Wang M, Wu B, Lu P, Tucker J D, Milazi S, Shah S N, Lu Q L
Department of Neurology, McColl Lockwood Laboratory for Muscular Dystrophy Research, Neuromuscular/ALS Center, Carolinas Medical Center, Charlotte, NC, USA.
1] Department of Neurology, McColl Lockwood Laboratory for Muscular Dystrophy Research, Neuromuscular/ALS Center, Carolinas Medical Center, Charlotte, NC, USA [2] Department of Biology, University of North Carolina, Charlotte, NC, USA.
Gene Ther. 2014 Jan;21(1):52-9. doi: 10.1038/gt.2013.57. Epub 2013 Oct 17.
A series of small-size polyethylenimine (PEI)-conjugated pluronic polycarbamates (PCMs) have been investigated for the ability to modulate the delivery of 2'-O-methyl phosphorothioate RNA (2'-OMePS) in vitro and in dystrophic mdx mice. The PCMs retain strong binding capacity to negatively charged oligomer as demonstrated by agarose gel retardation assay, with the formation of condensed polymer/oligomer complexes at a wide-range weight ratio from 1:1 to 20:1. The condensed polymer/oligomer complexes form 100-300 nm nanoparticles. Exon-skipping effect of 2'-OMePS was dramatically enhanced with the use of the most effective PCMs in comparison with 2'-OMePS alone in both cell culture and in vivo, respectively. More importantly, the effective PCMs, especially those composed of moderate size (2k-5kDa) and intermediate hydrophilic-lipophilic balance (7-23) of pluronics, enhanced exon-skipping of 2'-OMePS with low toxicity as compared with Lipofectamine-2000 in vitro or PEI 25k in vivo. The variability of individual PCM for delivery of antisense oligomer and plasmid DNA indicate the complexity of interaction between polymer and their cargos. Our data demonstrate the potential of PCMs to mediate delivery of modified antisense oligonucleotides to the muscle for treating muscular dystrophy or other appropriate myodegenerative diseases.
一系列小尺寸聚乙烯亚胺(PEI)共轭的普朗尼克聚氨基甲酸酯(PCM)已被研究其在体外和肌营养不良mdx小鼠中调节2'-O-甲基硫代磷酸酯RNA(2'-OMePS)递送的能力。琼脂糖凝胶阻滞试验表明,PCM对带负电荷的寡聚物具有很强的结合能力,在1:1至20:1的宽重量比范围内形成凝聚的聚合物/寡聚物复合物。凝聚的聚合物/寡聚物复合物形成100-300nm的纳米颗粒。与单独使用2'-OMePS相比,在细胞培养和体内分别使用最有效的PCM时,2'-OMePS的外显子跳跃效应均显著增强。更重要的是,有效的PCM,特别是那些由中等大小(2k-5kDa)和普朗尼克的中等亲水-亲脂平衡(7-23)组成的PCM,与体外的Lipofectamine-2000或体内的PEI 25k相比,以低毒性增强了2'-OMePS的外显子跳跃。单个PCM在递送反义寡聚物和质粒DNA方面的变异性表明聚合物与其货物之间相互作用的复杂性。我们的数据证明了PCM介导将修饰的反义寡核苷酸递送至肌肉以治疗肌肉营养不良或其他合适的肌退行性疾病的潜力。