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Sökning: WFRF:(Branth Stefan)

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  • Branth, Stefan, et al. (författare)
  • Development of abdominal fat and incipient metabolic syndrome in young healthy men exposed to long-term stress
  • 2007
  • Ingår i: NMCD. Nutrition Metabolism and Cardiovascular Diseases. - : Elsevier BV. - 0939-4753 .- 1590-3729. ; 17:6, s. 427-435
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND AND AIM: The sympathetic nervous system may be involved in the pathophysiology of insulin resistance and metabolic cardiovascular syndrome in young men. The aim was to study the effects of long-term stress on different features of the metabolic syndrome (MES) in formerly non-obese healthy young males during 5 months of defined conditions. METHODS AND RESULTS: Sixteen healthy male sailors (mean age 36.5 (SD)+/-7 years) participating in a sailing race around the world were recruited for the study. Investigations were done before the start and at stop overs after finishing laps 1, 2 and 4 (1, 2(1/2) and 5 months, respectively). Anthropometric and blood pressure data as well as biochemical data associated with MES were substantiated. Food intake and exercise were chartered and largely controlled. A mean weight loss of 4.5+/-2 kg (P<0.005), comprising both fat and lean body mass, was recorded during the first lap. Subsequently after 5 months, a weight gain, mainly consisting of 1.2+/-1.1 kg body fat (P<0.05), took place, concomitantly with a protein mass drop of 0.6+/-1.1 kg (P<0.05). The body fat gain accumulated on the abdominal region. Elevated blood levels of HbA1c, insulin and the triglycerides/high-density lipoprotein ratio were also observed during the race. Likewise heart rate and systolic blood pressure increased slightly but to a statistically significant extent. CONCLUSIONS: Non-obese healthy young men exposed to long-term stress developed abdominal obesity and signs of a metabolic syndrome in embryo, also emphasized by biochemical and blood pressure alterations. It is suggested that long-term and sustained stress activation might be an additional risk factor for the development of MES, even after control of dietary and exercise habits.
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  • Branth, Stefan, 1959- (författare)
  • Energy Metabolic Stress Syndrome : Impact of Physical Activity of Different Intensity and Duration
  • 2006
  • Doktorsavhandling (övrigt vetenskapligt/konstnärligt)abstract
    • All living cell functions require an ongoing supply of energy derived from carbohydrates, lipids and proteins with their own pathways of breakdown. All of them end up in the oxidation of reduced coenzymes, yielding chemically-bound energy in the form of adenosine triphosphate (ATP). One broad definition of energy would be the capability to do work and, therefore, the more work that has to be done, the more energy is needed, which may under extreme conditions put the cell into a state of energy metabolic stress. This complex of problems has been examined in the present thesis, where individuals representing different degrees of training status, have been subjected to various types of stressful work-loads as regards intensity and duration. Meanwhile, the energy turnover has been monitored on different levels as whole body (organism)-, single organ/tissue-, cellular and molecular levels. Combined methodologies have been developed and utilized to examine carefully and in some detail energy expenditure and biochemical variables with study subjects under long-term, (outfield) physically and mentally stressful conditions.When the individuals were in a well-controlled energy balance, a diet rich in saturated fatty acids did not elicit any major metabolic stress signs concerning serum lipoproteins and/or insulin/glucose homeostasis during the test period including high volume and low intensity energy turn over. Only a slight decrease in the Apo-B / Apo-A1 ratio was observed, despite a period of totally sedentary life style among the participants. Mental stress combined with a varying energy balance during off-shore sailing races was shown to cause such an energy metabolic stress situation that development of abdominal obesity and signs of a metabolic syndrome in embryo affected the participants who were young, non-obese men and despite their fairly healthy lifestyle concerning the diet they were on and their physical activity habits. Even well-trained young individuals of both sexes, subjected to exhaustive endurance (high intensity exercise session), developed signs of insulin resistance with a deteriorated intracellular glucose availability leading to a supposed ion pump failure and a disturbed osmoregulation on a cellular level. Hence, they presented themselves as having acquired an energy metabolic stress like condition.In conclusion, an energy metabolic stress syndrome has been described, basically due to impaired fuelling of ion pumps with a cluster of signs and symptoms on single organ/tissue-, cellular and molecular levels manifested by muscular intracellular swelling, tendency towards erythrocyte shrinkage as a consequence of a relative insulin resistance concomitant with ion distribution disturbances (Gardos effect), oxidative stress and osmoregulatory taurine leakage.
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  • Branth, Stefan, et al. (författare)
  • Energy turnover in a sailing crew during offshore racing around the world
  • 1996
  • Ingår i: Medicine & Science in Sports & Exercise. - 0195-9131 .- 1530-0315. ; 28:10, s. 1272-1276
  • Tidskriftsartikel (refereegranskat)abstract
    • Energy turnover during offshore sailing was studied in 11 male crew members of one team during the first three legs of the 1993-1994 Whitbread Round The World Race. The effect of racing on the energy balance of the crew members was studied by anthropometric measurements and dietary intake as calculated from food inventories before and after each leg. Energy turnover, calculated from dietary intake and release of endogenous energy as a result of changes in body composition, was higher than expected (about 18-20 MJ·d-1). These findings were confirmed using the doubly labeled water technique in six crew members during the third leg, in which mean energy turnover was found to be 19.3 MJ·d-1. Changes in body weight and composition indicated a negative energy balance during all legs.
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  • Branth, Stefan, et al. (författare)
  • Metabolic stress-like condition can be induced by prolonged strenuous exercise in athletes
  • 2009
  • Ingår i: Upsala Journal of Medical Sciences. - : Taylor & Francis. - 0300-9734 .- 2000-1967. ; 114:1, s. 12-25
  • Tidskriftsartikel (refereegranskat)abstract
    • Few studies have examined energy metabolism during prolonged, strenuous exercise. We wanted therefore to investigate energy metabolic consequences of a prolonged period of continuous strenuous work with very high energy expenditure. Twelve endurance-trained athletes (6 males and 6 females) were recruited. They performed a 7-h bike race on high work-load intensity. Physiological, biochemical, endocrinological, and anthropometric muscular compartment variables were monitored before, during, and after the race. The energy expenditure was high, being 5557 kcal. Work-load intensity (% of VO2 peak) was higher in females (77.7%) than in men (69.9%). Muscular glycogen utilization was pronounced, especially in type I fibres (>90%). Additionally, muscular triglyceride lipolysis was considerably accelerated. Plasma glucose levels were increased concomitantly with an unchanged serum insulin concentration which might reflect an insulin resistance state in addition to proteolytic glyconeogenesis. Increased reactive oxygen species (malondialdehyde (MDA)) were additional signs of metabolic stress. MDA levels correlated with glycogen utilization rate. A relative deficiency of energy substrate on a cellular level was indicated by increased intracellular water of the leg muscle concomitantly with increased extracellular levels of the osmoregulatory amino acid taurine. A kindred nature of a presumed insulin-resistant state with less intracellular availability of glucose for erythrocytes was also indicated by the findings of decreased MCV together with increased MCHC (haemoconcentration) after the race. This strenuous energy-demanding work created a metabolic stress-like condition including signs of insulin resistance and deteriorated intracellular glucose availability leading to compromised fuelling of ion pumps, culminating in a disturbed cellular osmoregulation indicated by taurine efflux and cellular swelling. © 2009 Informa UK Ltd All rights reserved.
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  • Branth, Stefan, et al. (författare)
  • Minor changes in blood lipids after 6 weeks of high-volume low- intensity physical activity with strict energy balance control.
  • 2006
  • Ingår i: Eur J Appl Physiol. - : Springer Science and Business Media LLC. - 1439-6319 .- 1439-6327. ; 96:3, s. 1-7
  • Tidskriftsartikel (refereegranskat)abstract
    • Physical activity has been shown to favorably affect metabolic risk markers, including blood lipids. The impact of high-energy turnover, without influencing the traditionally used markers of exercise training effects, on blood lipids is still unclear. The aim was to study the effect of high-volume low-intensity physical activity on the blood lipid pattern, with a tight control of diet and energy balance. Eight untrained men [42.5 (12.1) years, body mass index 24.2 (2.8) kg m(-2)] were tested in two different 6-week protocols. In the sedentary protocol, the subjects were instructed to limit their everyday physical activity. In the activity protocol, a 2-h physical activity bout was performed 5 days week(-1) (~40% of VO(2max); equivalent of an additional 21 MJ week(-1) in energy expenditure). The diet for both protocols comprised ~40 energy percent (E%) fat, ~50 E% carbohydrates (CHO). The polyunsaturated fatty acids to saturated fatty acids ratio of the diet was ~0.12. There were no changes during each 6-week period or differences between the two protocols in body weight, body composition or aerobic capacity. Low-intensity physical activity did not affect lipid parameters substantially, except for a slightly lower Apo-B/Apo-A1 ratio with the activity protocol (P<0.05). Total and low-density lipoprotein cholesterol, as well as Apo-B and Apo-A1, were increased during the beginning of each 6-week period (P<0.05), but returned to basal levels by the sixth week. In conclusion, 6 weeks of high-volume low-intensity physical activity did not affect blood lipids substantially.
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