Thursday, December 14, 2006

Obesity: predicts mortality

Body mass index predicts mortality
Some doubt has been cast on whether body mass index (BMI) is an adequate measure of obesity. Waits measurement alone is suggested as an alternative. Obesity, defined by a BMI (weight in kilograms divided by the square of the height in metres) of 30.0 or more, is associated with an increased risk of death, but the relation between overweight (a BMI of 25.0 to 29.9) and the risk of death has been questioned. The authors prospectively examined BMI in relation to the risk of death from any cause in 527 265 US men and women in the National Institutes of Health–AARP cohort who were 50–71 years old at enrolment in 1995–96. BMI was calculated from self-reported weight and height. Relative risks and 95% CIs were adjusted for age, race or ethnic group, level of education, smoking status, physical activity, and alcohol intake. During a maximum follow-up of 10 years through 2005, 61 317 participants (42 173 men and 19 144 women) died. Initial analyses showed an increased risk of death for the highest and lowest categories of BMI among both men and women, in all racial or ethnic groups, and at all ages. When the analysis was restricted to healthy people who had never smoked, the risk of death was associated with both overweight and obesity among men and women. In analyses of BMI during midlife (age of 50 years) among those who had never smoked, the associations became stronger, with the risk of death increasing by 20–40% among overweight persons and by two to at least three times among obese persons; the risk of death among underweight persons was attenuated.
Adams KF, Schatzkin A, Harris TB, et al.
Overweight, obesity, and mortality in a large prospective cohort of persons 50 to 71 years old. N Engl J Med 2006;355:763–78.[Abstract/Free Full Text]
Heart 2006;92:1886-1888

Wednesday, December 13, 2006

Long Term Hypertension: Hyperinsulinemia

HYPERINSULINEMIA AND LEFT VENTRICULAR HYPERTROPHY IN PATIENTS WITH LONG TERM HYPERTENSION
O.Yarynkina, O.Kupchinska, L.Zelenenka, M.Mospan, N.Tchyrulneva
Department of Hypertension, Institute of Cardiology, Kiev, Ukraine


Objective: The hyperinsulinemia has been associated with higher risk of target organ-damage. We evaluate relationship between the left ventricular function characteristics and insulinemia in the essential hypertension (EH) under 10 years observation.
Design and methods: We examined 57 patients with moderate EH at the primary appeal to the hospital and in 10 years after. Immunoreactive insulin (IRI) concentration was measured under standard oral glucose tolerance test (OGTT) at fasting and 60 and 120 min by radioimmunoassay. Left ventricular values were measured by echocardiography. Blood samples were drawn for the determination plasma creatinine and lipid concentration.
Results: Systolic blood pressure did not changed (162+7,2 and 165+5,3 mmHg accordingly) but DBP was significantly lower (103+3,3 and 97+4,5 mmHg, p<0,001)>
We found correlation of high IRI level under OGTT with LVMI2 (r=0,39,p<0,05) r="0,34,p<0,05).">


Conclusions: There are hyperinsulinemia in more than 50 % patients with longitudinal arterial hypertension that associated with LVMI increasing. This information indicates that hyperinsulinemia plays significant role in LV hypertrophy.

Heart Attacks: Treatment

Statin users risk heart attacks by dropping treatment or taking low doses

Thousands of statin users worldwide are suffering preventable heart attacks, simply because they are not complying with their treatment or are taking too low a dose.

These life-saving drugs, used to lower cholesterol levels in people at risk of coronary heart disease (CHD), can only be optimally effective if patients use them properly – and many are not.
That is the conclusion by the research team, who followed the prescription records of nearly 60,000 patients in the Netherlands for up to 14 years.
Dr Fernie Penning-van Beest and colleagues from the PHARMO Institute2, the Utrecht Institute of Pharmaceutical Sciences and the Academic Hospital in Amsterdam, analysed 548,084 prescriptions of statin treatment issued over the first two years of treatment3 in 59,094 new users in the period January 1991-December 2004, and followed the patients until their first hospital admission for heart attack, death, or the end of the study in December 2004.
The aim was to see how effective robust statin treatment was for primary and secondary CHD in the ‘real world’ – as opposed to in clinical trials. Their results enabled them to calculate the absolute number of avoidable heart attacks that occurred because patients had stopped taking their drugs or were not taking them consistently. They were also able to compare the preventive effects of different doses and types of statins.Patients were divided into two groups – those at high risk of heart attack and those at intermediate or low risk, with over a fifth of patients (12,762) considered high risk.
They found more than half of all patients (31,557) stopped taking statins within two years and only just over a third (20,883) were persistent users on a high or intermediate dose.
Among persistent users, hospital admission for heart attacks fell by nearly a third (30%) compared to non-persistent users, in both primary and secondary prevention groups. In the primary prevention group, admission was down from 0.52 per 100 patient years among non-persistent users to 0.42 per 100 patient years in persistent users. In the secondary prevention group it was down from 0.86 to 0.62.
Among patients using the high or intermediate doses the risk reduction was as high as 40%, while a low dose reduced the risk by only 20%.The researchers calculated that, every year, around 300 to 400 statin users in the Netherlands have an avoidable heart attack because of sub-optimal doses or discontinuing treatment. They believe the results are likely to be typical of Europe as a whole and of the USA, which means 7,000 to 9,000 Europeans and 5,000 to 7,000 Americans a year are suffering unnecessary heart attacks.
“What this clearly tells us,” said lead researcher Dr Penning-van Beest, a research associate at the PHARMO Institute, “is that our observational study supports robust cholesterol lowering, as recommended on the basis of clinical trials. But, drugs are only really effective if they are used properly and persistently.

Unfortunately, statins are not being used optimally, so thousands of people are having unnecessary heart attacks. Getting users to stay on statins and to use them persistently saves lives, and doctors must get over to patients the message that complying with treatment is essential.
”Different types of statins are used in different doses, so the researchers dealt with these differences by grading the five statins they assessed for equipotency (the dose of one type of statin needed to achieve the same effect as another type).
They found that as well as the largest reduction in heart attacks needing hospital admission being among patients consistently taking the drugs over the whole two-year period at persistently high or intermediate equipotent doses, these patients were also relatively more likely to be using second generation statins i.e. atorvastatin or rosuvastatin, rather than the first generation types, pravastatin, fulvastatin or simvastatin. Higher doses of first generation statins were being prescribed, but increasing the dose of these older statins is limited by the maximum safe dose.
Co-author Dr Ron Herings, scientific director of the PHARMO Institute and associate professor of pharmacoepidemiology at Utrecht University, said: “It is preferable to achieve a high equipotent dose by using the new, highly potent statins. But, the new statins have considerable economic impact on pharmaceutical budgets and the opposite trend is being encouraged in the Netherlands and Germany, where reimbursement measures promote the use of relatively inexpensive generic older types.”
He said: “This is fine, as long as guidelines for higher doses of these older statins are implemented, and bearing in mind that there may be limitations to giving the highest doses. But, restricting the use of older generic statins to standard low doses will make the problems worse.”Ideally, to improve the population effectiveness of statin treatment, persistent drug use and the use of new, potent statins, should be encouraged.

European Society of Cardiology
http://brightsurf.com/news

Tuesday, December 12, 2006

Metabolic Syndrome: Statistics

Adolescents

The prevalence of metabolic syndrome (MetS) among 12–19-year-old US adolescents was estimated in an analysis of NHANES III data, by applying a modification of the ATP III definition (Third Report of the National Cholesterol Education Program [NCEP] Expert Panel on Detection, Evaluation, and Treatment of High Blood Cholesterol in Adults [ATP III, NHLBI]) for adults. MetS during adolescence was defined as 3 or more of the following abnormalities:
—Serum triglyceride level of 110 mg/dL or higher.
—High-density lipoprotein (HDL) cholesterol level of 40 mg/dL or lower.
—Elevated fasting glucose of 110 mg/dL or higher.
—Blood pressure at or above the 90th percentile for age, sex and height.
—Waist circumference at or above the 90th percentile for age and sex (NHANES III data set)

An estimated 1 million 12–19-year-old adolescents in the United States have MetS, or 4.2% overall (6.1% of males and 2.1% of females).

–Of adolescents with MetS, 73.9% were overweight and 25.2% were at risk of overweight.
–The mean BMI of adolescents with the MetS (30.1%) was just above the 95th percentile of the CDC Growth Chart; thus they are likely to represent a fairly common clinical problem in pediatrics.
–MetS was present in 28.7% of overweight adolescents (BMI 95th percentile of CDC Growth Chart) compared with 6.8% of at-risk-of-overweight adolescents, and 0.1% of those with BMI below the 85th percentile (P<0.001).
–Among adolescents with MetS, 40.9% had 1 criterion; 14.2% had 2 criteria; 4.2% had 3 criteria and 0.9% had 4 criteria for MetS. For overweight adolescents, 88.5% had 1 criterion; 54.4% had 2 criteria; 28.7% had 3 criteria and 5.8% had 4 criteria for MetS.

  • Among more than 3400 children examined in 1 study, 1 in 10 had MetS.
  • Using a sample of adolescents from NHANES III, the overall prevalence of MetS was 38.7% in moderately obese subjects and 49.7% in severely obese subjects. The prevalence of MetS in severely obese black subjects was 39%.

Adults

People with MetS are at increased risk for developing diabetes and cardiovascular disease as well as increased mortality from CVD and all causes. Unless otherwise stated, the following data are based on the definition of the metabolic syndrome as determined in the Third Report of the National Cholesterol Education Program (NCEP) Expert Panel on Detection, Evaluation, and Treatment of High Blood Cholesterol in Adults (ATP III, NHLBI).

  • An estimated 47 million US residents have MetS.
  • The age-adjusted prevalence of MetS for adults is 23.7%.
    –The prevalence ranges from 6.7% among people ages 20–29 to 43.5% for ages 60–69 and 42.0% for those age 70 and older.
    –The age-adjusted prevalence is similar for men (24.0%) and women (23.4%).
    –Mexican Americans have the highest age-adjusted prevalence of MetS (31.9%). The lowest prevalence is among whites (23.8%), African Americans (21.6%) and people reporting an "other" race or ethnicity (20.3%).
    –Among African Americans, women had about a 57% higher prevalence than men. Among Mexican Americans, women had a 26% higher prevalence than men did.
  • The prevalences of people with MetS are 24.3%, 13.9% and 20.8 % for white, black and Mexican-American men, respectively. For women the percentages are 22.9, 20.9 and 27.2, respectively.
  • In a study of over 15 000 men and women, ages 45–64, in the ARIC study, MetS prevalence was 30% and 27% using ATP III and modified WHO definitions with substantial variation across race and gender subgroups. CHD prevalence was greater in those with than without MetS (ATP III 7.4% versus 3.6%; WHO 7.8% versus 3.6%, both P<0.0001).>

Circulation. 2006;113:e85-e151. © 2006 American Heart Association, Inc.

Monday, December 11, 2006

Blood Pressure:Psychological Stress

Delayed Blood Pressure Recovery After Psychological Stress Is Associated With Carotid Intima-Media Thickness

Andrew Steptoe; Ann E. Donald; Katie O’Donnell; Michael Marmot; John E. Deanfield
From the Department of Epidemiology and Public Health (A.S., K.O., M.M.), and the Vascular Physiology Unit (A.E.D., J.E.D.) Institute of Child Health, UCL, London.

Objective. Delayed blood pressure (BP) recovery after psychological stress is associated with low socioeconomic status (SES) and prospectively with increases in clinic BP. We tested whether poststress BP recovery was related to carotid atherosclerosis.

Methods and Results. Psychophysiological stress testing was performed with a healthy subgroup of the Whitehall II epidemiological cohort, and recovery systolic BP was monitored 40 to 45 minutes after stressful behavioral tasks. Carotid ultrasound scanning was conducted on 136 men and women (aged 55.3±2.7 years) 3 years after stress testing. Participants were divided into those whose systolic BP had returned to baseline in the recovery period (adequate recovery, n=37), and those whose BP remained elevated (delayed recovery, n=99). Systolic BP stress responses did not differ in the 2 groups. Carotid intima-media thickness (IMT) was associated with delayed recovery in lower SES (means 0.78 versus 0.65 mm) but not higher SES participants (means 0.75 versus 0.74 mm) after adjustment for age, gender, baseline systolic BP, and resting BP, smoking, body mass and fasting cholesterol at the time of ultrasound scanning (P=0.010).

Conclusions. Variations in poststress recovery reflect dysfunction of biological regulatory processes, and may partly mediate psychosocial influences on cardiovascular disease.

Delayed blood pressure recovery after psychological stress was associated with carotid intima-media thickness (IMT) in men and women of low but not high socioeconomic status independently of conventional risk factors. Variations in poststress recovery reflect dysfunction of biological regulatory processes, and may partly mediate psychosocial influences on cardiovascular disease.

Arteriosclerosis, Thrombosis, and Vascular Biology. 2006;26:2547.

© 2006 American Heart Association, Inc.