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高能导弹对培养的大鼠背根神经节细胞造成的压力波损伤。

Pressure wave injuries to rat dorsal root ganglion cells in culture caused by high-energy missiles.

作者信息

Suneson A, Hansson H A, Lycke E, Seeman T

机构信息

Department of Neurosurgery, University of Gothenburg, Sweden.

出版信息

J Trauma. 1989 Jan;29(1):10-8. doi: 10.1097/00005373-198901000-00003.

Abstract

A high-energy missile impact in an extremity of an animal creates a shock wave which is rapidly dispersed as a burst of oscillating pressure waves that traverses the entire body causing local, regional, and distant injuries. The present study was performed on dorsal root ganglion (DRG) cells, cultured for 3 weeks, to elucidate the cellular mechanism for damage of nerve cells, using a simplified test system. A model system was developed allowing exposure of DRG cultures to a burst of high-frequency oscillating pressure waves, comparable to those recorded in animals after high-energy missile extremity impact. The pressure waves were induced by impact of a high-energy missile in a rubber tube filled with water, in which nerve cell cultures were kept in a closed rubber glove filled with tissue culture medium. The pressure waves had a duration of 0.5-1.5 ms and a frequency spectrum ranging from 0-250 kHz. Within minutes the neurites showed changes in their microtubules. In addition, varicosities, enriched with tubulin immunoreactive material, became irregularly studded along the nerve cell processes. Scattered DRG cells were initially permeable to the marker complex Evans-blue albumin (EBA), used as an indicator of the ability of the plasma membranes to exclude proteins. After 6 hr, however, almost every DRG neuron was intensely stained by EBA. Concomitantly, there was swelling of the nerve cell cytoplasm and organelles, and, to a variable extent, neurofilament tangles were observed.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

高能导弹撞击动物肢体时会产生冲击波,该冲击波会迅速分散为一阵振荡压力波,其贯穿全身,造成局部、区域和远处损伤。本研究在培养3周的背根神经节(DRG)细胞上进行,以使用简化测试系统阐明神经细胞损伤的细胞机制。开发了一个模型系统,使DRG培养物暴露于一阵高频振荡压力波中,这阵压力波与高能导弹肢体撞击后在动物体内记录到的压力波相当。压力波由高能导弹撞击装有水的橡胶管产生,神经细胞培养物置于充满组织培养基的封闭橡胶手套中。压力波持续时间为0.5 - 1.5毫秒,频谱范围为0 - 250千赫兹。几分钟内,神经突的微管就出现了变化。此外,富含微管蛋白免疫反应物质的膨体沿着神经细胞突起不规则地散布。最初,分散的DRG细胞对用作质膜排除蛋白质能力指标的标记复合物伊文思蓝白蛋白(EBA)具有通透性。然而,6小时后,几乎每个DRG神经元都被EBA强烈染色。与此同时,神经细胞质和细胞器肿胀,并且在不同程度上观察到神经丝缠结。(摘要截短于250字)

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