4.8 Article

Gene delivery through the use of a hyaluronate-associated intracellularly degradable crosslinked polyethyleneimine

期刊

BIOMATERIALS
卷 30, 期 29, 页码 5834-5843

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2009.07.012

关键词

Non-viral gene delivery; Crosslinked polyethyleneimine; Sodium hyaluronate; Extra- and intracellular stabilities; DNA unpacking

资金

  1. Lilly Endowment, Inc.
  2. School of Pharmacy and Pharmaceutical Sciences, Purdue University
  3. Showalter Trust Award
  4. NIH [R21 CA135130]

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For a non-viral gene delivery system to be clinically effective, it should be non-toxic, compatible with biological components, and highly efficient in gene transfection. With this goal in mind, we investigated the gene delivery efficiency of a ternary complex consisting of DNA, an intracellularly degradable polycation, and sodium hyaluronate (DPH complex). Here, we report that the DPH ternary complex achieved significantly higher transfection efficiency than other polymer systems, especially in the presence of serum. The high transfection efficiency and serum tolerance of DPH are attributed to a unique interplay between CLPEI and HA, which leads to (i) the improved stability of DNA in the extracellular environment and at the early stage of intracellular trafficking and (ii) timely dissociation of the DNA-polymer complex. This study reinforces findings of earlier studies that emphasized each step as a bottleneck for efficient gene delivery; yet, it is the first to show that it is possible to overcome these obstacles simultaneously by taking advantage of two distinctive approaches. (C) 2009 Elsevier Ltd. All rights reserved.

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