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Erschienen in: Journal of Bone and Mineral Metabolism 2/2023

13.03.2023 | Original Article

Low energy availability reduces bone mass and gonadal function in male mice

verfasst von: Eri Ito, Yuiko Sato, Tami Kobayashi, Tomoya Soma, Tatsuaki Matsumoto, Atushi Kimura, Kana Miyamoto, Hideo Matsumoto, Morio Matsumoto, Masaya Nakamura, Kazuki Sato, Takeshi Miyamoto

Erschienen in: Journal of Bone and Mineral Metabolism | Ausgabe 2/2023

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Abstract

Introduction

In women, the female athlete triad, marked by low energy availability, functional hypothalamic amenorrhea and osteoporosis, is a recognized risk for stress fractures. Stress injuries also occur in men, but by contrast risks and mechanisms underlying them are less characterized.

Materials and methods

5 week-old wild-type male mice were fed ad libitum (ad) or subjected to 60% food restriction (FR) for five weeks. In both groups, some mice were allowed access to an exercise wheel in cages to allow voluntary wheel running (ex) and/or treated with active vitamin D analogues. Mice were sacrificed and analyzed at 10 weeks of age.

Result

Male FR mice exhibited significantly reduced testicle weight, serum testosterone levels and bone mass. Such bone losses in FR male mice were enhanced by exercise. Histological analysis revealed that both bone-resorbing and -forming activities were significantly reduced in FR or FR plus exercise (FR + ex) mice, mimicking a state of low bone turnover. Significantly reduced bone mass in FR or FR + ex male mice was significantly rescued by treatment with active vitamin D analogues, with significant restoration of osteoblastic activities. Serum levels of insulin-like growth factor I (IGF-I), which is critical for bone remodeling, were significantly lower in FR versus control male mice.

Conclusions

Low energy availability puts men at risk for stress injuries as well, and low energy availability is upstream of gonadal dysfunction and osteoporosis in males. Active vitamin D analogues could serve as therapeutic or preventive options for stress injuries in men.
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Metadaten
Titel
Low energy availability reduces bone mass and gonadal function in male mice
verfasst von
Eri Ito
Yuiko Sato
Tami Kobayashi
Tomoya Soma
Tatsuaki Matsumoto
Atushi Kimura
Kana Miyamoto
Hideo Matsumoto
Morio Matsumoto
Masaya Nakamura
Kazuki Sato
Takeshi Miyamoto
Publikationsdatum
13.03.2023
Verlag
Springer Nature Singapore
Erschienen in
Journal of Bone and Mineral Metabolism / Ausgabe 2/2023
Print ISSN: 0914-8779
Elektronische ISSN: 1435-5604
DOI
https://doi.org/10.1007/s00774-023-01413-2

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