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一种用于向肝细胞进行基因递送的半乳糖-聚(乙二醇)-聚乙烯亚胺的新合成方法。

A new synthesis of galactose-poly(ethylene glycol)-polyethylenimine for gene delivery to hepatocytes.

作者信息

Sagara Kazuyoshi, Kim Sung Wan

机构信息

Center for Controlled Chemical Delivery, Department of Pharmaceutics and Pharmaceutical Chemistry, University of Utah, 30 South 2000 East Rm 205, Salt Lake City, UT 84112-5820, USA.

出版信息

J Control Release. 2002 Feb 19;79(1-3):271-81. doi: 10.1016/s0168-3659(01)00555-7.

Abstract

A synthesis method of conjugating polyethylenimine (PEI) derivatives with terminally galactose-grafted poly(ethylene glycol) (PEG) was developed by using a bifunctional PEG derivative containing both an alpha-vinyl sulfone (VS) and an omega-N-hydroxysuccinimidyl (NHS) ester groups (VS-PEG-NHS). VS-PEG-NHS is commonly used as a crosslinker to modify proteins with ligands by first coupling amine groups to the NHS ester, followed by coupling sulfhydryl groups to the VS ester, because the reaction of VS groups with amine groups of proteins is suppressed below pH 8. However, the 1H-NMR determination of the conjugated products of branched PEI (M(w)=25 kDa) with VS-PEG-NHS at pH 6.0-8.0 indicated that the VS groups were completely bound to the amine groups of PEI as well as the NHS groups. At pH 7.0, all VS groups reacted with the primary, secondary, or tertiary amine groups of PEI in 2 h. Such different reaction behaviors would be due to a higher density of amine groups of PEI as compared with those of proteins. In contrast, the reactions with a small molecular monoamine, such as p-aminophenyl beta-D-galactopyranoside, showed that the NHS groups selectively coupled with the amine groups, and the VS groups remained completely intact. The NHS groups of VS-PEG-NHS were selectively conjugated to amine groups of p-aminophenyl beta-D-galactopyranoside (VS-PEG-Gal). Then, the VS groups of Gal-PEG unit were completely conjugated with the primary, secondary, or tertiary amine groups of PEI. Thus, the use of only two reaction steps could conveniently carry out the conjugation of terminally galactose-grafted PEG to 1 and 5 mol.% of amine functions in PEI. The gel retardation assay of the complexes between Gal-PEG-PEI and plasmid DNA indicated that these polymeric gene carriers possess the potent ability to condense plasmid DNA electrostatically as well as PEI. The transfection efficiency with 1% Gal-PEG-PEI in human hepatocyte-derived cell lines (HepG2), a model of parenchymal cells in liver (hepatocytes), was superior to that of PEI at their corresponding optimal ratios of polymer to plasmid DNA. In HepG2 cells, luciferase activity with 1% Gal-PEG-PEI at an N/P ratio of 20 was 2.1-fold greater than that of PEI at an N/P ratio of 5. In mouse fibroblasts (NIH3T3) that have no ASGP receptors, the transfection efficiency with 1% Gal-PEG-PEI drastically decreased to 1/40 of that with PEI. These data indicate that a new synthesis method can produce polyethylenimine derivatives with terminally galactose-grafted poly(ethylene glycol) for specific gene targeting to the liver.

摘要

通过使用一种同时含有α-乙烯基砜(VS)和ω-N-羟基琥珀酰亚胺(NHS)酯基团的双功能聚乙二醇衍生物(VS-PEG-NHS),开发了一种将聚乙烯亚胺(PEI)衍生物与末端半乳糖接枝的聚乙二醇(PEG)偶联的合成方法。VS-PEG-NHS通常用作交联剂,通过首先将胺基与NHS酯偶联,然后将巯基与VS酯偶联来用配体修饰蛋白质,因为在pH 8以下,VS基团与蛋白质胺基的反应受到抑制。然而,在pH 6.0 - 8.0下,对支链PEI(M(w)=25 kDa)与VS-PEG-NHS的偶联产物进行的1H-NMR测定表明,VS基团不仅与PEI的胺基完全结合,而且与NHS基团也完全结合。在pH 7.0时,所有VS基团在2小时内与PEI的伯胺、仲胺或叔胺基团发生反应。这种不同的反应行为可能是由于PEI的胺基密度比蛋白质的胺基密度更高。相比之下,与小分子单胺(如对氨基苯基β-D-吡喃半乳糖苷)的反应表明,NHS基团选择性地与胺基偶联,而VS基团保持完全完整。VS-PEG-NHS的NHS基团选择性地与对氨基苯基β-D-吡喃半乳糖苷(VS-PEG-Gal)的胺基偶联。然后,Gal-PEG单元的VS基团与PEI的伯胺、仲胺或叔胺基团完全偶联。因此,仅使用两个反应步骤就可以方便地将末端半乳糖接枝的PEG与PEI中1和5 mol.%的胺官能团进行偶联。Gal-PEG-PEI与质粒DNA之间复合物的凝胶阻滞分析表明,这些聚合物基因载体具有与PEI一样强大的静电凝聚质粒DNA的能力。在人肝细胞衍生细胞系(HepG2)(肝脏实质细胞(肝细胞)的模型)中,1% Gal-PEG-PEI在聚合物与质粒DNA的相应最佳比例下的转染效率优于PEI。在HepG2细胞中,1% Gal-PEG-PEI在N/P比为20时的荧光素酶活性比PEI在N/P比为5时高2.1倍。在没有ASGP受体的小鼠成纤维细胞(NIH3T3)中,1% Gal-PEG-PEI的转染效率急剧下降至PEI的1/40。这些数据表明,一种新的合成方法可以生产出具有末端半乳糖接枝聚乙二醇的聚乙烯亚胺衍生物,用于肝脏的特异性基因靶向。

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