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Programmable delivery of macromolecules using high frequency ultrasound

机译:使用高频超声以可编程方式传递大分子

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Intracellular delivery of macromolecules into cells has been a challenging problem because of lipid bilayer in cell membrane. To engineer cells for immunotherapy and regenerative medicine, cell impermeable macromolecules should be introduced inside cells. Various methods for the intracellular delivery have been developed by many researchers. Most of intracellular delivery methods are based on bulk and untargeted mechanism, which requires further analysis and brings the complication after the transfection. We have developed an innovative method for the intracellular delivery of macromolecules using high frequency ultrasound with the center frequency of 215 MHz, entitled acoustic-transfection. This acoustic transfection has the capability of single-cell selectivity, low cytotoxicity, and the modulation of the delivered molecules. We demonstrated programmable gene delivery using acoustic-transfection, which is able to selectively deliver desired molecules into targeted cells. Cell-to-cell interactions and the generation of induced pluripotent stem cells will be benefited by the acoustic-transfection technique.
机译:由于细胞膜中的脂质双层,大分子向细胞内的细胞内递送一直是具有挑战性的问题。为了工程化细胞用于免疫疗法和再生医学,应将细胞不可渗透的大分子引入细胞内部。许多研究人员已经开发出多种用于细胞内递送的方法。大多数细胞内递送方法是基于大量和非靶向机制,这需要进一步分析并在转染后带来并发症。我们开发了一种创新的方法,该方法使用中心频率为215 MHz的高频超声在大分子内进行细胞内递送,称为声学转染。这种声转染具有单细胞选择性,低细胞毒性和传递分子调节的能力。我们展示了使用声转染的可编程基因传递,它能够选择性地将所需分子传递到靶细胞中。细胞间相互作用和诱导多能干细胞的产生将受益于声转染技术。

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