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Tris [2-(Acryloyloxy) Ethyl] Isocyanurate Cross-Linked Polyethylenimine Enhanced Exon-Skipping of Antisense 2'-Omethyl Phosphorothioate Oligonucleotide in

Nanomedicine & Nanotechnology. 2015; 
Mingxing Wang*, Bo Wu, Jason D Tucker, Peijuan Lu and Qilong Lu*
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Gene Synthesis … 3′) targeting human dystrophin gene exon 50, 2′-OMePSE23 (5′-GGCCAAACCUCGGC UUACCU-3′) targeting mouse dystrophin gene exon 23, and Cy3 labeled 2′-OMePS used for delivery study in vitro and in vivo were purchased from GenScript (NJ, USA) … Get A Quote

Abstract

Branched poly(ester amine)s (PEAs) based on tris[2-(acryloyloxy)ethyl]isocyanurate (TAEI) cross-linked low molecular weight polyethylenimine (LPEI, Mw: 0.8k/1.2k/2.0k) polymers have been evaluated for their ability to deliver antisense 2′-O-methyl phosphorothioate RNA (2′-OMePS) through in vitro and in dystrophic mdx mice. Almost all PEAs improved exon-skipping of 2′-OMePS both in vitro and in vivo. Especially the PEAs composed of PEI 2.0k (C series) enhanced 2′-OMePS delivery more effectively than PEI 0.8k or 1.2k-based series using a GFP reporter-based C2C12 myoblast culture system and in mdx mice. The highest efficiency of targeted exon-skipping of 2′-OMePS was obtained by PEA C14 [TAEI-PEI 2.0k (1... More

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