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Soy isoflavonoids and cancer prevention. Underlying biochemical and pharmacological issues

S Barnes1, J Sfakianos, L Coward

  • 1Departments of Pharmacology and Toxicology, University of Alabama at Birmingham 35294, USA.

Insights

Soy isoflavones like genistein are absorbed well but reach low blood levels. These levels may prevent breast cancer by regulating cell proliferation, not by direct tumor cell killing.

Area of Science:

  • Nutritional biochemistry
  • Pharmacokinetics
  • Cancer chemoprevention

Background:

  • Soy isoflavones, genistein and daidzein, are linked to soy's anti-cancer effects.
  • In vitro studies often use supra-physiological isoflavone concentrations (>10 microM).
  • Physiologically achievable blood isoflavone levels in humans are estimated to be 1-5 microM.

Purpose of the Study:

  • To determine the actual pharmacokinetic behavior of soy isoflavones in vivo.
  • To assess if dietary soy consumption leads to pharmacologically relevant isoflavone concentrations.
  • To evaluate the potential anti-cancer mechanisms of soy isoflavones based on achievable blood levels.

Main Methods:

  • Pharmacokinetic studies in anesthetized rats with biliary catheters.
  • Administration of soy beverages to human volunteers.
  • Analysis of plasma and biliary isoflavone levels using HPLC-mass spectrometry.

Main Results:

  • Genistein is efficiently absorbed from the gut and undergoes hepatic metabolism and biliary excretion as 7-O-beta-glucuronide.
  • Genistein 7-O-beta-glucuronide is also absorbed, primarily in the distal small intestine.
  • Human subjects consuming soy beverages achieved plasma genistein and daidzein levels of 0.55-0.86 microM, mainly as conjugates.

Conclusions:

  • Dietary soy intake results in lower plasma isoflavone concentrations than typically used in vitro.
  • Achievable genistein levels may not be sufficient for direct chemotherapeutic effects on established cancer cells.
  • These physiological levels are adequate for regulating breast epithelial cell proliferation, suggesting a chemopreventive role for soy isoflavones.

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