Sun Cuimin, Zhang Menghua, Huang Guangyong, Zhang Ping, Lin Ronghui, Wang Xiangjun, You Hui
School of Computer, Electronics and Information, Guangxi University, Nanning 530004, China.
Guangxi Colleges and Universities Key Laboratory of Multimedia Communications and Information Processing, Nanning 530004, China.
Micromachines (Basel). 2022 Jul 16;13(7):1126. doi: 10.3390/mi13071126.
Ultrasonic gene transfer has advantages beyond other cell transfer techniques because ultrasound does not directly act on cells, but rather pushes the gene fragments around the cells into cells through an acoustic hole effect. Most examples reported were carried out in macro volumes with conventional ultrasonic equipment. In the present study, a MEMS focused ultrasonic transducer based on piezoelectric thin film with flexible substrate was integrated with microchannels to form a microfluidic system of gene transfer. The core part of the system is a bowl-shaped curved piezoelectric film structure that functions to focus ultrasonic waves automatically. Therefore, the low input voltage and power can obtain the sound pressure exceeding the cavitation threshold in the local area of the microchannel in order to reduce the damage to cells. The feasibility of the system is demonstrated by finite element simulation and an integrated system of MEMS ultrasonic devices and microchannels are developed to successfully carry out the ultrasonic gene transfection experiments for HeLa cells. The results show that having more ultrasonic transducers leads a higher transfection rate. The system is of great significance to the development of single-cell biochip platforms for early cancer diagnosis and assessment of cancer treatment.
超声基因转移比其他细胞转移技术具有优势,因为超声并不直接作用于细胞,而是通过声孔效应将细胞周围的基因片段推入细胞内。报道的大多数实例都是使用传统超声设备在大体积环境中进行的。在本研究中,基于具有柔性基板的压电薄膜的微机电系统(MEMS)聚焦超声换能器与微通道集成,形成了基因转移微流体系统。该系统的核心部分是碗形弯曲压电薄膜结构,其作用是自动聚焦超声波。因此,低输入电压和功率就能在微通道局部区域获得超过空化阈值的声压,从而减少对细胞的损伤。通过有限元模拟证明了该系统的可行性,并开发了一个MEMS超声装置与微通道的集成系统,成功地对HeLa细胞进行了超声基因转染实验。结果表明,超声换能器越多,转染率越高。该系统对用于早期癌症诊断和癌症治疗评估的单细胞生物芯片平台的发展具有重要意义。