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Updated: May 3, 2026

Stimulation of Notch Signaling in Mouse Osteoclast Precursors
Published on: February 28, 2017
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.
Abstract:
Arctigenin, a lignan-derived compound, is a constituent of the seeds of Arctium lappa. Arctigenin was previously shown to inhibit osteoclastogenesis; however, this inhibitory mechanism has yet to be elucidated. Here, we showed that arctigenin inhibited the action of nuclear factor of activated T-cells, cytoplasmic 1 (NFATc1), a key transcription factor for osteoclastogenesis. NFATc1 in osteoclast precursors was activated through two distinct pathways: the calcineurin-dependent and osteoblastic cell-dependent pathways. Among the several lignan-derived compounds examined, arctigenin most strongly inhibited receptor activator of nuclear factor κB ligand (RANKL)-induced osteoclast-like cell formation in mouse bone marrow macrophage (BMM) cultures, in which the calcineurin-dependent NFATc1 pathway was activated. Arctigenin suppressed neither the activation of nuclear factor κB and mitogen-activated protein kinases nor the up-regulation of c-Fos expression in BMMs treated with RANKL. However, arctigenin suppressed RANKL-induced NFATc1 expression. Interestingly, the treatment of osteoclast-like cells with arctigenin converted NFATc1 into a lower molecular weight species, which was translocated into the nucleus even in the absence of RANKL. Nevertheless, arctigenin as well as cyclosporin A (CsA), a calcineurin inhibitor, suppressed the NFAT-luciferase reporter activity induced by ionomycin and phorbol 12-myristate 13-acetate in BMMs. Chromatin immunoprecipitation analysis confirmed that arctigenin inhibited the recruitment of NFATc1 to the promoter region of the NFATc1 target gene. Arctigenin, but not CsA suppressed osteoclast-like cell formation in co-cultures of osteoblastic cells and bone marrow cells, in which the osteoblastic cell-dependent NFATc1 pathway was activated. The forced expression of constitutively active NFATc1 rescued osteoclastogenesis in BMM cultures treated with CsA, but not that treated with arctigenin. Arctigenin also suppressed the pit-forming activity of osteoclast-like cells cultured on dentin slices. These results suggest that arctigenin induces a dominant negative species of NFATc1, which inhibits osteoclast differentiation and function by suppressing both calcineurin-dependent and osteoblastic cell-dependent NFATc1 pathways.
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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