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热中性改善成年普拉德-威利综合征小鼠的骨骼损伤。

Thermoneutrality improves skeletal impairment in adult Prader-Willi syndrome mice.

作者信息

Braxton Thomas M, Sarpong Dionne E A, Dovey Janine L, Guillou Anne, Evans Bronwen A J, Castellano Juan M, Keenan Bethany E, Baraghithy Saja, Evans Sam L, Tena-Sempere Manuel, Mollard Patrice, Tam Joseph, Wells Timothy

机构信息

School of Biosciences, Cardiff University, Cardiff, UK.

IGF, CNRS, INSERM, University of Montpellier, Montpellier, France.

出版信息

J Endocrinol. 2019 Dec;243(3):175-186. doi: 10.1530/JOE-19-0279.

DOI:10.1530/JOE-19-0279
PMID:31454785
Abstract

Human Prader-Willi syndrome (PWS) is characterised by impairments of multiple systems including the growth hormone (GH) axis and skeletal growth. To address our lack of knowledge of the influence of PWS on skeletal integrity in mice, we have characterised the endocrine and skeletal phenotype of the PWS-IC del mouse model for 'full' PWS and determined the impact of thermoneutrality. Tibial length, epiphyseal plate width and marrow adiposity were reduced by 6, 18 and 79% in male PWS-IC del mice, with osteoclast density being unaffected. Similar reductions in femoral length accompanied a 32% reduction in mid-diaphyseal cortical diameter. Distal femoral Tb.N was reduced by 62%, with individual trabeculae being less plate-like and the lattice being more fragmented (Tb.Pf increased by 63%). Cortical strength (ultimate moment) was reduced by 26% as a result of reductions in calcified tissue strength and the geometric contribution. GH and prolactin contents in PWS-IC del pituitaries were reduced in proportion to their smaller pituitary size, with circulating IGF-1 concentration reduced by 37-47%. Conversely, while pituitary luteinising hormone content was halved, circulating gonadotropin concentrations were unaffected. Although longitudinal growth, marrow adiposity and femoral geometry were unaffected by thermoneutrality, strengthened calcified tissue reversed the weakened cortex of PWS-IC del femora. While underactivity of the GH axis may be due to loss of Snord116 expression and impaired limb bone geometry and strength due to loss of Magel2 expression, comprehensive analysis of skeletal integrity in the single gene deletion models is required. Our data imply that thermoneutrality may ameliorate the elevated fracture risk associated with PWS.

摘要

人类普拉德-威利综合征(PWS)的特征是多个系统受损,包括生长激素(GH)轴和骨骼生长。为了解决我们对PWS对小鼠骨骼完整性影响的认识不足,我们对“完全”PWS的PWS-IC del小鼠模型的内分泌和骨骼表型进行了表征,并确定了热中性的影响。雄性PWS-IC del小鼠的胫骨长度、骨骺板宽度和骨髓脂肪含量分别减少了6%、18%和79%,破骨细胞密度未受影响。股骨长度的类似减少伴随着骨干中部皮质直径减少32%。股骨远端骨小梁数量(Tb.N)减少了62%,单个骨小梁的板状结构减少,晶格更加破碎(骨小梁分离度(Tb.Pf)增加了63%)。由于钙化组织强度和几何结构的减少,皮质强度(极限弯矩)降低了26%。PWS-IC del垂体中的GH和催乳素含量与其较小的垂体大小成比例减少,循环中的IGF-1浓度降低了37-47%。相反,虽然垂体促黄体生成素含量减半,但循环中的促性腺激素浓度未受影响。尽管纵向生长、骨髓脂肪含量和股骨几何结构不受热中性的影响,但钙化组织的强化逆转了PWS-IC del股骨皮质的减弱。虽然GH轴活性不足可能是由于Snord116表达缺失,而肢体骨几何结构和强度受损可能是由于Magel2表达缺失,但需要对单基因缺失模型中的骨骼完整性进行综合分析。我们的数据表明,热中性可能会改善与PWS相关骨折风险的升高。

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