Stachyose-induced apoptosis of Caco-2 cells via the caspase-dependent mitochondrial pathway

Guidong Huang1, Jian Mao, Zhongwei Ji

  • 1National Engineering Laboratory for Cereal Fermentation Technology, Synergetic Innovation Center of Food Safety and Nutrition, Jiangnan University, Wuxi, Jiangnan 214122, China. maojiand417@163.com.

Food & Function
|January 13, 2015
PubMed

Insights

Stachyose directly inhibits human colon cancer cell growth by inducing apoptosis. This occurs through the caspase-dependent mitochondrial pathway, involving changes in key proteins and cell potential.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • Stachyose is recognized for its prebiotic effects, indirectly influencing colon cancer cell growth.
  • The direct anti-cancer effects and underlying molecular mechanisms of stachyose remain largely unelucidated.

Purpose of the Study:

  • To investigate the direct inhibitory effect of stachyose on human colon cancer cells (Caco-2).
  • To determine the molecular mechanisms responsible for stachyose-induced cancer cell death.

Main Methods:

  • MTT assay for cell proliferation inhibition.
  • Flow cytometry for apoptosis and mitochondrial membrane potential (ΔΨm) analysis.
  • Caspase activity assays, quantitative real-time PCR for caspase gene expression, and Western blotting for apoptotic protein analysis (Bcl-2, Bax, Cytochrome C).

Main Results:

  • Stachyose demonstrated a dose-dependent inhibition of Caco-2 cell proliferation.
  • Stachyose induced apoptosis, evidenced by decreased ΔΨm, increased caspase 3 and 9 activity and mRNA expression, decreased Bcl-2, increased Bax, and Cytochrome C release.
  • The observed effects indicate activation of the caspase-dependent mitochondrial apoptosis pathway.

Conclusions:

  • Stachyose exhibits direct anti-proliferative and pro-apoptotic effects on human colon cancer cells.
  • The mechanism involves the intrinsic mitochondrial apoptosis pathway, regulated by caspases and Bcl-2 family proteins.
  • These findings highlight stachyose's potential as a therapeutic agent against colon cancer.

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