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Brillouin spectroscopy reveals changes in muscular viscoelasticity in Drosophila POMT mutants

机译:布里渊光谱显示果蝇POMT突变体的肌肉粘弹性变化

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Muscular dystrophy (MD) is a group of muscle diseases that induce weakness in skeletal muscle and cause progressive muscle degeneration. The muscular mechanical properties (i.e., viscoelasticity), however, have not been thoroughly examined before and after MD. On the other hand, Brillouin spectroscopy (BS) provides a non-invasive approach to probing the local sound speed within a small volume. Moreover, recent advances in background-free Brillouin spectroscopy enable investigators to imaging not only transparent samples, but also turbid ones. In this study, we investigated the mechanical properties of muscles while employing Drosophila model of dystroglycanopathies, human congenital muscular dystrophies resulting from abnormal glycosylation of alpha-dystroglycan. Specifically, we analyzed larval abdominal muscles of Drosophila with mutations in protein O-mannosyltransferase (POMT) genes. As a comparison, we have also examined muscular tissues dissected from wild-type Drosophila. The Brillouin spectra were obtained by a background free VIPA (virtually imaged phased array) spectrometer described in the previous report. As a reference, the Raman spectra were also acquired for each test. Our current results indicated that POMT defects cause changes in muscle elasticity, which suggests that muscular dystrophy conditions may be also associated with abnormalities in muscle elastic properties.
机译:肌营养不良症(MD)是一组引起骨骼肌无力并引起进行性肌肉变性的肌肉疾病。然而,在MD之前和之后还没有彻底检查肌肉的机械性能(即粘弹性)。另一方面,布里渊光谱(BS)提供了一种非侵入性方法来探测小体积内的局部声速。此外,无背景布里渊光谱的最新进展使研究人员不仅可以对透明样品进行成像,而且还可以对混浊的样品进行成像。在这项研究中,我们调查了肌营养不良症的果蝇模型时的肌肉力学性能,这是由α-营养不良糖基糖基化异常引起的人类先天性肌营养不良。具体来说,我们分析了果蝇的幼虫腹肌与蛋白质O-甘露糖基转移酶(POMT)基因的突变。作为比较,我们还检查了从野生型果蝇解剖的肌肉组织。布里渊光谱是通过先前报告中所述的无背景VIPA(虚拟成像相控阵)光谱仪获得的。作为参考,还为每个测试获取了拉曼光谱。我们目前的结果表明,POMT缺陷会导致肌肉弹性的变化,这表明肌肉营养不良状况也可能与肌肉弹性特性异常有关。

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