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通过多孔大分子单体交联明胶凝胶实现小干扰RNA多聚体和脂多聚体的持续递送。

Sustained delivery of siRNA poly- and lipopolyplexes from porous macromer-crosslinked gelatin gels.

作者信息

Schwabe K, Ewe A, Kohn C, Loth T, Aigner A, Hacker M C, Schulz-Siegmund M

机构信息

Leipzig University, Institute of Pharmacy, Pharmaceutical Technology, Germany.

Leipzig University, Faculty of Medicine, Rudolf-Boehm-Institute of Pharmacology and Toxicology, Clinical Pharmacology, Germany.

出版信息

Int J Pharm. 2017 Jun 30;526(1-2):178-187. doi: 10.1016/j.ijpharm.2017.04.065. Epub 2017 Apr 27.

Abstract

RNA interference (RNAi) is a promising technique to treat severe diseases on a pre-protein level. We and others postulate that the release of nanoparticle-complexed small interfering RNA (siRNA) from implanted biomaterials could provide structural support for tissue repair, combined with local siRNA transfection of invading and regenerating cells. In this study, we systematically investigated cross-linked gelatin based hydrogel formulations (cGEL) as degradable controlled release matrices for siRNA. Aiming at the definition of correlations between cGEL composition, siRNA nanoparticle formulation, release kinetics of complexed siRNA and transfection efficiency, we combined five different cGEL formulations and three transfection systems, i.e. polyplexes with polyethyleneimine (PEI), PEI in combination with liposomes (lipopolyplexes) and polyplexes based on tyrosin-modified PEI (P10Y). It was found that the distribution of these poly-/lipopolyplexes, when applied onto the negatively charged hydrogels, was strongly dependent on their zeta potential. Furthermore, siRNA release from the hydrogel was a multifactorial process, as diffusion, hydrogel degradation and nanoparticle decomplexation overlapped over time. This resulted in a prolonged release of siRNA for up to 21days. In the case of PEI complexes and lipopolyplexes, release kinetics depended on the cGEL formulation. In contrast, when employing P10Y polyplexes, an initial burst release was observed with no further release thereafter. Silencing activity was determined using constitutively luciferase-expressing SKOV-3-Luc reporter cells. Surface and bulk porosity in hydrogels was introduced by addition of soluble polyethylene glycol during fabrication, leading to improved knockdown. The rapid onset of knockdown efficacy will also provide the basis for the determination of long-term effects.

摘要

RNA干扰(RNAi)是一种在蛋白质前体水平治疗严重疾病的有前景的技术。我们和其他研究人员推测,从植入的生物材料中释放纳米颗粒复合的小干扰RNA(siRNA)可为组织修复提供结构支持,并结合对侵入和再生细胞进行局部siRNA转染。在本研究中,我们系统地研究了基于交联明胶的水凝胶制剂(cGEL)作为siRNA的可降解控释基质。为了确定cGEL组成、siRNA纳米颗粒制剂、复合siRNA的释放动力学和转染效率之间的相关性,我们将五种不同的cGEL制剂与三种转染系统相结合,即与聚乙烯亚胺(PEI)形成的多聚体、PEI与脂质体结合形成的复合物(脂质多聚体)以及基于酪氨酸修饰的PEI(P10Y)形成的多聚体。结果发现,当将这些多聚体/脂质多聚体应用于带负电荷的水凝胶时,它们的分布强烈依赖于其zeta电位。此外,siRNA从水凝胶中的释放是一个多因素过程,因为扩散、水凝胶降解和纳米颗粒解聚随时间相互重叠。这导致siRNA延长释放长达21天。对于PEI复合物和脂质多聚体,释放动力学取决于cGEL制剂。相比之下,当使用P10Y多聚体时,观察到初始爆发释放,此后不再有进一步释放。使用组成型表达荧光素酶的SKOV-3-Luc报告细胞测定沉默活性。在制备过程中通过添加可溶性聚乙二醇引入水凝胶的表面和整体孔隙率,从而提高了敲低效果。敲低功效的快速起效也将为确定长期效果提供基础。

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