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Biomedical subjects

Shing-Jong Lin

Publications and source records attributed to Shing-Jong Lin.

At least 37 records · Page 2Linked to original sources

Wood smoke extract induces oxidative stress-mediated caspase-independent apoptosis in human lung endothelial cells: role of AIF and EndoG.

Although a link between toxic smoke and oxidant lung vascular injury has been indicated, the cellular mechanisms of smoke-induced injury to lung endothelial cells are unknown. We investigated oxidative stress and apoptosis induced by wood smoke extract (SE) in human pulmonary artery endothelial cells (HPAECs) and delineated their relationship. We found that SE increased intracellular reactive oxygen species (ROS), depleted intracellular glutathione, and upregulated Cu/Zn superoxide dismutase and heme oxygenase-1 (2 antioxidant enzymes), but it failed to alter the expression of catalase and glutathione peroxidase. In addition, SE promoted apoptosis as indicated by the external exposure of membrane phosphatidylserine, the loss of mitochondrial membrane potential, an increase in the level of Bax (a proapoptotic protein), and enhanced DNA fragmentation. This apoptosis was associated with mitochondrial-to-nuclear translocation of apoptosis-inducing factor (AIF) and endonuclease G (EndoG) (2 apoptogenic proteins) but was independent of caspase cascade activation. Whereas N-acetylcysteine (an antioxidant) effectively reversed the SE-induced increase in ROS and depletion of glutathione, it also suppressed SE-induced nuclear translocation of either AIF or EndoG and prevented the enhanced DNA fragmentation that would have resulted from this. We conclude that 1) although SE upregulates Cu/Zn superoxide dismutase and heme oxygenase-1, it nevertheless increases intracellular oxidative stress in HPAECs, and 2) SE promotes oxidative stress-mediated caspase-independent HPAEC apoptosis that involves mitochondrial-to-nuclear translocation of AIF and EndoG. Thus modulations of the expression of antioxidant enzymes and the caspase-independent apoptotic pathway are possible target choices for potential therapeutic regimes to treat smoke-induced lung injury.

Active Transport, Cell Nucleus↗

Amorphous oxide--a platform for drug delivery.

Usually, a drug is loaded onto the metallic surface of a medical device by applying a polymer layer containing the drug. Unfortunately, polymer coatings on the metallic surface may exhibit numerous problems after implantation, such as late thrombosis, inflammation, and restenosis. Current research was conducted to investigate whether a suitable oxide layer can be used as a polymer-free platform for drug loading, especially for cardiovascular stents. The loading of heparin onto, as well as eluting of heparin from, the amorphous oxide film on the 316LVM stainless steel wire was confirmed by experimental studies using cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), electron spectroscopy for chemical analysis (ESCA), high-performance liquid chromatography (HPLC), and activated clotting time (ACT). Evidence shows that amorphous oxide can be an ideal substitute for the polymer coating of drug-loaded stents to minimize metallic corrosion, inflammation, late-thrombosis, and restenosis.

Chromatography, High Pressure Liquid↗

Long-term efficacy and stability of atrial sensing in VDD pacing.

BACKGROUND: The efficacy and stability of atrial electrode sensing function is essential in maintaining atrioventricular (AV) synchrony and activity response in VDD pacing. Studies to evaluate the relationship between atrial sensing efficacy, stability, and implantation strategy are few. HYPOTHESIS: This study sought to determine the possible predictors, among the recipients' underlying clinical conditions and the implantation strategies used, of achieving the most stable and effective atrial sensing. METHODS: Eighty consecutive adults implanted with VDD pacemakers were studied retrospectively. Atrial electrodes were positioned where the optimal atrial potentials (APs) were measured during implantation. Interrogation parameters, including AV-synchrony ratio, were acquired immediately post implantation, at 1 year, and at 2 years after pacemaker implantation. Appropriate atrial sensing efficacy was defined as AV-synchrony ratio > or = 90%. The stability of atrial sensing was evaluated by the variation ranges of measured APs. RESULTS: The measured APs showed no statistical difference when age, gender, or comorbidity was considered. However, with pacing-lead bending angles < or = 90 degrees, patients may have presented with larger APs and narrower AP variation than patients with obtuse angles. There were no clinical parameters in our study that could have predicted the proper atrial sensing efficacy with an AV-synchrony ratio > or = 90%. CONCLUSIONS: The long-term sensing efficacy and stability of VDD pacing is reliable. More sophisticated implantation strategies may further improve the atrial sensing stability and efficacy in VDD pacing.

Adult↗

Effects of fluvastatin, an HMG-CoA reductase inhibitor, on serum levels of interleukin-18 and matrix metalloproteinase-9 in patients with hypercholesterolemia.

BACKGROUND: Interleukin-18 (IL-18), a novel proinflammatory marker, and matrix metalloproteinase-9 (MMP-9) represent the indices of plaque stability. It is unknown whether hydroxymethylglutaryl coenzyme A (HMG-CoA) reductase inhibitors (statins), which provide anti-inflammatory and endothelium protection effects, have the property of stabilizing plaque in patients with hypercholesterolemia. HYPOTHESIS: The study was designed to investigate the influence of statin therapy in circulating IL-18, MMP-9, and endothelial function. METHODS: We investigated the effects of a 12-week therapy with fluvastatin on IL-18, MMP-9, and endothelial function in patients with hypercholesterolemia. RESULTS: Compared with placebo, fluvastatin significantly improved flow-mediated vasodilatation to hyperemia, a hallmark of endothelial function [from 3.8% (-3.9 approximately 15.2) to 5.9% (-0.3 approximately 13.2), p = 0.001], and attenuated plasma levels of high sensitivity C-reactive protein (hsCRP) [from 1.3 (0.3 approximately 7.7) to 1.1 mg/l (0.2 approximately 3.5), p = 0.018], IL-18 [from 247.6 (145.4 approximately 378.4) to 196.4 pg/dl (90.7 approximately 380.2), p <0.001], total MMP-9 (from 58 +/- 46.3 to 39.4 +/- 22.4 ng/dl, p = 0.023), and MMP-9 activity [from 6.4 (3.6 approximately 27) to 5.6 ng/dl (3.1 approximately 13.7)]. However, no significant correlation was found between the degree of changes in lipid profile and flow-mediated dilatation (FMD) and plasma concentration of IL-18 and MMP-9. CONCLUSIONS: Fluvastatin reduced plasma concentrations of IL-18 and MMP-9, and improved endothelial function in patients with hypercholesterolemia independent of its lipid-lowering effect.

Aged↗

Coronary angiography of cardiac myxoma.

BACKGROUND: Myxoma usually presents with nonspecific symptoms. Preoperative coronary angiography is presently only considered if patients are at increased risk of coronary artery disease (CAD). The angiographic patterns of cardiac myxoma have not been fully described. HYPOTHESIS: The aim of our study was to investigate coronary angiograms as well as patterns of tumor vascularity in patients with cardiac myxoma. METHODS: From January 1990 to December 2003, 33 patients with cardiac myxoma, who had received surgical resection at our hospital, were enrolled; of these, 9 patients underwent preoperative coronary angiography. The severity and extent of coronary artery stenosis, as well as tumor angiographic patterns, were analyzed. Coronary artery disease is defined as a > 50% stenosis in diameter at any segment of the coronary artery viewed by two orthogonal views on cineangiogram. RESULTS: Four (44.4%) patients showed concomitant CAD. The presence of coronary risk factors was not different between patients with and without CAD. Contrast media-enhanced tumor vasculature was found in five (55.6%) patients. Four (80%) patients had multiple feeding arteries. There was the characteristic "sea anemone" appearance of the tumor vasculature composed of (1) basal vascular network, (2) vessel stem, (3) backbone branches, and (4) dye brushes. These findings were characteristic of cardiac myxoma. CONCLUSION: Coronary angiography can detect the concomitant coronary disease and the unique vascular appearances of cardiac myxoma. Familiarity with the "sea-anemone" angiographic findings may help in the diagnosis of cardiac myxoma.

Adult↗

Failure analysis of explanted sternal wires.

To classify and understand the mechanisms of surface damages and fracture mechanisms of sternal wires, explanted stainless steel sternal wires were collected from patients with sternal dehiscence following open-heart surgery. Surface alterations and fractured ends of sternal wires were examined and analyzed. Eighty fractured wires extracted from 25 patients from January 1999 to December 2003, with mean implantation interval of 55+/-149 days (range 5-729 days) after cardiac surgery, were studied by various techniques. The extracted wires were cleaned and the fibrotic tissues were removed. Irregularities and fractured ends were assayed by a scanning electron microscopy. After stereomicroscopy and documentation, the explants were cleaned with 1% sodium hypochlorite to remove the blood and tissues and was followed by cleaned with deionized water and alcohol. The explants were examined by stereomicroscopy, and irregularities on surface and fracture surfaces of sternal wires were assayed by scanning electron microscopy, energy dispersive X-ray analysis (EDAX) and X-ray mapping. The explants with surrounding fibrotic tissue were stained and examined with stereomicroscopy and transmission electronic microscopy. Corrosion pits were found on the surface of explanted sternal wires. EDAX and X-ray mapping examinations revealed diminution of nickel concentration in the severely corroded pits on sternal wires. A feature of transgranular cracking was observed for stress corrosion cracking and striation character for typical corrosion fatigue was also identified. TEM examination of tissue showed the metallic particles in phagolysosomes of macrophages inside the surrounding sternal tissue. The synergic effect of hostile environment and the stress could be the precursors of failures for sternal wires.

Biocompatible Materials↗

Heart rate recovery after exercise and endothelial function--two important factors to predict cardiovascular events.

An attenuated heart rate recovery immediately after exercise, thought to be a marker of reduced parasympathetic activity, has been demonstrated to be an independent predictor of all-cause mortality in several large-scale studies; however, the mechanisms by which impaired heart rate recovery confers an increased risk of death are not clear. From clinical observation, vagal reactivation was thought to be the major determinant of the decrease in heart rate during the first 30 seconds of recovery, independent of age and the intensity of exercise; however, patients with attenuated heart rate recovery were also shown to have lower exercise workload, shorter exercise duration, lower numbers achieving 90% target heart rate, and even impaired endothelial function. This review focuses on the roles of heart rate recovery and endothelial function in predicting future mortality and their interaction.

Age Factors↗

Antiphospholipid syndrome presenting as intracardiac thrombus with pulmonary embolism.

The presence of antiphospholipid antibodies is associated with arterial and venous thrombosis. A young female with initial presentation of dyspnea and cough that lasted for days is reported. A computed tomographic scan of her chest and echocardiography showed features of thrombus formation over the right atrium, complicated with pulmonary thromboembolism. Antiphospholipid syndrome was diagnosed according to elevated activated partial thromboplastin time, high serum titers of anticardiolipin antibody, and the presence of intracardiac thrombus with pulmonary embolism. This thrombus was subsequently removed successfully with surgical intervention, and the patient's recovery was uneventful.

Adult↗

Enhanced coronary calcification determined by electron beam CT is strongly related to endothelial dysfunction in patients with suspected coronary artery disease.

BACKGROUND: Coronary artery calcification determined by electron beam CT (EBCT) is strongly associated with total plaque burden but is not related to systemic vascular inflammation. AIMS: We sought to test the hypothesis that enhanced coronary artery calcification, a marker of atherosclerosis and plaque burden, was related to endothelial dysfunction in patients with suspected coronary artery disease (CAD). METHODS AND RESULTS: One hundred twenty-four subjects with suspected CAD were enrolled. Coronary artery calcification was detected by EBCT. A noninvasive method of brachial ultrasound was used to measure endothelium-dependent flow-mediated vasodilation (FMD) and endothelium-independent nitroglycerin-mediated vasodilation (NMD). Serum high-sensitivity C-reactive protein (hsCRP) and monocyte chemoattractant protein-1 (MCP-1) levels were also determined. Of the 124 patients, the calcium scores ranged from 0 to 4,394. All subjects were classified into three groups according to coronary calcium scores: group 1, score 0 (n = 26); group 2, scores 1 to 199 (n = 50); group 3, scores > or = 200 (n = 48). There was an inverse association between the degree of coronary artery calcification and the endothelium-dependent FMD in the three groups (6.9 +/- 0.6% vs 5.3 +/- 0.3% vs 3.7 +/- 0.3%, respectively; p < 0.001) but not the endothelium-independent NMD. Besides, no significant difference in serum levels of hsCRP and MCP-1 were found among the three groups. However, both the serum levels of hsCRP and MCP-1 were correlated significantly with endothelium-dependent FMD (r = - 0.211, p = 0.019; and r = - 0.188, p = 0.037, respectively). By multivariate analysis, enhanced coronary calcification was a strong independent predictor of endothelial dysfunction (p < 0.001). CONCLUSION: Enhanced coronary artery calcification strongly predicted endothelial dysfunction in patients with suspected CAD. Also, serum levels of hsCRP and MCP-1 were significantly correlated with endothelial function. These findings suggested that both calcium deposition and inflammation were involved in endothelial dysfunction.

Aged↗

Insulin deficiency downregulated heat shock protein 60 and IGF-1 receptor signaling in diabetic myocardium.

Heat shock protein (Hsp)60 and IGF-1 receptor signaling protect cardiac muscle against injury. The abundance of cardiac IGF-1 receptor can be upregulated by Hsp60, but how diabetes modulates cardiac muscle Hsp60 has not yet been defined. We investigated the changes of Hsp60 and IGF-1 receptor signaling in the diabetic myocardium and studied how diabetes modulates Hsp60 and IGF-1 receptor in diabetic myocardium. In the streptozotocin (STZ)-induced diabetic rat, downregulation of Hsp60 and IGF-1 receptor occurred 4 days after induction of diabetes. IGF-1 activation of IGF-1 receptor, Mek, and Akt were reduced accordingly in the diabetic myocardium. The independent effect of insulin and hyperglycemia on Hsp60 was investigated in primary cardiomyocytes. Incubating cardiomyocytes with insulin was associated with dose-dependent increase of Hsp60 protein. In contrast, the abundance of Hsp60 was not affected by high concentration of glucose in these cells. To further determine the independent effects of hyperglycemia and insulin deficiency on the changes of myocardial Hsp60 and IGF-1 receptor, we used phlorizin to normalize blood glucose in diabetic rats. In the phlorizin-treated diabetic rats, myocardial Hsp60 was lower than that of the normal controls. In contrast, insulin treatment normalized myocardial Hsp60 in the diabetic rats. Because phlorizin does not alter insulin secretion, Hsp60 expression was modulated by insulin and not by hyperglycemia. Similar changes of Hsp60 and IGF-1 receptor were observed in the skeletal muscle of STZ-induced diabetic rats. These findings suggest that insulin deficiency is a novel mechanism that leads to downregulation of Hsp60 in diabetic muscle tissues. The development of diabetic cardiomyopathy might have involved downregulation of Hsp60 and subsequent reduction of IGF-1 receptor signaling.

Animals↗

Superoxide dismutase inhibits the expression of vascular cell adhesion molecule-1 and intracellular cell adhesion molecule-1 induced by tumor necrosis factor-alpha in human endothelial cells through the JNK/p38 pathways.

OBJECTIVE: Expression of adhesion molecules on endothelial cells and subsequent leukocyte recruitment are critical early events in the development of atherosclerosis. We tried to study possible effects of Cu/Zn superoxide dismutase (SOD) on adhesion molecule expression and its underlying mechanism in the prevention and treatment of cardiovascular disorders. METHODS AND RESULTS: Human aortic endothelial cells (HAECs) were transfected with adenovirus carrying the human SOD gene (AdSOD) to investigate whether SOD expression in HAECs attenuated tumor necrosis factor (TNF)-alpha-induced reactive oxygen species production and adhesion molecule expression and to define the mechanisms involved. SOD expression significantly suppressed TNF-alpha-induced expression of vascular cell adhesion molecule-1 and intercellular cell adhesion molecule-1 and reduced the binding of the human neutrophils to TNF-alpha-stimulated HAECs. SOD expression suppressed c-JUN N-terminal kinase and p38 phosphorylation. It also attenuated intracellular superoxide anion production and NADPH oxidase activity in TNF-alpha-treated HAECs. CONCLUSIONS: These results provide evidence that SOD expression in endothelial cells attenuates TNF-alpha-induced superoxide anion production and adhesion molecule expression, and that this protective effect is mediated by decreased JNK and p38 phosphorylation and activator protein-1 and nuclear factor kappaB inactivation. These results suggest that SOD has antiinflammatory properties and may play important roles in the prevention of atherosclerosis and inflammatory response. Superoxide dismutase overexpression in endothelial cells attenuates tumor necrosis factor alpha-induced superoxide anion production and adhesion molecule expression, and this effect is mediated by decreased JNK and p38 phosphorylation and AP-1 and nuclear factor B inactivation. These results suggest that superoxide dismutase may play an important role in the prevention of atherosclerosis and inflammatory response.

Anthracenes↗

Carvedilol inhibits tumor necrosis factor-alpha-induced endothelial transcription factor activation, adhesion molecule expression, and adhesiveness to human mononuclear cells.

OBJECTIVE: We tested the hypothesis that carvedilol, a beta-adrenoceptor and alpha-adrenoceptor antagonist with potent antioxidant property, could inhibit tumor necrosis factor-alpha (TNF-alpha)-induced endothelial adhesiveness to human mononuclear cells (MNCs), an early sign of atherogenesis. METHODS AND RESULTS: Circulating MNCs were isolated from the peripheral blood of healthy subjects. Compared with control condition, pretreatment of carvedilol (10 micromol/L for 18 hours) or probucol (5 micromol/L for 18 hours), but not propanolol, prazosin, or both propanolol and prazosin significantly decreased TNF-alpha-stimulated adhesiveness of cultured human aortic endothelial cells (HAECs) to MNCs. Carvedilol inhibited TNF-alpha-stimulated endothelial vascular cell adhesion molecule-1 (VCAM-1) and E-selectin (66.0+/-2.0% and 55.60+/-1.0% of control, P<0.05, respectively) expression, whereas probucol inhibited only VCAM-1 expression (79.0+/-5.0% of control, P<0.05). Propanolol, prazosin, or both did not alter the expression of adhesion molecules. Further, pretreatment with carvedilol significantly inhibited TNF-alpha-stimulated intracellular reactive oxygen species (ROS) production and the activation of redox sensitive nuclear factor kappa B and activator protein-1 transcription pathways. CONCLUSIONS: Carvedilol reduced TNF-alpha-stimulated endothelial adhesiveness to human MNCs by inhibiting intracellular ROS production, transcription factor activation, and VCAM-1 as well as E-selectin expression, suggesting its potential role in clinical atherosclerosis disease.

Aorta↗

Usefulness of attenuated heart rate recovery immediately after exercise to predict endothelial dysfunction in patients with suspected coronary artery disease.

Attenuated heart rate recovery after graded exercise, which is associated with decreased vagal activity, is a powerful predictor of overall mortality. Endothelial function plays a key role in determining the clinical manifestations of established atherosclerotic lesions and has shown to be suppressed by increased sympathetic tone. We designed this study to determine whether patients with an attenuated heart rate recovery after exercise could predict endothelium dysfunction. Sixty-six patients with suspected coronary artery disease were enrolled, and a noninvasive method of brachial ultrasound was used to measure endothelium-dependent flow-mediated vasodilation and endothelium-independent nitroglycerin-mediated vasodilation. The patients were divided equally into 3 groups according to heart rate recovery in 1 minute after peak exercise (n = 22 in each group): group 1 had heart rate recovery of </=19 beats in the first minute; group 2, 20 to 28 beats; and group 3 had >/=29 beats. The endothelium-dependent flow-mediated vasodilation responses were significantly decreased in group 1 compared with groups 2 and 3 (2.5 +/- 3.0 vs 5.0 +/- 3.4 vs 5.4 +/- 2.7%, p = 0.006), but responses to sublingual nitroglycerin showed no difference among the 3 groups (p = 0.332). According to multivariate analysis, heart rate recovery after exercise was an independent predictor of endothelial function.

Brachial Artery↗

Independent prognostic value of elevated high-sensitivity C-reactive protein in chronic heart failure.

BACKGROUND: The serum concentration of C-reactive protein (CRP) is mildly elevated in patients with chronic congestive heart failure (CHF), but this level falls well within the range found in healthy subjects. Standard clinical assays for CRP lack sensitivity within the low reference range and thus cannot be used effectively for routine clinical risk prediction. Because assays for high-sensitivity CRP (hsCRP) are now available, we can measure hsCRP to determine its predictive value for the prognosis of patients with CHF. METHODS: Serum levels of hsCRP in 108 patients with CHF and left ventricular ejection fraction (LVEF) <50% were examined. Major adverse cardiac events (death, heart transplantation, or hospitalization with worsening heart failure) during a median follow-up period of 403 days were determined. RESULTS: The concentrations of hsCRP in this study population were significantly increased with the severity of CHF. In a multivariate analysis, LVEF and serum levels of hsCRP were independent significant predictors for adverse outcomes in these patients (hazard ratio, 3.714, P =.024, and hazard ratio, 2.584, P =.047, respectively). However, hsCRP was minimally correlated with LVEF (r = -0.167, P =.084). Further analysis indicated that hsCRP might identify a different high-risk group and could improve risk stratification beyond that of LVEF. CONCLUSIONS: These findings suggest that an elevated level of hsCRP is an independent predictor of prognosis in CHF and can provide additional prognostic information for the risk stratification and treatment in patients with chronic CHF.

Aged↗

Heme oxygenase-1 gene promotor microsatellite polymorphism is associated with angiographic restenosis after coronary stenting.

AIMS: Heme oxygenase-1 (HO-1) is a rate-limiting enzyme in heme degradation, leading to the generation of free iron, biliverdin, and carbon monoxide (CO). CO exerts potent antiproliferative and anti-inflammatory effects in the vascular walls, thereby influencing neointimal formation after vascular injury. A dinucleotide GT repeat in the promotor region of human HO-1 gene shows a length polymorphism that modulates the level of gene transcription. This study aimed to assess the association of the length of (GT)(n)repeats in HO-1 gene promotor with restenosis and adverse cardiac events after coronary stenting. METHODS AND RESULTS: Quantitative coronary angiography was evaluated before, immediately after and 6 months after stent implantation in 323 consecutive patients with successful coronary stenting. In each patient, the allele frequency of (GT)(n)repeats in HO-1 gene promotor was examined. Compared with those with shorter (S, <26) GT repeats, patients with longer (L, > or =26) GT repeats on either allele had more frequent angiographic restenosis with an adjusted odds ratio (OR) of 3.74 (95% confidence interval, 1.61 to 8.70, P=0.002). Such association was even more prominent in patients with small coronary arteries or complex lesions before stenting. Besides, carriers of L/L genotype had an increased risk (adjusted OR, 3.26; 95% confidence interval, 1.58 to 6.72, P=0.001) for adverse cardiac events during follow-up. CONCLUSIONS: The length polymorphism of GT repeat in HO-1 gene promoter is an independent risk factor for angiographic restenosis as well as adverse cardiac events after coronary stenting. These findings suggest the genetic contribution to stent restenosis and support the notion that the long dinucleotide GT repeat in promotor region may interfere with HO-1 gene transcription, leading to decreased vascular protection upon injury.

Aged↗

Potential risk of sternal wires.

OBJECTIVE: To understand the potential fracture mechanism of sternal wires, we collected extracted stainless steel sternal wires from patients with sternal dehiscence following open-heart operations. Surface alterations and fractured ends of sternal wires were inspected and analyzed. METHODS: Eight fractured and 12 non-fractured wires extracted from five patients (closure method: figure-of-eight or straight twisted; two without and three with mediastinitis) with mean implantation interval of 13.2+/-4.2 days (range 8-20 days) were studied by various techniques. The extracted wires were cleaned and the fibrotic tissues were removed. Irregularities and fractured ends were assayed by scanning electron microscopy and energy dispersive X-ray analysis (EDXA). RESULTS: All examined fractured wires showed the presence of severe transversal cracks and crevice corrosion. EDAX revealed aluminum oxide inclusion on the fractured surface. CONCLUSIONS: The synergic effect of stress and poor wire quality could be the precursors of material failure for the sternal wire.

Bone Wires↗

Fluvastatin reduces oxidative stress, decreases serum monocyte chemotactic protein-1 level and improves endothelial function in patients with hypercholesterolemia.

BACKGROUND AND PURPOSE: Statins may have anti-inflammatory properties and exert endothelial protection independently of their lipid-lowering effect. However, data are scarce concerning the co-existence of these lipid-lowering-independent effects in humans. METHODS: Forty three patients with hypercholesterolemia were randomly assigned in a 2:1 ratio to receive either fluvastatin 80 mg/day (n = 30) or placebo (n = 13) for 12 weeks. Plasma levels of monocyte chemotactic protein-1 (MCP-1), thiobarbituric acid reactive substances (TBARS)--an index of oxidative stress, and flow-mediated vasodilatation (FMD)--an index of endothelial function, were measured before and after statin therapy. RESULTS: Fluvastatin significantly reduced the serum level of total cholesterol (201.8 +/- 25.2 vs 271.6 +/- 24.7 mg/dL; p < 0.001), low-density lipoprotein cholesterol (129.4 +/- 5.1 vs 190.2 +/- 19 mg/dL; p < 0.001), MCP-1 (190.3 +/- 40 vs 217.6 +/- 61 pg/mL; p = 0.001), and TBARS (3.7 +/- 1.3 vs 5.2 +/- 1.4 nmol/mL; p < 0.001). FMD was significantly increased, from 3.7 +/- 2.5% to 5.9 +/- 2.9% (p < 0.001) in the fluvastatin group. The reduction of serum MCP-1 or TBARS level was not correlated with the improvement of either plasma cholesterol level or FMD. No significant changes of these markers were observed in the placebo group. CONCLUSIONS: Fluvastatin reduced oxidative stress and inflammatory marker levels, and improved endothelial function, in addition to its lipid-lowering effect. These observations provide a clinical rationale for the co-existence of complex and multiple vascular protective mechanisms of statins.

Aged↗