4.8 Article

Functionalized linear poly(amidoamine)s are efficient vectors for intracellular protein delivery

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JOURNAL OF CONTROLLED RELEASE
卷 152, 期 1, 页码 90-98

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.jconrel.2011.01.023

关键词

Bioreducible polymers; Disulfide reduction; Intracellular protein delivery; Poly(amidoamine); Polyelectrolyte complex

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An effective intracellular protein delivery system was developed based on functionalized linear poly (amidoamine)s (PAAs) that form self-assembled cationic nanocomplexes with oppositely charged proteins. Three differently functionalized PAAs were synthesized, two of these having repetitive disulfide bonds in the main chain, by Michael-type polyaddition of 4-amino-1-butanol (ABOL) to cystamine bisacrylamide (CBA), histamine (HIS) to CBA, and ABOL to bis(acryloyl)piperazine (BAP). These water-soluble PAAs efficiently condense beta-galactosidase by self-assembly into nanoscaled and positively-charged complexes. Stable under neutral extracellular conditions, the disulfide-containing nanocomplexes rapidly destabilized in a reductive intracellular environment. Cell-internalization and cytotoxicity experiments showed that the PAA-based nanocomplexes were essentially non-toxic. beta-Galactosidase was successfully internalized into cells, with up to 94% of the cells showing beta-galactosidase activity, whereas the enzyme alone was not taken up by the cells. The results indicate that these poly(amidoamine)s have excellent properties as highly potent and non-toxic intracellular protein carriers, which should create opportunities for novel applications in protein delivery. (C) 2011 Elsevier B.V. All rights reserved.

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