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An In Vivo Estrogen Deficiency Mouse Model for Screening Exogenous Estrogen Treatments of Cardiovascular Dysfunction After Menopause
Published on: August 13, 2019
Inhibition of estrogen receptor alpha expression and function in MCF-7 cells by kaempferol
1Laboratory of Molecular Endocrinology, Division of Cellular and Molecular Research, National Cancer Centre of Singapore, Singapore. cmrhth@nccs.com.sg
Abstract:
Estrogens are mitogenic for estrogen receptor (ER)-positive breast cancer cells. Current treatment of ER-positive breast tumors is directed towards interruption of estrogen activity. We report that treatment of ER-positive breast cancer cells with kaempferol resulted in a time- and dose-dependent decrease in cell number. The concentration required to produce 50% growth inhibition at 48 h was approximately 35.0 and 70.0 microM for ER-positive and ER-negative breast cancer cells, respectively. For MCF-7 cells, a reduction in the ER-alpha mRNA equivalent to 50, 12, 10% of controls was observed 24 h after treatment with 17.5, 35.0, and 70.0 microM of kaempferol, respectively. Concomitantly, these treatments led to a 58, 80, and 85% decrease in ER-alpha protein. The inhibitory effect of kaempferol on ER-alpha levels was seen as early as 6 h post-treatment. Kaempferol treatment also led in a dose-dependent decrease in the expression of progesterone receptor (PgR), cyclin D1, and insulin receptor substrate 1 (IRS-1). Immunocytochemical study revealed that ER-alpha protein in kaempferol-treated MCF-7 cells formed an aggregation in the nuclei. Kaempferol also induced degradation of ER-alpha by a different pathway than that were observed for the antiestrogen ICI 182,780 and estradiol. Estradiol-induced MCF-7 cell proliferation and expression of the estrogen-responsive-element-reporter gene activity were abolished in cells co-treated with kaempferol. These findings suggest that modulation of ER-alpha expression and function by kaempferol may be, in part, responsible for its anti-proliferative effects seen in in vitro.
Insights
Kaempferol significantly reduces estrogen receptor-positive breast cancer cell growth by decreasing estrogen receptor-alpha (ER) levels and protein. This natural compound
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Estrogen receptor (ER)-positive breast cancer growth is driven by estrogen.
- Current therapies aim to block estrogen activity.
- Investigating novel therapeutic agents targeting ER signaling is crucial.
Purpose of the Study:
- To investigate the anti-proliferative effects of kaempferol on breast cancer cells.
- To elucidate the impact of kaempferol on estrogen receptor-alpha (ER-alpha) expression and function.
Main Methods:
- Treatment of ER-positive and ER-negative breast cancer cells with kaempferol.
- Quantification of cell number, ER-alpha mRNA, and ER-alpha protein levels.
- Analysis of progesterone receptor (PgR), cyclin D1, and insulin receptor substrate 1 (IRS-1) expression.
- Immunocytochemistry to assess ER-alpha protein localization.
- Assessment of estradiol-induced proliferation and reporter gene activity.
Main Results:
- Kaempferol caused a dose- and time-dependent decrease in breast cancer cell number.
- Kaempferol significantly reduced ER-alpha mRNA and protein levels in MCF-7 cells.
- Kaempferol decreased the expression of PgR, cyclin D1, and IRS-1.
- Kaempferol induced ER-alpha protein aggregation and degradation.
- Kaempferol abolished estradiol-induced MCF-7 cell proliferation and reporter gene activity.
Conclusions:
- Kaempferol exhibits anti-proliferative effects on ER-positive breast cancer cells.
- Kaempferol modulates ER-alpha expression and function, potentially through degradation.
- Kaempferol represents a potential therapeutic agent for ER-positive breast cancer.

