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对小鼠胫骨进行压缩加载,揭示了骨适应和成熟速率在特定部位的微观差异。

Compressive loading of the murine tibia reveals site-specific micro-scale differences in adaptation and maturation rates of bone.

机构信息

Department of Endocrinology, Metabolism and Diabetes, Karolinska University Hospital, Karolinska Institutet, Stockholm, Sweden.

UCL Institute of Orthopedics and Musculoskeletal Science, Royal National Orthopedic Hospital, London, UK.

出版信息

Osteoporos Int. 2017 Mar;28(3):1121-1131. doi: 10.1007/s00198-016-3846-6. Epub 2016 Dec 5.

Abstract

UNLABELLED

Loading increases bone mass and strength in a site-specific manner; however, possible effects of loading on bone matrix composition have not been evaluated. Site-specific structural and material properties of mouse bone were analyzed on the macro- and micro/molecular scale in the presence and absence of axial loading. The response of bone to load is heterogeneous, adapting at molecular, micro-, and macro-levels.

INTRODUCTION

Osteoporosis is a degenerative disease resulting in reduced bone mineral density, structure, and strength. The overall aim was to explore the hypothesis that changes in loading environment result in site-specific adaptations at molecular/micro- and macro-scale in mouse bone.

METHODS

Right tibiae of adult mice were subjected to well-defined cyclic axial loading for 2 weeks; left tibiae were used as physiologically loaded controls. The bones were analyzed with μCT (structure), reference point indentation (material properties), Raman spectroscopy (chemical), and small-angle X-ray scattering (mineral crystallization and structure).

RESULTS

The cranial and caudal sites of tibiae are structurally and biochemically different within control bones. In response to loading, cranial and caudal sites increase in cortical thickness with reduced mineralization (-14 and -3%, p < 0.01, respectively) and crystallinity (-1.4 and -0.3%, p < 0.05, respectively). Along the length of the loaded bones, collagen content becomes more heterogeneous on the caudal site and the mineral/collagen increases distally at both sites.

CONCLUSION

Bone structure and composition are heterogeneous, finely tuned, adaptive, and site-specifically responsive at the micro-scale to maintain optimal function. Manipulation of this heterogeneity may affect bone strength, relative to specific applied loads.

摘要

未加标签

加载以特定于部位的方式增加骨量和骨强度;然而,加载对骨基质组成的可能影响尚未得到评估。在存在和不存在轴向加载的情况下,分析了小鼠骨的宏观和微观/分子尺度上的部位特异性结构和材料特性。骨骼对负荷的反应是不均匀的,在分子、微观和宏观水平上进行适应。

引言

骨质疏松症是一种退行性疾病,导致骨矿物质密度、结构和强度降低。总体目标是探讨以下假设:加载环境的变化会导致小鼠骨在分子/微观和宏观尺度上产生特定于部位的适应性。

方法

对成年小鼠的右胫骨进行明确的周期性轴向加载 2 周;左胫骨用作生理性加载对照。用 μCT(结构)、参考点压痕(材料性能)、拉曼光谱(化学)和小角 X 射线散射(矿物质结晶和结构)分析骨骼。

结果

控制骨骼中胫骨的颅侧和尾侧部位在结构和生化上是不同的。在加载响应中,颅侧和尾侧部位的皮质厚度增加,矿化减少(分别为-14%和-3%,p<0.01),结晶度降低(分别为-1.4%和-0.3%,p<0.05)。在加载骨骼的长度上,尾侧部位的胶原含量变得更加不均匀,而在两个部位,矿物质/胶原都向远端增加。

结论

骨结构和组成是不均匀的、精细调节的、适应性的,并且在微观尺度上对特定的应用负荷具有特定部位的响应性。对这种异质性的操纵可能会影响相对于特定应用负荷的骨强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b17a/5306148/b0efd1bf1e38/198_2016_3846_Fig1_HTML.jpg

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