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The pH-triggered triblock nanocarrier enabled highly efficient siRNA delivery for cancer therapy

  • Lili Du
  • , Junhui Zhou
  • , Lingwei Meng
  • , Xiaoxia Wang
  • , Changrong Wang
  • , Yuanyu Huang
  • , Shuquan Zheng
  • , Liandong Deng
  • , Huiqing Cao
  • , Zicai Liang
  • , Anjie Dong
  • , Qiang Cheng*
  • *Corresponding author for this work
  • Peking University
  • Tianjin University
  • Beijing Institute of Technology
  • Collaborative Innovation Center of Chemical Science and Engineering (Tianjin)

Research output: Contribution to journalArticlepeer-review

Abstract

Small interfering RNA (siRNA) therapies have been hampered by lack of delivery systems in the past decades. Nowadays, a few promising vehicles for siRNA delivery have been developed and it is gradually revealed that enhancing siRNA release from endosomes into cytosol is a very important factor for successful delivery. Here, we designed a novel pH-sensitive nanomicelle, PEG-PTTMA-P(GMA-S-DMA) (PTMS), for siRNA delivery. Owing to rapid hydrolysis in acidic environment, PTMS NPs underwent hydrophobic-to-hydrophilic transition in endosomes that enabled combination of proton sponge effect and raised osmotic pressure in endosomes, resulting in vigorous release of siRNAs from endosomes into cytosol. In vitro results demonstrated that PTMS/siRNA complexes exhibited excellent gene silencing effects in several cell lines. Their gene silencing efficiency could reach ~91%, ~87% and ~90% at the N/P ratio of 50/1 in MDA-MB-231, A549 and Hela cells respectively, which were better than that obtained with Lipofectamine 2000. The highly efficient gene silencing was then proven from enhanced siRNA endosomal release, which is mainly attributed to pH-triggered degradation of polymer and acid-accelerated siRNA release. In vivo experiments indicated that NPs/siRNA formulation rapidly accumulated in tumor sites after i.v. injection. Tumor growth was effectively inhibited and ~45% gene knockdown efficacy was determined at the siRRM2 dose of 1mg/kg. Meanwhile, no significant toxicity was observed during the whole treatment. We also found that PTMS/siRNA formulations could lead to significant gene silencing effects in liver (~63%) and skin (~80%) when injected by i.v. and s.c., respectively. This research work gives a rational strategy to optimize siRNA delivery systems for tumor treatments.

Original languageEnglish
Pages (from-to)3432-3445
Number of pages14
JournalTheranostics
Volume7
Issue number14
DOIs
Publication statusPublished - 2017
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Cancer therapy
  • Endosomal escape
  • PH-sensitive
  • Polymeric nanoparticles
  • siRNA delivery

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