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Strengthening of C2C12 mouse myoblasts against compression damage by mild cyclic compressive stimulation

机译:增强C2C12小鼠成肌细胞抵抗轻度循环压缩刺激的压缩损伤

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摘要

Deep tissue injury (DTI) is a severe kind of pressure ulcers formed by sustained deformation of muscle tissues over bony prominences. As a major clinical issue, DTI affects people with physical disabilities, and is obviously related to the load-bearing capacity of muscle cells in various in-vivo conditions. It is important to provide a preventive approach to help muscle cells from being damaged by compressive stress. In this study, we hypothesized that cyclic compressive stimulation could strengthen muscle cells against compressive damage and enhance the cell plasma membrane resealing capability. Monolayer of myoblasts was cultured in the cell culture dish covered by a cylinder 0.5% agarose gel. The platen indenter was applied with 20% strain on the agarose gel in the Mach-1 micromechanical system. The vibration was 1 Hz sinusoidal function with amplitude 0.2% strain based on 20% gel strain. Cyclic compressive stimulation for 2 h could enhance the compressive stress damage threshold of muscle cells, the muscle cell plasma membrane resealing ratio and viability of muscle cell under static loading as preventive approach. This approach might help to reduce the risk of DTI in clinic. (C) 2016 Elsevier Ltd. All rights reserved.
机译:深层组织损伤(DTI)是一种严重的压疮,是由肌肉组织在骨突出处持续变形而形成的。作为主要的临床问题,DTI影响身体残疾的人,并且显然与各种体内条件下肌肉细胞的负荷能力有关。重要的是要提供一种预防方法,以帮助肌肉细胞免受压应力的损害。在这项研究中,我们假设循环压缩刺激可以增强肌肉细胞抵抗压缩损伤并增强细胞质膜的再密封能力。在用0.5%圆柱琼脂糖凝胶覆盖的细胞培养皿中培养成肌细胞单层。将压板压头以20%的应变施加在Mach-1微机械系统中的琼脂糖凝胶上。振动为1 Hz正弦函数,振幅为0.2%应变(基于20%凝胶应变)。循环压缩刺激2 h可以提高肌肉细胞的压缩应力损伤阈值,静态负荷下的肌肉细胞质膜重封率和活力,是预防方法。这种方法可能有助于降低临床中DTI的风险。 (C)2016 Elsevier Ltd.保留所有权利。

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