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用于基因递送的可降解聚合物文库的平行合成与生物物理表征

Parallel synthesis and biophysical characterization of a degradable polymer library for gene delivery.

作者信息

Akinc Akin, Lynn David M, Anderson Daniel G, Langer Robert

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Am Chem Soc. 2003 May 7;125(18):5316-23. doi: 10.1021/ja034429c.

Abstract

We recently reported the parallel synthesis of 140 degradable poly(beta-amino esters) via the conjugate addition of 20 primary or secondary amine monomers to seven different diacrylate monomers. To explore possible structure/function relationships and further characterize this class of materials, we investigated the ability of each DNA-complexing polymer to overcome important cellular barriers to gene transfer. The majority of vectors were found to be uptake-limited, but complexes formed from polymers B14 and G5 displayed high levels of internalization relative to "naked" DNA (18x and 32x, respectively). Effective diameter and zeta potential measurements indicated that, in general, small particle size and positive surface charge led to higher internalization rates. Of the 10 DNA/polymer complexes with the highest uptake levels, all had effective diameters less than 250 nm and nine had positive zeta potentials. Lysosomal trafficking was investigated by measuring the pH environment of delivered DNA. Complexes prepared with polymers G5, G10, A13, B13, A14, and B14 were found to have near neutral pH measurements, suggesting that they were able to successfully avoid trafficking to acidic lysosomes. This work highlights the value of parallel synthesis and screening approaches for the discovery of new polymers for gene delivery and the elucidation of structure/function relationships for this important class of materials.

摘要

我们最近报道了通过将20种伯胺或仲胺单体与7种不同的二丙烯酸酯单体进行共轭加成,平行合成了140种可降解的聚(β-氨基酯)。为了探索可能的结构/功能关系并进一步表征这类材料,我们研究了每种DNA复合聚合物克服基因传递中重要细胞屏障的能力。发现大多数载体受摄取限制,但由聚合物B14和G5形成的复合物相对于“裸”DNA表现出高水平的内化(分别为18倍和32倍)。有效直径和zeta电位测量表明,一般来说,小粒径和正表面电荷导致更高的内化率。在摄取水平最高的10种DNA/聚合物复合物中,所有复合物的有效直径均小于250 nm,9种复合物具有正zeta电位。通过测量递送DNA的pH环境来研究溶酶体运输。发现用聚合物G5、G10、A13、B13、A14和B14制备的复合物具有接近中性的pH测量值,这表明它们能够成功避免运输到酸性溶酶体。这项工作突出了平行合成和筛选方法对于发现用于基因递送的新聚合物以及阐明这类重要材料的结构/功能关系的价值。

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