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Biomedical subjects

M S Nieminen

Publications and source records attributed to M S Nieminen.

At least 19 recordsLinked to original sources

Human MHC region harbors both susceptibility and protective haplotypes for coronary artery disease.

Aiming to study the role of human major histocompatibility complex (MHC) region on coronary artery disease (CAD), we enrolled two separate patient materials and controls. First, heart transplantation recipients (n = 276) were divided into three subgroups according to the severity of atherosclerosis. The human leukocyte antigen (HLA)-A-B-DR haplotype and gene frequencies were compared between groups. Second, patients with acute coronary syndrome (ACS) (n = 100) and healthy controls (n = 74) were assessed by nine genetic MHC markers (HLA-A, HLA-B, HLA-DRB1, LTA+253(a/g), LTA+496(C/T), LTA+633(c/g), LTA+724(C/A), C4A and C4B), and the frequencies were compared. In the heart transplantation recipients, HLA-DR1 was strongly associated with CAD [severe vs no evidence, odds ratio (OR) 2.37; 95% confidence interval (CI) 1.33-4.25; P = 0.003]. Similarly, in the patients with ACS, HLA-DRB1*01 was associated with CAD (patients vs controls, OR 2.36; 95% CI 1.25-4.44; P = 0.007). HLA-DRB1*01 was associated with low-density-lipoprotein cholesterol (OR 5.32; 95% CI 1.64-17.26; P = 0.005) and smoking habit (OR 3.13; 95% CI 1.09-9.03; P = 0.035) as risk factors. The strongest protective gene was HLA-B*07 alone (OR 0.46; 95% CI 0.24-0.88; P = 0.02) or together with the haplotype LTA+253a-LTA+633g-C4A3-C4B1 (OR 0.36; 95% CI 0.22-0.57; P = 0.00001). In conclusion, human MHC region harbors genes that protect from and predispose to CAD.

Adult↗

Impact of postprandial lipaemia on low-density lipoprotein (LDL) size and oxidized LDL in patients with coronary artery disease.

BACKGROUND: Remnant lipoprotein particles (RLPs) and oxidative stress are components of postprandial state. We investigated the concentrations of triglyceride-rich lipoproteins (TRLs), RLPs, low-density lipoprotein (LDL) size, and oxidized LDL (oxLDL) during alimentary lipaemia, and evaluated whether changes among these variables could be associated with the severity and extent of coronary artery disease (CAD). MATERIALS AND METHODS: Eighty men and 27 women with clinically suspected CAD underwent quantitative coronary angiography (QCA). TRLs were isolated by density gradient ultracentrifugation before and 6 h after an oral fat load. RLPs were measured by an immunoseparation method, oxLDL by ELISA, and LDL size by gradient gel electrophoresis. RESULTS: Triglycerides, apolipoprotein (apo) B-48, and apoB-100 concentration in Swedberg flotation units (Sf) > 400 and in Sf 12-400 fractions were markedly increased at 6 h. Postprandial cholesterol content of RLPs (RLP-C) correlated with respective triglycerides in Sf > 400 (r = 0.737) and Sf 12-400 (r = 0.857), apoB-48 in Sf > 400 (r = 0.710) and Sf 12-400 (r = 0.664), apoB-100 in Sf > 400 (r = 0.812) and Sf 12-400 (r = 0.533). RLP-C correlated with oxLDL both in fasting and in fed state (r = 0.482 and r = 0.543, respectively) and inversely with LDL size (r = -0.459 and r = -0.442, respectively). (P < 0.001 for all). OxLDL was elevated postprandially (P < 0.001). In multivariate analysis, oxLDL was a determinant of severity and extent of CAD. CONCLUSION: Postprandial state is associated with oxidative stress. The magnitude of oxLDL increases during alimentary lipaemia and is associated with coronary atherosclerosis.

Adult↗

Electrocardiographic assessment of left ventricular hypertrophy with time-voltage QRS and QRST-wave areas.

The sum of time-voltage QRS areas in the 12-lead electrocardiogram (ECG) has outperformed other 12-lead ECG indices for detection of left ventricular hypertrophy (LVH). We assessed indices of time-voltage QRS and T-wave (QRST) areas from body surface potential mapping (BSPM) for detection of and quantitation of the degree of LVH. We studied 42 patients with echocardiographic LVH (LVH group) and 11 healthy controls (controls). QRST area sums were calculated from 123-lead BSPM and from the 12-lead ECG for comparison. Leadwise discriminant indices and correlation coefficients were used to identify optimal recording locations for QRST area-based LVH assessment. BSPM QRS area sum was greater in the LVH group than in controls (3752 +/- 1259 vs 2278 +/- 627 microV s, respectively; P<0.001) and at 91% specificity showed 74% sensitivity for LVH detection. The 12-lead QRS area sum performed similarly. Taking T-wave areas into account did not improve the results. QRS area sum from two most informative leads (located in the upper and lower right precordium) also separated the LVH group from controls (61.1 +/- 23.5 vs 27.8 +/- 6.5 microV s, respectively; P<0.00001). This 2-lead QRS area sum showed 90% sensitivity with 100% specificity for LVH detection and maintained high correlation to indexed left ventricular mass (r=0.732; P<0.001). In conclusion, the BSPM QRS area sum compared to 12-lead QRS area sum does not substantially improve LVH assessment. The 2-lead QRS area sum may improve ECG QRS area-based LVH assessment.

Body Surface Potential Mapping↗

Regression of electrocardiographic left ventricular hypertrophy predicts regression of echocardiographic left ventricular mass: the LIFE study.

The electrocardiogram (ECG) is widely used for detection of left ventricular hypertrophy (LVH). However, whether changes in ECG LVH during antihypertensive therapy predict changes in LV mass remains unclear. Baseline and year-1 ECGs and echocardiograms were assessed in 584 hypertensive patients with ECG LVH by Sokolow-Lyon or Cornell voltage-duration product criteria at entry into the Losartan Intervention For Endpoint reduction in hypertension (LIFE) echocardiographic substudy. A >/=25% decrease in Cornell product defined regression of ECG LVH; a <25% decrease defined no significant regression; and an increase defined progression of ECG LVH. Regression of echocardiographic LVH was defined by a >/=20% reduction in LV mass. After 1 year of therapy, 155 patients (27%) had regression of ECG LVH, 286 (49%) had no significant change, and 143 (25%) had progression of ECG LVH. Compared with patients with progression of ECG LVH, patients with no significant decrease and patients with regression of ECG LVH had stepwise greater absolute decreases in LV mass (-16+/-33 vs -29+/-37 vs -32+/-41 g, P<0.001), greater percent reductions in LV mass (-5.7+/-14.6 vs -11.3+/-13.6 vs -12.3+/-15.6%, P<0.001), and were more likely to decrease LV mass by >/=20% (11.2 vs 24.8 vs 36.1%, P<0.001), even after adjusting for possible effects of baseline and change in systolic and diastolic pressures. Compared with progression of ECG LVH, regression of the Cornell product ECG LVH is associated with greater reduction in LV mass and a greater likelihood of regression of anatomic LVH.

Aged↗

Sex-related difference in regression of left ventricular hypertrophy with antihypertensive treatment: the LIFE study.

While left ventricular (LV) structure and function differ between hypertensive women and men, it remains unclear whether sex affects regression of LV hypertrophy with antihypertensive treatment. We analysed paired echocardiograms in 500 men and 347 women enrolled in the Losartan Intervention For Endpoint reduction in hypertension (LIFE) study at baseline and after 12 months of antihypertensive treatment with either losartan or atenolol. At enrollment, 177 women and 242 men were randomized to losartan-based treatment and 161 women and 247 men were randomized to atenolol-based treatment (sex difference=NS). After 12 months of antihypertensive treatment, blood pressure was lowered similarly in women (152/83 from 174/97 mmHg) and men (149/85 from 173/99 mmHg; both P<0.001, sex difference=NS), without significant change in body weight in either sex. Cardiac output and pulse pressure/stroke volume were equivalently reduced in both sexes (-0.2 vs -0.1 l/min and both -0.20 mmHg/ml/m(2), respectively; both P=NS). Absolute LV mass change after 12 months of antihypertensive treatment was greater in men than in women (-30 vs -24 g, P=0.01). However, after adjusting for baseline LV mass and randomized study treatment, LV mass reduction was greater in women than in men (-33 vs -23 g, P=0.001). LV mass regression was greater in women, by 8.0+/-2.8 g, after adjusting for baseline LV mass and randomized study treatment. After consideration of baseline LV mass and randomized study treatment, antihypertensive treatment regressed LV hypertrophy more in women. Further studies are needed to identify the mechanisms and prognostic implications of this sex-related difference.

Aged↗

Association of left bundle branch block with left ventricular structure and function in hypertensive patients with left ventricular hypertrophy: the LIFE study.

Electrocardiographic (ECG) left bundle branch block (LBBB) is associated with left ventricular hypertrophy (LVH), but its relation to left ventricular (LV) geometry and function in hypertensive patients with ECG LVH is unknown. Echocardiograms were performed in 933 patients (548 women, mean age 66+/-7 years) with essential hypertension and LVH by baseline ECG in the Losartan Intervention For Endpoint reduction in hypertension (LIFE) study. LBBB, defined by Minnesota code 7.1, was present in 47 patients and absent in 886 patients. Patients with and without LBBB were similar in age, gender, body mass index, blood pressure, prevalence of diabetes, and history of myocardial infarction. Despite similarly elevated mean LV mass (126+/-25 vs 124+/-26 g/m(2)) and relative wall thickness (0.41+/-0.07 vs 0.41+/-0.07, P=NS), patients with LBBB had lower LV fractional shortening (30+/-6 vs 34+/-6%), ejection fraction (56+/-10 vs 61+/-8%), midwall shortening (14+/-2 vs 16+/-2%), stress-corrected midwall shortening (90+/-13 vs 97+/-13%) (all P<0.001), and lower LV stroke index (38+/-7 vs 42+/-9 ml/m(2)) (P<0.05). Patients with LBBB also had reduced LV inferior wall and lower mitral E/A ratio (0.75+/-0.18 vs 0.87+/-0.38) (all P<0.05). The above univariate results were confirmed by multivariate analyses adjusted for gender, age, blood pressures, height, weight, body mass index, heart rate, and LV mass index. Among hypertensive patients at high risk because of ECG LVH, the presence of LBBB identifies individuals with worse global and regional LV systolic function and impaired LV relaxation without more severe LVH by echocardiography.

Aged↗

Albuminuria predicts cardiovascular events independently of left ventricular mass in hypertension: a LIFE substudy.

We wanted to investigate whether urine albumin/creatinine ratio (UACR) and left ventricular (LV) mass, both being associated with diabetes and increased blood pressure, predicted cardiovascular events in patients with hypertension independently. After 2 weeks of placebo treatment, clinical, laboratory and echocardiographic variables were assessed in 960 hypertensive patients from the LIFE Echo substudy with electrocardiographic LV hypertrophy. Morning urine albumin and creatinine were measured to calculate UACR. The patients were followed for 60+/-4 months and the composite end point (CEP) of cardiovascular (CV) death, nonfatal stroke or nonfatal myocardial infarction was recorded. The incidence of CEP increased with increasing LV mass (below the lower quartile of 194 g to above the upper quartile of 263 g) in patients with UACR below (6.7, 5.0, 9.1%) and above the median value of 1.406 mg/mmol (9.7, 17.0, 19.0%(***)). Also the incidence of CV death increased with LV mass in patients with UACR below (0, 1.4, 1.3%) and above 1.406 mg/mmol (2.2, 6.4, 8.0%(**)). The incidence of CEP was predicted by logUACR (hazard ratio (HR)=1.44(**) for every 10-fold increase in UACR) after adjustment for Framingham risk score (HR=1.05(***)), history of peripheral vascular disease (HR=2.3(*)) and cerebrovascular disease (HR=2.1(*)). LV mass did not enter the model. LogUACR predicted CV death (HR=2.4(**)) independently of LV mass (HR=1.01(*) per gram) after adjustment for Framingham risk score (HR=1.05(*)), history of diabetes mellitus (HR=2.4(*)) and cerebrovascular disease (HR=3.2(*)). (*)P<0.05, (**)P<0.01, (***)P<0.001. In conclusion, UACR predicted CEP and CV death independently of LV mass. CV death was predicted by UACR and LV mass in an additive manner after adjustment for Framingham risk score and history of CV disease.

Aged↗

Impact of valvular regurgitation on left ventricular geometry and function in hypertensive patients with left ventricular hypertrophy: the LIFE study.

Mild-to-moderate aortic and mitral regurgitation are frequently detected by echocardiogram in asymptomatic hypertensive patients. Our goal was to assess the prevalence and impact of mild-to-moderate mitral and/or aortic regurgitation on left ventricular (LV) structure and function in patients with hypertension and LV hypertrophy (LVH). Hypertensive patients with ECG LVH enrolled in the Losartan Intervention For Endpoint reduction in hypertension (LIFE) echocardiography substudy were evaluated. Among 939 patients with needed LV measurements and Doppler data, 242 had mild (1+) valvular regurgitation, and 51 patients had moderate (2+ or 3+) regurgitation of one or both valves. In analyses adjusting for gender, patients with mild mitral and/or aortic regurgitation had larger LV internal dimensions (5.25 vs 5.33 cm, P<0.05), higher LV mass indexed for body surface area (122 vs 125 g/m(2), P<0.05) or height(2.7) (55.4 vs 57.3, P<0.05), and larger left atrial diameter. Patients with moderate regurgitation of one or both valves had larger LV chambers (5.25 vs 5.9 cm, P<0.001), greater mean LV mass (232 vs 248 g, P<0.001) and LV mass indexed for body surface area or height(2.7), and higher Doppler stroke volume. Patients with moderate valvular regurgitation also had a higher prevalence of LVH due to an increased prevalence of eccentric LVH. There were no differences among groups defined by the presence and severity of valvular regurgitation in cardiac output, total peripheral resistance, or pulse pressure/stroke volume, indicating that the observed inter-group differences in LV geometry were not due to differences in the haemodynamic severity of hypertension. Hypertensive patients with mild-to-moderate mitral or aortic valvular insufficiency have additional LV structural and functional changes that may affect prognosis.

Aged↗

Impact of age on left ventricular hypertrophy regression during antihypertensive treatment with losartan or atenolol (the LIFE study).

To assess the influence of age on changes in left ventricular (LV) mass and geometry during antihypertensive treatment, we related age to clinical and echocardiographic findings before and after 4 years of antihypertensive treatment in a subset of 560 hypertensive patients without known concurrent disease in the Losartan Intervention For Endpoint reduction in hypertension (LIFE) study, which randomized patients to blinded losartan- or atenolol-based treatment. Patients >/=65 years (older group) included more women and patients with isolated systolic hypertension or albuminuria (all P<0.05). Compared to patients <65 years, older patients had higher pulse pressure, LV mass, and prevalence of concentric hypertrophy at baseline (78 vs 69 mmHg, 234 vs 224 g, and 28 vs 16%, respectively, all P<0.01), while the mean blood pressure did not differ. Over 4 years, reductions in LV mass and the mean blood pressure were similar in both groups, but older patients more often had residual hypertrophy (31 vs 15%, P<0.001) with a preponderance of eccentric geometry. In multivariate analysis of 4-year change in LV mass controlling for baseline mass, larger hypertrophy reduction was associated with losartan treatment, while age, gender, body mass index, and 4-year change in pulse pressure and albuminuria did not enter (Multiple R (2)=0.40, P<0.001). Thus, in up-to-80-year-old hypertensive patients with left ventricular hypertrophy, age did not significantly attenuate hypertrophy reduction during antihypertensive treatment, although residual hypertrophy was more prevalent in older patients as a consequence of higher initial LV mass.

Age Factors↗

Usefulness of the assessment of the appropriateness of left ventricular mass to detect left ventricular systolic and diastolic abnormalities in absence of echocardiographic left ventricular hypertrophy: the LIFE study.

Conventional definitions of left ventricular (LV) hypertrophy do not account for interindividual differences in loading conditions. We may define LV mass as inappropriately high when exceeding 128% of theoretical values predicted by gender, height(2.7), and stroke work, which explain up to 82% of the variability of LV mass in normal reference subjects. In 652 participants in the Losartan Intervention For Endpoint reduction in hypertension study without clinically overt cardiovascular disease or diabetes, we investigated whether inappropriately high LV mass is associated with relevant LV abnormalities independent of traditional definition of LV hypertrophy (ie, LV mass index >116 g/m(2) in men and >104 g/m(2) in women). The study sample was divided into three groups: patients with inappropriately high LV mass but without LV hypertrophy were compared to patients with LV hypertrophy and to patients with appropriate LV mass and without LV hypertrophy. Patients with inappropriately high but nonhypertrophic LV mass had higher body mass index and relative wall thickness, and lower LV myocardial systolic function, than patients with appropriate LV mass or patients with LV hypertrophy. In multivariate analyses, inappropriately high LV mass was independently associated with lower myocardial systolic function independent of LV hypertrophy and other covariates. Inappropriately high LV mass was also associated with prolonged isovolumic relaxation time and lower mitral E/A ratio independent of covariates. In conclusion, inappropriately high LV mass was associated with relevant, often preclinical, manifestations of cardiac disease in the absence of traditionally defined echocardiographic LV hypertrophy and concentric geometry.

Aged↗

Alcohol consumption and cardiovascular risk in hypertensives with left ventricular hypertrophy: the LIFE study.

The Losartan Intervention For End point reduction in hypertension (LIFE) study showed superiority of losartan over atenolol for reduction of composite risk of cardiovascular death, stroke, and myocardial infarction in hypertensives with left ventricular hypertrophy. We compared hazard ratios (HR) in 4287 and 685 participants who reported intakes of 1-7 and >8 drinks/week at baseline, respectively, with those in 4216 abstainers, adjusting for gender, age, smoking, exercise, and race. Within categories, clinical baseline characteristics, numbers randomized to losartan and atenolol, and blood pressure (BP) lowering were similar on the drug regimens. Overall BP control (<140/90 mmHg) at end of follow-up was similar in the categories. Composite end point rate was lower with 1-7 (24/1000 years; HR 0.87, P<0.05) and >8 drinks/week (26/1000 years; HR 0.80, NS) than in abstainers (27/1000 years). Myocardial infarction risk was reduced in both drinking categories (HR 0.76, P<0.05 and HR 0.29, P<0.001, respectively), while stroke risk tended to increase with >8 drinks/week (HR 1.21, NS). Composite risk was significantly reduced with losartan compared to atenolol only in abstainers (HR 0.81 95% confidence interval, CI (0.68, 0.96), P<0.05), while benefits for stroke risk reduction were similar among participants consuming 1-7 drinks/week (HR 0.73, P<0.05) and abstainers (HR 0.72, P<0.01). Despite different treatment benefits, alcohol-treatment interactions were nonsignificant. In conclusion, moderate alcohol consumption does not change the marked stroke risk reduction with losartan compared to atenolol in high-risk hypertensives. Alcohol reduces the risk of myocardial infarction, while the risk of stroke tends to increase with high intake.

Aged↗

Improved adherence to practice guidelines yields better outcome in high-risk patients with acute coronary syndrome without ST elevation: findings from nationwide FINACS studies.

OBJECTIVES: Treatment options for acute coronary syndrome (ACS) without ST elevation have evolved rapidly during the recent years, but the successful implementation of practice guidelines incorporating new treatments into practice has been challenging. In this study, we evaluate whether targeted educational intervention could improve adherence to treatment guidelines of ACS without ST elevation. DESIGN, SETTING AND SUBJECTS: A previous study, FINACS I, evaluated the treatment and outcome of 501 consecutive non-ST elevation ACS patients that were referred in early 2001 to nine hospitals, covering nearly half of the Finnish population. That study revealed poor adherence to ESC guidelines, so targeted educational intervention on optimal practice was arranged before the second study (FINACS II), which was performed in the same hospitals using the same protocol as FINACS I. FINACS II, undertaken in early 2003, evaluated 540 consecutive patients. Interventions. Targeted educational programmes on optimal practice. MAIN OUTCOME MEASURES: The use of evidence-based therapies in non-ST elevation ACS patients. In-hospital event-free (death, new myocardial infarction, refractory angina, readmission with unstable angina and transient cerebral ischaemia/stroke) survival, and event-free survival at 6 months. RESULTS: Baseline characteristics and risk markers were similar in both studies, and no significant changes in resources were seen. In 2003, the in-hospital use of statins, ACE-inhibitors, clopidogrel and glycoprotein (GP) IIb/IIIa receptor antagonists increased significantly, and in-hospital angiography was performed more often, especially in high-risk patients (59% vs. 45%, P < 0.05); waiting time also shortened (4.2 +/- 5.5 vs. 5.8 +/- 4.7 days, P < 0.01). Overall no significant change was seen in the frequency of death either in-hospital (2% vs. 4%, P = NS) or at 6 months (7% vs. 10%, P = NS) in FINACS II. However, the survival of high-risk patients improved both in-hospital (95% vs. 90%, P = 0.05) and at 6 months (89% vs. 78%, P = 0.05). CONCLUSION: In patients with non-ST elevation ACS-targeted educational interventions appeared to be associated with improved adherence to practical guidelines, which yielded a better outcome in high-risk ACS patients.

Acute Disease↗

Levosimendan compared with dobutamine in low output patients.

There are 2 studies which have investigated the hemodynamic efficacy of levosimendan compared to dobutamine in congestive heart failure patients. The first is a dose finding comparative 24-h infusion trial which included 95 NYHA II-III patients to different doses of levosimendan and 20 patients to dobutamine administered as a continuous, open-label infusion of 6 microg/kg/min. Efficacy and safety of levosimendan in severe low-output heart failure a randomized, double-blind comparison to dobutamine study compared the short- and long-term efficacy and safety of a single 24-hour infusion of levosimendan (n=103) with dobutamine (n=100) in hospitalised patients in acute heart failure. This double-blind, parallel-group, randomised trial showed that, irrespective of the aetiology of the heart failure, levosimendan produced significantly greater improvement in major determinants of cardiac function in heart failure patients compared to dobutamine. Levosimendan produced significantly greater haemodynamic improvements than dobutamine by significantly reduced mortality at 31 days compared with dobutamine; this reduction was maintained at 180 days. Levosimendan significantly increased the number of days alive and out of hospital, compared with dobutamine. It was better tolerated than dobutamine and fewer patients receiving levosimendan experienced arrhythmias and myocardial ischaemia, compared with dobutamine. Levosimendan produced haemodynamic responses that were unaffected by concomitant use of beta blockers.

Cardiac Output, Low↗

Serum homocysteine, creatinine, and glucose as predictors of the severity and extent of coronary artery disease in asymptomatic members of high-risk families.

BACKGROUND: There has been no previous study to determine the severity and extent of coronary artery disease (CAD) in subjects with no diagnosis or symptoms of CAD at the time of the angiography. METHODS: Fifty-three subjects, who were siblings of patients with early onset CAD, underwent coronary angiography. Indices to describe per-patient characteristics of CAD were calculated, based on computer-aided quantitative coronary angiography. Clinical and laboratory characteristics were correlated to the angiographic parameters. RESULTS: Serum total homocysteine (rho = 0.29, P < 0.05) and creatinine (rho = 0.47, P = 0.001) levels were related to the global atheroma burden index. The median of the atheroma burden index was two times higher in the top homocysteine quartile compared to the lowest quartile. The overall atheroma burden index correlated significantly with the fasting blood glucose level in all subjects. Diabetes, especially when albuminuria was present, was a powerful risk factor. In a multivariate analysis, only age and sex were independent predictors of atheroma burden. CONCLUSIONS: Serum homocysteine and creatinine concentrations, and diabetes with albuminuria were found to be markers of the severity and extent of CAD in subjects of high-risk families without symptoms of CAD.

Biomarkers↗

Safety and efficacy of a novel calcium sensitizer, levosimendan, in patients with left ventricular failure due to an acute myocardial infarction. A randomized, placebo-controlled, double-blind study (RUSSLAN).

AIMS: To evaluate the safety and efficacy of levosimendan in patients with left ventricular failure complicating acute myocardial infarction. METHODS AND RESULTS: Levosimendan at different doses (0.1-0.4 microg x kg(-1) x min(-1)) or placebo were administered intravenously for 6h to 504 patients in a randomised, placebo-controlled, double-blind study. The primary end-point was hypotension or myocardial ischaemia of clinical significance adjudicated by an independent Safety Committee. Secondary end-points included risk of death and worsening heart failure, symptoms of heart failure and all-cause mortality. The incidence of ischaemia and/or hypotension was similar in all treatment groups (P=0.319). A higher frequency of ischaemia and/or hypotension was only seen in the highest levosimendan dose group. Levosimendan-treated patients experienced lower risk of death and worsening heart failure than patients receiving placebo, during both the 6h infusion (2.0% vs 5.9%; P=0.033) and over 24h (4.0% vs 8.8%; P=0.044). Mortality was lower with levosimendan compared with placebo at 14 days (11.7% vs 19.6%; hazard ratio 0.56 [95% CI 0.33-0.95];P =0.031) and the reduction was maintained at the 180-day retrospective follow-up (22.6% vs 31.4%; 0.67 [0.45-1.00],P =0.053). CONCLUSION: s Levosimendan at doses 0.1-0.2 microg x kg(-1) x min(-1) did not induce hypotension or ischaemia and reduced the risk of worsening heart failure and death in patients with left ventricular failure complicating acute myocardial infarction.

Acute Disease↗

Impact of coronary artery disease on left ventricular systolic function and geometry in hypertensive patients with left ventricular hypertrophy (the LIFE study).

Hypertensive patients with left ventricular (LV) hypertrophy have a higher incidence of cardiovascular events than those without it. We hypothesized that a close relation exists between clinical evidence of coronary artery disease (CAD) and alterations in LV structure and function that contribute to their higher risk. Echocardiograms were recorded in 963 hypertensive patients (mean age 66 +/- 7 years, 41% women) with electrocardiographic LV hypertrophy, and divided into 149 with and 814 without clinical (prior myocardial infarction or angina pectoris) or electrocardiographic (Minnesota codes 1.1, 1.2) evidence of CAD. Patients with CAD had larger LV internal dimensions (5.5 +/- 0.6 vs 5.2 +/- 0.5 cm), increased LV mass (136 +/- 31 vs 122 +/- 24 g/m(2), and 62.4 +/- 19.4 vs 55.5 +/- 12.1 g/m(2.7)), lower ejection fraction (58 +/- 10% vs 62 +/- 8%), higher circumferential end-systolic wall stress (cESS) (198 +/- 59 vs 181 +/- 47 kdynes/cm(2), all p <0.001), and higher total peripheral resistances (2,088 +/- 628 vs 1,963 +/- 553 dynes x s x m(2)/cm(3), p = 0.02). Although eccentric LV hypertrophy predominated, the CAD group had a greater prevalence of this geometric pattern than the non-CAD group (56% vs 47%, p <0.02). An index of myocardial oxygen demand per beat--the LV mass x cESS x ejection time--was 20% higher in patients with CAD. In conclusion, clinical evidence of CAD in hypertensive patients with electrocardiographic evidence of LV hypertrophy identifies subjects with structural and functional abnormalities at high risk for cardiovascular events. LV mass. cESS. ejection time, a noninvasive index that parallels myocardial oxygen demand per beat, is especially high in hypertensive patients with CAD.

Aged↗