pH-Responsive Polymeric Micelle Carriers for siRNA Drugs

被引:179
作者
Convertine, A. J. [2 ]
Diab, C. [1 ]
Prieve, M. [1 ]
Paschal, A. [1 ]
Hoffman, A. S. [2 ]
Johnson, P. H. [1 ]
Stayton, P. S. [2 ]
机构
[1] PhaseRx Inc, Seattle, WA 98119 USA
[2] Univ Washington, Dept Bioengn, Seattle, WA 98195 USA
关键词
AQUEOUS RAFT POLYMERIZATION; RNA INTERFERENCE; IN-VITRO; DELIVERY; COPOLYMER;
D O I
10.1021/bm100652w
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The ability of small interfering RNA (siRNA) to efficiently silence the expression of specific genes provides the basis for exciting new therapies based on RNA interference (RNAi). The efficient intracellular delivery of siRNA from cell uptake through the endosomal trafficking pathways into the cytoplasm remains a significant challenge. Previously we described the synthesis of a new family of diblock copolymer siRNA carriers using controlled reversible addition fragmentation chain transfer (RAFT) polymerization. The carriers were composed of a positively charged block of dimethylaminoethyl methacrylate (DMAEMA) to mediate siRNA binding and a second pH-responsive endosome releasing block composed of DMAEMA and propylacrylic acid (PAA) in roughly equimolar ratios and butyl methacylate (BMA). Here we describe the development of a new generation of siRNA delivery polymers based on this design that exhibit enhanced transfection efficiency and low cytotoxicity. This design incorporates a longer endosomolytic block with increased hydrophobic content to induce micelle formation. These polymers spontaneously form spherical micelles in the size range of 40 nm with CMC (critical micelle concentration) values of approximately 2 mu g/mL based on dynamic light scattering (DLS), H-1 NMR, electron microscopy, and selective partitioning of the small molecule pyrene into the hydrophobic micelle core. The siRNA binding to the cationic shell block did not perturb micelle stability or significantly increase particle size. The self-assembly of the diblock copolymers into particles was shown to provide a significant enhancement in mRNA knockdown at siRNA concentrations as low as 12.5 nM. Under these conditions, the micelle-based systems showed an 89% reduction in GAPDH mRNA levels as compared to only 23% (10 nM siRNA) for the nonmicelle system. The reduction in mRNA levels becomes nearly quantitative as the siRNA concentration is increased to 25 nM and higher. Flow cytometry analysis of fluorescent-labeled siRNA showed uptake in 90% of cells and a 3-fold increase in siRNA per cell compared to a standard lipid transfection agent. These results demonstrate the potential utility of this carrier design for siRNA drug delivery.
引用
收藏
页码:2904 / 2911
页数:8
相关论文
共 33 条
[1]  
Aral C, 2003, J PHARM PHARM SCI, V6, P321
[2]  
Bahadori M, 2008, ARCH IRAN MED, V11, P435, DOI 08114/AIM.0016
[3]   Anti-fouling magnetic nanoparticles for siRNA delivery [J].
Boyer, Cyrille ;
Priyanto, Priyanto ;
Davis, Thomas P. ;
Pissuwan, Dakrong ;
Bulmus, Volga ;
Kavallaris, Maria ;
Teoh, Wey Yang ;
Amal, Rose ;
Carroll, Matt ;
Woodward, Robert ;
St Pierre, Tim .
JOURNAL OF MATERIALS CHEMISTRY, 2010, 20 (02) :255-265
[4]   Living free-radical polymerization by reversible addition-fragmentation chain transfer: The RAFT process [J].
Chiefari, J ;
Chong, YK ;
Ercole, F ;
Krstina, J ;
Jeffery, J ;
Le, TPT ;
Mayadunne, RTA ;
Meijs, GF ;
Moad, CL ;
Moad, G ;
Rizzardo, E ;
Thang, SH .
MACROMOLECULES, 1998, 31 (16) :5559-5562
[5]   Development of a novel endosomolytic diblock copolymer for siRNA delivery [J].
Convertine, Anthony J. ;
Benoit, Danielle S. W. ;
Duvall, Craig L. ;
Hoffman, Allan S. ;
Stayton, Patrick S. .
JOURNAL OF CONTROLLED RELEASE, 2009, 133 (03) :221-229
[6]  
CYRILLE B, 2010, J MATER CHEM, V202, P255
[7]   Rational design of composition and activity correlations for pH-sensitive and glutathione-reactive polymer therapeutics [J].
El-Sayed, MEH ;
Hoffman, AS ;
Stayton, PS .
JOURNAL OF CONTROLLED RELEASE, 2005, 101 (1-3) :47-58
[8]   Duplexes of 21-nucleotide RNAs mediate RNA interference in cultured mammalian cells [J].
Elbashir, SM ;
Harborth, J ;
Lendeckel, W ;
Yalcin, A ;
Weber, K ;
Tuschl, T .
NATURE, 2001, 411 (6836) :494-498
[9]   Postexposure protection of non-human primates against a lethal Ebola virus challenge with RNA interference: a proof-of-concept study [J].
Geisbert, Thomas W. ;
Lee, Amy C. H. ;
Robbins, Marjorie ;
Geisbert, Joan B. ;
Honko, Anna N. ;
Sood, Vandana ;
Johnson, Joshua C. ;
de Jong, Susan ;
Tavakoli, Iran ;
Judge, Adam ;
Hensley, Lisa E. ;
MacLachlan, Ian .
LANCET, 2010, 375 (9729) :1896-1905
[10]  
Grimm D., 2003, Current Gene Therapy, V3, P281, DOI 10.2174/1566523034578285