Arginine-conjugated polypropylenimine dendrimer as a non-toxic and efficient gene delivery carrier.

Biomaterials

School of Chemistry & Molecular Engineering, Seoul National University, San 56-1, Shillim-dong, Gwanak-gu, Seoul 151-742, Republic of Korea.

Published: April 2007

AI Article Synopsis

  • Researchers created a gene delivery system using an arginine-conjugated polypropylenimine dendrimer called PPI2-R, which successfully binds plasmid DNA at a weight ratio of 4 and displays effective DNA condensation abilities.
  • The PPI2-R polyplexes have a size of around 200 nm and show 80-90% cell viability even at high concentrations of 150 µg/mL, indicating low toxicity.
  • PPI2-R demonstrated much higher transfection efficiency—up to 214 times greater than unmodified PPI2 and 4 times greater than PEI25kD—especially in HeLa and 293 cells, highlighting its potential as an effective gene delivery carrier for primary cells

Article Abstract

We synthesized arginine-conjugated polypropylenimine dendrimer G2 (DAB-8), PPI2-R for gene delivery systems. Synthesized PPI2-R could retard plasmid DNA at a weight ratio of 4 completely and PPI2-R polyplexes showed a fluorescence of less than 10% over a charge ratio of 2 by PicoGreen reagent assay, suggesting its good DNA condensing ability. The size of PPI2-R polyplex was measured to about 200nm at a charge ratio of 150. PPI2-R displayed 80-90% cell viability at even a 150microg/mL concentration. Transfection efficiency of PPI2-R was found to be high comparable to that of PEI25kD and to be 8-214 times higher than that of unmodified PPI2 on HeLa and 293 cells. Moreover, PPI2-R showed 4 times higher transfection efficiency than PEI25kD, treating with 10microg pDNA because of its low cytotoxicity on HeLa cells. Finally, PPI2-R showed a transfection efficiency 2-3 times higher than PEI25kD on HUVECs, showing its potency as a gene delivery carrier for primary cells. These results demonstrate that arginine-conjugation of PPI2 is successful in developing a low toxic and highly transfection efficient gene delivery carrier.

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Source
http://dx.doi.org/10.1016/j.biomaterials.2006.12.013DOI Listing

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