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Study of sonoporation dynamics affected by ultrasound duty cycle.

机译:研究超声占空比对声波动力学的影响。

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Sonoporation is the ultrasound-induced membrane porosity and has been investigated as a means for intracellular drug delivery and nonviral gene transfection. The dynamic characteristics of sonoporation, such as formation, duration and resealing of the pores in the cell membrane, determine the process of intracellular uptake of molecules or agents of interest that are otherwise obstructed by the cell membrane barrier. Sonoporation dynamics is also important for postultrasound cell survival. In this study, we investigated the effects of ultrasound duty cycle on sonoporation dynamics using Xenopus oocyte as a model system. Transducer with a center frequency of 0.96 MHz was used to generate pulsed ultrasound of desired duty cycle (5%, 10% and 15%) at a pulse repetition frequency of 1 Hz and an acoustic pressure of 0.4 MPa in our experiments. Employing voltage clamp techniques, we measured the transmembrane current as the direct result of decreased membrane resistance due to pore formation induced by ultrasound application. We characterized the sonoporation dynamics from these time-resolved recordings of transmembrane current to indicate cell membrane status, including pore formation, extension and resealing. We observed that the transmembrane current amplitude increased with increasing duty cycle, while the recovering process of membrane pores and cell survival rate decreased at higher duty cycles.
机译:Sonoporation是超声引起的膜孔隙度,已被研究作为细胞内药物递送和非病毒基因转染的手段。声纳穿孔的动态特性,例如细胞膜中孔的形成,持续时间和重新密封,决定了细胞内分子或目标试剂被细胞内屏障吸收的过程。超声操作对于超声检查后细胞的存活也很重要。在这项研究中,我们调查了使用非洲爪蟾卵母细胞作为模型系统的超声占空比对声纳动力学的影响。在我们的实验中,使用中心频率为0.96 MHz的换能器以1 Hz的脉冲重复频率和0.4 MPa的声压产生具有所需占空比(5%,10%和15%)的脉冲超声。使用电压钳技术,我们测量了跨膜电流,这是由于超声应用引起的孔形成而导致膜电阻降低的直接结果。我们从跨膜电流的这些时间分辨记录中表征了声穿孔动力学,以指示细胞膜状态,包括孔的形成,延伸和重新密封。我们观察到跨膜电流幅度随着占空比的增加而增加,而膜孔的恢复过程和细胞存活率在较高的占空比下降低。

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