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Updated: May 13, 2026

Screening for Phytoestrogens using a Cell-based Estrogen Receptor β Reporter Assay
Published on: June 7, 2020
Multiple phytoestrogens inhibit cell growth and confer cytoprotection by inducing manganese superoxide dismutase
Ellen L Robb1, Jeffrey A Stuart
1Department of Biological Sciences, Brock University, 500 Glenridge Ave, St. Catharines, Ontario, Canada, L2S 3A1.
Abstract:
Phytoestrogens are of interest because of their reported beneficial effects on many human maladies including cancer, neurodegeneration, cardiovascular disease and diabetes. As data on phytoestrogens continues to accumulate, it is clear that there is significant overlap in the cellular effects elicited by these various compounds. Here, we show that one mechanism by which a number of phytoestrogens achieve their growth inhibitory and cytoprotective effects is via induction of the mitochondrial manganese superoxide dismutase (MnSOD). Eight phytoestrogens, including resveratrol, coumestrol, kaempferol, genistein, daidzein, apigenin, isoliquirtigenin and glycitin, were tested for their ability to induce MnSOD expression in mouse C2C12 and primary myoblasts. Five of these, resveratrol, coumestrol, kaempferol, genistein and daidzein, significantly increased MnSOD expression, slowed proliferative growth and enhanced stress resistance (hydrogen peroxide LD50) . When siRNA was used to prevent the MnSOD induction by genistein, coumestrol or daidzein, none of these compounds exerted any effect on proliferative growth, and only the effect of coumestrol on stress resistance persisted. The estrogen antagonist ICI182780 prevented the increased MnSOD expression and also the changes in cell growth and stress resistance, indicating that these effects are mediated by estrogen receptors (ER). The absence of effects of resveratrol or coumestrol, but not genistein, in ERβ-null cells further indicated that this ER in particular is important in mediating these effects. Thus, an ER-mediated induction of MnSOD expression appears to underlie the growth inhibitory and cytoprotective activities of multiple phytoestrogens.
Insights
Phytoestrogens like resveratrol and genistein boost mitochondrial manganese superoxide dismutase (MnSOD), offering protection against diseases. This effect is mediated by estrogen receptors (ER), particularly ERβ.
Area of Science:
- Biochemistry
- Molecular Biology
- Cell Biology
Background:
- Phytoestrogens are plant compounds with potential health benefits for various diseases.
- There is a known overlap in the cellular mechanisms of different phytoestrogens.
- Mitochondrial manganese superoxide dismutase (MnSOD) is crucial for cellular protection.
Purpose of the Study:
- To investigate the mechanism behind the beneficial effects of phytoestrogens.
- To determine if MnSOD induction is a common pathway for phytoestrogen activity.
- To identify the role of estrogen receptors (ER) in mediating these effects.
Main Methods:
- Testing eight phytoestrogens for their ability to induce MnSOD expression in mouse myoblasts.
- Utilizing siRNA to block MnSOD induction and assess effects on cell growth and stress resistance.
- Employing an estrogen antagonist (ICI182780) and ERβ-null cells to confirm receptor involvement.
Main Results:
- Five phytoestrogens (resveratrol, coumestrol, kaempferol, genistein, daidzein) significantly increased MnSOD expression, slowed growth, and enhanced stress resistance.
- Blocking MnSOD induction abolished growth effects and partially blocked stress resistance effects.
- Estrogen receptor blockade prevented MnSOD induction and associated cellular changes, with ERβ playing a key role.
Conclusions:
- Estrogen receptor-mediated induction of MnSOD is a key mechanism underlying the growth inhibitory and cytoprotective effects of several phytoestrogens.
- This pathway highlights the therapeutic potential of phytoestrogens in managing diseases.
- ERβ is particularly important in mediating the MnSOD-inducing and protective effects of these compounds.
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