Yang Yongxin, Zhang Zhiwen, Chen Lingli, Gu Wangwen, Li Yaping
Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.
Bioconjug Chem. 2010 Mar 17;21(3):419-26. doi: 10.1021/bc900267g. Epub 2010 Feb 2.
The biodegradable cationic poly(2-(2-aminoethoxy)ethoxy)phosphazene (PAEP) bearing primary amino groups and a new PAEP derivative, urocanic acid (UA) modified PAEP (UA-PAEP), were synthesized and investigated for gene delivery. The results indicated that PAEP was able to condense DNA into complex nanoparticles with the size around 120 nm at the polymer/DNA ratio (N/P) of 35, at which PAEP/DNA complex nanoparticles (PACNs) showed efficient transfection activity in complete medium. After conjugating with UA at the substitution degree of 7% (UA-PAEP7), UA-PAEP7/DNA complex nanoparticles (UP7CNs) exhibited higher transfection efficiency than PACNs and UA-PAEP25/DNA complex nanoparticles (UP25CNs) and much lower cytotoxicity compared with PEI/DNA complex nanoparticles (PEICNs). The transfection experiment using a proton pump inhibitor suggested that the gene expression of PACNs and UP-PAEP/DNA complex nanoparticles (UPCNs) was dependent on the endosomal acidification process. The acetate solution (20 mM, pH5.7) improved the transfection activity of UP7CNs in HeLa and COS 7 cell lines, which was almost comparable to PEICNs at the N/P ratio of 35. Therefore, the results suggested that UP7CNs could be a promising carrier for gene delivery.
合成了带有伯氨基的可生物降解阳离子聚[2-(2-氨基乙氧基)乙氧基]磷腈(PAEP)以及一种新型PAEP衍生物——尿刊酸(UA)修饰的PAEP(UA-PAEP),并对其进行基因递送研究。结果表明,在聚合物/DNA比例(N/P)为35时,PAEP能够将DNA凝聚成尺寸约为120 nm的复合纳米颗粒,此时PAEP/DNA复合纳米颗粒(PACNs)在完全培养基中表现出高效的转染活性。在取代度为7%时与UA共轭后(UA-PAEP7),UA-PAEP7/DNA复合纳米颗粒(UP7CNs)表现出比PACNs和UA-PAEP25/DNA复合纳米颗粒(UP25CNs)更高的转染效率,并且与聚乙烯亚胺/DNA复合纳米颗粒(PEICNs)相比细胞毒性低得多。使用质子泵抑制剂的转染实验表明,PACNs和UP-PAEP/DNA复合纳米颗粒(UPCNs)的基因表达依赖于内体酸化过程。乙酸盐溶液(20 mM,pH5.7)提高了UP7CNs在HeLa和COS 7细胞系中的转染活性,在N/P比例为35时几乎与PEICNs相当。因此,结果表明UP7CNs可能是一种有前途的基因递送载体。