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超声介导 DNA-季铵盐聚合物的胞内触发释放。

Intracellular triggered release of DNA-quaternary ammonium polyplex by ultrasound.

机构信息

Department of Physical Medicine and Rehabilitation, National Taiwan University Hospital and National Taiwan University College of Medicine, Taipei, Taiwan.

Institute of Biomedical Engineering, National Taiwan University, Taipei, Taiwan; Department of Physical Medicine and Rehabilitation, National Taiwan University Hospital and National Taiwan University College of Medicine, Taipei, Taiwan.

出版信息

Ultrason Sonochem. 2017 May;36:70-77. doi: 10.1016/j.ultsonch.2016.11.002. Epub 2016 Nov 4.

Abstract

2-Methacryloyloxy ethyl trimethyl ammonium chloride (TMA) is a potent polymeric plasma DNA (pDNA) carrier. The present study shows that TMA/pDNA polyplexes could be internalized into cells efficiently, but could not mediate gene transfection on its own. The transfection process of TMA/pDNA polyplexes is turned on only when ultrasound (US) was applied 4-8h after incubating TMA/pDNA polyplexes with target cells (with a gene expression 1000 times that of the immediate US group). US is a widely used physical method for gene delivery; its transfection efficiency can be significantly enhanced when combined with cationic polymer vectors. Traditionally, US is given simultaneously with genetic materials, carriers and microbubbles to exert maximal efficacy. The unique on-off phenomenon of TMA/pDNA polyplexes, controlled by US exposure, was found to relate to the endosomal escape effect of US since the polyplexes colocalized well with the lysosome marker if no US was given or was given at inappropriate times. The proposed delivery system using US and TMA carriers has potential in many pharmaceutical applications requiring precise temporal and spatial release control.

摘要

2-甲基丙烯酰氧乙基三甲基氯化铵(TMA)是一种有效的聚合体血浆 DNA(pDNA)载体。本研究表明,TMA/pDNA 超分子聚合物能够有效地被细胞内吞,但不能单独介导基因转染。TMA/pDNA 超分子聚合物的转染过程只有在与靶细胞孵育 4-8 小时后应用超声(US)时才会开启(基因表达是即时 US 组的 1000 倍)。超声是一种广泛应用于基因传递的物理方法;当与阳离子聚合物载体结合使用时,其转染效率可以显著提高。传统上,同时给予遗传物质、载体和微泡以发挥最大功效。发现 TMA/pDNA 超分子聚合物的独特开-关现象受 US 暴露控制,这与 US 的内涵体逃逸效应有关,因为如果没有 US 或在不适当的时间给予 US,则超分子聚合物与溶酶体标记物很好地共定位。该使用 US 和 TMA 载体的递药系统在许多需要精确时空释放控制的药物应用中具有潜力。

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