Novel model to study the physiological effects of temporary or prolonged sex steroid deficiency in male mice.

Am J Physiol Endocrinol Metab

Clinical and Experimental Endocrinology, Department of Chronic Diseases and Metabolism (CHROMETA), KU Leuven, Leuven, Belgium.

Published: March 2021

AI Article Synopsis

  • Sex steroids play a vital role in bone development during puberty and in maintaining skeletal health in adults, but the timing and recovery from deficiencies during puberty are not well understood.
  • Researchers created a new rodent model using gonadotropin-releasing hormone antagonists to temporarily or permanently suppress sex steroid action, which can help study the effects of delayed puberty.
  • The temporary suppression led to reduced trabecular bone during puberty that recovered in adulthood, while permanent suppression resulted in significant bone and body weight impairment, mirroring effects seen in surgically castrated rodents.

Article Abstract

Sex steroids are critical for skeletal development and maturation during puberty as well as for skeletal maintenance during adult life. However, the exact time during puberty when sex steroids have the highest impact as well as the ability of bone to recover from transient sex steroid deficiency is unclear. Surgical castration is a common technique to study sex steroid effects in rodents, but it is irreversible, invasive, and associated with metabolic and behavioral alterations. Here, we used a low dose (LD) or a high dose (HD) of gonadotropin-releasing hormone antagonist to either temporarily or persistently suppress sex steroid action in male mice, respectively. The LD group, a model for delayed puberty, did not show changes in linear growth or body composition, but displayed reduced trabecular bone volume during puberty, which fully caught up at adult age. In contrast, the HD group, representing complete pubertal suppression, showed a phenotype reminiscent of that observed in surgically castrated rodents. Indeed, HD animals exhibited severely impaired cortical and trabecular bone acquisition, decreased body weight and lean mass, and increased fat mass. In conclusion, we developed a rodent model of chemical castration that can be used as an alternative to surgical castration. Moreover, the transient nature of the intervention enables to study the effects of delayed puberty and reversibility of sex steroid deficiency. We developed a rodent model of chemical castration, which can be used as an alternative to surgical castration. Moreover, the transient nature of the intervention enables to study the effects of delayed puberty and reversibility of sex steroid deficiency.

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Source
http://dx.doi.org/10.1152/ajpendo.00401.2020DOI Listing

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