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On-chip fabrication of mutifunctional envelope-type nanodevices for gene delivery

机译:用于基因递送的多功能信封型纳米器件的芯片制造

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Microfluidic devices may be highly beneficial to the rapid fabrication of small quantities of various nonviral vectors with different functionalities, which is indispensable for effective order-made gene therapy. We adapted a microfluidic chip-based approach for fabricating small quantities of nonviral vectors in a short time in preparation for order-made gene therapy applications. This approach permitted us to fabricate multifunctional envelope-type nanodevices (MENDs), composed of a compacted (or condensed) DNA core and a lipid bilayer membrane shell, which are considered as promising nonviral vectors for gene therapy applications. The on-chip fabrication of the MEND was very simple, rapid, convenient, and cost-effective compared with conventional methods. The size of the MEND showed strong dependence on the concentration and flow rate of the reaction precursors and could be controlled to be much smaller than that achievable by conventional methods. This, together with abovementioned merits, makes our microfluidic chip-based approach very attractive for the fabrication of MENDs for effective application to order-made gene therapy.
机译:微流体装置对于快速制备少量具有不同功能的各种非病毒载体可能是非常有益的,这对于有效的定制基因治疗是必不可少的。我们改编了一种基于微流控芯片的方法,可在短时间内制造少量非病毒载体,为有序基因治疗应用做准备。这种方法使我们能够制造多功能的包膜型纳米器件(MENDs),该器件由紧凑的(或压缩的)DNA核和脂质双层膜壳组成,被认为是有前途的非病毒载体,可用于基因治疗。与传统方法相比,MEND的片上制造非常简单,快速,方便且具有成本效益。 MEND的大小显示出对反应前体的浓度和流速的强烈依赖性,并且可以被控制为比常规方法所能达到的小得多。这与上述优点一起,使得我们基于微流体芯片的方法对于制造MENDs十分有吸引力,从而可以有效地应用于定制基因治疗。

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