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Design of a platform technology for systemic delivery of siRNA to tumours using rolling circle transcription.


ABSTRACT: For therapeutic applications of siRNA, there are technical challenges with respect to targeted and systemic delivery. We here report a new siRNA carrier, RNAtr NPs, in a way that multiple tandem copies of RNA hairpins as a result of rolling circle transcription (RCT) can be readily adapted in tumour-targeted and systemic siRNA delivery. RNAtr NPs provide a means of condensing large amounts of multimeric RNA transcripts into the compact nanoparticles, especially without the aid of polycationic agents, and thus reduce the risk of immunogenicity and cytotoxicity by avoiding the use of synthetic polycationic reagents. This strategy allows the design of a platform technology for systemic delivery of siRNA to tumour sites, because RCT reaction, which enzymatically generates RNA polymers in multiple copy numbers at low cost, can lead to directly accessible routes to targeted and systemic delivery. Therefore, RNAtr NPs suggest great potentials as the siRNA therapeutics for cancer treatment.

SUBMITTER: Jang M 

PROVIDER: S-EPMC4918333 | biostudies-literature | 2015 Aug

REPOSITORIES: biostudies-literature

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Design of a platform technology for systemic delivery of siRNA to tumours using rolling circle transcription.

Jang Mihue M   Kim Jong Hwan JH   Nam Hae Yun HY   Kwon Ick Chan IC   Ahn Hyung Jun HJ  

Nature communications 20150806


For therapeutic applications of siRNA, there are technical challenges with respect to targeted and systemic delivery. We here report a new siRNA carrier, RNAtr NPs, in a way that multiple tandem copies of RNA hairpins as a result of rolling circle transcription (RCT) can be readily adapted in tumour-targeted and systemic siRNA delivery. RNAtr NPs provide a means of condensing large amounts of multimeric RNA transcripts into the compact nanoparticles, especially without the aid of polycationic ag  ...[more]

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