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Exploring disulfiram’s anticancer potential: PLGA nano-carriers for prolonged drug delivery and potential improved therapeutic efficacy

  • Ibrahim Dumbuya
  • , Ana Maria Pereira
  • , Ibrahim Tolaymat
  • , Adnan Al Dalaty
  • , Basel Arafat
  • , Matt Webster
  • , Barbara Pierscionek
  • , Mouhamad Khoder
  • , Mohammad Najlah
  • Anglia Ruskin University
  • GMPriority Pharma Ltd.
  • University of Winchester

Research output: Contribution to journalArticlepeer-review

Abstract

Disulfiram (DS) has been shown to have potent anti-cancer activity; however, it is also characterised by its low water solubility and rapid metabolism in vivo. Biodegradable polylactic-co-glycolic acid (PLGA) polymers have been frequently employed in the manufacturing of PLGA nano-carrier drug delivery systems. Thus, to develop DS-loaded PLGA nanoparticles (NPs) capable of overcoming DS’s limitations, two methodologies were used to formulate the NPs: direct nanoprecipitation (DNP) and single emulsion/solvent evaporation (SE), followed by particle size reduction. The DNP method was demonstrated to produce NPs of superior characteristics in terms of size (151.3 nm), PDI (0.083), charge (−37.9 mV), and loading efficiency (65.3%). Consequently, NPs consisting of PLGA and encapsulated DS coated with mPEG2k-PLGA at adjustable ratios were prepared using the DNP method. Formulations were then characterised, and their stability in horse serum was assessed. Results revealed the PEGylated DS-loaded PLGA nano-carriers to be more efficient; hence, in-vitro studies testing these formulations were subsequently performed using two distinct breast cancer cell lines, showing great potential to significantly enhance cancer therapy.
Original languageEnglish
Article number1133
JournalNanomaterials
Volume14
Issue number13
Early online date29 Jun 2024
DOIs
Publication statusPublished - Jul 2024

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