Suppr超能文献

羟乙基淀粉包覆的聚合物复合物在冷冻溶液或冻干制剂中的稳定性和活性。

Stability and activity of hydroxyethyl starch-coated polyplexes in frozen solutions or lyophilizates.

机构信息

Pharmaceutical Technology and Biopharmaceutics, Department of Pharmacy, Ludwig-Maximilians-Universität, Butenandtstrasse 5-13, D-81377 Munich, Germany.

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

出版信息

Int J Pharm. 2014 Jul 20;469(1):50-8. doi: 10.1016/j.ijpharm.2014.04.020. Epub 2014 Apr 13.

Abstract

Despite their great potential, gene delivery polyplexes have a number of limitations, including their tendency for aggregation in vivo or upon storage. In previous studies, we could show that hydroxyethyl starch (HES)-decoration of polyplexes reduces aggregation in vitro and in vivo. The current study investigates the ability of HES-decoration to improve the stability of polyplexes upon storage as frozen-liquid or lyophilizate, and uses naked polyplexes or PEGylated ones as controls. For this purpose, freeze-thaw (FT) experiments of the polyplexes were conducted in the presence of standard excipients (glucose, sucrose or trehalose). Dynamic light scattering (DLS) measurements showed that HES-decoration imparted better stability when glucose was used, while both HES and PEG were effective in inhibiting aggregation in the presence of trehalose or sucrose. In contrast, the lyophilized HES-coated polyplexes were more stable than the PEGylated ones as shown by DLS, even after storage for 10 weeks at an elevated temperature. Evaluation of the gene transfer efficiency of the stored samples showed no negative effect of storage, except for the lyophilized naked polyplexes. In general, this study shows that, while both HES- or PEG-coats could prevent aggregation under frozen-liquid storage, the HES-coat resulted in superior protective effect upon lyophilization, with possible advantages for in vivo application. In summary, our developed HES-coats provided effective cryo- and lyoprotection to the DNA polyplexes.

摘要

尽管基因传递多聚物具有很大的潜力,但它们存在一些局限性,包括在体内或储存时容易聚集。在以前的研究中,我们可以证明多聚物的羟乙基淀粉(HES)修饰可以减少体外和体内的聚集。本研究调查了 HES 修饰在冷冻液体或冻干状态下提高多聚物储存稳定性的能力,并将裸多聚物或聚乙二醇化多聚物作为对照。为此,在存在标准赋形剂(葡萄糖、蔗糖或海藻糖)的情况下进行了多聚物的冻融(FT)实验。动态光散射(DLS)测量表明,当使用葡萄糖时,HES 修饰赋予了更好的稳定性,而 HES 和 PEG 在海藻糖或蔗糖存在下都能有效抑制聚集。相比之下,如 DLS 所示,冻干的 HES 涂层多聚物比聚乙二醇化多聚物更稳定,即使在高温下储存 10 周后也是如此。对储存样品的基因转移效率的评估表明,除了冻干的裸多聚物外,储存没有负面影响。总的来说,这项研究表明,虽然 HES 或 PEG 涂层都可以防止冷冻液体储存下的聚集,但 HES 涂层在冻干时产生了更好的保护效果,可能对体内应用具有优势。总之,我们开发的 HES 涂层为 DNA 多聚物提供了有效的冷冻和冻干保护。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验