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A Novel in vivo Gene Transfer Technique and in vitro Cell Based Assays for the Study of Bone Loss in Musculoskeletal Disorders
Published on: June 8, 2014
Inhibition of osteoclast differentiation and bone resorption by sauchinone
Kyoung-Youn Han1, Daum Yang, Eun-Ju Chang
1Department of Cell and Developmental Biology, BK21 Program, and DRI, Seoul National University, Seoul 110-749, Republic of Korea.
Abstract:
Osteoclasts are bone-specific multinucleated cells generated by differentiation of monocyte/macrophage lineage precursors. Regulation of osteoclast differentiation is considered an effective therapeutic approach to the treatment of bone-lytic diseases. In this study, we investigated effects of sauchinone, a lignan from Saururus chinensis, on osteoclastogenesis induced by the differentiation factor RANKL (receptor activator of nuclear factor kappa B ligand). Sauchinone strongly inhibited the osteoclastogenesis from primary bone marrow-derived macrophages (BMMs). This effect was accompanied by a significant decrease in the level of carbonic anhydrase II, calcitonin receptor, MMP9, and TRAP, which are normally upregulated during osteoclast differentiation. For the induction of osteoclastogenesis-associated genes, RANKL activates multiple transcription factors through mechanisms involving mitogen-activated protein kinases (MAPK) and reactive oxygen species (ROS). Sauchinone greatly attenuated the activation of ERK and, less prominently, that of p38 MAPKs by RANKL. The RANKL-stimulated induction of c-Fos and NFATc1 transcription factors was also abrogated by sauchinone. In addition, the activation of AP-1, NFAT, and NF-kappaB transcription factors was alleviated in sauchinone-treated cells. Sauchinone also diminished the RANKL-stimulated increase of ROS production in BMMs. Consistent with the in vitro anti-osteoclastogenic effect, sauchinone inhibited bone destruction and osteoclast formation caused by lipopolysaccharide in an animal model. Taken together, our data demonstrate that sauchinone inhibits RANKL-induced osteoclastogenesis by reducing ROS generation, which attenuates MAPK and NF-kappaB activation, ultimately leading to the suppression of c-Fos and NFATc1 induction. Also the in vivo effect of sauchinone on bone erosion strengthens the potential usefulness of this compound for diseases involving bone resorption.
Insights
Sauchinone, a compound from Saururus chinensis, effectively inhibits osteoclast differentiation by reducing reactive oxygen species (ROS) and key signaling pathways. This suggests sauchinone
Area of Science:
- Bone Biology and Disease
- Pharmacology and Natural Products
- Cellular Signaling
Background:
- Osteoclasts are crucial for bone remodeling, but their overactivity drives bone-lytic diseases.
- Targeting osteoclast differentiation is a key therapeutic strategy for bone disorders.
- Sauchinone, a lignan from Saururus chinensis, has potential therapeutic properties.
Purpose of the Study:
- To investigate the anti-osteoclastogenic effects of sauchinone.
- To elucidate the molecular mechanisms by which sauchinone inhibits osteoclast differentiation induced by RANKL.
- To evaluate the in vivo efficacy of sauchinone in a bone destruction model.
Main Methods:
- Primary bone marrow-derived macrophages (BMMs) were used to study osteoclastogenesis in vitro.
- Osteoclast differentiation was induced by RANKL (receptor activator of nuclear factor kappa B ligand).
- Effects on gene expression, transcription factor activation, MAPK signaling, and ROS production were analyzed. An in vivo animal model of bone destruction was employed.
Main Results:
- Sauchinone significantly inhibited RANKL-induced osteoclastogenesis and reduced key osteoclast markers (TRAP, MMP9, etc.).
- Sauchinone attenuated RANKL-induced activation of ERK and p38 MAPKs, AP-1, NFAT, and NF-kappaB signaling pathways.
- Sauchinone suppressed RANKL-stimulated ROS generation and the induction of c-Fos and NFATc1.
- In vivo, sauchinone inhibited lipopolysaccharide-induced bone destruction and osteoclast formation.
Conclusions:
- Sauchinone effectively inhibits osteoclastogenesis by suppressing RANKL-induced ROS generation.
- This mechanism involves the attenuation of MAPK and NF-kappaB signaling, leading to reduced c-Fos and NFATc1 induction.
- Sauchinone demonstrates therapeutic potential for treating bone resorption diseases.
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