4.7 Article

Synthesis, anticancer activity and potential application of diosgenin modified cancer chemotherapeutic agent cytarabine

Journal

FOOD AND CHEMICAL TOXICOLOGY
Volume 148, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.fct.2020.111920

Keywords

Diosgenin; Cytarabine; Biomembrane affinity; Liposome; Anti-cancer

Funding

  1. Ministry of Trade, Industry Energy (MOTIE)
  2. Korea Institute for Advancement of Technology (KIAT)
  3. Honam Institute for Regional Program Evaluation through the Leading Industry Development for Economic Region
  4. Henan Province in China [192101510004]
  5. Youth Talent Support Program of Henan Province in China [2018HYTP014]
  6. Key Project Foundation of Natural Science Research of University of Anhui Province [KJ2017A936, 20A550004]
  7. Key Project Foundation of Natural Science Research of University of Henan Province in China [KJ2017A936, 20A550004]
  8. Key Scientific and Technological Research Projects of Henan Province [202102310518]
  9. Strategic Consulting Research Project of Henan Institute of Chinese Engineering Development Strategies [2020HENZT13]
  10. Fundamental Research Funds for the Henan Provincial Colleges and Universities in Henan University of Technology (HAUT)
  11. High-Level Talents Research Fund of HAUT [2018QNJH13, 2018BS012]

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The research on DG-Ara-C conjugate showed that DG can change the biomembrane affinity of Ara-C and successfully replace cholesterol during liposome preparation, demonstrating better anti-cancer activity.
Diosgenin (DG), a steroidal saponin, is mainly found in yam tubers. DG and its derivatives displayed significant pharmacological activities against inflammatory, hyperlipidemia, and various cancers. DG was selected to modify the cancer chemotherapeutic agent cytarabine (Ara-C) due to its anti-tumor activities as well as lipophilicity. After characterization, the biomembrane affinity and the kinetic thermal processes of the obtained DG-Ara-C conjugate were evaluated by differential scanning calorimetry (DSC). Thin hydration method with sonication was applied to prepare the DG-Ara-C liposomes without cholesterol since the DG moiety has the similar basic structure with cholesterol with more advantages. Dynamic Light Scattering (DLS) analysis and cytotoxic analysis were employed to characterize the DG-Ara-C liposomes and investigate their biological activities, respectively. The results indicated that DG changed the biomembrane affinity of Ara-C and successfully replaced the cholesterol during the liposome preparation. The DG-Ara-C liposomes have an average particle size of around 116 nm with a narrow size distribution and revealed better anti-cancer activity against leukemia cells and solid tumor cells than that of free DG or Ara-C. Therefore, it can be concluded that DG displayed the potential application as an anti-cancer drug carrier to improve the bio-activities, since DG counted for a critical component in modulating the biomembrane affinity, preparation of liposome, and release of hydrophilic Ara-C from lipid vesicles.

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