Selective activation of estrogen receptor-beta transcriptional pathways by an herbal extract

Aleksandra Cvoro1, Sreenivasan Paruthiyil, Jeremy O Jones

  • 1University of California, San Francisco, MS 1258, P.O. Box 0556, San Francisco, California 94143-0556, USA. leitmand@obgyn.ucsf.edu

Endocrinology
|November 11, 2006
PubMed

Insights

Novel herbal estrogen therapies selectively targeting estrogen receptor-beta (ERbeta) show promise. MF101, an herbal extract, activates ERbeta without promoting cancer, offering a potentially safer alternative for hormone therapy.

Area of Science:

  • Endocrinology
  • Pharmacology
  • Oncology

Background:

  • Novel therapies are needed to manage menopausal symptoms with bone-sparing effects without increasing breast or uterine cancer risk.
  • Selective activation of estrogen receptor-beta (ERbeta) shows potential for inhibiting breast cancer cell proliferation.

Purpose of the Study:

  • To investigate if the estrogenic activities in the herbal extract MF101 are ERbeta-selective.
  • To determine if ERbeta-selective ligands are a viable approach for improved hormone therapy.

Main Methods:

  • Assessed MF101's activation of an estrogen response element (luciferase reporter gene) via ERbeta and ERalpha.
  • Utilized fluorescence resonance energy transfer and protease digestion to study conformational changes in ERalpha and ERbeta induced by MF101.
  • Evaluated MF101's effect on ERalpha-regulated proliferative genes (c-myc, cyclin D1), breast cancer cell proliferation, and tumor formation in a mouse xenograft model.

Main Results:

  • MF101 selectively activated ERbeta, not ERalpha, and regulated endogenous genes through ERbeta.
  • MF101 induced distinct conformational changes in ERalpha and ERbeta, enabling ERbeta-mediated gene activation.
  • MF101 did not activate ERalpha-driven proliferative genes or stimulate breast cancer cell proliferation and tumor growth.

Conclusions:

  • Herbal ERbeta-selective estrogens, like MF101, represent a safer alternative to non-selective estrogens for hormone therapy.
  • MF101 demonstrates potential as a therapeutic agent for menopausal symptoms with reduced cancer risk.

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