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首页> 外文期刊>Journal of Theoretical Biology >Elastic energy storage in unmineralized and mineralized extracellular matrices (ECMs): A comparison between molecular modeling and experimental measurements
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Elastic energy storage in unmineralized and mineralized extracellular matrices (ECMs): A comparison between molecular modeling and experimental measurements

机译:未矿化和矿化的细胞外基质(ECM)中的弹性能量存储:分子建模与实验测量之间的比较

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In order to facilitate locomotion and limb movement many animals store energy elastically in their tendons. In the turkey, much of the force generated by the gastrocnemius muscle is stored as elastic energy during tendon deformation and not within the muscle. As limbs move, the tendons are strained causing the collagen fibers in the extracellular matrices to be strained. During growth, avian tendons mineralize in the portions distal to the muscle and show increased tensile strength, modulus, and energy stored per unit strain as a result. In this study the energy stored in unmineralized and mineralized collagen fibers was measured and compared to the amount of energy stored in molecular models. Elastic energy storage values calculated using the molecular model were slightly higher than those obtained from collagen fibers, but display the same increases in slope as the fiber data. We hypothesize that these increases in slope are due to a change from the stretching of flexible regions of the collagen molecule to the stretching of less flexible regions. The elastic modulus obtained from the unmineralized molecular model correlates well with elastic moduli of unmineralized collagen from other studies. This Study demonstrates the potential importance of molecular modeling in the design of new biomaterials. (C) 2004 Elsevier Ltd. All rights reserved.
机译:为了促进运动和肢体运动,许多动物在其肌腱中弹性地存储能量。在火鸡中,腓肠肌产生的大部分力在肌腱变形过程中被存储为弹性能,而不是在肌肉内部。当四肢移动时,肌腱拉紧,导致细胞外基质中的胶原纤维拉紧。在生长过程中,禽腱在肌肉远端的部位矿化,结果显示出增加的拉伸强度,模量和每单位应变所存储的能量。在这项研究中,测量了未矿化和矿化的胶原纤维中存储的能量,并将其与分子模型中存储的能量进行了比较。使用分子模型计算出的弹性储能值略高于从胶原纤维获得的储能值,但斜率的增加与纤维数据相同。我们假设这些斜率的增加是由于从胶原分子的柔性区域的拉伸到柔性较小的区域的拉伸的变化。从未矿化的分子模型获得的弹性模量与其他研究的未矿化的胶原的弹性模量很好地相关。这项研究证明了分子建模在新型生物材料设计中的潜在重要性。 (C)2004 Elsevier Ltd.保留所有权利。

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