A dual-functional buformin-mimicking poly(amido amine) for efficient and safe gene delivery

J Drug Target. 2020 Nov;28(9):923-932. doi: 10.1080/1061186X.2020.1729770. Epub 2020 Apr 21.

Abstract

Biguanides (i.e. metformin, phenformin and buformin) are antidiabetic drugs with potential antitumor effects. Herein, a polycationic polymer, N,N'-bis(cystamine)acrylamide-buformin (CBA-Bu), containing multiple biodegradable disulphide bonds and buformin-mimicking side chains was synthesised. CBA-Bu was equipped with high efficiency and safety profile for gene delivery, meanwhile exhibiting potential antitumor efficacy. As a gene vector, CBA-Bu was able to condense plasmid DNA (pDNA) into nano-sized (<200 nm), positively-charged (>30 mV) uniform polyplexes that were well resistant to heparin and DNase I. Due to the reduction responsiveness of the disulphide bonds, CBA-Bu/pDNA polyplexes could release the loaded pDNA in the presence of dithiothreitol, and induce extremely low cytotoxicity in NIH/3T3 and U87 MG cells. The transfection results showed that CBA-Bu had a cellular uptake efficiency comparable to 25 kDa PEI, while a significantly higher gene expression level. Additionally, CBA-Bu had a lower IC50 value than its non-biguanide counterpart in two cancer cell lines. Furthermore, CBA-Bu could activate AMPK and inhibit mTOR pathways in U87 MG cells, a mechanism involved in the antitumor effect of biguanides. Taken together, CBA-Bu represented an advanced gene vector combining desirable gene delivery capability with potential antitumor activity, which was promising to achieve enhanced therapeutic efficacy in antitumor gene therapy.

Keywords: Poly(amido amine); antitumor efficacy; biguanides; biodegradability; buformin; gene delivery.

Publication types

  • Research Support, Non-U.S. Gov't
  • Review

MeSH terms

  • AMP-Activated Protein Kinases / drug effects
  • Animals
  • Buformin / administration & dosage
  • Buformin / chemistry*
  • Buformin / pharmacology*
  • Cell Line, Tumor
  • Gene Transfer Techniques
  • Genetic Therapy / methods*
  • Genetic Vectors
  • Humans
  • Inhibitory Concentration 50
  • Mice
  • NIH 3T3 Cells
  • Nanoparticles
  • Neoplasms / therapy*
  • Plasmids
  • Polyamines / administration & dosage
  • Polyamines / chemistry*
  • Polyamines / pharmacology*

Substances

  • Polyamines
  • AMP-Activated Protein Kinases
  • Buformin