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Biomedical subjects

Kim T Brixen

Publications and source records attributed to Kim T Brixen.

15 recordsLinked to original sources

[Oesteogenesis imperfecta--genetics, diagnosis and medical treatment].

The molecular background for osteogenesis imperfecta (OI) is mutations in one of the two genes (COL1A1 and COL1A2) encoding collagen I. The disease is characterised by varying degrees of fragile bones, retarded growth, bone deformities, tooth abnormalities, blue sclerae, and hearing loss. Treatment with bisphosphonates reduces the incidence of fractures in children with severe OI, while this still remains to be demonstrated in adults. Results from bone marrow transplantation and animal experiments may lead to alternative treatment in severe OI.

Adult↗

[Primary hyperparathyroidism in pregnancy].

We present three cases of primary hyperparathyroidism (PHPT) in pregnancy. The clinical presentation of PHPT is not altered by pregnancy; however, the disease constitutes a serious risk for the foetus and the newborn. Although rare, hypercalcaemia should be suspected in pregnant women presenting with polydipsia, polyuria and fatigue as well as hypertension or preterm labour.

Adenoma↗

Teriparatide (biosynthetic human parathyroid hormone 1-34): a new paradigm in the treatment of osteoporosis.

The ideal treatment of osteoporosis should preferably prevent fractures through normalization of bone mass and bone micro-architecture. Biosynthetic human parathyroid hormone 1-34 (teriparatide) was recently approved in the EU and the USA as the first anabolic treatment of osteoporosis. The effects of teriparatide are mediated by the G-protein-dependent, parathyroid hormone receptor-1 in the cell membrane. The binding of the ligand to the receptor activates adenylate cyclase and a number of phospholipases (A, C, and D) and increases intracellular levels of cAMP and calcium. Intermittent teriparatide increases the number of osteoblasts and bone formation by activation of pre-existing osteoblasts, increased differentiation of lining cells, and reduced osteoblast apoptosis. Anabolic effects of teriparatide on bone have been demonstrated in several species. It increases bone mass, structural integrity, bone diameter, and bone strength. Clinical efficacy was demonstrated in a randomized study comprising 1637 post-menopausal women with osteoporosis showing a 65% and 35% reduction of the relative risk of vertebral and appendicular fractures, respectively, during 18 months of treatment. Moreover, bone mineral density in the lumbar spine and hip increased by 9.7% and 2.6%, respectively. Similar effects on bone mineral density have been reported in men with osteoporosis and in glucocorticoid-induced osteoporosis, however, fracture data are limited in these groups. Direct comparison with alendronate revealed that teriparatide has a more pronounced effect on bone mineral density. Teriparatide should be used in combination with calcium plus vitamin D, and may be combined with hormonal replacement therapy. In contrast, alendronate attenuates the effect of teriparatide. The efficacy of other combinations remains uncertain. After termination of teriparatide, bone mineral density of the lumbar spine is reduced by approximately 2-3% after 2 1/2 years. This decrease is prevented by treatment with bisphosphonates. The most frequent adverse effects with teriparatide are nausea, headache, dizziness, and leg cramps, however, only the latter two differed significantly between the groups receiving teriparatide 20 microg/day and placebo. In the pivotal clinical study, reduced dosage or termination of therapy due to hypercalcaemia was necessary in 3% and 0.2%, respectively. In a rat toxicology study, in which teriparatide was administered in high dosages for an extended period of time, osteosarcoma was seen in a significant number of animals. However, none of the approximately 2800 patients in clinical trials has developed osteosarcoma. Teriparatide constitutes a break-through in the treatment of severe osteoporosis, although a number of issues about the optimal use of teriparatide remains unsettled. The published data provide proof of concept on anabolic therapy which changes several paradigms of bone physiology. Other parathyroid hormone analogues are being investigated in clinical trials and the development of non-peptide, small molecules targeted at the parathyroid hormone receptor may be envisaged.

Amino Acid Sequence↗

[Pharmaco-economic evaluation of drug therapy osteoporosis. A literature review].

INTRODUCTION: Interventions against osteoporosis may reduce the incidence of fractures in patients and costs to society, but they also incur additional expenditure and thus call for economic evaluation. The aim of this paper was to evaluate existing literature by applying cost-effectiveness (CEA) and cost-utility analyses (CUA) to pharmacological treatment of osteoporosis. MATERIAL AND METHODS: MEDLINE and the reference lists of relevant papers were searched to identify original papers on the subject. Studies were included if they were peer reviewed, written in English or a Scandinavian language, and reported CEA or CUA for a specified pharmacological intervention. RESULTS: Of the 37 identified studies, 16 met the inclusion criteria (ten CUA and six CEA), and 21 studies were excluded. Of the studies examined, 13 studies concerned hormone replacement therapy (HRT), four bisphosphonate, four calcitonin, and four calcium supplementation and/or vitamin D treatment. All were based on simulations of the long-term effects of the intervention with respect to cost and effect. However, the studies varied widely in patient selection and assumptions about duration and effectiveness of intervention, assessment of quality of life, and mortality following hip fracture. DISCUSSION: The published studies rely on limited empirical data as regards the effect of treatment, costs, and adverse effects. Several, however, indicate that some interventions may be cost-effective in high-risk groups.

Aged↗