季铵化淀粉基载体用于 siRNA 的递送:从细胞摄取到基因沉默。

Quaternized starch-based carrier for siRNA delivery: from cellular uptake to gene silencing.

机构信息

Department of Chemical Engineering, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

J Control Release. 2014 Jul 10;185:109-20. doi: 10.1016/j.jconrel.2014.04.031. Epub 2014 Apr 29.

Abstract

RNAi therapeutics is a powerful tool for treating diseases by sequence-specific targeting of genes using siRNA. Since its discovery, the need for a safe and efficient delivery system for siRNA has increased. Here, we have developed and characterized a delivery platform for siRNA based on the natural polysaccharide starch in an attempt to address unresolved delivery challenges of RNAi. Modified potato starch (Q-starch) was successfully obtained by substitution with quaternary reagent, providing Q-starch with cationic properties. The results indicate that Q-starch was able to bind siRNA by self-assembly formation of complexes. For efficient and potent gene silencing we monitored the physical characteristics of the formed nanoparticles at increasing N/P molar ratios. The minimum ratio for complete entrapment of siRNA was 2. The resulting complexes, which were characterized by a small diameter (~30 nm) and positive surface charge, were able to protect siRNA from enzymatic degradation. Q-starch/siRNA complexes efficiently induced P-glycoprotein (P-gp) gene silencing in the human ovarian adenocarcinoma cell line, NCI-ADR/Res (NAR), over expressing the targeted gene and presenting low toxicity. Additionally, Q-starch-based complexes showed high cellular uptake during a 24-hour study, which also suggested that intracellular siRNA delivery barriers governed the kinetics of siRNA transfection. In this study, we have devised a promising siRNA delivery vector based on a starch derivative for efficient and safe RNAi application.

摘要

RNAi 疗法是一种通过 siRNA 对基因进行序列特异性靶向治疗疾病的强大工具。自发现以来,人们对 siRNA 的安全有效的递送系统的需求不断增加。在这里,我们开发并表征了一种基于天然多糖淀粉的 siRNA 递送平台,试图解决 RNAi 未解决的递送挑战。通过用季铵试剂取代,成功地获得了改性马铃薯淀粉(Q-淀粉),为 Q-淀粉提供了阳离子性质。结果表明,Q-淀粉能够通过自组装形成复合物来结合 siRNA。为了实现高效和有效的基因沉默,我们在增加 N/P 摩尔比的情况下监测了形成的纳米颗粒的物理特性。完全包埋 siRNA 的最小比例为 2。所得复合物的特征为直径较小(约 30nm)且带正电荷,能够保护 siRNA 免受酶降解。Q-淀粉/siRNA 复合物能够有效诱导人卵巢腺癌细胞系 NCI-ADR/Res(NAR)中过度表达靶基因的 P-糖蛋白(P-gp)基因沉默,同时具有低毒性。此外,在 24 小时的研究中,基于 Q-淀粉的复合物表现出高细胞摄取率,这也表明细胞内 siRNA 递送屏障控制了 siRNA 转染的动力学。在这项研究中,我们设计了一种基于淀粉衍生物的有前途的 siRNA 递送载体,用于高效和安全的 RNAi 应用。

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