4.8 Article

Gene therapy for nucleus pulposus regeneration by heme oxygenase-1 plasmid DNA carried by mixed polyplex micelles with thermo-responsive heterogeneous coronas

Journal

BIOMATERIALS
Volume 52, Issue -, Pages 1-13

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2015.02.024

Keywords

Nucleus pulposus regeneration; Gene therapy; Nonviral gene carrier; Polyplex micelles; Thermo-responsive

Funding

  1. National Natural Scientific Foundation of China (NNSFC) [81201430, 51273188, 81201176]
  2. Foundation of Sichuan University for Outstanding Young Investigator [2082604164197]
  3. Foundation for the Author of National Excellent Doctoral Dissertation of PR China (FANEDD) [2012240]
  4. Specialized Research Fund for the Doctoral Program of Higher Education (SRFDP) [20123402120022]
  5. Fundamental Research Funds for the Central Universities [WK2060200012]

Ask authors/readers for more resources

Safe and high-efficiency gene therapy for nucleus pulposus (NP) regeneration was urgently desired to treat disc degeneration-associated diseases. In this work, an efficient nonviral cationic block copolymer gene delivery system was used to deliver therapeutic plasmid DNA (pDNA), which was prepared via complexation between the mixed cationic block copolymers, poly(ethylene glycol)-block-poly{N-[N-(2-aminoethyl)-2-aminoehtyl]aspartamide) IPEG-b-PAsp(DET)] and poly(N-isopropylacrylamide)-block-PAsp(DET) [PNIPAM-b-PAsp(DET)], and pDNA at 25 degrees C. The mixed polyplex micelles (MPMs) containing heterogeneous coronas with hydrophobic and hydrophilic microdomains coexisting could be obtained upon heating from 25 to 37 degrees C, which showed high tolerability against nuclease and strong resistance towards protein adsorption. The gene transfection efficiency of MPMs in NP cells was significantly higher than that of regular polyplex micelles prepared from sole block copolymer of PEG-b-PAsp(DET) (SPMs) in in vitro and in vivo evaluation due to the synergistic effect of improved colloidal stability and low cytotoxicity. High expression of heme oxygenase-1 (HO-1) in NP cells transfected by MPMs loading HO-1 pDNA significantly decreased the expression activity of matrix metalloproteinases 3 (MMP-3) and cyclooxygenase-2 (COX-2) induced by interleukin-1 beta (IL-1 beta), and simultaneously increased the NP phenotype-associated genes such as aggrecan, type II collagen, and SOX-9. Moreover, the therapeutic effects of MPMs loading pDNA were tested to treat disc degeneration induced by stab injury. The results demonstrated that administration of HO-1 pDNA carried by MPMs in rat tail discs apparently reduced inflammatory responses induced by need stab and increased glycosaminoglycan (GAG) content, finally achieving better therapeutic efficacy as compared with SPMs. Consequently, MPMs loading HO-1 pDNA were demonstrated to be potential as a safe and high-efficiency nonviral gene delivery system for retarding or regenerating the degenerative discs. (C) 2015 Elsevier Ltd. All rights reserved.

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