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DOI: 10.1021/bm800985e
OpenAccess: Closed
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Environment-Responsive Block Copolymer Micelles with a Disulfide Cross-Linked Core for Enhanced siRNA Delivery

Satoru Matsumoto,R. James Christie,Nobuhiro Nishiyama,Kanjiro Miyata,Atsushi Ishii,Makoto Oba,Hiroyuki Koyama,Yuichi Yamasaki,Kazunori Kataoka

Micelle
Ethylene glycol
PEG ratio
2008
A core−shell-type polyion complex (PIC) micelle with a disulfide cross-linked core was prepared through the assembly of iminothiolane-modified poly(ethylene glycol)-block-poly(l-lysine) [PEG-b-(PLL-IM)] and siRNA at a characteristic optimum mixing ratio. The PIC micelles showed a spherical shape of ∼60 nm in diameter with a narrow distribution. The micellar structure was maintained at physiological ionic strength but was disrupted under reductive conditions because of the cleavage of disulfide cross-links, which is desirable for siRNA release in the intracellular reductive environment. Importantly, environment-responsive PIC micelles achieved 100-fold higher siRNA transfection efficacy compared with non-cross-linked PICs prepared from PEG-b-poly(l-lysine), which were not stable at physiological ionic strength. PICs formed with PEG-b-(PLL-IM) at nonoptimum ratios did not assemble into micellar structure and did not achieve gene silencing following siRNA transfection. These findings show the feasibility of core cross-linked PIC micelles as carriers for therapeutic siRNA and show that stable micellar structure is critical for effective siRNA delivery into target cells.
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    Environment-Responsive Block Copolymer Micelles with a Disulfide Cross-Linked Core for Enhanced siRNA Delivery” is a paper by Satoru Matsumoto R. James Christie Nobuhiro Nishiyama Kanjiro Miyata Atsushi Ishii Makoto Oba Hiroyuki Koyama Yuichi Yamasaki Kazunori Kataoka published in 2008. It has an Open Access status of “closed”. You can read and download a PDF Full Text of this paper here.