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通过稳定假树突状寡聚亚乙基亚胺基聚合物纳米粒提高肿瘤组织中的体内基因转染。

Improved in vivo gene transfer into tumor tissue by stabilization of pseudodendritic oligoethylenimine-based polyplexes.

机构信息

Pharmaceutical Biology-Biotechnology, Center for System-based Drug Research, Department of Pharmacy, and Center for Nanoscience (CeNS), Ludwig-Maximilians University Munich, Munich, Germany.

出版信息

J Gene Med. 2010 Feb;12(2):180-93. doi: 10.1002/jgm.1430.

Abstract

BACKGROUND

HD O is a low molecular weight pseudodendrimer containing oligoethylenimine and degradable hexanediol diacrylate diesters. DNA polyplexes display encouraging gene transfer efficiency in vitro and in vivo but also a limited stability under physiological conditions. This limitation must be overcome for further development into more sophisticated formulations.

METHODS

HD O polyplexes were laterally stabilized by crosslinking surface amines via bifunctional crosslinkers, bioreducible dithiobis(succimidyl propionate) (DSP) or the nonreducible analog disuccinimidyl suberate (DSS). Optionally, in a subsequent step, the targeting ligand transferrin (Tf) was attached to DSP-linked HD O polyplexes via Schiff base formation between HD O amino groups and Tf aldehyde groups, which were introduced into Tf by periodate oxidation of the glycosylation sites.

RESULTS

Crosslinked DNA polyplexes showed an increased stability against exchange reaction by salt or heparin. Disulfide bond containing DSP-linked polyplexes were susceptible to reducing conditions. These polyplexes displayed the highest gene expression levels in vitro and in vivo (upon intratumoral application in mice), and these were significantly elevated and prolonged over standard or DSS-stabilized HD O formulations. DSP-stabilized HD O polyplexes with or without Tf coating were well-tolerated after intravenous application. High gene expression levels were found in tumor tissue, with negligible gene expression in any other organ.

CONCLUSIONS

Lateral stabilization of HD O polyplexes with DSP crosslinker enhanced gene transfer efficacy and was essential for the incorporation of a ligand (Tf) into a stable particle formulation.

摘要

背景

HD O 是一种低分子量的假树突聚合物,包含寡聚亚乙基亚胺和可降解的己二醇二丙烯酸酯二酯。DNA 多聚物在体外和体内显示出令人鼓舞的基因转移效率,但在生理条件下也具有有限的稳定性。为了进一步开发出更复杂的制剂,必须克服这一限制。

方法

通过双功能交联剂,生物还原二硫代双(琥珀酰亚胺基丙酸酯)(DSP)或非还原类似物二琥珀酰亚胺基辛二酸酯(DSS),将 HD O 多聚物的表面胺基进行横向交联来稳定 HD O 多聚物。可选地,在随后的步骤中,通过 HD O 氨基与转铁蛋白(Tf)醛基之间的席夫碱形成,将配体转铁蛋白(Tf)连接到 DSP 连接的 HD O 多聚物上,Tf 的醛基是通过糖基化位点的过碘酸钠氧化引入的。

结果

交联的 DNA 多聚物对盐或肝素的交换反应表现出更高的稳定性。含有二硫键的 DSP 连接的多聚物对还原条件敏感。这些多聚物在体外和体内(在小鼠肿瘤内应用时)显示出最高的基因表达水平,并且与标准或 DSS 稳定的 HD O 制剂相比,其表达水平显著提高且持续时间延长。经静脉应用后,具有或不具有 Tf 涂层的 DSP 稳定的 HD O 多聚物具有良好的耐受性。在肿瘤组织中发现了高基因表达水平,而在任何其他器官中几乎没有基因表达。

结论

用 DSP 交联剂对 HD O 多聚物进行横向稳定化增强了基因转移效率,并且对于将配体(Tf)掺入稳定的颗粒制剂中是必不可少的。

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