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成年BMP-5基因缺陷小鼠的长骨几何形态与强度

Long bone geometry and strength in adult BMP-5 deficient mice.

作者信息

Mikić B, van der Meulen M C, Kingsley D M, Carter D R

机构信息

Rehabilitation Research and Development Center, Veterans Affairs Medical Center, Palo Alto, CA 94304-1200, USA.

出版信息

Bone. 1995 Apr;16(4):445-54.

PMID:7605705
Abstract

Bone morphogenetic proteins (BMPs) play a critical role in early skeletal development. BMPs are also potential mediators of bone response to mechanical loading, but their role in later stages of bone growth and adaptation has yet to be studied. We characterized the postcranial skeletal defects in mature mice with BMP deficiency by measuring hind-limb muscle mass and long bone geometric, material, and torsional mechanical properties. The animals studied were 26-week-old short ear mice (n = 10) with a homozygous deletion of the BMP-5 gene and their heterozygous control litter mates (n = 15). Gender-related effects, which were found to be independent of genotype, were also examined. The femora of short ear mice were 3% shorter than in controls and had significantly lower values of many cross-sectional geometric and structural strength parameters (p < 0.05). No significant differences in ash content or material properties were detected. Lower femoral whole bone torsional strength was due to the smaller cross-sectional geometry (16% smaller section modulus) in the short ear mice. The diminished cross-sectional geometry may be commensurate with lower levels of in vivo loading, as reflected by body mass (-8%) and quadriceps mass (-11%). While no significant gender differences were found in whole bone strength or cross-sectional geometry, males had significantly greater body mass (+18%) and quadriceps mass (+15%) and lower tibio-fibular ash content (-3%). The data suggest that adult female mice have a more robust skeleton than males, relative to in vivo mechanical demands. Furthermore, although the bones of short ear mice are smaller and weaker than in control animals, they appear to be biomechanically appropriate for the in vivo mechanical loads that they experience.

摘要

骨形态发生蛋白(BMPs)在早期骨骼发育中起关键作用。BMPs也是骨骼对机械负荷反应的潜在介质,但其在骨骼生长和适应后期阶段的作用尚未得到研究。我们通过测量后肢肌肉质量以及长骨的几何、材料和扭转力学性能,对BMP缺乏的成熟小鼠的颅后骨骼缺陷进行了表征。所研究的动物为26周龄的短耳小鼠(n = 10),其BMP - 5基因纯合缺失,以及它们的杂合对照同窝小鼠(n = 15)。还研究了与性别相关的影响,发现其与基因型无关。短耳小鼠的股骨比对照组短3%,许多横截面几何和结构强度参数的值显著更低(p < 0.05)。未检测到灰分含量或材料性能的显著差异。短耳小鼠股骨全骨扭转强度较低是由于其横截面几何尺寸较小(截面模量小16%)。横截面几何尺寸减小可能与较低的体内负荷水平相称,这体现在体重(-8%)和股四头肌质量(-11%)上。虽然在全骨强度或横截面几何尺寸方面未发现显著的性别差异,但雄性的体重(+18%)和股四头肌质量(+15%)显著更大,胫腓骨灰分含量更低(-3%)。数据表明,相对于体内机械需求,成年雌性小鼠的骨骼比雄性更健壮。此外,尽管短耳小鼠的骨骼比对照动物更小、更弱,但它们在生物力学上似乎适合其所经历的体内机械负荷。

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