic targets for control of pathologic arterial healing.

Analysis of Variance↗