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Male Down syndrome Ts65Dn mice have impaired bone regeneration
Kirby M Sherman1, Catrina J Silveira1, Mingquan Yan1
1Department of Veterinary Physiology and Pharmacology, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, TX 77843, United States of America.
Abstract:
Trisomy of human chromosome 21 (Ts21) individuals present with a spectrum of low bone mineral density (BMD) that predisposes this vulnerable group to skeletal injuries. To determine the bone regenerative capacity of Down syndrome (DS) mice, male and female Dp16 and Ts65Dn DS mice underwent amputation of the digit tip (the terminal phalanx (P3)). This is a well-established mammalian model of bone regeneration that restores the amputated skeletal segment and all associated soft tissues. P3 amputation was performed in 8-week-old male and female DS mice and WT controls and followed by in vivo μCT, histology and immunofluorescence. Following P3 amputation, the bone degradation phase was attenuated in both Dp16 and Ts65Dn males. In Dp16 males, P3 regeneration was delayed but complete by 63 days post amputation (DPA); however, male Ts65Dn exhibited attenuated regeneration by 63 DPA. In both Dp16 and Ts65Dn female DS mice, P3 regenerates were indistinguishable from WT by 42 DPA. In Ts65Dn males, osteoclasts and eroded bone surface were significantly reduced, and osteoblast number significantly decreased in the regenerating digit. In Ts65Dn females, no significant differences were observed in any osteoclast or osteoblast parameter. Like Ts21 individuals and DS mice with sex differences in bone mass, these data expand the characteristic sexually dimorphism to include bone resorption and regeneration in response to skeletal injury in Ts65Dn mice. These observations suggest that sex differences contribute to the poor bone healing of DS and compound the increased risk of bone injury in the Ts21 population.
Insights
Bone regeneration in Down syndrome (DS) mice shows sex differences. Male DS mice exhibit delayed bone healing, while female DS mice show normal regeneration, suggesting sex impacts bone repair in Ts21 individuals.
Area of Science:
- Genetics and Developmental Biology
- Orthopedics and Regenerative Medicine
- Human Genetics
Background:
- Individuals with Trisomy 21 (Ts21) exhibit low bone mineral density (BMD), increasing skeletal injury risk.
- Down syndrome (DS) is associated with bone density deficits, but bone regenerative capacity remains unclear.
Purpose of the Study:
- To investigate the bone regenerative capacity in Down syndrome (DS) mouse models.
- To determine if sex influences bone healing and resorption in DS.
Main Methods:
- Digit tip amputation (P3) was performed on male and female Dp16 and Ts65Dn DS mice and wild-type (WT) controls.
- In vivo micro-computed tomography (μCT), histology, and immunofluorescence were used to assess bone regeneration.
- Osteoclast and osteoblast activity was quantified in regenerating bone segments.
Main Results:
- Male DS mice (Dp16 and Ts65Dn) showed attenuated bone degradation and delayed P3 regeneration compared to WT males.
- Female DS mice (Dp16 and Ts65Dn) exhibited P3 regeneration indistinguishable from WT controls by 42 days post-amputation.
- Ts65Dn males displayed reduced osteoclasts and osteoblasts, indicating impaired bone resorption and formation, while Ts65Dn females showed no significant differences.
Conclusions:
- Bone regeneration in DS mouse models is sexually dimorphic, with males exhibiting impaired healing.
- Sex differences in bone resorption and regeneration contribute to poor bone healing in DS.
- These findings highlight the role of sex in the increased risk of bone injury and delayed healing in Ts21 individuals.

