4.8 Article

Biodegradable arginine-based poly(ester-amide)s as non-viral gene delivery reagents

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BIOMATERIALS
卷 29, 期 22, 页码 3269-3277

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ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2008.04.026

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gene transfer; nanoparticle; smooth muscle cell; MTT assay; image analysis; fluorescence

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A novel family of synthetic biodegradable poly(ester-amide)s (Arg-PEAs) was evaluated for their biosafety and capability to transfect rat vascular smooth Muscle cells, a major cell type participating in vascular diseases. Arg-PEAs showed high binding capacity toward plasmid DNA, and the binding activity was inversely correlated to the number of methylene groups in the diol segment of Arg-PEAs. All Arg-PEAs transfected smooth muscle cells with an efficiency that was comparable to the commercial transfection reagent Superfect (R). However, unlike Superfect (R), Arg-PEAs, over a wide range of dosages, had minimal adverse effects on cell morphology, viability or apoptosis. Using rhodamine-labeled plasmid DNA, we demonstrated that Arg-PEAs were able to deliver DNA into nearly 100% of cells under optimal polymer-to-DNA weight ratios, and that such a high level of delivery was achieved through an active endocytosis mechanism. A large portion of DNA delivered, however, was trapped in acidic endocytotic compartments, and subsequently was not expressed. These results suggest that with further modification to enhance their endosome escape, Arg-PEAs can be attractive candidates for non-viral gene carriers owning to their high cellular uptake nature and reliable cellular biocompatibility. (C) 2008 Elsevier Ltd. All rights reserved.

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