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细胞膜对超声激活微泡的反应特性

Characterization of cell membrane response to ultrasound activated microbubbles.

作者信息

Tran Truong An, Le Guennec Jean Yves, Bougnoux Philippe, Tranquart François, Bouakaz Ayache

机构信息

Inserm, U619, Tours, France.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Jan;55(1):43-9. doi: 10.1109/TUFFC.2008.615.

Abstract

Contrast agents for ultrasound imaging, composed of tiny gas microbubbles, have become a reality in clinical routine. They are extensively used in radiology for detection and characterization of various tumors and in cardiology for left ventricular opacification. Recent experimental studies showed that ultrasound waves in combination with contrast agent microbubbles increase transiently cell membrane permeability in a process known as sonoporation. This effect is thought to allow foreign molecules to enter the cell. In that context, we explored the cell membrane's responses to microbubbles' oscillations as the mechanism is not completely understood. Breast cancer cell line in combination with contrast microbubbles were used. Ultrasound was applied using a transducer of 1 MHz center frequency transmitting a 10-cycle burst of different acoustic pressures repeated every 100 mus. Patch-clamp technique in whole cell configuration was used to explore transmembrane ion exchange through the variations in membrane potential. To characterize the activated ion channels, the variations of the intracellular calcium (Ca(2+)) concentration were explored using a fluorescent marker. The results revealed that ultrasound stimulation induces a rapid hyperpolarization of cell membrane potential when the microbubble is in direct contact with the cell, but the potential returned to its initial value when ultrasound stimulation stopped. The change in cell membrane potential indicates the activation of specific ion channels and depends on the quality of microbubble adhesion to the cell membrane. Microbubbles were shown to induce a mechanical stretch activating BKca channels. Simultaneous Ca(2+) measurements indicate a slow and progressive Ca(2+) increase that is likely a consequence of BKca channels opening not a cause. These results demonstrate that microbubbles' oscillations under ultrasound activation entail modulation of cellular function and signaling by t- riggering the modulation of ionic transports through the cell membrane. Cells response to the mechanical stretch caused by gentle microbubble oscillations is characterized by the opening of BKca stretch channels and a Ca(2+) flux, which might potentially trigger other cellular responses responsible for membrane sonopermeabilization.

摘要

由微小气体微泡组成的超声成像造影剂已成为临床常规应用中的现实。它们广泛应用于放射学中各种肿瘤的检测和特征描述,以及心脏病学中的左心室造影。最近的实验研究表明,超声波与造影剂微泡结合可在一个称为声孔效应的过程中短暂增加细胞膜通透性。这种效应被认为能使外来分子进入细胞。在此背景下,由于该机制尚未完全明确,我们探讨了细胞膜对微泡振荡的反应。我们使用了乳腺癌细胞系与造影微泡相结合的方法。使用中心频率为1MHz的换能器施加超声,发射不同声压的10个周期脉冲串,每100微秒重复一次。采用全细胞模式的膜片钳技术,通过膜电位变化来探索跨膜离子交换。为了表征激活的离子通道,使用荧光标记物探索细胞内钙(Ca(2+))浓度的变化。结果显示,当微泡与细胞直接接触时,超声刺激会诱导细胞膜电位快速超极化,但超声刺激停止后电位恢复到初始值。细胞膜电位的变化表明特定离子通道被激活,且取决于微泡与细胞膜的粘附质量。研究表明微泡可诱导机械拉伸激活大电导钙激活钾通道(BKca通道)。同时进行的Ca(2+)测量表明,Ca(2+)缓慢且逐渐增加,这可能是BKca通道开放的结果而非原因。这些结果表明,超声激活下微泡的振荡通过触发细胞膜离子转运的调节来调节细胞功能和信号传导。细胞对微泡轻柔振荡引起的机械拉伸的反应特征为BKca拉伸通道开放和Ca(2+)通量增加,这可能会引发其他负责细胞膜声通透化的细胞反应。

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