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用于壳聚糖基多聚物大规模生产的在线自动混合系统。

Automated in-line mixing system for large scale production of chitosan-based polyplexes.

机构信息

Institute of Biomedical Engineering, Polytechnique Montreal, Montreal, Quebec, Canada.

Department of Chemical Engineering, Polytechnique Montreal, Montreal, Quebec, Canada.

出版信息

J Colloid Interface Sci. 2017 Aug 15;500:253-263. doi: 10.1016/j.jcis.2017.04.013. Epub 2017 Apr 7.

Abstract

Chitosan (CS)-based polyplexes are efficient non-viral gene delivery systems that are most commonly prepared by manual mixing. However, manual mixing is not only poorly controlled but also restricted to relatively small preparation volumes, limiting clinical applications. In order to overcome these drawbacks and to produce clinical quantities of CS-based polyplexes, a fully automated in-line mixing platform was developed for production of large batches of small-size and homogeneous CS-based polyplexes. Operational conditions to produce small-sized homogeneous polyplexes were identified. Increasing mixing concentrations of CS and nucleic acid was directly associated with an increase in size and polydispersity of both CS/pDNA and CS/siRNA polyplexes. We also found that although the speed of mixing has a negligible impact on the properties of CS/pDNA polyplexes, the size and polydispersity of CS/siRNA polyplexes are strongly influenced by the mixing speed: the higher the speed, the smaller the size and polydispersity. While in-line and manual CS/pDNA polyplexes had similar size and PDI, CS/siRNA polyplexes were smaller and more homogenous when prepared in-line in the non-laminar flow regime compared to manual method. Finally, we found that in-line mixed CS/siRNA polyplexes have equivalent or higher silencing efficiency of ApoB in HepG2 cells, compared to manually prepared polyplexes.

摘要

壳聚糖(CS)基聚阳离子复合物是高效的非病毒基因传递系统,通常通过手动混合制备。然而,手动混合不仅控制不佳,而且限于相对较小的制备体积,限制了临床应用。为了克服这些缺点并生产基于 CS 的聚阳离子复合物的临床用量,开发了一种完全自动化的在线混合平台,用于生产大量小尺寸和均一的基于 CS 的聚阳离子复合物。确定了生产小尺寸均一聚阳离子复合物的操作条件。CS 和核酸的混合浓度增加与 CS/pDNA 和 CS/siRNA 聚阳离子复合物的尺寸和多分散性的增加直接相关。我们还发现,尽管混合速度对 CS/pDNA 聚阳离子复合物的性质几乎没有影响,但 CS/siRNA 聚阳离子复合物的尺寸和多分散性受混合速度的强烈影响:混合速度越高,尺寸和多分散性越小。虽然在线和手动 CS/pDNA 聚阳离子复合物的尺寸和 PDI 相似,但与手动方法相比,在线在非层流状态下制备的 CS/siRNA 聚阳离子复合物更小且更均一。最后,我们发现与手动制备的聚阳离子复合物相比,在线混合的 CS/siRNA 聚阳离子复合物在 HepG2 细胞中对 ApoB 的沉默效率相当或更高。

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