Biobased chitosan-derived self-nitrogen-doped porous carbon nanofibers containing nitrogen-doped zeolites for efficient removal of uremic toxins during hemodialysis

Int J Biol Macromol. 2023 Dec 31;253(Pt 3):126880. doi: 10.1016/j.ijbiomac.2023.126880. Epub 2023 Sep 12.

Abstract

Highly efficient adsorbents are needed to remove uremic toxins and reduce the economic and societal burden of the current dialysis treatments in resource-limited environments. In this study, nanostructured porous carbon nanofibers with nitrogen-doped zeolites (NZ-PCNF) were prepared, by electrospinning zeolites with chitosan-poly(ethylene oxide) blends, followed by a one-step carbonization process, without further activation steps or aggressive chemical additives for N-doping. The results showed that N-zeolites were successfully integrated into an ultrafine carbon nanofiber network, with a uniform nanofiber diameter of approximately 25 nm, hierarchical porous structure (micro- and mesopores), and high specific surface area (639.29 m2/g), facilitating uremic toxin diffusion and adsorption. The self-N-doped structure in the NZ-PCNF removed more creatinine (∼1.8 times) than the porous carbon nanofibers when using the same weight of precursor materials. Cytotoxicity and hemolysis tests were performed to verify the safety of NZ-PCNF. This study provides a novel strategy for transforming chitosan-based materials into state-of-the-art porous carbon nanofiber/zeolite self-N-doped composites, affording an efficient bioderived adsorbent for the removal of uremic toxins in patients with chronic kidney disease.

Keywords: Chitosan; N-doped porous carbon nanofibers; N-doped zeolites.

MeSH terms

  • Carbon / chemistry
  • Chitosan*
  • Humans
  • Nanofibers* / chemistry
  • Nitrogen / chemistry
  • Porosity
  • Renal Dialysis
  • Uremic Toxins
  • Zeolites*

Substances

  • Carbon
  • Zeolites
  • Uremic Toxins
  • Chitosan
  • Nitrogen