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衰老人类近端股骨的骨胶原拉伸特性

Bone collagen tensile properties of the aging human proximal femur.

作者信息

Bracher Stefan, Voumard Benjamin, Simon Mathieu, Kochetkova Tatiana, Pretterklieber Michael, Zysset Philippe

机构信息

ARTORG Center for Biomedical Engineering Research, University of Bern, Switzerland.

Division of Macroscopic and Clinical Anatomy, Gottfried Schatz Research Center, Medical University of Graz, Austria.

出版信息

Bone Rep. 2024 May 13;21:101773. doi: 10.1016/j.bonr.2024.101773. eCollection 2024 Jun.

Abstract

Despite the dominant role of bone mass in osteoporotic fractures, aging bone tissue properties must be thoroughly understood to improve osteoporosis management. In this context, collagen content and integrity are considered important factors, although limited research has been conducted on the tensile behavior of demineralized compact bone in relation to its porosity and elastic properties in the native mineralized state. Therefore, this study aims (i) at examining the age-dependency of mineralized bone and collagen micromechanical properties; (ii) to test whether, and if so to which extent, collagen properties contribute to mineralized bone mechanical properties. Two cylindrical cortical bone samples from fresh frozen human anatomic donor material were extracted from 80 proximal diaphyseal sections from a cohort of 24 female and 19 male donors (57 to 96 years at death). One sample per section was tested in uniaxial tension under hydrated conditions. First, the native sample was tested elastically (0.25 % strain), and after demineralization, up to failure. Morphology and composition of the second specimen was assessed using micro-computed tomography, Raman spectroscopy, and gravimetric methods. Simple and multiple linear regression were employed to relate morphological, compositional, and mechanical variables with age and sex. Macro-tensile properties revealed that only elastic modulus of native samples was age dependent whereas apparent elastic modulus was sex dependent ( < 0.01). Compositional and morphological analysis detected a weak but significant age and sex dependency of relative mineral weight ( = -0.24,  < 0.05) and collagen disorder ratio (I/I,  = 0.25, p < 0.05) and a strong sex dependency of bone volume fraction while generally showing consistent results in mineral content assessment. Young's modulus of demineralized bone was significantly related to tissue mineral density and Young's modulus of native bone. The results indicate that mechanical properties of the organic phase, that include collagen and non-collagenous proteins, are independent of donor age. The observed reduction in relative mineral weight and corresponding overall stiffer response of the collagen network may be caused by a reduced number of mineral-collagen connections and a lack of extrafibrillar and intrafibrillar mineralization that induces a loss of waviness and a collagen fiber pre-stretch.

摘要

尽管骨量在骨质疏松性骨折中起主导作用,但必须全面了解老化骨组织的特性,以改善骨质疏松症的管理。在这种情况下,胶原蛋白含量和完整性被认为是重要因素,尽管关于脱矿质密质骨在其天然矿化状态下的孔隙率和弹性特性与其拉伸行为之间关系的研究有限。因此,本研究旨在:(i)研究矿化骨和胶原微机械性能的年龄依赖性;(ii)测试胶原蛋白特性是否以及在何种程度上对矿化骨力学性能有贡献。从24名女性和19名男性供体(死亡时年龄57至96岁)的队列中80个近端骨干切片中提取新鲜冷冻的人类解剖供体材料的两个圆柱形皮质骨样本。每个切片的一个样本在水合条件下进行单轴拉伸测试。首先,对天然样本进行弹性测试(0.25%应变),脱矿质后测试直至破坏。使用微计算机断层扫描、拉曼光谱和重量法评估第二个样本的形态和组成。采用简单和多元线性回归将形态、组成和力学变量与年龄和性别相关联。宏观拉伸性能表明,仅天然样本的弹性模量与年龄有关,而表观弹性模量与性别有关(<0.01)。组成和形态分析检测到相对矿物质重量(=-0.24,<0.05)和胶原无序率(I/I,=0.25,p<0.05)存在微弱但显著的年龄和性别依赖性,骨体积分数存在强烈的性别依赖性,同时在矿物质含量评估中总体显示出一致的结果。脱矿质骨的杨氏模量与组织矿物质密度和天然骨的杨氏模量显著相关。结果表明,包括胶原蛋白和非胶原蛋白在内的有机相的力学性能与供体年龄无关。观察到的相对矿物质重量的减少以及胶原网络相应的整体更硬响应可能是由于矿物质-胶原连接数量减少以及缺乏诱导波纹丧失和胶原纤维预拉伸的纤维外和纤维内矿化所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fbd/11109327/8aa7dad24ecd/ga1.jpg

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