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用于将 DNA 递送入哺乳动物细胞的可调谐高效装置的压电组件的制造。

Fabrication of piezoelectric components for a tunable and efficient device for DNA delivery into mammalian cells.

机构信息

Department of Chemistry and Biochemistry, National Chung Cheng University, 168 University Rd., Chia-Yi, Taiwan.

出版信息

Ultrason Sonochem. 2014 Mar;21(2):819-25. doi: 10.1016/j.ultsonch.2013.08.019. Epub 2013 Sep 11.

Abstract

We fabricated three piezoelectric components (PZT) that can produce ultrasonic waves with various generated power in order to improve the delivery of DNA molecule and polymer/DNA complexes into cells. Two cationic polymers (PEI and PDMAEMA) were interacted with DNA to form nano-scaled DNA/polymer complexes with/without the help of PZT devices. The application of PZT devices under optimal conditions helped to avoid cytotoxicity and greatly increased the transfection (DNA delivery) efficiency of these complexes in mammalian cells. The cytotoxicity and transfection efficiency were found to be correlated with the PZT-generated power, waveforms and duration of ultrasonic treatment. There was no observable cytotoxicity in our experimental models and, a maximum transfection efficiency 700% greater than that of polymer/DNA complexes without applying ultrasound was achieved. The transfection efficiency of plain polymer/DNA complexes (without PZT treatment) corresponded to a 630-fold increase in comparison to the naked DNA. The waveforms of generated ultrasound greatly influenced the transfection efficiency, while cytotoxicity was not significantly affected. This means that, for optimal DNA delivery, duration of the peak voltage (Vmax/Div) also plays a role. In addition, the generated waves from PZT do not cause dissociation of polymer/DNA complexes or a change in the particle sizes of these complexes. In conclusion, these results suggest that the operation of PZT devices can be a tunable/safe way to greatly improve DNA delivery for gene therapy.

摘要

我们制作了三个压电组件(PZT),它们可以产生不同功率的超声波,以提高 DNA 分子和聚合物/DNA 复合物进入细胞的递送效率。两种阳离子聚合物(PEI 和 PDMAEMA)与 DNA 相互作用,形成纳米级的 DNA/聚合物复合物,无论是否有 PZT 设备的帮助。在最佳条件下应用 PZT 设备有助于避免细胞毒性,并大大提高这些复合物在哺乳动物细胞中的转染(DNA 递送)效率。发现细胞毒性和转染效率与 PZT 产生的功率、超声处理的波形和持续时间相关。在我们的实验模型中没有观察到明显的细胞毒性,并且与未施加超声的聚合物/DNA 复合物相比,最大转染效率提高了 700%。与未用 PZT 处理的 plain 聚合物/DNA 复合物相比,转染效率增加了 630 倍。产生的超声波形极大地影响了转染效率,而细胞毒性没有显著影响。这意味着,为了实现最佳的 DNA 递送,峰值电压(Vmax/Div)的持续时间也起着作用。此外,PZT 产生的波不会导致聚合物/DNA 复合物的解离或这些复合物粒径的变化。总之,这些结果表明,PZT 设备的操作可以成为一种可调节/安全的方法,大大提高基因治疗中的 DNA 递送效率。

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