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用作pH敏感基因载体的缩醛连接的低聚乙二胺

Acetal linked oligoethylenimines for use as pH-sensitive gene carriers.

作者信息

Knorr Veronika, Russ Verena, Allmendinger Lars, Ogris Manfred, Wagner Ernst

机构信息

Pharmaceutical Biology - Biotechnology, Department of Pharmacy, Ludwig-Maximilians-Universität München, Butenandtstr. 5-13, D-81377 Munich, Germany.

出版信息

Bioconjug Chem. 2008 Aug;19(8):1625-34. doi: 10.1021/bc8001858. Epub 2008 Jul 16.

Abstract

Two types of acid-degradable nonviral gene carriers, OEI-MK and OEI-BAA, were synthesized by polymerizing oligoethylenimine of 800 Da (OEI800) with the pH-sensitive acetone ketal cross-linker 2,2-bis(N-maleimidoethyloxy) propane (MK) or the 4-methoxybenzaldehyde bisacrylate acetal cross-linker 1,1-bis-(2-acryloyloxy ethoxy)-[4-methoxy-phenyl]methane) (BAA). Corresponding acid-insensitive counterparts (OEI-BM and LT-OEI-HD) were synthesized as well, representing control polymers. Kinetics of hydrolysis were measured and confirmed the pH-dependent degradation profile of the acetal functions, with short half-lives of 3 min at pH 5.0, and 5 h (OEI-MK) or 3.5 h (OEI-BAA) at physiological pH 7.4 and 37 degrees C. DNA polyplexes of a luciferase expression plasmid were tested for gene transfer efficiency and biocompatibility in two cell lines (B16F10 and Neuro2A). Polyplexes with acid-labile polymers showed an improved toxicity profile compared to those made with acid-stable polymer analogues. At low cation/plasmid (c/p) w/w ratios the transfection efficiency of pH-sensitive polymers was slightly reduced, but it became similar or superior to the efficiency of acid-stable polymers at higher c/p ratios. An improved in vivo biocompatibility of the acid-degradable polymers over the stable control polymers was confirmed by liver histology after systemic administration of polymers in Balb/c mice.

摘要

通过将800 Da的低聚乙二胺(OEI800)与pH敏感的丙酮缩酮交联剂2,2-双(N-马来酰亚胺基乙氧基)丙烷(MK)或4-甲氧基苯甲醛双丙烯酸酯缩醛交联剂1,1-双(2-丙烯酰氧基乙氧基)-[4-甲氧基苯基]甲烷(BAA)聚合,合成了两种类型的酸可降解非病毒基因载体,即OEI-MK和OEI-BAA。还合成了相应的酸不敏感对应物(OEI-BM和LT-OEI-HD),作为对照聚合物。测量了水解动力学,并证实了缩醛官能团的pH依赖性降解曲线,在pH 5.0时半衰期短至3分钟,在生理pH 7.4和37℃时,OEI-MK的半衰期为5小时,OEI-BAA的半衰期为3.5小时。在两种细胞系(B16F10和Neuro2A)中测试了荧光素酶表达质粒的DNA多聚体的基因转移效率和生物相容性。与由酸稳定聚合物类似物制成的多聚体相比,具有酸不稳定聚合物的多聚体显示出改善的毒性特征。在低阳离子/质粒(c/p)w/w比时,pH敏感聚合物的转染效率略有降低,但在较高c/p比时,其转染效率变得与酸稳定聚合物相似或更高。在Balb/c小鼠中全身给药聚合物后,通过肝脏组织学证实了酸可降解聚合物在体内的生物相容性优于稳定的对照聚合物。

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