Design, synthesis and in vitro cell-based evaluation of the anti-cancer activities of hispolon analogs

Neduri V Balaji1, Modukuri V Ramani1, Arabela G Viana2

  • 1Natsol Laboratories Private Limited, II Floor, Research & Development Building, Ramky Commercial Hub, J. N. Pharmacity, Visakhapatnam, India.

Insights

New hispolon analogs show potent anticancer activity, particularly compound VA-2 against colon and prostate cancer cells. Many analogs evade ABCB1-transporter, suggesting potential to overcome multidrug resistance in cancer therapy.

Area of Science:

  • Medicinal Chemistry
  • Cancer Biology
  • Pharmacology

Background:

  • Phytochemicals are vital in cancer treatment.
  • Hispolon and its derivatives are investigated for antiproliferative effects.

Purpose of the Study:

  • To synthesize and evaluate new hispolon analogs for anticancer activity.
  • To identify potent compounds and understand structure-activity relationships.

Main Methods:

  • Synthesis of 26 hispolon analogs (17 new, 9 known).
  • In vitro antiproliferative activity assessed using MTT assay across six human cancer cell lines.
  • Morphological analysis and ABCB1-transporter substrate evaluation.

Main Results:

  • Compound VA-2 demonstrated significant potency against colon (HCT-116, S1) and prostate (PC-3) cancer cells, with IC₅₀ values as low as 1.4 μM.
  • VA-2 exhibited 9-11 times greater potency in colon cancer cells and 2-3 times in prostate cancer cells compared to normal HEK293/pcDNA3.1 cells.
  • Structural modifications influenced activity; hydrogenation of the side chain double-bond abolished activity, highlighting its importance. Many analogs were not ABCB1-transporter substrates.

Conclusions:

  • Hispolon analogs, especially VA-2, show promising selective anticancer activity.
  • The side chain double-bond is crucial for anticancer efficacy.
  • These compounds may offer potential against multidrug-resistant cancers due to their low susceptibility to ABCB1-transporter efflux.