4.7 Article Proceedings Paper

Penetration and toxicity of chitosan and its derivatives

Journal

EUROPEAN POLYMER JOURNAL
Volume 93, Issue -, Pages 743-749

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.eurpolymj.2017.04.021

Keywords

Chitosan; Chitosan derivatives; Trypan blue; Cellular uptake; Flow cytometry; Confocal microscopy

Funding

  1. Russian Scientific Foundation [16-14-00046]
  2. RFBR
  3. Moscow city Government [15-34-70042]
  4. Foundation for Assistance to Small Innovative Enterprises in Science and Technology (FASIE) [9912GU/2015]
  5. Russian Science Foundation [16-14-00046] Funding Source: Russian Science Foundation

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Chitosan (CH) is a highly attractive biopolymer with multiple reactive groups which can be used to develop targeted nanoparticles. Positively and negatively charged chitosan derivatives can be used to obtain nanoparticles with different properties. The aim of this work was to determine the role of charge, hydrophobicity and solubility at neutral pH in CH cell penetration and cytotoxicity. We showed that positively charged unmodified CH does not penetrate the cells and is not toxic. Quaternization of CH (CHq) led to the increase in solubility, cell penetration, and cytotoxicity manifested by reactive oxygen species production, cell cycle arrest and inhibition of cell proliferation. Modification of CHq with hydrophobic residues significantly diminished cytotoxic activity however preserved cell penetration. Negatively charged CH derivative succinyl chitosan (CHs) penetrated the cells highly efficiently and demonstrated the stimulation of cell proliferation. Thus, quatemized hydrophobic CH derivatives can be recommended to develop positively charged delivery systems, while any negatively charged chitosans are safe to design nanoparticles.

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