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The sensitivity of human mesenchymal stem cells to vibration and cold storage conditions representative of cold transportation

机译:人间充质干细胞对代表冷运输的振动和冷藏条件的敏感性

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摘要

In the current study, the mechanical and hypothermic damage induced by vibration and cold storage on human mesenchymal stem cells (hMSCs) stored at 2–8°C was quantified by measuring the total cell number and cell viability after exposure to vibration at 50 Hz (peak acceleration 140 m s−2 and peak displacement 1.4 mm), 25 Hz (peak acceleration 140 m s−2, peak displacement 5.7 mm), 10 Hz (peak acceleration 20 m s−2, peak displacement 5.1 mm) and cold storage for several durations. To quantify the viability of the cells, in addition to the trypan blue exclusion method, the combination of annexin V-FITC and propidium iodide was applied to understand the mode of cell death. Cell granularity and a panel of cell surface markers for stemness, including CD29, CD44, CD105 and CD166, were also evaluated for each condition. It was found that hMSCs were sensitive to vibration at 25 Hz, with moderate effects at 50 Hz and no effects at 10 Hz. Vibration at 25 Hz also increased CD29 and CD44 expression. The study further showed that cold storage alone caused a decrease in cell viability, especially after 48 h, and also increased CD29 and CD44 and attenuated CD105 expressions. Cell death would most likely be the consequence of membrane rupture, owing to necrosis induced by cold storage. The sensitivity of cells to different vibrations within the mechanical system is due to a combined effect of displacement and acceleration, and hMSCs with a longer cold storage duration were more susceptible to vibration damage, indicating a coupling between the effects of vibration and cold storage.
机译:在目前的研究中,振动和冷藏对2-8°C下储存的人间充质干细胞(hMSCs)造成的机械损伤和低温损伤通过测量暴露于50 Hz振动后的总细胞数和细胞活力来量化(峰值加速度140 ms-2和峰值位移1.4 mm),25 Hz(峰值加速度140 ms-2,峰值位移5.7 mm),10 Hz(峰值加速度20 ms-2,峰值位移5.1 mm)和冷藏时间。为了定量细胞的生存力,除了台盼蓝排除法外,还使用膜联蛋白V-FITC和碘化丙啶的组合来了解细胞死亡的方式。还针对每种条件评估了细胞粒度和用于干性的一组细胞表面标记,包括CD29,CD44,CD105和CD166。发现hMSC对25Hz下的振动敏感,在50Hz下有中等作用而在10Hz下没有作用。 25 Hz的振动也会增加CD29和CD44的表达。这项研究进一步表明,单独的冷藏会降低细胞活力,尤其是在48小时后,还会增加CD29和CD44并减弱CD105的表达。由于冷藏引起的坏死,细胞死亡很可能是膜破裂的结果。细胞对机械系统内不同振动的敏感性是由于位移和加速度的共同作用所致,具有较长冷藏时间的hMSC更易受到振动破坏,表明振动和冷藏之间的耦合。

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