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成熟和老龄斑马鱼颅面肌腱的拉伸特性

Tensile properties of craniofacial tendons in the mature and aged zebrafish.

作者信息

Shah Rishita R, Nerurkar Nandan L, Wang Calvin C, Galloway Jenna L

机构信息

Department of Orthopaedic Surgery, Center for Regenerative Medicine, Massachusetts General Hospital, Harvard Medical School, Harvard Stem Cell Institute, 185 Cambridge Street, Boston, Massachusetts 02114.

出版信息

J Orthop Res. 2015 Jun;33(6):867-73. doi: 10.1002/jor.22847. Epub 2015 Mar 2.

Abstract

The zebrafish Danio rerio is a powerful model for the study of development, regenerative biology, and human disease. However, the analysis of load-bearing tissues such as tendons and ligaments has been limited in this system. This is largely due to technical limitations that preclude accurate measurement of their mechanical properties. Here, we present a custom tensile testing system that applies nano-Newton scale forces to zebrafish tendons as small as 1 mm in length. Tendon properties were remarkably similar to mammalian tendons, including stress-strain nonlinearity and a linear modulus (515 ± 152 MPa) that aligned closely with mammalian data. Additionally, a simple exponential constitutive law used to describe tendon mechanics was successfully fit to zebrafish tendons; the associated material constants agreed with literature values for mammalian tendons. Finally, mature and aged zebrafish comparisons revealed a significant decline in mechanical function with age. Based on the exponential constitutive model, age-related changes were primarily caused by a reduction in nonlinearity (e.g., changes in collagen crimp or fiber recruitment). These findings demonstrate the utility of zebrafish as a model to study tendon biomechanics in health and disease. Moreover, these findings suggest that tendon mechanical behavior is highly conserved across vertebrates.

摘要

斑马鱼(Danio rerio)是研究发育、再生生物学和人类疾病的强大模型。然而,在这个系统中,对肌腱和韧带等承重组织的分析一直有限。这主要是由于技术限制,妨碍了对其力学性能的准确测量。在这里,我们展示了一种定制的拉伸测试系统,该系统能对长度仅为1毫米的斑马鱼肌腱施加纳牛顿级别的力。肌腱特性与哺乳动物的肌腱非常相似,包括应力 - 应变非线性以及与哺乳动物数据紧密匹配的线性模量(515 ± 152兆帕)。此外,一个用于描述肌腱力学的简单指数本构定律成功地适用于斑马鱼肌腱;相关的材料常数与哺乳动物肌腱的文献值一致。最后,成熟和老龄斑马鱼的比较显示,随着年龄增长,力学功能显著下降。基于指数本构模型,与年龄相关的变化主要是由非线性的降低引起的(例如,胶原卷曲或纤维募集的变化)。这些发现证明了斑马鱼作为研究健康和疾病状态下肌腱生物力学模型的实用性。此外,这些发现表明肌腱的力学行为在脊椎动物中高度保守。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6da/4417054/0931c82eae5e/nihms-667895-f0001.jpg

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