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Teriparatide for osteoporosis: importance of the full course

Review · human · Osteoporosis international : a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA · 2016 · DOI 10.1007/s00198-016-3534-6 · PMID 26902094

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

This review discusses clinical findings on teriparatide (TPTD), an agent used for up to 24 months to treat osteoporosis, in human patients (study type not further specified beyond a clinical review). The review reports that teriparatide increases bone formation more than bone resorption, through stimulation of remodeling- and modeling-based bone formation and initiation of new remodeling sites, contributing to increases in bone density measured by DXA. The review states teriparatide reduces fracture risk, with this effect appearing to increase with longer treatment duration, and that shorter treatment regimens should await controlled clinical trials comparing them with the 24-month daily course. It states that in patients with osteoporosis at high risk for fracture, the full continuous 24-month course was associated with improved skeletal outcomes compared with shorter periods.

Abstract

Teriparatide (TPTD) is the only currently available therapeutic agent that increases the formation of new bone tissue and can provide some remediation of the architectural defects in the osteoporotic skeleton. The use of teriparatide clinically is limited to 24 months. We review clinical findings during daily teriparatide treatment over time. Teriparatide appears to increase bone formation more than bone resorption as determined biochemically and histologically. Teriparatide exerts its positive effects on bone formation in two distinct fashions. The first is direct stimulation of bone formation that occurs within active remodeling sites (remodeling-based bone formation) and on surfaces of bone previously inactive (modeling-based bone formation). The second is an increase in the initiation of new remodeling sites. Both processes contribute to the final increase in bone density observed by non-invasive tools such as DXA. Remodeling is the repair process by which skeletal tissue is maintained in a young healthy state, and when stimulated by TPTD is associated with a positive bone balance within each remodeling cavity. It seems likely therefore that this component will contribute to the anti-fracture efficacy of TPTD. Teriparatide reduces the risk of fracture, and this effect appears to increase with longer duration of therapy. The use of novel treatment regimens, including shorter courses, should be held in abeyance until controlled clinical trials are completed to define the relative fracture benefits of such approaches in comparison to the 24-month daily use of the agent. Summary In patients with osteoporosis at high risk for fracture, the full continuous 24-month course with teriparatide results in improved skeletal health and outcomes than shorter time periods.

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