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Damage in spherical cellular membrane generated by the shock waves: Coarse-grained molecular dynamics simulation of lipid vesicle

机译:冲击波产生的球形细胞膜损伤:脂质囊泡的粗粒分子动力学模拟

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摘要

Traumatic Brain Injury is a major health issue that is hard to diagnose since it often occurs without signs of external injuries. While it is well known that exposure of biological cells to shock waves causes damage to the cell membrane, it is currently unknown by which mechanisms damage is caused, and how it depends on physical parameters such as shock wave velocity, shock pulse duration, or shock pulse shape. In this computational study, we use a coarse-grained model of the lipid vesicle as a generic model of a cell membrane to elucidate the general principles of the cellular damage induced by the shock wave direct passage through the cranium. Results indicate that the extent of the liposome compression does not strongly depend on the pressure pulse and that liposome extension is very sensitive to the change in the negative pressure phase. The structural integrity of the vesicle is altered as pores form in the lipid membrane at overall pressure impulses generated by supersonic shock waves, which are greater than 5 Pa . s at single or repetitive exposure. Consequently, these permeability changes may lead to changes in the influx of sodium, potassium, and calcium ions. (C) 2014 AIP Publishing LLC.
机译:颅脑外伤是一个主要的健康问题,很难诊断,因为它经常在没有外部损伤迹象的情况下发生。虽然众所周知,生物细胞暴露于冲击波会损坏细胞膜,但目前尚不清楚是由哪种机制引起的损伤,以及损伤如何取决于诸如冲击波速度,冲击脉冲持续时间或冲击的物理参数。脉冲形状。在此计算研究中,我们使用脂质囊泡的粗粒模型作为细胞膜的通用模型,以阐明冲击波直接穿过颅骨所引起的细胞损伤的一般原理。结果表明脂质体的压缩程度与压力脉冲的依赖性不大,脂质体的延伸对负压阶段的变化非常敏感。当在大于5 Pa的超声波冲击波产生的总压力脉冲作用下,脂质膜中形成孔时,囊泡的结构完整性就会改变。一次或重复暴露。因此,这些渗透率的变化可能导致钠,钾和钙离子流入量的变化。 (C)2014 AIP Publishing LLC。

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