Enhancing Intracranial Delivery of Clinically Relevant Non-viral Gene Vectors.

Enhancing Intracranial Delivery of Clinically Relevant Non-viral Gene Vectors.
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DOI:
10.1039/c6ra01546h
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发表时间:
2016
期刊:
影响因子:
3.9
通讯作者:
Hanes J
Hanes J
中科院分区:
化学3区
文献类型:
--
作者:
Berry S;Mastorakos P;Zhang C;Song E;Patel H;Suk JS;Hanes J

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Gene therapy is a promising strategy for the management of various neurological disorders that do not respond adequately to conventional therapeutics. The development of gene vectors with favorable safety profiles that can achieve uniform distribution and high-level transgene expression in the brain remains challenging. The rod-shaped, non-viral gene delivery platform based on poly-L-lysine (PLL) conjugated to a single segment of polyethylene glycol (PEG) has shown safe transfection in human nares and mouse brains in vivo. However, we have previously demonstrated that a denser PEG coating is required for rapid diffusion of nanoparticles in the brain extracellular space. Here, we engineered a densely PEGylated version of this platform based on PLL polymers conjugated to branched PEG via alkyne-azide cycloaddition. We found that the newly developed gene vectors rapidly diffused in the brain parenchyma, providing significantly improved vector distribution and overall transgene expression in vivo compared to the previously developed platform. These brain-penetrating DNA nanoparticles exhibited enhanced cellular uptake presumably due to their ellipsoidal morphology. By simultaneously improving delivery to target cells and subsequent transfection, our densely PEGylated PLL DNA nanoparticles can provide widespread, high levels of transgene expression, essential for effective targeting of highly disseminated brain diseases. Densely PEGylated poly-L-lysine gene vectors (DNA-BPN) provide more widely distributed transgene expression in the brain, compared to conventionally PEGylated counterparts (DNA-CPN).