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PH-Sensitive Nanomicelles for High-Efficiency siRNA Delivery in Vitro and in Vivo: An Insight into the Design of Polycations with Robust Cytosolic Release

  • Junhui Zhou
  • , Yidi Wu
  • , Changrong Wang
  • , Qiang Cheng
  • , Shangcong Han
  • , Xiaoxia Wang
  • , Jianhua Zhang
  • , Liandong Deng
  • , Deyao Zhao
  • , Lili Du
  • , Huiqing Cao
  • , Zicai Liang
  • , Yuanyu Huang*
  • , Anjie Dong
  • *此作品的通讯作者
  • Tianjin University
  • Collaborative Innovation Center of Chemical Science and Engineering (Tianjin)
  • Peking University
  • Qingdao University

科研成果: 期刊稿件文章同行评审

摘要

The extremely low efficient cytosolic release of the internalized siRNA has emerged recently as a central issue for siRNA delivery, while there is a lack of guidelines to facilitate the cytosolic release of internalized siRNA. To address these concerns, we studied the contribution of the pH-sensitive inner core on handling the cytosolic release of siRNA delivered by a series of PG-P(DPAx-co-DMAEMAy)-PCB amphiphilic polycation nanomicelles (GDDC-Ms) with extremely low internalization (<1/4 of lipofactamine 2000 (Lipo2000)). Significantly, just by varying the mole ratio of DPA and DMAEMA to adjust the initial disassembly pH (pHdis) of the core near to 6.8, GDDC4-Ms/siRNA could get nearly 98.8% silencing efficiency at w/w = 12 with 50 nM siRNA and ∼78% silencing efficiency at w/w = 30 with a very low dose of 5 nM siRNA in HepG-2 cell lines, while Lipo2000 only got 65.7% with 50 nM siRNA. Furthermore, ∼98.4% silencing efficiency was also realized in the hard-to-transfect human acute monoblastic leukemia cell line U937 by GDDC4-Ms/siRNA (at w/w = 15, 50 nM siRNA), in the inefficient case for Lipo2000. Additionally, the high silencing efficiency (∼80%) in skin tissue in vivo was discovered. Undoubtedly, the robust potential of GDDC4-Ms in handling the cytosolic release paves a simple but efficient new way for the design of the nonviral siRNA vector.

源语言英语
页(从-至)6916-6923
页数8
期刊Nano Letters
16
11
DOI
出版状态已出版 - 9 11月 2016
已对外发布

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