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聚乙二醇化 siRNA 超分子复合物中阳离子和疏水性含量的平衡可增强内涵体逃逸、稳定性、血液循环时间和体内生物活性。

Balancing cationic and hydrophobic content of PEGylated siRNA polyplexes enhances endosome escape, stability, blood circulation time, and bioactivity in vivo.

机构信息

Department of Biomedical Engineering, Vanderbilt University, Nashville, TN, USA.

出版信息

ACS Nano. 2013 Oct 22;7(10):8870-80. doi: 10.1021/nn403325f. Epub 2013 Sep 23.

Abstract

A family of pH-responsive diblock polymers composed of poly[(ethylene glycol)-b-[(2-(dimethylamino)ethyl methacrylate)-co-(butyl methacrylate)], PEG-(DMAEMA-co-BMA), was reversible addition-fragmentation chain transfer (RAFT) synthesized with 0-75 mol % BMA in the second polymer block. The relative mole % of DMAEMA and BMA was varied in order to identify a polymer that can be used to formulate PEGylated, siRNA-loaded polyplex nanoparticles (NPs) with an optimized balance of cationic and hydrophobic content in the NP core based on siRNA packaging, cytocompatibility, blood circulation half-life, endosomal escape, and in vivo bioactivity. The polymer with 50:50 mol % of DMAEMA:BMA (polymer "50 B") in the RAFT-polymerized block efficiently condensed siRNA into 100 nm NPs that displayed pH-dependent membrane disruptive behavior finely tuned for endosomal escape. In vitro delivery of siRNA with polymer 50 B produced up to 94% protein-level knockdown of the model gene luciferase. The PEG corona of the NPs blocked nonspecific interactions with constituents of human whole blood, and the relative hydrophobicity of polymer 50 B increased NP stability in the presence of human serum or the polyanion heparin. When injected intravenously, 50 B NPs enhanced blood circulation half-life 3-fold relative to more standard PEG-DMAEMA (0 B) NPs (p < 0.05), due to improved stability and a reduced rate of renal clearance. The 50 B NPs enhanced siRNA biodistribution to the liver and other organs and significantly increased gene silencing in the liver, kidneys, and spleen relative to the benchmark polymer 0 B (p < 0.05). These collective findings validate the functional significance of tuning the balance of cationic and hydrophobic content of polyplex NPs utilized for systemic siRNA delivery in vivo.

摘要

一种由聚[(乙二醇)-b-[(2-(二甲氨基)乙基甲基丙烯酸酯)-共-(丁基甲基丙烯酸酯)]组成的 pH 响应性两亲嵌段聚合物,PEG-(DMAEMA-co-BMA),通过可逆加成-断裂链转移(RAFT)合成,第二聚合物嵌段中 BMA 的相对摩尔百分比为 0-75mol%。改变 DMAEMA 和 BMA 的相对摩尔百分比,以鉴定一种聚合物,该聚合物可用于根据 siRNA 包封、细胞相容性、血液循环半衰期、内涵体逃逸和体内生物活性,在 NP 核中形成具有优化的阳离子和疏水性含量平衡的聚乙二醇化、siRNA 负载的聚合物纳米颗粒(NPs)。RAFT 聚合嵌段中 DMAEMA:BMA(聚合物“50B”)摩尔比为 50:50 的聚合物有效地将 siRNA 凝聚成 100nm 的 NPs,该 NPs 表现出 pH 依赖性的膜破坏行为,可精细调节内涵体逃逸。用聚合物 50B 进行 siRNA 的体外递送可使模型基因荧光素酶的蛋白水平降低高达 94%。NP 的 PEG 冠阻止了与人全血成分的非特异性相互作用,并且聚合物 50B 的相对疏水性增加了 NP 在存在人血清或多阴离子肝素时的稳定性。与更标准的 PEG-DMAEMA(0B)NPs 相比,静脉内注射时,50B NPs 使血液循环半衰期延长了 3 倍(p<0.05),这是由于稳定性提高和肾脏清除率降低。50B NPs 增强了 siRNA 向肝脏和其他器官的生物分布,并显著增加了肝脏、肾脏和脾脏中的基因沉默,与基准聚合物 0B 相比(p<0.05)。这些综合发现验证了体内系统递送 siRNA 用的聚合物纳米颗粒中阳离子和疏水性含量平衡的调节功能意义。

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