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Biomedical subjects

L Mosekilde

Publications and source records attributed to L Mosekilde.

At least 55 records · Page 3Linked to original sources

Hormone replacement therapy dissociates fat mass and bone mass, and tends to reduce weight gain in early postmenopausal women: a randomized controlled 5-year clinical trial of the Danish Osteoporosis Prevention Study.

The aim of this study was to study the influence of hormone replacement therapy (HRT) on weight changes, body composition, and bone mass in early postmenopausal women in a partly randomized comprehensive cohort study design. A total of 2016 women ages 45-58 years from 3 months to 2 years past last menstrual bleeding were included. One thousand were randomly assigned to HRT or no HRT in an open trial, whereas the others were allocated according to their preferences. All were followed for 5 years for body weight, bone mass, and body composition measurements. Body weight increased less over the 5 years in women randomized to HRT (1.94 +/- 4.86 kg) than in women randomized to no HRT (2.57 +/- 4.63, p = 0.046). A similar pattern was seen in the group receiving HRT or not by their own choice. The smaller weight gain in women on HRT was almost entirely caused by a lesser gain in fat. The main determinant of the weight gain was a decline in physical fitness. Women opting for HRT had a significantly lower body weight at inclusion than the other participants, but the results in the self-selected part of the study followed the pattern found in the randomized part. The change in fat mass was the strongest predictor of bone changes in untreated women, whereas the change in lean body mass was the strongest predictor when HRT was given. Body weight increases after the menopause. The gain in weight is related to a decrease in working capacity. HRT is associated with a smaller increase in fat mass after menopause. Fat gain protects against bone loss in untreated women but not in HRT-treated women. The data suggest that women's attitudes to HRT are more positive if they have low body weight, but there is no evidence that the conclusions in this study are skewed by selection bias.

Age Factors↗

Predicting human vertebral bone strength by vertebral static histomorphometry.

The study investigates the relationship between static histomorphometry and bone strength of human lumbar vertebral bone. The ability of vertebral histomorphometry to predict vertebral bone strength was compared with that of vertebral densitometry, and also with histomorphometry and bone strength of iliac crest bone biopsies. The material comprised matched sets of second lumbar vertebrae, third lumbar vertebrae, and two iliac crest bone biopsies from each of 21 women (19--96 years) and 24 men (23--95 years). One of the iliac crest biopsies and 9-mm-thick mediolateral slices of half of each of the entire vertebral bodies (L-2) were used for histomorphometry. The other iliac crest biopsies and the L-3 were destructively tested by compression. High correlation was found between BV/TV or Tb.Sp and vertebral bone strength (absolute value of r = 0.86 in both cases). Addition of Tb.Th significantly improved the correlation between BV/TV and bone strength, and the addition of bone space star volume significantly improved the correlation between Tb.Sp and bone strength (from absolute value of r = 0.86 to absolute value of r = 0.89 in both cases). Bone structure (connectivity density) was not capable of improving the prediction of bone strength of the vertebral body. The correlations between BV/TV of L-2 and bone strength of L-3 were comparable with the correlation obtained by quantitative computed tomography (QCT), peripheral QCT (pQCT), and dual-energy X-ray absorptrometry (DEXA) of L-3 and bone strength of L-3. The iliac crest was found to have low predictive power of vertebral bone strength (iliac BV/TV: r = 0.62; iliac bone strength: r = 0.67). No gender-related differences were found in any of the relationships. It was shown that trabecular bone volume BV/TV and mean trabecular plate separation Tb.Sp are good predictors of vertebral bone strength. The ability of histomorphometry to predict vertebral bone strength was comparable to that of densitometry. Bone structure assessed by connectivity density did not improve the correlation between static histomorphometric measures and vertebral bone strength. No gender-related differences were found in any of the relationships. Neither static histomorphometry nor biomechanical testing of iliac crest bone biopsies is a good predictor of vertebral bone strength.

Adolescent↗

Decreased trabecular bone biomechanical competence, apparent density, IGF-II and IGFBP-5 content in acromegaly.

BACKGROUND: Earlier studies on the effect of excess growth hormone (GH) on trabecular bone have been conflicting. Since insulin-like growth factors (IGFs) and their binding proteins (IGFBPs) in part mediate the effects of GH, the present study aimed to investigate trabecular bone composition of these growth factors in relation to biomechanical properties in acromegaly. MATERIALS AND METHODS: Trabecular bone biomechanical competence (compression test), apparent density (peripheral quantitative computed tomography, pQCT), and bone matrix contents of calcium (HCl hydrolysis) and IGFs (guanidinium-HCl extraction) were measured in iliac crest biopsies from 13 patients with active acromegaly (two women and 11 men, aged 21-61 years) and 21 age- and sex-matched controls (four women and 17 men, aged 23-64 years). RESULTS: Trabecular bone pQCT was reduced in acromegalic patients compared with controls (P = 0.005), as was biomechanical competence (P < 0.05 for all measures). These parameters were significantly positively correlated in both acromegalic patients and controls. The calcium content of trabecular bone was significantly increased in patients compared with controls. No significant differences were found in trabecular bone content of IGF-I, IGFBP-3, or osteocalcin. However, IGF-II and IGFBP-5 content was decreased (P < 0.001 and P < 0.05, respectively). CONCLUSIONS: The present study demonstrates reduced trabecular biomechanical competence and apparent density in acromegaly, supporting previous observations of an unfavourable effect of chronic excess GH on the axial skeleton. Furthermore, we demonstrate decreased trabecular bone content of IGF-II and IGFBP-5 in these patients. However, we found no direct causal relationship between trabecular bone density and bone content of IGF-system components.

Acromegaly↗

Statins decrease bone turnover in postmenopausal women: a cross-sectional study.

BACKGROUND: Statins have been suggested as potential agents in the management of osteoporosis. Reviews of medical records have shown an increased bone mass and some studies have shown a reduced occurrence of fractures in subjects on long-term treatment with statins. We studied the effects of treatment with statins on calcium homeostasis, bone turnover and bone mineral density. DESIGN: In a cross-sectional design, plasma levels of parathyroid hormone (PTH) and biochemical markers of bone turnover, bone mineral density (BMD) and body composition (fat- and lean tissue-mass) were measured in 140 postmenopausal women who had been treated with a statin for more than 2 years (median 4 years) and compared to 140 age- and gender-matched, population-based controls. RESULTS: Plasma levels of bone turnover markers were lower in the statin-treated subjects than in the controls: osteocalcin (-9%, P = 0.03), bone-specific alkaline phosphatase (-14%, P < 0.01), and C-terminal telopeptide of type I collagen (-11%, P < 0.01). On the other hand, plasma PTH levels were 16% higher in the statin-treated subjects than in the controls (P < 0.01). However, body composition and BMD at the lumbar spine, hip, forearm and whole body did not differ between the two groups. No correlation could be demonstrated between changes in biochemical quantities and dose or duration of statin use. CONCLUSION: Our data show that statins affect the function of bone cells. Most likely, the effect is antiresorptive.

Aged↗

Effects of 12 months of GH treatment on cortical and trabecular bone content of IGFs and OPG in adults with acquired GH deficiency: a double-blind, randomized, placebo-controlled study.

To investigate the effects of 12 months of GH treatment on cortical and trabecular bone content of IGFs, iliac crest bone biopsies were obtained from 25 patients with GH deficiency (9 women and 16 men; ages, 21-61 yr; mean, 46 yr) who were randomized to sc injections with GH (2 IU/m(2).d) or placebo for 12 months. Levels of IGF-I, IGF-II, IGF binding protein (IGFBP)-3, IGFBP-5, osteocalcin, OPG, RANKL, and total protein were determined in extracts obtained after EDTA and guanidine hydrochloride extraction. Calcium was determined after HCl hydrolysis. Comparing changes during GH or placebo treatment, significant increases were observed during GH substitution for cortical and trabecular bone content of IGF-I [mean difference vs. placebo (mean +/- SEM), 97 +/- 30 and 72 +/- 38%] and OPG (mean difference vs. placebo, 109 +/- 59 and 51 +/- 19%). Also, a significant decline was found for cortical osteocalcin (mean difference vs. placebo, -49 +/- 22%) during GH treatment. In conclusion, our results indicate that long-term GH treatment increases the accumulation of IGF-I and OPG in cortical and trabecular bone in patients with GH deficiency, and this may in turn lead to an increase in bone mass and improved skeletal biomechanical competence.

Adult↗

Evaluation of methods for prediction of bone mineral density by clinical and biochemical variables in perimenopausal women.

OBJECTIVES: to predict spinal and femoral bone mineral density (BMD) in perimenopausal women from simple clinical and biochemical variables. METHODS: 2016 women 3-24 months past last menstrual bleeding. Mean age 50.1+/-2.8 years. Age, height, weight, number of full term pregnancies, weekly hours of physical activity, sunbathing habits, use of sun bed, daily intake of calcium and vitamin D, smoking habits, consumption of alcohol, coffee, and tea, history of forearm or femoral neck fractures among the parents, serum osteocalcin (S-OC), serum bone specific isoenzyme of alkaline phosphatase (BSAP), and urine hydroxyproline/creatinine ratio (U-OHP) were used as predictors in three different mathematical models. Lumbar spine (L2-L4) and femoral neck BMD were measured by DEXA. Three mathematical models (multiple regression, logistic regression, and discriminant analysis) were applied. RESULTS: the multiple regression explained 19-21% of the total variation, and the logistic regression and discriminant function had a sensitivity between 53 and 67% with specificity ranging from 67 to 80%. Age, S-OC, serum bone specific alkaline phosphatase, and a maternal history of forearm or femoral neck fractures seemed to be reproducible risk factors for low bone mineral density irrespective of the mathematical model applied. When applied to a separate population, the models performed poorly. CONCLUSIONS: Simple clinical and biochemical variables are not useful to predict spinal and femoral BMD in the individual perimenopausal woman.

Alkaline Phosphatase↗

[Hormone replacement therapy reduces the risk of forearm fracture in postmenopausal women. Results of the Danish Osteoporosis Prevention Study].

In a prospective, controlled, comprehensive cohort trial of 2,016 healthy early postmenopausal women aged 45-58 years we studied fracture prevention through the use of oestrogen. There were two main study arms: a randomised arm (randomised to HRT [n = 502] or not [n = 504]) and a non-randomised arm (on HRT [n = 221] or not [n = 789] by own choice). After five years, an intention-to-treat analysis (n = 2,016) showed a reduction in the overall fracture risk (RR = 0.73, 95% CI: 0.50-1.05) and in the forearm fracture risk (RR = 0.45, 95% CI: 0.22-0.90) with oestrogen. Restriction of the analysis to women who had adhered to their initial allocation of either oestrogen (n = 395) or no oestrogen (n = 977) showed a significant reduction in both the overall fracture risk (RR = 0.61, 95% CI: 0.39-0.97) and the risk of forearm fractures (RR = 0.24, 95% CI: 0.09-0.69). We conclude that it is possible to reduce the number of forearm fractures in early postmenopausal women by the use of oestrogen as primary prevention.

Aged↗

[Cohort study of fracture risk before and after surgery of primary hyperparathyroidism].

We studied the risk of fracture in 674 patients operated on for primary hyperparathyroidism compared to 2,021 age- and gender-matched controls, matched for age and gender, randomly drawn from the background population. Before surgery, there was an increased risk of fracture (relative risk 1.8, 9% confidence interval 1.3-2.3), but after surgery the relative risk was normalised (RR = 1.0, 0.8-1.3). The increased risk began ten years before surgery and peaked five to six years before surgery. After surgery, there was a temporary increase in the first year, but in the following years the fracture risk was normalised, with a small rise in distal forearm fractures more than ten years after surgery. Primary hyperparathyroidism may have started up to ten years before surgery, and the fracture risk is normalised after surgery.

Adolescent↗

Mechanisms of age-related bone loss.

The human skeleton is formed and modelled during childhood and youth through the influence of hormones and daily mechanical usage. Around the age of 20-25 years, the skeleton achieves its maximum mass and strength. Thereafter, and throughout adult life, bone is lost at an almost constant rate due to the dynamic bone turnover process: the remodelling process. During this process, small packets of bone are renewed by teams of bone cells coupled together in time and space. In an adult human skeleton there will be 1-2 million active remodelling sites at any time point. The vast number of turnover units combined with a slightly negative balance at the completion of each process leads to the age-related loss of bone mass mentioned above and, concomitantly, to loss of structural continuity and strength. The magnitude of this loss will be determined by hormonal factors, nutrition and mechanical usage. As a consequence of the remodelling process, the bone tissue of the skeleton will always be younger than the age of the individual. However, as a consequence of the remodelling process, osteopenia and osteoporotic fractures will also occur. In this article, the remodelling-induced changes in the human spine will be used as an example of ageing bone.

Animals↗

Determinants of acceptance of a community-based program for the prevention of falls and fractures among the elderly.

BACKGROUND: Low-energy fractures among the elderly may be prevented by measures aimed at reducing the risk of falling or increasing the strength of the skeleton. Acceptance of these interventions in the target population is necessary for their success. METHODS: The total elderly population in a Danish municipality 7,543 community-dwelling persons aged 66+ years, were offered participation in one of three intervention programs: 2,550 persons were offered a home safety inspection, evaluation of prescribed medicine, and identification of possible health and food problems (Program I); 2,445 persons were offered 1000 mg of elemental calcium and 400 IU (10 microg) of vitamin D(3) per day in combination with evaluation of prescribed medicine (Program II); and 2,548 persons were offered a combination of the two programs (Program III). Acceptance was defined as willingness to receive an introductory visit by a nurse. RESULTS: Acceptance of Program I was 50%; of Program II, 56% (P < 0.00005 as contrasted with Program I); and of Program III, 46% (P < 0.005). Acceptance was associated with gender (females, 53%; males, 47%) and did not change from ages 66 to 84 but decreased significantly after the age of 85. Widows aged 66-84 had the highest acceptance (57%) and never married males aged 66-84 the lowest (30%). An important determinant, however, was the individual social service center that communicated the specific program. Acceptance varied from 39 to 66% between the social centers. CONCLUSIONS: Acceptance of a fall and fracture prevention program varies with intervention type; with gender, age, and social status of the target population; and with the motivation and attitude of the health workers involved in the implementation of the program.

Accidental Falls↗

How many patients are needed? Variation and design considerations in bone histomorphometry.

In osteoporosis research, bone histomorphometry plays an important role in documenting the biological effects and possible side-effects of new drug treatments. To ensure that the study is properly scaled, it is important to be concerned with the risk of type II error; that is, the risk of failing to detect a real difference. We therefore calculated the necessary sample size in bone histomorphometric studies according to a specified difference of 15% between two groups. The calculations were based on variance components estimated from three different studies: women with a distal fracture of the forearm (n = 22); patients with pituitary insufficiency (n = 21); and patients with primary hyperparathyroidism (n = 21). Using a significance level of 0.05 and a risk of type II error of 0.20, the statistical power of two different designs was compared: a single biopsy design comparing the responses in two groups after the treatment; and a paired biopsy design in which individual differences (posttreatment minus baseline) were calculated before the comparison of the two groups. We found that the mineral apposition rate, wall thickness, and erosion depth are statistically powerful indices that, in the single biopsy design, require no more than n = 25 in each group to detect differences of 15% between the groups. Bone volume, erosion surface, osteoid surface, mineralizing surface, and activation frequency need group sizes of 100-600 individuals to find a 15% difference to be statistically significant. However, the effect of bisphosphonate treatment, for instance, is large enough to reduce the group size to 20 individuals concerning activation frequency. The remodeling balance reaches extreme group sizes of several thousand for a 15% difference to be statistically significant, but for a 5 microm (approximately 150%) improvement, about 100 individuals are required in the single biopsy design. An analysis of the components of variance showed that the variation between individuals is small and often negligible compared with the variation within individuals, and sample sizes needed for the paired biopsy design are therefore larger than those for the single biopsy design. In conclusion, the most cost-effective histomorphometric study design within a randomized clinical trial appears to be a single biopsy design comparing posttreatment biopsies with scaling performed according to the statistical power of the indices of interest.

Biopsy↗

Influence of a low calcium and phosphorus diet on the anabolic effect of human parathyroid hormone (1-38) in female rats.

Parathyroid hormone (PTH) or synthetic N-terminal PTH fragments administered intermittently have been established as anabolic agents in animal and human bones. In the present study, the influence of a low calcium diet on the anabolic effect of human PTH(1-38) [hPTH(1-38)] was investigated. Forty-eight 10-week-old female Sprague-Dawley rats were randomly assigned to a diet with a low calcium content (LCa) or a diet with the recommended amount of calcium (RCa). After an adaptation period of 15 days, the rats were randomly assigned to hPTH(1-38) treatment (+LCa/+RCa) or vehicle only (-LCa/-RCa) for an additional 14 days. Total bone mineral density (BMD) values of several bones were determined using quantitative computed tomography and from ratios of ash weight to volume. Biomechanical competence of the fourth lumbar vertebrae and of the right femora was assessed. An anabolic effect could be detected in both PTH-treated groups. However, the bones of the +LCa group showed significantly lower BMD and also a diminished increase in maximal breaking force compared with those of the +RCa group. The study demonstrates that the anabolic effect of hPTH(1-38) is blunted by the LCa diet. This suggests that, during PTH treatment, dietary calcium intake is critical.

Animals↗

The positive effects of zinc on skeletal strength in growing rats.

The aim of the present study was to assess the skeletal effects of alimentary zinc depletion and supplementation in an animal model of intact, growing rats. The study was planned as a dose-response study. Thirty-six male Wistar rats, 4 weeks old, were divided into three groups of 12 rats each. The rats had free access to a semisynthetic diet with different amounts of zinc added. Group 1 was given a zinc-free diet containing 2 mg zinc/kg, group 2 was given a normal-zinc diet containing 47 mg zinc/kg; and group 3 was given a zinc-supplemented diet containing 60 mg zinc/kg. All animals were killed 4 weeks after initiation of the experiment and the right femora were removed. The biomechanical effects were measured at the following skeletal sites: femoral diaphysis; femoral neck; and distal femoral metaphysis. In addition, static histomorphometry was performed at the middiaphyseal region. Biomechanical testing revealed a significant zinc-induced increase in bone strength at all sites investigated. It also showed that zinc influenced bone strength in a dose-dependent manner except at the distal metaphysis, where there was no significant difference between the group fed normal-zinc diet and the group fed a hyper-zinc diet. Zinc also improved the rates of growth in the rats. The body weights and length of femora increased dose-dependently. Static histomorphometry showed that zinc exerted its main effect on the periosteal envelope, thereby increasing bone area, tissue area, and axial moment of inertia. We conclude that alimentary zinc supplementation in growing rats induces an increase of bone strength in both the femoral neck and the femoral diaphysis. These results further support the view that zinc has a positive effect on bone metabolism which mimics that of growth hormone (GH) or insulin-like growth factor 1 (IGF-1).

Animals↗

Adipocyte tissue volume in bone marrow is increased with aging and in patients with osteoporosis.

Aging of the human skeleton is characterized by decreased bone formation and bone mass and these changes are more pronounced in patients with osteoporosis. As osteoblasts and adipocytes share a common precursor cell in the bone marrow, we hypothesized that decreased bone formation observed during aging and in patients with osteoporosis is the result of enhanced adipognesis versus osteoblastogenesis from precursor cells in the bone marrow. Thus, we examined iliac crest bone biopsies obtained from 53 healthy normal individuals (age 30-100) and 26 patients with osteoporosis (age 52-92). Adipose tissue volume fraction (AV), hematopoietic tissue volume fraction (HV) and trabecular bone volume fraction (BV) were quantitated as a percentage of total tissue volume fraction (TV) (calculated as BV + AV + HV) using the point-counting method. We found an age-related increase in AV/TV (r = 0.53, P < 0.001, n = 53) and an age-related decline in BV/TV (r = -0.46, P < 0.001, n = 53) as well as in the HV/TV (r -0.318, P < 0.05, n = 53). There was an age-related inverse correlation between BV/TV and AV/TV (r = -0.58, P < 0.001). No significant correlation between the AV/TV and the body mass index (r = 0.06, n.s., n = 52) was detectable. Compared with age-matched controls, patients with osteoporosis exhibited an increased AV/TV (P < 0.05) and decreased BV/TV (P < 0.05) but no statistically significant difference in HV/TV. Our data support the hypothesis that with aging and in osteoporosis an enhanced adipogenesis is observed in the bone marrow and that these changes are inversely correlated to decreased trabecular bone volume. The cellular and molecular mechanisms mediating these changes remain to be determined.

Adipocytes↗

Loop diuretics alter the diurnal rhythm of endogenous parathyroid hormone secretion. A randomized-controlled study on the effects of loop- and thiazide-diuretics on the diurnal rhythms of calcitropic hormones and biochemical bone markers in postmenopausal women.

BACKGROUND: Thiazide diuretics (TD) reduce urinary calcium, bone loss and fracture risk. Loop diuretics (LD) may have opposite effects. These effects could depend on induced rhythmic changes in bone and calcium homeostasis. DESIGN: After a run-in period of 7 days, we studied (in a factorial design) the diurnal rhythms of plasma levels of calcium, phosphate, parathyroid hormone (PTH), 1,25-dihydroxyvitamin D and osteocalcin, as well as renal excretions rates of calcium, phosphate, and cross-linked N-terminal telopeptide of type 1 collagen (NTx) in 50 postmenopausal women randomized to treatment with either a thiazide diuretic (TD; bendroflumethiazide, n = 14), a loop diuretic (LD; bumetanide, n = 13), LD plus TD (bendroflumethiazide plus bumetanide, n = 11), or placebo (n = 12). RESULTS: In all four groups, all measured quantities showed a diurnal variation. LD caused a steep increase, with a subsequent decrease, in urinary calcium and plasma PTH. The mean 24 h plasma PTH concentration was increased (8.5 +/- 0.9 mmol L-1) compared with placebo (4.4 +/- 0.4 mmol L-1), whereas net 24 h renal calcium excretion did not differ from that of the placebo group due to a rebound hypocalciuria. Compared with placebo, diurnal rhythms of plasma phosphate and osteocalcin were changed with an increase during daytime and a decrease during the night. TD did not alter the diurnal rhythm of any of the measured quantities. However, the 24-h renal calcium excretion decreased, whereas the mean 24-h plasma calcium concentration increased without PTH suppression. LD plus TD caused changes similar to those observed with LD alone. CONCLUSION: One daily dose of LD increases parathyroid activity with alterations in the diurnal pattern of osteocalcin. This could indicate a potential anabolic effect of LD.

Aged↗