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Isolation, Purification, and Differentiation of Osteoclast Precursors from Rat Bone Marrow
Published on: May 19, 2019
Inhibitory effects of obovatol on osteoclast differentiation and bone resorption
Hyun-Ju Kim1, Jung Min Hong1, Hye-Jin Yoon1
1Skeletal Diseases Genome Research Center, Kyungpook National University and Hospital, Daegu 700-412, Republic of Korea.
Abstract:
Osteoclasts are polykaryons that have the unique capacity to degrade bone. Modulation of osteoclast formation and function is a promising strategy for the treatment of bone-destructive diseases. Here, we report that obovatol, a natural compound isolated from Magnolia obovata, inhibits receptor activator of nuclear factor kappa B (NF-κB) ligand (RANKL)-induced osteoclast differentiation in vitro and inflammatory bone loss in vivo. We found that obovatol strongly inhibited osteoclast formation from bone marrow-derived macrophages in a dose-dependent manner without cytotoxicity. Obovatol significantly suppressed RANKL-induced activation of NF-κB, c-Jun-N-terminal kinase, and extracellular signal-regulated kinase signaling pathways. Obovatol also inhibited RANKL-induced expression of the genes c-Fos and nuclear factor of activated T cells c1, which are transcription factors important for osteoclastogenesis. In addition to osteoclast differentiation, obovatol blocked cytoskeletal organization and abrogated the bone resorbing activity of mature osteoclast. Obovatol also accelerated osteoclast apoptosis through the induction of caspase-3 activation. Consistent with its in vitro anti-resorptive effect, obovatol prevented bone loss induced by lipopolysaccharide in vivo. Together, our data suggest that obovatol may be a useful therapeutic agent for the treatment of pathological bone disorders characterized by excessive osteoclastic bone resorption.
Insights
Obovatol, a natural compound, effectively inhibits osteoclast formation and activity, offering a potential treatment for bone-destructive diseases. This compound prevents bone loss by targeting key signaling pathways and promoting osteoclast apoptosis.
Area of Science:
- Biochemistry
- Pharmacology
- Cell Biology
Background:
- Osteoclasts are crucial for bone remodeling but their excessive activity drives bone diseases.
- Targeting osteoclast differentiation and function is a key therapeutic strategy for bone disorders.
Purpose of the Study:
- To investigate the effects of obovatol, a natural compound from Magnolia obovata, on osteoclast differentiation and bone resorption.
- To evaluate obovatol's therapeutic potential for bone-destructive diseases.
Main Methods:
- In vitro studies using bone marrow-derived macrophages to assess osteoclast differentiation.
- Analysis of signaling pathways including NF-κB, JNK, and ERK.
- In vivo studies using a lipopolysaccharide-induced bone loss model.
Main Results:
- Obovatol dose-dependently inhibited osteoclast formation without cytotoxicity.
- Suppressed RANKL-induced activation of NF-κB, JNK, and ERK signaling pathways.
- Inhibited osteoclast cytoskeletal organization, bone resorbing activity, and accelerated apoptosis.
- Prevented lipopolysaccharide-induced bone loss in vivo.
Conclusions:
- Obovatol demonstrates potent anti-osteoclastogenic and anti-resorptive properties in vitro and in vivo.
- Obovatol may serve as a valuable therapeutic agent for pathological bone disorders characterized by excessive osteoclast activity.
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