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Estrogen regulation of human osteoblastic cell proliferation and differentiation

J A Robinson1, S A Harris, B L Riggs

  • 1Department of Biochemistry, Mayo Foundation, Rochester, Minnesota 55905, USA. robinson.john@mayo.edu

Endocrinology
|July 1, 1997
PubMed

Insights

Estrogen (E2) impacts bone health by influencing osteoblast differentiation. This study shows E2 decreases proliferation and alters extracellular matrix protein expression in human osteoblast cells via the estrogen receptor (ER).

Area of Science:

  • Bone Biology
  • Endocrinology
  • Cellular Differentiation

Background:

  • Estrogen (E2) is known to prevent bone loss in postmenopausal women.
  • The precise molecular mechanisms are unclear, but estrogen receptors (ER) in osteoblasts suggest direct effects.
  • Previous studies on E2's effects on osteoblasts yielded conflicting results due to variations in experimental models.

Purpose of the Study:

  • To investigate the effects of E2 on human osteoblast proliferation and differentiation.
  • To analyze E2's impact on extracellular matrix protein expression during different differentiation stages.
  • To elucidate the role of the estrogen receptor (ER) in mediating these E2 effects.

Main Methods:

  • Utilized a novel human fetal osteoblastic cell line (hFOB/ER9) with high ER levels.
  • Treated cells with varying E2 concentrations across proliferative, matrix maturation, and mineralization stages.
  • Assessed cell proliferation ([3H]thymidine incorporation), alkaline phosphatase (AP) activity, and protein/mRNA levels of extracellular matrix components.
  • Investigated ER mediation using an anti-estrogen compound (ICI 182,780).

Main Results:

  • E2 dose-dependently decreased [3H]thymidine incorporation, reducing proliferation by up to 72%.
  • E2 increased alkaline phosphatase (AP) activity (200-500%) and decreased osteocalcin levels (to 54%) in a time- and ER-dependent manner.
  • E2 treatment altered steady-state mRNA levels for AP and osteocalcin, mirroring protein level changes.
  • Little to no effect of E2 was observed on type I collagen protein or osteonectin mRNA levels.

Conclusions:

  • E2 significantly influences osteoblast differentiation by inhibiting proliferation.
  • E2 differentially regulates extracellular matrix protein expression, with notable effects on AP and osteocalcin.
  • These E2-mediated effects on hFOB/ER9 cells are confirmed to be ER-dependent.

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