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The expression of thyroid hormone receptors in human bone

E O Abu1, S Bord, A Horner

  • 1Department of Medicine, University of Cambridge School of Clinical Medicine, UK.

Bone
|August 1, 1997
PubMed

Insights

Thyroid hormone receptors (TRs) are present in human bone cells, including osteoblasts and osteoclasts. This finding suggests TRs mediate thyroid hormone actions on bone metabolism in situ.

Area of Science:

  • Endocrinology and Bone Biology
  • Molecular Endocrinology
  • Skeletal Physiology

Background:

  • Thyroid hormone (TH) actions on bone are not fully understood.
  • TH may affect bone indirectly via growth hormone (GH) and insulin-like growth factor-1 (IGF-1) or directly through nuclear receptors.
  • Thyroid hormone receptors (TRs) are known in cell lines but their presence in human bone in situ was unreported.

Purpose of the Study:

  • To investigate the expression and distribution of TRs (TR-alpha 1, -alpha 2, and -beta 1) in human bone tissue in situ.
  • To determine if TRs are present in osteoblasts, osteoclasts, and chondrocytes within human bone.

Main Methods:

  • Used specific polyclonal antibodies to detect TR-alpha 1, -alpha 2, and -beta 1.
  • Examined human osteophytes and heterotopic bone sections.
  • Identified osteoblasts (alkaline phosphatase), osteoclasts (tartrate-resistant acid phosphatase), and chondrocytes (morphology).

Main Results:

  • TR-beta 1 and TR-alpha 2 were widely expressed in chondrocytes, fibrous tissue cells, and bone-forming surfaces.
  • TR-beta 1 and TR-alpha 2 were also detected in osteoblasts, osteoclasts, and some osteocytes during bone remodeling.
  • TR-alpha 1 showed the least expression, mainly in osteoblasts at remodeling sites and some chondrocytes.

Conclusions:

  • Demonstrated the presence and distribution of TRs in human bone in situ for the first time.
  • Suggests that thyroid hormone's skeletal actions may be mediated by these receptors in human bone.
  • Further research is needed to clarify the specific roles of individual TR isoforms in bone metabolism.

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