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具有增强细胞内稳定性的叶酸-聚乙二醇化小干扰RNA脂质多聚体的全身递送用于白血病的体内基因沉默

Systemic Delivery of Folate-PEG siRNA Lipopolyplexes with Enhanced Intracellular Stability for In Vivo Gene Silencing in Leukemia.

作者信息

Lee Dian-Jang, Kessel Eva, Lehto Taavi, Liu Xueying, Yoshinaga Naoto, Padari Kärt, Chen Ying-Chen, Kempter Susanne, Uchida Satoshi, Rädler Joachim O, Pooga Margus, Sheu Ming-Thau, Kataoka Kazunori, Wagner Ernst

机构信息

Department of Pharmacy and Center for NanoScience, Ludwig-Maximilians-Universität München , Butenandtstr. 5-13, 81377 Munich, Germany.

Nanosystems Initiative Munich (NIM) , Schellingstr. 4, 80799 Munich, Germany.

出版信息

Bioconjug Chem. 2017 Sep 20;28(9):2393-2409. doi: 10.1021/acs.bioconjchem.7b00383. Epub 2017 Aug 24.

Abstract

Protection of small interfering RNA (siRNA) against degradation and targeted delivery across the plasma and endosomal membranes to the final site of RNA interference (RNAi) are major aims for the development of siRNA therapeutics. Targeting for folate receptor (FR)-expressing tumors, we optimized siRNA polyplexes by coformulating a folate-PEG-oligoaminoamide (for surface shielding and targeting) with one of three lipo-oligoaminoamides (optionally tyrosine-modified, for optimizing stability and size) to generate ∼100 nm targeted lipopolyplexes (TLPs), which self-stabilize by cysteine disulfide cross-links. To better understand parameters for improved tumor-directed gene silencing, we analyzed intracellular distribution and siRNA release kinetics. FR-mediated endocytosis and endosomal escape of TLPs was confirmed by immuno-TEM. We monitored colocalization of TLPs with endosomes and lysosomes, and onset of siRNA release by time-lapse confocal microscopy; analyzed intracellular stability by FRET using double-labeled siRNA; and correlated results with knockdown of eGFPLuc protein and EG5 mRNA expression. The most potent formulation, TLP1, containing lipopolyplex-stabilizing tyrosine trimers, was found to unpack siRNA in sustained manner with up to 5-fold higher intracellular siRNA stability after 4 h compared to other TLPs. Unexpectedly, data indicated that intracellular siRNA stability instead of an early endosomal exit dominate as a deciding factor for silencing efficiency of TLPs. After i.v. administration in a subcutaneous leukemia mouse model, TLP1 exhibited ligand-dependent tumoral siRNA retention, resulting in 65% EG5 gene silencing at mRNA level without detectable adverse effects. In sum, tyrosine-modified TLP1 conveys superior protection of siRNA for an effective tumor-targeted delivery and RNAi in vivo.

摘要

保护小干扰RNA(siRNA)不被降解,并将其靶向递送至穿过质膜和内体膜到达RNA干扰(RNAi)的最终位点,是siRNA疗法开发的主要目标。针对表达叶酸受体(FR)的肿瘤,我们通过将叶酸-聚乙二醇-寡聚氨基酰胺(用于表面屏蔽和靶向)与三种脂溶性寡聚氨基酰胺之一(可选地进行酪氨酸修饰,用于优化稳定性和大小)共同配制,优化了siRNA多聚体,以生成约100 nm的靶向脂质多聚体(TLP),其通过半胱氨酸二硫键交联实现自我稳定。为了更好地理解改善肿瘤导向基因沉默的参数,我们分析了细胞内分布和siRNA释放动力学。免疫透射电子显微镜证实了TLP的FR介导的内吞作用和内体逃逸。我们通过延时共聚焦显微镜监测TLP与内体和溶酶体的共定位以及siRNA释放的开始;使用双标记siRNA通过荧光共振能量转移分析细胞内稳定性;并将结果与eGFPLuc蛋白的敲低和EG5 mRNA表达相关联。发现最有效的制剂TLP1含有稳定脂质多聚体的酪氨酸三聚体,与其他TLP相比,它能以持续的方式解开siRNA,4小时后细胞内siRNA稳定性提高多达5倍。出乎意料的是,数据表明细胞内siRNA稳定性而非早期内体逃逸是决定TLP沉默效率的决定性因素。在皮下白血病小鼠模型中静脉注射后,TLP1表现出配体依赖性的肿瘤siRNA保留,在mRNA水平上导致65%的EG5基因沉默,且未检测到不良反应。总之,酪氨酸修饰的TLP1对siRNA具有卓越的保护作用,可实现有效的肿瘤靶向递送和体内RNAi。

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