Increased adipogenesis in bone marrow but decreased bone mineral density in mice devoid of thyroid hormone receptors

Jenny M Kindblom1, Evelien F Gevers, Sofia Movérare Skrtic

  • 1Center for Bone Research at the Sahlgrenska Academy, RCEM, Department of Internal Medicine, The Sahlgrenska Academy at Gothenburg University, Sweden. jenny.kindblom@medic.gu.se

Bone
|March 23, 2005
PubMed

Insights

Mice lacking thyroid hormone receptors show increased bone marrow fat and decreased bone density. This suggests thyroid hormones are crucial for regulating bone metabolism and adipogenesis.

Area of Science:

  • Endocrinology
  • Bone Biology
  • Molecular Genetics

Background:

  • Thyroid hormones are critical for skeletal development and homeostasis.
  • Thyroid hormone receptors (TRs) mediate the effects of thyroid hormones.
  • Mice lacking all known TRs (TRalpha1-/-beta-/-) exhibit skeletal abnormalities.

Purpose of the Study:

  • To elucidate the molecular mechanisms underlying the skeletal phenotype in TRalpha1-/-beta-/- mice.
  • To investigate changes in gene expression and cellular composition in the bone marrow.

Main Methods:

  • Global gene expression analysis using DNA microarray on vertebrae from wild-type (WT) and TRalpha1-/-beta-/- mice.
  • Real-time PCR for verification of gene expression.
  • Histological analysis of bone marrow adipocytes.

Main Results:

  • Increased mRNA levels of adipocyte-specific genes (AdipoQ, Adipsin, FSP 27, LPL, RBP, PEPCK) in TRalpha1-/-beta-/- mice.
  • Significant increase in bone marrow fat (225% over WT) due to increased adipocyte number.
  • Dramatically decreased mRNA levels of receptor activator of NF-kappaB ligand (RANKL), a key regulator of osteoclastogenesis.

Conclusions:

  • TRalpha1-/-beta-/- mice exhibit increased adipogenesis in bone marrow, correlating with decreased bone mineral density (BMD).
  • This suggests a potential imbalance in osteoblast and adipocyte lineage differentiation, favoring adipogenesis.
  • Thyroid hormone receptors play a vital role in regulating bone marrow adipogenesis and bone density.

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