Dammarane-Type Triterpenoid from the Stem Bark of Aglaia elliptica (Meliaceae) and Its Cytotoxic Activities

Molecules. 2022 Oct 10;27(19):6757. doi: 10.3390/molecules27196757.

Abstract

Two new dammarane-type triterpenoid fatty acid ester derivatives, 3β-oleate-20S-hydroxydammar-24-en (1) and 3β-oleate-20S,24S-epoxy-25-hydroxydammarane (2) with a known dammarane-type triterpenoid compound, such as 20S-hydroxydammar-24-en-3-on (3), were isolated from the stem bark of Aglaiaelliptica (C.DC.) Blume. The chemical structures were determined by spectroscopic methods, including FTIR, NMR (one and two-dimensional), and HRESITOF-MS analysis, as well as chemical derivatization and comparison with previous literature. Furthermore, the synthetic analog resulting from transesterification of 1 and 2 also obtained 3β,20S-dihydroxy-dammar-24-en (4) and 20S,24S-epoxy-3β,25-dihydroxydammarane (5), respectively. The cytotoxic effect of all isolated and synthetic analog compounds was evaluated using PrestoBlue reagent against MCF-7 breast cancer cell and B16-F10 melanoma cell lines. The 20S-hydroxydammar-24-en-3-on (3) showed the strongest activity against MCF-7 breast cancer and B16-F10 melanoma cell, indicating that the ketone group at C-3 in 3 plays an essential role in the cytotoxicity of dammarane-type triterpenoid. On the other hand, compounds 1 and 2 had very weak cytotoxic activity against the two cell lines, indicating the presence of fatty acid, significantly decreasing cytotoxic activity. This showed the significance of the discovery to investigate the essential structural feature in dammarane-type triterpenoid, specifically for the future development of anticancer drugs.

Keywords: Aglaia elliptica; B16-F10 cell line; MCF-7 cell line; cytotoxic activity; dammarane-type triterpenoid fatty acid ester.

MeSH terms

  • Aglaia*
  • Antineoplastic Agents* / pharmacology
  • Breast Neoplasms*
  • Dammaranes
  • Esters
  • Female
  • Humans
  • Ketones
  • Melanoma*
  • Meliaceae*
  • Molecular Structure
  • Oleic Acid
  • Plant Bark
  • Triterpenes* / chemistry
  • Triterpenes* / pharmacology

Substances

  • Antineoplastic Agents
  • Esters
  • Ketones
  • Triterpenes
  • Oleic Acid

Grants and funding

This research was funded by Universitas Padjadjaran under the Head Lecturer Acceleration Research Grant with No. 2203/UN6.3.1/PT.00/2022 by Kindi Farabi and Academic Leadership Grant with No: No: 1959/UN6.3.1/PT.00/2022 by Unang Supratman. In addition, the Article publishing Charge (APC) was funded by Universitas Padjadjaran.