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- 2009 Annual Meeting
- Materials Engineering and Sciences Division
- Biomaterials for Drug Delivery IV
- (645c) Binary Combinations of Lipid-Like Materials for siRNA Delivery
Thirty-six lipidoids were synthesized through the Michael addition of amines with acrylates or acrylamides, which were then combined to form 630 binary pairs. These combinations were each tested at six weight fractions each, resulting in 3,780 test formulations. The binary lipidoid formulations were screened for their ability to safely deliver siRNA into a modified HeLa cell line, and this high-throughput analysis resulted in the identification of a number of synergistic lipidoid combinations which demonstrated non-toxic, specific knockdown of firefly luciferase. Although the individual lipidoid components had no transfection ability on their own, some materials were able to achieve 90% knockdown in combination. In vivo testing was performed on the leading hits from the in vitro screen. Anti-Factor VII lipidoid-siRNA nanoparticles were injected in C57BL/6 mice, and Factor VII levels were measured in the blood serum 48 hours post-injection to quantify knockdown. Again, although the individual lipidoids were incapable of silencing the target gene on their own, several lipidoid combinations (dosed at 2 mg/kg of siRNA) produced dramatic synergistic effect in the form of near-complete Factor VII knockdown. Toxicity was preliminarily assessed by monitoring changes in mouse bodyweight, and no toxicity was detected for synergistic lipidoid combinations compared to the negative control.
Although the reason for such synergistic behavior is unclear, it is speculated that the phenomenon may involve the two-step siRNA delivery process. While certain lipidoids may be able to facilitate transport of siRNA across the cellular membrane, they may lack the ability to escape from the endosome once inside the cell. Similarly, other lipidoids may be skilled at endosomal escape, but are not able to gain cellular entry. It is speculated that the in vitro and in vivo screening analysis has enabled the identification of binary lipidoid combinations that are adept at different steps of the transfection process.