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Frederik Andreasen

Publications and source records attributed to Frederik Andreasen.

7 recordsLinked to original sources

Loop diuretics increase bone turnover and decrease BMD in osteopenic postmenopausal women: results from a randomized controlled study with bumetanide.

UNLABELLED: To study effects of loop diuretics on bone, 87 women were randomized to 1 year of treatment with bumetanide or placebo. Compared with placebo, bumetanide decreased BMD by 2% at the total hip and by 1.4% at the whole body. Levels of biochemical bone markers were lower in the placebo than in the bumetanide group. Thus, treatment with loop diuretics affects bone metabolism. INTRODUCTION: Loop diuretics may affect bone because they increase the renal calcium excretion and alters the diurnal rhythm of plasma PTH levels. We studied the effects of 1 year of treatment with the loop diuretic bumetanide on bone metabolism. MATERIALS AND METHODS: In a double-blinded design, 87 healthy postmenopausal women with osteopenia were randomized to 1-year bumetanide treatment 2 mg/day or placebo. BMD, plasma levels of calcitropic hormones, and biochemical bone markers were measured at baseline, after 1 year of treatment (week 52), and 6 months after withdrawal of treatment (week 78). Calcium (800 mg/day) and vitamin D (10 microg/day) were administered to all participants during the entire 1.5-year study period. RESULTS: Compared with placebo, urinary calcium (+17%) and plasma PTH levels (+9%) increased significantly in response to bumetanide. After 1 year of treatment, BMD in the bumetanide compared with the placebo group was significantly decreased by 2% at the total hip and ultradistal forearm and by 1.4% at the whole body. In addition, levels of biochemical markers of bone turnover differed significantly (approximately 20%) between groups, with lower levels in the placebo than in the bumetanide group. Six months after the end of treatment, the effects of bumetanide were weakening. CONCLUSIONS: Treatment with loop diuretics affects bone turnover and decreases BMD. Further studies may reveal whether loop diuretics should be considered as a risk factor for fracture.

Aged↗

Endoluminal pelvic perfusion with norepinephrine causes only minor systemic effects and diminishes the increase in pelvic pressure caused by perfusion.

OBJECTIVE: To evaluate the effect of endoluminal norepinephrine (NE) on transport pressures of the normal upper urinary tract of the pig and on plasma levels of NE in relation to possible systemic effects. MATERIAL AND METHODS: Six anaesthetized pigs weighing approximately 39 kg were studied. Transparenchymally, two 6-F catheters were introduced into the renal pelvis bilaterally to measure pressure and perfusion. Ultrasonic flow probes recorded renal arterial blood flow, and a transurethral 10-F catheter drained the bladder and monitored diuresis. In all six animals, the bilateral pelvic pressure response was examined at increasing perfusion rates (2, 4, 6, 8, 10 and 15 ml/min) and with increasing doses of NE (0, 5, 50 and 100 microg/ml). Arterial blood samples were analysed for NE, epinephrine and blood glucose. The systemic blood pressure, heart rate and electrocardiogram were registered. RESULTS: At all the investigated concentrations, endoluminal NE significantly diminished the increase in pelvic pressure caused by pelvic perfusion at all flow rates. At the lowest concentration of NE, no significant increase in the plasma level of NE was observed and the blood pressure did not increase. During perfusion with 50 and 100 microg/ml NE, plasma levels of NE increased significantly from 487+/-398 to 1798+/-910 and 2961+/-2093 pg/ml, respectively. This was accompanied by significant rises in mean systolic blood pressure from a baseline value of 95+/-10 mmHg to 111+/-20 and 118+/-23 mmHg, respectively. Heart rate, renal arterial blood flow and plasma levels of epinephrine and glucose did not change. CONCLUSIONS: Endoluminal NE diminished the increase in pelvic pressure caused by pelvic perfusion even at concentrations too low to cause significant changes in NE plasma levels or systemic effects. Very high NE concentrations in the perfusion fluid caused increased plasma levels and a modest but significant increase in blood pressure. Administration of endoluminal NE may be useful in upper urinary tract stone treatment and endoscopy.

Adrenergic alpha-Agonists↗

Effects of simvastatin on bone turnover and BMD: a 1-year randomized controlled trial in postmenopausal osteopenic women.

UNLABELLED: To study effects of statins on human bone, 82 postmenopausal women were randomized to 1-year treatment with simvastatin 40 mg/day or placebo. The study showed no effect of simvastatin on biochemical bone markers or on BMD at the hip or spine. Thus, our results do not support a general beneficial effect of simvastatin on bone. INTRODUCTION: Statins have been reported to cause bone anabolic as well as antiresorptive effects, and therefore statins have been suggested as potential agents in treatment of osteoporosis. MATERIALS AND METHODS: In a double-blinded design, 82 healthy postmenopausal women with osteopenia were randomized to 1-year simvastatin treatment 40 mg/day or placebo. BMD and plasma levels of cholesterol, parathyroid hormone (PTH), and biochemical bone markers were measured at baseline, after 1 year of treatment (week 52), and 26 weeks after withdrawal of treatment (week 78). Calcium supplements (400 mg/day) were administrated during the entire 1.5-year study period. RESULTS: Seventy-eight women completed the 1-year treatment. After 1 year, simvastatin but not placebo caused reduced plasma cholesterol (-27% versus +1%, p < 0.001) and low-density lipoprotein (LDL) levels (-43% versus +1%, p < 0.001). After withdrawal of treatment, cholesterol and LDL levels returned to baseline levels and no longer differed from the placebo group. However, plasma levels of PTH and biochemical bone markers did not differ between groups at week 52 or 78. Compared with placebo, simvastatin caused no changes in BMD at the lumbar spine, total hip, femoral neck, or whole body at week 52 or 78. However, a significant increase in BMD was found in response to simvastatin at the forearm. Within the simvastatin group, changes in cholesterol levels did not correlate to BMD changes at any site. CONCLUSIONS: Our results do not support a general beneficial effect of simvastatin on bone.

Aged↗

Randomized, concentration-controlled trial of topiramate in refractory focal epilepsy.

OBJECTIVE: To establish the concentration response of topiramate in patients with refractory focal epilepsy. METHODS: Sixty-five patients with more than eight seizures during an 8-week baseline were randomized to three prespecified plasma levels (low, 6 micromol/L [2 mg/L]; medium, 31 micromol/L [10.5 mg/L]; and high, 56 micromol/L [19 mg/L]). Topiramate treatment was titrated to one of the prespecified plasma levels during an 8-week titration period, followed by a 12-week observation period. RESULTS: The overall median (25th to 75th percentile) reduction in seizures during the observation compared with baseline was 50% (9.5 to 90%). In the individual groups, the median reduction was as follows: low, 39% (13 to 70%); medium, 85% (41 to 96%); and high, 39% (2.0 to 81%). The primary outcome of the trial was the comparison of seizure reduction (Mann-Whitney U test) between the low and the medium group (p = 0.03). Comparisons between the other groups were as follows: medium vs high (p = 0.05) and low vs high (p = 0.81). Psychiatric adverse events and adverse events related to the CNS were the most frequently encountered. Most adverse events showed concentration response, particularly between low and medium levels. CONCLUSIONS: Patients assigned to the medium plasma level (31 micromol/L [10.5 mg/L]) had the best seizure outcome. Patients in the medium and high groups experienced more adverse events than patients in the low group. Optimal treatment response is thus most likely found at plasma concentrations higher than 6 micromol/L (2 mg/L), but no further increase in efficacy seems to occur at concentrations above 31 micromol/L (10.5 mg/L).

Adult↗

Effect of carvedilol on microcirculatory and glucose metabolic regulation in patients with congestive heart failure secondary to ischemic cardiomyopathy.

In a randomized (2:1), double-blinded design study, we studied 25 patients with congestive heart failure (66 +/- 9 years, ejection fraction 30 +/- 7%) before and after 23-week treatment with the beta blocker carvedilol 25 mg twice daily (n = 17) or placebo (n = 8) in addition to standard therapy. Using dynamic positron emission tomography, myocardial perfusion at rest and perfusion reserve after dipyridamole (0.56 mg/kg/min) were measured. Myocardial glucose uptake and plasma levels of catecholamines were also estimated. Carvedilol treatment reduced the rate-pressure product (8,781 +/- 2,672 vs 6,342 +/- 1,346, p <0.01) and improved ejection fraction (29 +/- 7% vs 37 +/- 11%, p <0.001), whereas no changes were observed in the control group. Perfusion at rest was unchanged in the placebo group (0.81 +/- 0.17 vs 0.86 +/- 0.23 ml/g/min, p = NS), whereas the carvedilol-treated group showed a significant reduction (0.88 +/- 0.26 vs 0.75 +/- 0.16 ml/g/min, p <0.05). Dipyridamole-induced hyperemia was significantly reduced after carvedilol treatment (1.51 +/- 0.45 vs 1.31 +/- 0.51 ml/g/min, p <0.001), whereas myocardial perfusion reserve was unaltered. Carvedilol did not alter myocardial glucose uptake (0.33 +/- 0.14 vs 0.32 +/- 0.12 micromol/g/min, p = NS) or the plasma catecholamines levels. We therefore conclude that in patients with congestive heart failure, carvedilol reduced resting and hyperemic perfusion. No effect on glucose uptake or catecholamine levels was observed. The reduced perfusion at rest must reflect reduced perfusion demand and thereby a higher threshold for myocardial ischemia and protection against myocardial damage or malignant arrhythmia. These effects may serve as a pathophysiologic explanation for the reduced mortality in patients with congestive heart failure who receive carvedilol.

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Carvedilol does not alter the insulin sensitivity in patients with congestive heart failure.

BACKGROUND: Congestive heart failure (CHF) has previously been shown to be associated with insulin resistance and hyperinsulinemia. A beneficial effect of the non-selective beta-blocker carvedilol has been demonstrated in patients with CHF. However, whether the drug affects the insulin sensitivity (S(i)) is unknown. AIMS: To investigate whether treatment with carvedilol alters the S(i) in patients with CHF during a prospective, double-blinded, placebo-controlled study. METHODS AND RESULTS: The patients were randomized to receive either carvedilol (n=29) or matched placebo (n=17). Insulin and glucose responses were measured during a 0.3 g/kg intravenous glucose tolerance test, and S(i) was calculated according to Bergman's Minimal Model. Baseline S(i) values correlated significantly with body mass index (r=-0.42, P=0.002), plasma urate (r=-0.42, P=0.002), plasma HDL-cholesterol (r=0.39, P=0.003), maximal oxygen uptake (r=0.35, P=0.009), plasma triglycerides (r=-0.34, P=0.01) and weight (r=-0.29, P=0.03). During the study the insulin sensitivity was unchanged in the carvedilol group compared with placebo (2.63+/-1.45 to 2.38+/-1.64 vs. 2.81+/-2.36 to 2.48+/-1.84x10(-4) min(-1)/mUl(-1), P=0.83). CONCLUSION: Additional treatment with carvedilol is neutral with regard to influence the insulin sensitivity in patients with mild to moderate CHF.

Adrenergic beta-Antagonists↗

Diurnal rhythm of plasma 1,25-dihydroxyvitamin D and vitamin D-binding protein in postmenopausal women: relationship to plasma parathyroid hormone and calcium and phosphate metabolism.

OBJECTIVE: Diurnal variations in plasma levels of 1,25-dihydroxyvitamin D (1,25(OH)(2)D) have previously only been investigated in young individuals, and these studies have failed to demonstrate a diurnal rhythm. We have studied whether plasma levels of 1,25(OH)(2)D and vitamin D-binding protein (DBP) vary in a diurnal rhythm in postmenopausal women. METHODS: Blood and urine were sampled with 2- and 4-h intervals in order to assess diurnal variations in plasma levels of 1,25(OH)(2)D, DBP and parathyroid hormone (PTH), as well as in plasma levels and urinary excretion rates of calcium and phosphate. Additionally, the free 1,25(OH)(2)D index was calculated (the molar ratio of 1,25(OH)(2)D to DBP). RESULTS: Plasma 1,25(OH)(2)D exhibited a diurnal rhythm (P<0.01) with a nadir in the morning (99+/-12 pmol/l), followed by a rapid increase to a plateau during the day (113+/-13 pmol/l, i.e. 14% above nadir level; P=0.005). A similar pattern of variation was found in plasma levels of DBP with peak levels 15% above nadir levels (P<0.01). The free 1,25(OH)(2)D index did not vary in a diurnal rhythm. PTH and plasma levels and urinary excretions of calcium and phosphate exhibited a diurnal pattern of variation. The diurnal rhythm of DBP was correlated with the rhythm of 1,25(OH)(2)D (r=0.47, P<0.01) and plasma albumin (r=0.76, P<0.01). Moreover, the rhythm of plasma calcium and PTH varied inversely (r=-0.36, P=0.02). CONCLUSIONS: With the disclosure of a diurnal rhythm of total plasma 1,25(OH)(2)D, all major hormones and minerals related to calcium homeostasis have now been shown to exhibit diurnal variations. In clinical studies, the diurnal variations of 1,25(OH)(2)D and DBP must be considered, i.e. blood sampling must be standardised according to the time of day.

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