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首页> 外文期刊>Scientific reports. >Size matters for in vitro gene delivery: investigating the relationships among complexation protocol, transfection medium, size and sedimentation
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Size matters for in vitro gene delivery: investigating the relationships among complexation protocol, transfection medium, size and sedimentation

机译:体外基因递送的尺寸事项:研究络合方案,转染介质,尺寸和沉降之间的关系

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Although branched and linear polyethylenimines (bPEIs and lPEIs) are gold standard transfectants, a systematic analysis of the effects of the preparation protocol of polyplexes and the composition of the transfection medium on their physicochemical behaviour and effectiveness in vitro have been much neglected, undermining in some way the identification of precise structure-function relationships. This work aimed to address these issues. bPEI/DNA and lPEI/DNA, prepared using two different modes of addition of reagents, gave rise to polyplexes with exactly the same chemical composition but differing in dimensions. Upon dilution in serum-free medium, the size of any kind of polyplex promptly rose over time while remained invariably stable in complete DMEM. Of note, the bigger the dimension of polyplexes (in the nano- to micrometer range), the greater their efficiency in vitro. Besides, centrifugal sedimentation of polyplexes displaying different dimensions to speed up and enhance their settling onto cells boosted transfection efficiencies. Conversely, transgene expression was significantly blunted in cells held upside-down and transfected, definitively pointing out the impact of gravitational sedimentation of polyplexes on their transfection efficiency. Overall, much more attention must be paid to the actual polyplex size that relies on the complexation conditions and the transfection medium.
机译:虽然支链和线性聚乙烯(BPEEAR和LPEIS)是黄金标准转染剂,但对多重制备方案的影响和转染介质的组成对其物理化学行为的影响以及体外的有效性的系统分析有很大忽略了一些方式确定精确的结构功能关系。这项工作旨在解决这些问题。使用两种不同的加入试剂制备的BPEI / DNA和LPEI / DNA使得具有完全相同的化学组成的多种,但在尺寸下不同。在无血清培养基中稀释时,随着时间的推移,任何种类的多种均匀升高的大小,同时在完全DMEM中保持不变稳定。值得注意的是,多单用尺寸(在纳米至微米范围内),体外效率越大。此外,多种聚合物的离心沉降显示不同尺寸以加速并增强它们在细胞上沉降提高转染效率。相反,在倒置和转染的细胞中,转基因表达明显钝化,明确地指出了对复合物的重力沉降对其转染效率的影响。总体而言,必须更加关注依赖于络合条件和转染培养基的实际多分布尺寸。

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