Polymer nanoassemblies with hydrophobic pendant groups in the core induce false positive siRNA transfection in luciferase reporter assays

[Display omitted] Poly(ethylene glycol)-conjugated polyethylenimine (PEG-PEI) is a widely studied cationic polymer used to develop non-viral vectors for siRNA therapy of genetic disorders including cancer. Cell lines stably expressing luciferase reporter protein typically evaluate the transfection e...

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Veröffentlicht in:International journal of pharmaceutics 2017-08, Vol.528 (1-2), p.536-546
Hauptverfasser: Rheiner, Steven, Reichel, Derek, Rychahou, Piotr, Izumi, Tadahide, Yang, Hsin-Sheng, Bae, Younsoo
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Sprache:eng
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Zusammenfassung:[Display omitted] Poly(ethylene glycol)-conjugated polyethylenimine (PEG-PEI) is a widely studied cationic polymer used to develop non-viral vectors for siRNA therapy of genetic disorders including cancer. Cell lines stably expressing luciferase reporter protein typically evaluate the transfection efficacy of siRNA/PEG-PEI complexes, however recent findings revealed that PEG-PEI can reduce luciferase expression independent of siRNA. This study elucidates a cause of the false positive effect in luciferase assays by using polymer nanoassemblies (PNAs) made from PEG, PEI, poly-(l-lysine) (PLL), palmitate (PAL), and deoxycholate (DOC): PEG-PEI (2P), PEG-PEI-PAL (3P), PEG-PLL (2P’), PEG-PLL-PAL (3P’), and PEG-PEI-DOC (2PD). In vitro transfection and western blot assays of luciferase using a colorectal cancer cell line expressing luciferase (HT29/LUC) concluded that 2P and 2P’ caused no luciferase expression reduction while hydrophobically modified PNAs induced a 35–50% reduction (3P’
ISSN:0378-5173
1873-3476
DOI:10.1016/j.ijpharm.2017.06.056