Natural Gallic Acid and Methyl Gallate Induces Apoptosis in Hela Cells through Regulation of Intrinsic and Extrinsic

Hasmah Abdullah1,2, Ilyana Ismail2,3, Rapeah Suppian2

  • 1Faculty of Resilience, Rabdan Academy, Al Dhafeer Street, Abu Dhabi 22401, United Arab Emirates.

Insights

Gallic acid (GA) and methyl gallate (MG) from Quercus infectoria induce apoptosis in human cervical cancer cells (HeLa). These natural compounds activate cell death pathways, offering potential for targeted cancer therapies.

Area of Science:

  • Natural Products Chemistry
  • Cancer Biology
  • Cell Death Mechanisms

Background:

  • Apoptosis induction is a key strategy in cancer therapy.
  • Natural products show promise for inducing apoptosis in cancer cells.
  • Mechanisms of natural product-induced cancer cell death require further elucidation.

Purpose of the Study:

  • To investigate the cell death mechanisms of gallic acid (GA) and methyl gallate (MG) from Quercus infectoria.
  • To evaluate the antiproliferative effects of GA and MG on human cervical cancer (HeLa) cell lines.

Main Methods:

  • Antiproliferative activity assessed using MTT assay to determine IC50 values.
  • Apoptosis induction evaluated via acridine orange/propidium iodide (AO/PI) staining, cell cycle analysis, and Annexin-V FITC assay.
  • Expression of apoptosis-related proteins (p53, Bax, Bcl-2) and caspase activation (caspase 8, 9) were analyzed.

Main Results:

  • GA and MG exhibited antiproliferative effects on HeLa cells with IC50 values of 10.00 ± 0.67 µg/mL and 11.00 ± 0.58 µg/mL, respectively.
  • Both compounds induced apoptosis, evidenced by increased apoptotic cells, sub-G1 phase accumulation, and shift to the apoptotic quadrant in Annexin-V assay.
  • GA and MG modulated apoptosis-related proteins (upregulated p53, Bax; downregulated Bcl-2) and activated caspases 8 and 9.

Conclusions:

  • Gallic acid and methyl gallate significantly inhibit HeLa cell growth by inducing apoptosis.
  • These natural compounds activate both extrinsic and intrinsic cell death pathways.
  • GA and MG represent potential therapeutic agents for cervical cancer treatment.

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