Arctigenin inhibits osteoclast differentiation and function by suppressing both calcineurin-dependent and

Teruhito Yamashita1, Shunsuke Uehara2, Nobuyuki Udagawa2

  • 1Institute for Oral Science, Matsumoto Dental University, Shiojiri, Nagano, Japan.

Plos One
|January 28, 2014
PubMed

Insights

Arctigenin, a compound from Arctium lappa seeds, inhibits osteoclastogenesis by targeting nuclear factor of activated T-cells, cytoplasmic 1 (NFATc1). This lignan derivative suppresses key pathways, offering potential for bone health treatments.

Area of Science:

  • Biochemistry and Molecular Biology
  • Cell Biology
  • Pharmacology

Background:

  • Osteoclastogenesis, the formation of osteoclasts, is crucial for bone remodeling but implicated in bone diseases.
  • Arctigenin, a lignan from Arctium lappa, is known to inhibit osteoclastogenesis, yet its precise mechanism remains unclear.
  • Nuclear factor of activated T-cells, cytoplasmic 1 (NFATc1) is a master transcription factor essential for osteoclast differentiation.

Purpose of the Study:

  • To elucidate the inhibitory mechanism of arctigenin on osteoclastogenesis.
  • To investigate arctigenin's effect on NFATc1 activation and its role in osteoclast differentiation.
  • To compare arctigenin's action with calcineurin inhibitors in different osteoclastogenesis pathways.

Main Methods:

  • Mouse bone marrow macrophage (BMM) cultures treated with receptor activator of nuclear factor κB ligand (RANKL).
  • Analysis of NFATc1 expression, activation, and nuclear translocation.
  • Reporter gene assays, chromatin immunoprecipitation, and co-culture systems with osteoblastic cells.
  • Assessment of osteoclast-like cell formation and pit-forming activity on dentin.

Main Results:

  • Arctigenin significantly inhibited RANKL-induced osteoclast-like cell formation in BMMs.
  • Arctigenin suppressed RANKL-induced NFATc1 expression and promoted a lower molecular weight, nuclear-translocating NFATc1 species.
  • Arctigenin inhibited both calcineurin-dependent and osteoblastic cell-dependent NFATc1 pathways, unlike cyclosporin A (CsA).

Conclusions:

  • Arctigenin inhibits osteoclastogenesis by inducing a dominant-negative form of NFATc1.
  • This mechanism involves suppression of both calcineurin-dependent and osteoblastic cell-dependent NFATc1 activation pathways.
  • Arctigenin demonstrates potential as a therapeutic agent for bone diseases characterized by excessive osteoclast activity.

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