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肌肉量增加对小鼠矢状缝形态和力学的影响。

Effects of increased muscle mass on mouse sagittal suture morphology and mechanics.

作者信息

Byron Craig D, Borke James, Yu Jack, Pashley David, Wingard Christopher J, Hamrick Mark

机构信息

Department of Cellular Biology and Anatomy, Medical College of Georgia, Augusta, Georgia 30912-2000, USA.

出版信息

Anat Rec A Discov Mol Cell Evol Biol. 2004 Jul;279(1):676-84. doi: 10.1002/ar.a.20055.

Abstract

The purpose of this study is to test predicted form-function relationships between cranial suture complexity and masticatory muscle mass and biomechanics in a mouse model. Specifically, to test the hypothesis that increased masticatory muscle mass increases sagittal suture complexity, we measured the fractal dimension (FD), temporalis mass, and temporalis bite force in myostatin-deficient (GDF8(-/-)) mice and wild-type CD-1 mice (all male, 6 months old). Myostatin is a negative regulator of muscle mass, and myostatin-deficient mice show a marked increase in muscle mass compared to normal mice. We predicted that increased sagittal suture complexity would decrease suture stiffness. The data presented here demonstrate that increased suture complexity (measured as FD) was observed in a hypermuscular mouse model (GDF8(-/-)) with significantly increased temporalis muscle mass and bite forces. Hypermuscular mice were also found to possess suture connective tissue that was less stiff (i.e., underwent more displacement before failure occurred) when loaded in tension. By decreasing stiffness, suture complexity apparently helps to dissipate mechanical loads within the cranium that are related to chewing. These results suggest that cranial suture connective tissue locally adapts to functional demands of the biomechanical suture environment. As such, cranial sutures provide a novel model for studies in connective tissue mechanotransduction.

摘要

本研究的目的是在小鼠模型中测试颅骨缝复杂性与咀嚼肌质量及生物力学之间预测的形态-功能关系。具体而言,为了验证咀嚼肌质量增加会提高矢状缝复杂性这一假设,我们测量了肌肉生长抑制素缺陷型(GDF8(-/-))小鼠和野生型CD-1小鼠(均为6月龄雄性)的分形维数(FD)、颞肌质量和颞肌咬合力。肌肉生长抑制素是肌肉质量的负调节因子,与正常小鼠相比,肌肉生长抑制素缺陷型小鼠的肌肉质量显著增加。我们预测矢状缝复杂性增加会降低缝的刚度。此处呈现的数据表明,在颞肌质量和咬合力显著增加的高肌小鼠模型(GDF8(-/-))中观察到缝复杂性增加(以FD衡量)。还发现高肌小鼠的缝结缔组织在承受拉伸负荷时刚度较小(即,在失效前发生更大的位移)。通过降低刚度,缝复杂性显然有助于消散颅骨内与咀嚼相关的机械负荷。这些结果表明,颅骨缝结缔组织会局部适应生物力学缝环境的功能需求。因此,颅骨缝为结缔组织机械转导研究提供了一个新模型。

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