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Cancer-targeted controlled delivery of chemotherapeutic anthracycline derivatives using apoferritin nanocage carriers

  • SUNY Potsdam
  • Institute of Animal Reproduction and Food Research of the Polish Academy of Sciences
  • SUNY Albany

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

The interactions of chemotherapeutic drugs with nanocage protein apoferritin (APO) are the key features in the effective encapsulation and release of highly toxic drugs in APO-based controlled drug delivery systems. The encapsulation enables mitigating the drugs’ side effects, collateral damage to healthy cells, and adverse immune reactions. Herein, the interactions of anthracycline drugs with APO were studied to assess the effect of drug lipophilicity on their encapsulation excess n and in vitro activity. Anthracycline drugs, including doxorubicin (DOX), epirubicin (EPI), daunorubicin (DAU), and idarubicin (IDA), with lipophilicity P from 0.8 to 15, were investigated. We have found that in addition to hydrogen-bonded supramolecular ensemble formation with n = 24, there are two other competing contributions that enable increasing n under strong polar interactions (APO(DOX)) or under strong hydrophobic interactions (APO(IDA) of the highest efficacy). The encapsulation/release processes were investigated using UV-Vis, fluorescence, circular dichroism, and FTIR spectroscopies. The in vitro cytotoxicity/growth inhibition tests and flow cytometry corroborate high apoptotic activity of APO(drugs) against targeted MDA-MB-231 adenocarcinoma and HeLa cells, and low activity against healthy MCF10A cells, demonstrating targeting ability of nanodrugs. A model for molecular interactions between anthracyclines and APO nanocarriers was developed, and the relationships derived compared with experimental results.

Original languageEnglish
Article number1362
Pages (from-to)1-26
Number of pages26
JournalInternational Journal of Molecular Sciences
Volume22
Issue number3
DOIs
StatePublished - Feb 1 2021

Keywords

  • Anthraquinone drugs’ hydrophobic interactions
  • Apoferritin model calculations
  • Apoferritin nanocarriers
  • Controlled drug delivery
  • Drug-nanocage interactions
  • Ferritin receptor targeting
  • Folate receptor targeting
  • Idarubicin

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