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胶原蛋白在决定骨骼力学性能方面的作用。

The role of collagen in determining bone mechanical properties.

作者信息

Wang X, Bank R A, TeKoppele J M, Agrawal C M

机构信息

Mechanical Engineering, University of Texas at San Antonio, 78249, USA.

出版信息

J Orthop Res. 2001 Nov;19(6):1021-6. doi: 10.1016/S0736-0266(01)00047-X.

Abstract

The hypothesis of this study was that collagen denaturation would lead to a significant decrease in the toughness of bone, but has little effect on the stiffness of bone. Using a heating model, effects of collagen denaturation on the biomechanical properties of human cadaveric bone were examined. Prior to testing, bone specimens were heat treated at varied temperatures (37-200 degrees C) to induce different degrees of collagen denaturation. Collagen denaturation and mechanical properties of bone were determined using a selective digestion technique and three-point bending tests, respectively. The densities and weight fractions of the mineral and organic phases in bone also were determined. A repeated measures analysis of variance showed that heating had a significant effect on the biomechanical integrity of bone, corresponding to the degree of collagen denaturation. The results of this study indicate that the toughness and strength of bone decreases significantly with increasing collagen denaturation, whereas the elastic modulus of bone is almost constant irrespective of collagen denaturation. These results suggest that the collagen network plays an important role in the toughness of bone, but has little effect on the stiffness of bone, thereby supporting the hypothesis of this study.

摘要

本研究的假设是,胶原蛋白变性会导致骨韧性显著降低,但对骨刚度影响不大。采用加热模型,研究了胶原蛋白变性对人体尸体骨生物力学性能的影响。在测试前,将骨标本在不同温度(37-200摄氏度)下进行热处理,以诱导不同程度的胶原蛋白变性。分别采用选择性消化技术和三点弯曲试验测定骨的胶原蛋白变性和力学性能。还测定了骨中矿物质和有机相的密度及重量分数。重复测量方差分析表明,加热对骨的生物力学完整性有显著影响,这与胶原蛋白变性程度相对应。本研究结果表明,随着胶原蛋白变性程度增加,骨的韧性和强度显著降低,而无论胶原蛋白变性如何,骨的弹性模量几乎保持不变。这些结果表明,胶原蛋白网络在骨韧性中起重要作用,但对骨刚度影响不大,从而支持了本研究的假设。

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