4.8 Article

Bioreducible branched poly(modified nona-arginine) cell-penetrating peptide as a novel gene delivery platform

期刊

JOURNAL OF CONTROLLED RELEASE
卷 246, 期 -, 页码 142-154

出版社

ELSEVIER
DOI: 10.1016/j.jconrel.2016.04.040

关键词

Cell-penetrating peptide (CPP); Bioreducible; Branched structure; Gene delivery; pGFP; VEGF siRNA

资金

  1. Ministry of Science, ICT, and Future Planning [NRF-2014M3A9E4064580]
  2. Advanced Biomass R&D Center (ABC) of the Global Frontier Project - Ministry of Science, ICT, and Future Planning [ABC-2011-0031350]
  3. KUSTAR-KAIST Institute at KAIST
  4. Korea Research Institute of Bioscience & Biotechnology (KRIBB)
  5. National Research Foundation of Korea [2015M3A6A2074238] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Cell-penetrating peptides (CPPs) have been widely used to deliver nucleic acid molecules. Generally, CPPs consisting of short amino acid sequences have a linear structure, resulting in a weak complexation and low transfection efficacy. To overcome these drawbacks, a novel type of CPP is required to enhance the delivery efficacy while maintaining its safe use at the same time. Herein, we report that a bioreducible branched poly-CPP structure capable of responding to reducing conditions attained both outstanding delivery effectiveness and selective gene release in carcinoma cells. Branched structures provide unusually strong electrostatic attraction between DNA and siRNA molecules, thereby improving the transfection capability through a tightly condensed form. We designed a modified type of nona-arginine (mR9) and synthesized a branched-mR9 (B-mR9) using disulfide bonds. A novel B-mR9/pDNA polyplex exhibited redox-cleavability and high transfection efficacy compared to conventional CPPs, with higher cell viability as well. B-mR9/VEGF siRNA polyplex exhibited significant serum stability and high gene-silencing effects in vitro. Furthermore, the B-mR9 polyplex showed outstanding tumor accumulation and inhibition ability in vivo. The results suggest that the bioreducible branched poly CPP has great potential as a gene delivery platform. (C) 2016 Elsevier B.V. All rights reserved.

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