Lloyd Erin M, Hepburn Matt S, Li Jiayue, Mowla Alireza, Hwang Yongsung, Choi Yu Suk, Grounds Miranda D, Kennedy Brendan F
Department of Anatomy, Physiology and Human Biology, School of Human Sciences, The University of Western Australia, 35 Stirling Highway, Perth, Western Australia, 6009, Australia.
These authors contributed equally to this work.
Biomed Opt Express. 2022 Oct 17;13(11):5879-5899. doi: 10.1364/BOE.471062. eCollection 2022 Nov 1.
Skeletal muscle function is governed by both the mechanical and structural properties of its constituent tissues, which are both modified by disease. Characterizing the mechanical properties of skeletal muscle tissue at an intermediate scale, , between that of cells and organs, can provide insight into diseases such as muscular dystrophies. In this study, we use quantitative micro-elastography (QME) to characterize the micro-scale elasticity of murine skeletal muscle in three-dimensions in whole muscles. To address the challenge of achieving high QME image quality with samples featuring uneven surfaces and geometry, we encapsulate the muscles in transparent hydrogels with flat surfaces. Using this method, we study aging and disease in quadriceps tissue by comparing normal wild-type (C57BL/6J) mice with dysferlin-deficient BLAJ mice, a model for the muscular dystrophy dysferlinopathy, at 3, 10, and 24 months of age (sample size of three per group). We observe a 77% decrease in elasticity at 24 months in dysferlin-deficient quadriceps compared to wild-type quadriceps.
骨骼肌功能受其组成组织的机械和结构特性支配,而这些特性都会因疾病而改变。在细胞和器官之间的中间尺度上表征骨骼肌组织的机械特性,有助于深入了解诸如肌肉萎缩症等疾病。在本研究中,我们使用定量微弹性成像(QME)在三维空间中对完整肌肉中的小鼠骨骼肌微观弹性进行表征。为应对表面和几何形状不均匀的样本实现高QME图像质量这一挑战,我们将肌肉封装在具有平坦表面的透明水凝胶中。使用这种方法,我们通过比较3个月、10个月和24个月大的正常野生型(C57BL/6J)小鼠与患有肌营养不良症(一种肌肉萎缩症模型)的dysferlin缺陷型BLAJ小鼠的股四头肌组织,来研究衰老和疾病(每组样本量为三只)。我们观察到,与野生型股四头肌相比,24个月大的dysferlin缺陷型股四头肌的弹性下降了77%。