4.8 Article

Smart Multilayered Assembly for Biocompatible siRNA Delivery Featuring Dissolvable Silica, Endosome-Disrupting Polycation, and Detachable PEG

期刊

ACS NANO
卷 6, 期 8, 页码 6693-6705

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nn301164a

关键词

siRNA delivery; polyion complex; silica; poly(ethylene glycol); layer-by-layer

资金

  1. Funding Program for World-Leading Innovative R&D on Science and Technology (FIRST) from the Japan Society for the Promotion of Science (JSPS)
  2. Izumi Science and Technology Foundation
  3. Ministry of Education, Culture, Sports, Science and Technology (MEXT), Japan
  4. Grants-in-Aid for Scientific Research [23390009, 22700489, 24700476, 24659411, 23350049] Funding Source: KAKEN

向作者/读者索取更多资源

Multifunctional Smart Multilayered Assembly (SMA) delivery systems of small interfering RNA (siRNA) are needed to overcome the intrinsic biological barriers toward efficient gene silendng in the cell cytoplasm. In this report, a smart multilayered assembly (SMA) was fabricated by a layer-by-layer method with polyionic materials. The SMA was designed to feature a siRNA-loaded core, a transiently core-stabilizing silica interlayer, an endosome-disrupting polycation interlayer, and a biocompatible poly(ethylene glycol) (PEG) shell with reductive environment-responsive detachability. The SMA was confirmed to be approximately 160 nm in size with narrow distribution and spherical morphology by DLS and TEM analyses. The PEG detachability of the SMA based on disulfide cleavage was also confirmed by the increase in both zeta-potential and size due to the exposure of the polycation interlayer and the compromised colloidal stability. The silica interlayer rendered the SMA highly tolerant to dissociation Induced by anionic lipids, while after 24 h dialysis siRNA release from the SMA was dearly observed, presumably due to gradual dissolution of the silica interlayer based on the equilibrium shift to silicate ions. The entrapment ratio of siRNA delivered by the SMA within the endosome was significantly lower than that by nondisulfide control (NW without PEG detachability, suggesting the improved endosomal escape of SMA with the exposed, endosome-disrupting interlayer after PEG detachment SMAs induced significantly higher gene silencing efficiency in various cultured cells, compared to NIX, without associated cytotoxicity. The systemic administration of SMAs for subcutaneous tumor-bearing mice achieved significant endogenous gene silencing in tumor tissue without hematological toxicity.

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