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Androgens have antiresorptive effects on trabecular disuse osteopenia independent from muscle atrophy
Michaël R Laurent1, Ferran Jardí2, Vanessa Dubois3
1Laboratory of Molecular Endocrinology, Department of Cellular and Molecular Medicine, KU Leuven, Herestraat 49, PO box 901, 3000 Leuven, Belgium; Gerontology and Geriatrics, Department of Clinical and Experimental Medicine, KU Leuven, Herestraat 49, PO box 7003, 3000 Leuven, Belgium; Center for Metabolic Bone Diseases, University Hospitals Leuven, Herestraat 49, 3000 Leuven, Belgium.
Abstract:
Aging hypogonadal men are at increased risk of osteoporosis and sarcopenia. Testosterone is a potentially appealing strategy to prevent simultaneous bone and muscle loss. The androgen receptor (AR) mediates antiresorptive effects on trabecular bone via osteoblast-lineage cells, as well as muscle-anabolic actions. Sex steroids also modify the skeletal response to mechanical loading. However, it is unclear whether the effects of androgens on bone remain effective independent of mechanical stimulation or rather require indirect androgen effects via muscle. This study aims to characterize the effects and underlying mechanisms of androgens on disuse osteosarcopenia. Adult male mice received a unilateral botulinum toxin (BTx) injection, and underwent sham surgery or orchidectomy (ORX) without or with testosterone (ORX+T) or dihydrotestosterone (ORX+DHT) replacement. Compared to the contralateral internal control hindlimb, acute trabecular number and bone volume loss was increased by ORX and partially prevented DHT. T was more efficient and increased BV/TV in both hindlimbs over sham values, although it did not reduce the detrimental effect of BTx. Both androgens and BTx regulated trabecular osteoclast surface as well as tartrate-resistant acid phosphatase expression. Androgens also prevented BTx-induced body weight loss but did not significantly influence paralysis or muscle atrophy. BTx and ORX both reduced cortical thickness via endosteal expansion, which was prevented by T but not DHT. In long-term follow-up, the residual trabecular bone volume deficit in sham-BTx hindlimbs was prevented by DHT but T restored it more efficiently to pre-treatment levels. Conditional AR deletion in late osteoblasts and osteocytes or in the satellite cell lineage increased age-related trabecular bone loss in both hindlimbs without influencing the effect of BTx on trabecular osteopenia. We conclude that androgens have antiresorptive effects on trabecular disuse osteopenia which do not require AR actions on bone via muscle or via osteocytes.
Insights
Androgens prevent bone loss from disuse, independent of muscle or osteocyte androgen receptor (AR) actions. Testosterone and dihydrotestosterone (DHT) show distinct effects on bone structure and recovery, highlighting their roles in combating osteosarcopenia.
Area of Science:
- Endocrinology
- Bone Biology
- Skeletal Physiology
Background:
- Aging hypogonadal men face increased osteoporosis and sarcopenia risk.
- Androgens, like testosterone, are explored for preventing bone and muscle loss.
- The role of mechanical loading in androgen effects on bone is not fully understood.
Purpose of the Study:
- To investigate the effects and mechanisms of androgens on disuse osteosarcopenia in mice.
- To determine if androgen actions on bone require mechanical stimulation or indirect muscle effects.
- To compare the efficacy of testosterone and dihydrotestosterone in preventing bone loss.
Main Methods:
- Adult male mice underwent unilateral botulinum toxin (BTx) injection to induce disuse.
- Orchidectomy (ORX) was performed, with or without testosterone (T) or dihydrotestosterone (DHT) replacement.
- Bone microarchitecture, cortical thickness, and muscle parameters were analyzed.
- Conditional androgen receptor (AR) deletion in specific cell lineages was utilized.
Main Results:
- Orchidectomy increased bone loss; DHT partially prevented it, while T was more effective.
- Both androgens and BTx affected osteoclast surface and tartrate-resistant acid phosphatase expression.
- Androgens prevented body weight loss but not paralysis or muscle atrophy.
- Testosterone, but not DHT, prevented reduced cortical thickness; T restored bone volume more effectively long-term.
- Conditional AR deletion in osteoblasts/osteocytes or satellite cells did not affect BTx-induced bone loss.
Conclusions:
- Androgens exert direct antiresorptive effects on trabecular bone during disuse.
- These effects are independent of androgen receptor (AR) actions mediated by muscle or osteocytes.
- Testosterone and DHT demonstrate differential impacts on bone recovery and structure.
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