Chen Xian, Leow Ruen Shan, Hu Yaxin, Wan Jennifer M F, Yu Alfred C H
Medical Engineering Program, The University of Hong Kong, , Pokfulam, Hong Kong.
J R Soc Interface. 2014 Mar 26;11(95):20140071. doi: 10.1098/rsif.2014.0071. Print 2014 Jun 6.
Sonoporation is based upon an ultrasound-microbubble cavitation routine that physically punctures the plasma membrane on a transient basis. During such a process, the actin cytoskeleton may be disrupted in tandem because this network of subcellular filaments is physically interconnected with the plasma membrane. Here, by performing confocal fluorescence imaging of single-site sonoporation episodes induced by ultrasound-triggered collapse of a single targeted microbubble, we directly observed immediate rupturing of filamentary actin (F-actin) at the sonoporation site (cell type: ZR-75-30; ultrasound frequency: 1 MHz; peak negative pressure: 0.45 MPa; pulse duration: 30 cycles; bubble diameter: 2-4 µm). Also, through conducting a structure tensor analysis, we observed further disassembly of the F-actin network over the next 60 min after the onset of sonoporation. The extent of F-actin disruption was found to be more substantial in cells with higher uptake of sonoporation tracer. Commensurate with this process, cytoplasmic accumulation of globular actin (G-actin) was evident in sonoporated cells, and in turn the G-actin : F-actin ratio was increased in a trend similar to drug-induced (cytochalasin D) actin depolymerization. These results demonstrate that sonoporation is not solely a membrane-level phenomenon: organization of the actin cytoskeleton is concomitantly perturbed.
声孔效应基于超声-微泡空化过程,该过程会在瞬间物理性地穿刺质膜。在这个过程中,肌动蛋白细胞骨架可能会同时受到破坏,因为这个亚细胞细丝网络与质膜存在物理连接。在此,通过对由单个靶向微泡的超声触发塌陷所诱导的单部位声孔效应事件进行共聚焦荧光成像,我们直接观察到在声孔效应部位(细胞类型:ZR-75-30;超声频率:1兆赫;峰值负压:0.45兆帕;脉冲持续时间:30个周期;气泡直径:2-4微米)丝状肌动蛋白(F-肌动蛋白)立即断裂。此外,通过进行结构张量分析,我们观察到在声孔效应开始后的接下来60分钟内F-肌动蛋白网络进一步解体。发现在摄取声孔效应示踪剂较多的细胞中,F-肌动蛋白的破坏程度更大。与此过程一致,在经声孔效应处理的细胞中,球状肌动蛋白(G-肌动蛋白)在细胞质中的积累很明显,相应地,G-肌动蛋白与F-肌动蛋白的比例呈上升趋势,类似于药物诱导(细胞松弛素D)的肌动蛋白解聚。这些结果表明,声孔效应不仅仅是一种膜水平的现象:肌动蛋白细胞骨架的组织也会随之受到干扰。