• 제목/요약/키워드: osteoclast formation

검색결과 191건 처리시간 0.026초

PKCβ Positively Regulates RANKL-Induced Osteoclastogenesis by Inactivating GSK-3β

  • Shin, Jihye;Jang, Hyunduk;Lin, Jingjing;Lee, Soo Young
    • Molecules and Cells
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    • 제37권10호
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    • pp.747-752
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    • 2014
  • Protein kinase C (PKC) family members phosphorylate a wide variety of protein targets and are known to be involved in diverse cellular signaling pathways. However, the role of PKC in receptor activator of NF-${\kappa}B$ ligand (RANKL) signaling has remained elusive. We now demonstrate that $PKC{\beta}$ acts as a positive regulator which inactivates glycogen synthase kinase-$3{\beta}$ (GSK-$3{\beta}$) and promotes NFATc1 induction during RANKL-induced osteoclastogenesis. Among PKCs, $PKC{\beta}$ expression is increased by RANKL. Pharmacological inhibition of $PKC{\beta}$ decreased the formation of osteoclasts which was caused by the inhibition of NFATc1 induction. Importantly, the phosphorylation of GSK-$3{\beta}$ was decreased by $PKC{\beta}$ inhibition. Likewise, down-regulation of $PKC{\beta}$ by RNA interference suppressed osteoclast differentiation, NFATc1 induction, and GSK-$3{\beta}$ phosphorylation. The administration of PKC inhibitor to the RANKL-injected mouse calvaria efficiently protected RANKL-induced bone destruction. Thus, the $PKC{\beta}$ pathway, leading to GSK-$3{\beta}$ inactivation and NFATc1 induction, has a key role in the differentiation of osteoclasts. Our results also provide a further rationale for $PKC{\beta}$'s therapeutic targeting to treat inflammation-related bone diseases.

Inhibitory Effect of Myricetin on Matrix Metalloproteinase Expression and Activity in Periodontal Inflammation

  • Ko, Seon-Yle
    • International Journal of Oral Biology
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    • 제41권4호
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    • pp.163-173
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    • 2016
  • Flavonoid myricetin, usually found in tea and medicinal plants, has antioxidant and anti-inflammatory effects. Our objectives in this study were to verify the effects of myricetin on periodontal ligament fibroblasts (PDLFs) under inflammatory conditions and to observe its effects on osteoclast generation and on cytokine expression in RAW264.7 cells. To determine the effects of myricetin on PDLFs, we examined the expression and activity of proteolytic enzymes, including MMP-1, MMP-2, and MMP-8, which all play an important role in chronic periodontitis. We observed the effects of myricetin on intracellular signal transduction to verify the molecular mechanism involved. By measuring the formation of TRAP-positive multinucleated cells and the expression and activity of MMP-8, we were able to assess the effects of myricetin on osteoclast generation. In addition, by measuring the secretion of IL-6 and NO, we could evaluate the effects of myricetin on inflammatory mediators. We found that Myricetin had no effect on the viability of the PDLFs in the presence of inflammation, but it did decrease both the expression of MMP-1 and MMP-8 and the enzyme activity of MMP-2 and MMP-8 in these fibroblasts. Myricetin also decreased the lipopolysaccharide-stimulated phosphorylation of JNK, p38 signaling, IKKB, AKT, and p65RelA in the PDLFs. In the RAW264.7 cells, myricetin inhibited both the expression and the activity of MMP-8. Furthermore, Myricetin not only suppressed the generation of LPS-stimulated osteoclasts, but it also slightly inhibited LPS-stimulated degradation of IkB and decreased the release of LPS-induced IL-6 and NO. These findings suggest that myricetin alleviates the tissue-destructive processes that occur during periodontal inflammation.

Physalin D inhibits RANKL-induced osteoclastogenesis and bone loss via regulating calcium signaling

  • Ding, Ning;Lu, Yanzhu;Cui, Hanmin;Ma, Qinyu;Qiu, Dongxia;Wei, Xueting;Dou, Ce;Cao, Ning
    • BMB Reports
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    • 제53권3호
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    • pp.154-159
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    • 2020
  • We investigated the effects of physalin A, B, D, and F on osteoclastogenesis induced by receptor activator of nuclear factor κB ligand (RANKL). The biological functions of different physalins were first predicted using an in silico bioinformatic tool (BATMAN-TCM). Afterwards, we tested cell viability and cell apoptosis rate to analyze the cytotoxicity of different physalins. We analyzed the inhibitory effects of physalins on RANKL-induced osteoclastogenesis from mouse bone-marrow macrophages (BMMs) using a tartrate-resistant acid phosphatase (TRAP) stain. We found that physalin D has the best selectivity index (SI) among all analyzed physalins. We then confirmed the inhibitory effects of physalin D on osteoclast maturation and function by immunostaining of F-actin and a pit-formation assay. On the molecular level, physalin D attenuated RANKL-evoked intracellular calcium ([Ca(2+)](i)) oscillation by inhibiting phosphorylation of phospholipase Cγ2 (PLCγ2) and thus blocked the downstream activation of Ca2+/calmodulin-dependent protein kinases (CaMK)IV and cAMP-responsive element-binding protein (CREB). An animal study showed that physalin D treatment rescues bone microarchitecture, prevents bone loss, and restores bone strength in a model of rapid bone loss induced by soluble RANKL. Taken together, these results suggest that physalin D inhibits RANKL-induced osteoclastogenesis and bone loss via suppressing the PLCγ2-CaMK-CREB pathway.

SPA0355 prevents ovariectomy-induced bone loss in mice

  • Kim, Sang Hoon;Zhang, Zhongkai;Moon, Young Jae;Park, Il Woon;Cho, Yong Gon;Jeon, Raok;Park, Byung-Hyun
    • The Korean Journal of Physiology and Pharmacology
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    • 제23권1호
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    • pp.47-54
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    • 2019
  • Estrogen withdrawal in post-menopausal women leads to overactivation of osteoclasts, which contributes to the development of osteoporosis. Inflammatory cytokines are known as one of mechanisms of osteoclast activation after estrogen deficiency. SPA0355 is a thiourea derivative that has been investigated for its antioxidant and anti-inflammatory activities. However, its efficacy in bone resorption has not been previously investigated. The aim of this study was to investigate the impact of SPA0355 on the development of osteoporosis and to explore its mode of action. In vitro experiments showed that SPA0355 inhibited receptor activator of $NF-{\kappa}B$ ligand (RANKL)-induced osteoclastogenesis in primary bone marrow-derived macrophages. This effect appears to be independent of estrogen receptor activation as ICI 180,782 failed to abrogate its effects on osteoclasts. Further signaling studies revealed that SPA0355 suppressed activation of the MAPKs, Akt, and $NF-{\kappa}B$ pathways. SPA0355 also increased osteoblastic differentiation, as evidenced by its effects on alkaline phosphatase activity and mineralization nodule formation. Intraperitoneal administration of SPA0355 to ovariectomized mice prevented bone loss, as verified by three-dimensional images and bone morphometric parameters derived from ${\mu}CT$ analysis. Noticeably, SPA0355 did not show hepatotoxicity and nephrotoxicity and also had little effect on hematological parameters. Taken together, the results indicate that SPA0355 may protect against bone loss in ovariectomized mice by stimulation of osteoblast differentiation and by inhibition of osteoclast resorption. Therefore, SPA0355 is a safe and potential candidate for management of postmenopausal osteoporosis.

Expression of Senescence-Associated Secretory Phenotype in Senescent Gingival Fibroblasts

  • Sangim Lee
    • 치위생과학회지
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    • 제23권2호
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    • pp.169-175
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    • 2023
  • Background: Although microbial infection is direct cause of periodontal disease, various environmental factors influence the disease severity. Aging is considered a risk factor for oral diseases, with the prevalence of periodontal diseases increasing with age. Moreover, senescence-associated secretory phenotype (SASP) expressed in age-related diseases is a key marker of chronic inflammation and aging phenotypes. Therefore, this study aimed to understand the relevance of senescent cells to periodontal health and disease, investigate the possibility of regulating the expression of aging- and osteolysis-related factors in gingival fibroblasts, and investigate the effect of senescence induction in gingival fibroblasts on osteoclast differentiation in mouse bone marrow-derived macrophages (BMMs). Methods: After stimulation with 400 nM hydrogen peroxidase, human gingival fibroblasts (HGFs) were examined for senescence-associated β-galactosidase. Western blot and enzyme-linked immunosorbent assays were performed to assess the expression of SASP. Osteoclast formation was assessed in BMMs using a conditioned medium (CM) from hydrogen peroxide-stimulated HGFs. Osteoclastic differentiation was investigated using tartrate-resistant acid phosphatase (TRAP) staining and activity. Data analysis was performed using SPSS version 25.0. Results: The expression of senescence-related molecules, including p53, p16, and p21, and the expression of osteolytic factors, including IL-6, IL-8, and IL-17, were found to be significantly higher in the hydrogen peroxide-stimulated HGF than in the control group. Regarding the indirect effects of senescent gingival cells, the number of osteoclasts and TRAP activity increased according to the differentiation of BMM cultured in CM. Conclusion: Our results on the of between osteolytic factors and cellular senescence in gingival fibroblast cells helped to reveal evidence of pathological aging mechanisms. Furthermore, our results suggest that the development of novel therapies that target specific SASP factors could be an effective treatment strategy for periodontal disease.

Macrophagal Polykaryocytes in Inflammation, Tumor Growth, and Tissue Remodeling

  • Schepetkin, Igor-A.;Kiran, Kondaragil-R.;Kwon, Byoung-S.
    • Journal of Microbiology and Biotechnology
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    • 제11권5호
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    • pp.727-738
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    • 2001
  • Macrophagal polykaryocytes (MPs) are terminally differentiated multinuclear macrophage cells responsible for remodeling and resorption of bone, foreign body, and tissue deposition in inflammation. MPs are encountered only in bone and cartilagenous tissues, in which they are referred to as osteoclasts, odontoclasts, in which they are referred to as osteoclasts, odontoclasts, and septoclasts. Depending on the disease, the MPs differentiate into many morphological variants that include foreign-body giant cells, Langhans-type cells, and Touton-type cells. Morphological heterogeneity of MPs could Touton-type cells. Morphological heterogeneity of MPs could reflect the giant cell formation from phenotypically different marophage precursors by the process of fusion. At present, many cytokines, adhesion/fusion molecules, and other factors of the microenvironment have been discovered that influence the multinucleation process. Many evidences suggest that conditions in giant cell fibrohistiocytomas, which facilitate MP formation, are similar to the inflammation site of granulomatosis. MPs in the giant cell tumors and granulomatosis foci are formed in response to the factors secreted by mesenchymal cells. It is proposed that one of the first steps in vertebrate evolution could be the organization of skeleton remodeling, in which osteoclasts play a major role. In this step, the same mechanism of regulations served as a basis for the development of both osteoclast and inflammatory forms of MPs.

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Interleukin-10 이 $interleukin-1{\beta}$로 유도되는 골흡수에 미치는 효과 (EFFECT OF INTERLEUKIM-10 ON THE BONE RESORPTION INDUCED BY INTERLEUKIN-1B)

  • 유윤정;강윤선;이승일
    • Journal of Periodontal and Implant Science
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    • 제24권2호
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    • pp.321-339
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    • 1994
  • The cytokines released by osteoblasts induce bone resorption via the differentiation of osteoclast precursors. In this process, $interleukin-1{\beta}$($IL-1{\beta}$)-induced bone resorption is mediated by granulocyte macrophage-colony stimulation factor(GM-CSF), interleukin-6 (IL-6), and tumor necrosis factor ${\alpha}$($TNF-{\alpha}$) released from osteoblasts. Since these cytokines (GM-CSF, IL-6, $TNF-{\alpha}$) are produced by not only osteoblasts but also monocytes, and interleukin-10(I1-10) inhibits the secretion of these cytokines from monocytes, it may be speculated that IL 10 could modulate the production of GM-CSF, IL-6, and $TNF-{\alpha}$ by osteoblasts, then control $IL-1{\beta}-induced$ bone resorption. Therefore, the aims of the present study were to examine the effects of IL-10 on bone resorption. The sixten or seventeen-day pregnant ICR mice were injected with $^{45}Ca$ and sacrificed one day after injection. Then fetal mouse calvaria prelabeled with $^{45}Ca$ were dissected out. In order to confirm the degree of bone resorption, mouse calvaria were treated with Lipopolysaccharide(LPS), $TNF-{\alpha}$, $IL-1{\alpha}$, IL-8, $IL-1{\beta}$, and $IL-1{\alpha}$, Then, IL-10 and $interferon-{\gamma}$ ($IFN-{\gamma}$) were added to calvarial medium, in an attempt to evaluate the effect of $IL-1{\beta}-induced$ bone resorption. In addition, osteoclasts formation in bone marrow cell cultures, and the concentration of IL-6, $TNF-{\alpha}$, and GM-CSF produced from mouse calvarial cells were investigated in response to $IL-1{\beta}$ alone and simultaneously adding f $IL-1{\beta}$ and IL-10. The degree of bone resorption was expressed as the ratio of $^{45}Ca$ release(the treated/the control). The osteoclasts in bone marrow cultures were indentified by tartrate resistant acid phosphatase(TRAP) stain and the concentration of the cytokines was quantified using enzyme linked immunosorbent method. As results of these studies, bone resorption was induced by LPS(1 ng/ml ; the ratio of $^{45}Ca$ release, $1.14{\pm}0.07$). Also $IL-1{\beta}$(1 ng/ml), $IL-1{\alpha}$(1 ng/ml), and $TNF-{\alpha}$(1 ng/ml) resulted in bone resorption(the rations of $^{45}Ca$ release, $1.61{\pm}0.26$, $1.77{\pm}0.03$, $1.20{\pm}0.15$ respectively), but IL-8 did not(the ratio of $^{45}Ca$ release, $0.93{\pm}0.21$). The ratios of $^{45}Ca$ release in response to IL-10(400 ng/ml) and $IFN-{\gamma}$(100 ng/ml) were $1.24{\pm}0.12$ and $1.08{\pm}0.04$ respectively, hence these cytokines inhibited $IL-1{\beta}$(1 ng/ml)-induced bone resorption(the ratio of $^{45}Ca$ release $1.65{\pm}0.24$). While $IL-1{\beta}$(1 ng/ml) increased the number of TRAP positive multinulcleated cells in bone marrow cultures($20{\pm}11$), simultaneously adding $IL-1{\beta}$(1 ng/ml) and IL-10(400 ng/ml) decreased the number of these cells($2{\pm}2$). Nevertheless, IL-10(400 ng/ml) did not affect the IL-6, GM-CSF, and $TNF-{\alpha}$ secretion from $IL-1{\beta}$(1 ng/ml)-activated mouse calvarial cells. From the above results, it may be suggested that IL-10 inhibites $IL-1{\beta}-induced$ osteoclast differntiation and bone resorption. However, the inhibitory effect of IL-10 on the osteoclast formation seems to be mediated not by the reduction of IL-6, GM-CSF, and $TNF-{\alpha}$ production, but by other mechanisms.

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흑염소와 약용식물 복합 증탕추출액 및 증류액이 조골세포 증식과 파골세포 형성에 미치는 영향 (Effect of water extract and distillate from the mixture of black goat meat and medicinal herb on osteoblast proliferation and osteoclast formation)

  • 송효남;임강현;권인숙
    • Journal of Nutrition and Health
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    • 제48권2호
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    • pp.157-166
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    • 2015
  • 골기능 개선용 흑염소 액상제품을 개발하기 기초연구로서 흑염소 및 약용식물 복합추출물이 MG-63 조골세포 및 마우스 골수세포 유래 파골세포의 분화에 미치는 영향을 분석하였다. 흑염소 원료육의 일반성분, 휘발성 염기질소, 무기질함량, 유리아미노산 조성 및 지방산 조성 등의 영양성분을 분석하여 기초자료를 마련하였다. 흑염소에 첨가할 약용식물의 종류와 배합을 달리한 두 그룹의 한약재 첨가군에 대해 증탕추출액과 증류액을 제조하여 총 6개 시료군 (흑염소육 (BG-E, BG-D), 6종 한약재 첨가군 (BG-E6, BG-D6) 및 8종 한약재 첨가군 (BG-E8, BG-D8)을 대상으로 골강화 활성을 분석하였다. 식품공전상 식품의 원료로 사용이 가능한 원료 중 황기, 홍화씨, 당귀, 황정, 속단, 우슬 각각 2/2/2/2/1/1의 배합비를 지닌 한약재 6종 첨가군 및 동일배합에 녹용과 녹각을 각각 0.3/1.2 로 추가배합한 한약재 8종 첨가군을 사용하였다. 조골세포 MG-63의 증식 촉진 활성에 대해 시료별 및 농도별로 유의적인 차이가 나타났으며 한약재 무첨가 흑염소군보다 6종 및 8종 등 한약재 첨가량이 많을수록 활성이 증가하였다. 증탕추출액과 달리 증류액은 모두 유의한 효과가 없었다. 조골세포의 골석회화 촉진활성시험 결과 대조군에 비해 모든 시료 처리군에서 칼슘함량이 유의적으로 증가하여 MG-63 세포의 석회화 결절 형성을 농도 의존적으로 유의하게 증가시켰다. BG-E6는 대조군에 비해 석회화 형성을 170.3% 증가시켰고, 증류액인 BG-D와 BG-D6는 각각 168.5% 및 159.8%의 증가를 나타내었다. 시료별 차이에 있어 한약재 첨가군이 무첨가군보다 높았고, 증탕추출액이 증류액보다 높은 활성을 보였다. 세포의 칼슘 흡수량을 측정한 결과 모든 증탕추출액에서 활성이 증가하였고 특히 BG-E6와 BG-E8은 각각 615.5%와 628.1%로 유의적으로 가장 높은 증가율을 보였다. 증류액은 BG-D6의 1/10 농도군외에 효과가 없었다. 마우스 골수세포 유래 파골세포의 증식억제 실험결과 TNF-${\alpha}$ 만을 처리한 대조군에 비해 모든 시료군이 TRAP활성을 억제하는 경향을 나타내었다. 특히 BG-D 및 BG-E6, BG-E8은 유의하게 파골세포로의 분화를 억제하였다. 종합적으로 흑염소육을 비롯하여 황기, 홍화씨, 당귀, 황정, 속단, 우슬, 녹용 및 녹각 등 한약재의 복합추출물은 골 기능 강화에 매우 효과적인 기능성 원료가 될 수 있을 것으로 사료된다.

황금 추출물이 조골세포와 파골세포의 활성에 미치는 영향 (Effects of Scutellaria radix Extract on Osteoblast Differentiation and Osteoclast Formation)

  • 신정민;박찬경;신은주;조태형;황인경
    • 한국식품과학회지
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    • 제40권6호
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    • pp.674-679
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    • 2008
  • 황금 추출물이 조골세포와 파골세포에 미치는 영향을 세포수준에서 관찰하고자 하였다. 조골세포에 미치는 영향을 관찰하기 위하여, mouse calvaria 유래의 MC3T3-E1 osteoblastic cells를 이용하여 세포 생존률, 염기성 인산분해효소 활성, 골석회화 형성능을 측정하였다. 또한 미분화된 파골세포 전구세포로부터 파골세포의 생성 및 활성에 미치는 영향을 관찰하기 위하여, murine macrophage 유래인 Raw 264.7 cells를 이용하여 M-CSF와 RANKL을 처리하여 파골세포의 분화를 유도하였고, TRAP에 양성인 다핵세포의 형성을 관찰하여 황금추출물이 파골세포의 형성에 미치는 영향을 알아보았다. 황금 추출물이 MC3T3-E1 세포의 증식에 미치는 영향을 MTT assay로 측정한 결과, MC3T3-E1 세포는 처리한 황금 추출물의 농도에 의존적으로 세포의 증식이 촉진되는 경향을 나타내었으며 특히 $1{\mu}g/mL$ 농도에서 130.4%의 증식 효과를 나타내었다. 또한 황금 추출물이 세포에 독성을 나타내지 않는 범위($0.01-1{\mu}g/mL$)에서 MC3T3-E1 세포의 ALP activity를 측정한 결과, 농도에 의존적으로 ALP activity가 증가하였으며 $1{\mu}g/mL$ 농도에서 152.0%의 ALP 활성 증가효과를 나타내었다. 황금 추출물의 최적 작용 농도 $1{\mu}g/mL$에서 골석회화 형성능을 측정한 결과, 배양 시간에 따라 계속 증가하여 배양 20일째는 대조군에 비해 223.3%의 석회화 형성능을 나타내었다. 황금 추출물의 파골세포 분화억제 효과를 알아보기 위해 황금 추출물이 세포에 독성을 나타내지 않는 범위($0.01-10{\mu}g/mL$)에서 TRAP staining한 결과, 황금 추출물은 $0.0{1\mu}g/mL$ 농도에서 대조군에 비해 파골세포 분화를 50% 이상 감소시켰으며 농도 의존적으로 TRAP 양성 세포가 감소함을 관찰하였다. 이상의 결과로 미루어 볼 때, 황금 추출물이 골다공증을 포함한 골질환 예방에 효과가 있을 것으로 사료된다.

Curcumin Inhibits Osteoclastogenesis by Decreasing Receptor Activator of Nuclear Factor-κB Ligand (RANKL) in Bone Marrow Stromal Cells

  • Oh, Sora;Kyung, Tae-Wook;Choi, Hye-Seon
    • Molecules and Cells
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    • 제26권5호
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    • pp.486-489
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    • 2008
  • Curcumin (diferuloylmethane), a pigment derived from turmeric, has anti-oxidant and anti-inflammatory activities. Accumulating evidence points to a biochemical link between increased oxidative stress and reduced bone density. Osteoclast formation was evaluated in co-cultures of bone marrow stromal cells (BMSC) and whole bone marrow cells (BMC). Expression of receptor activator of nuclear factor-${\kappa}B$ ligand (RANKL) was analyzed at the mRNA and protein levels. Exposure to curcumin led to dose-dependent suppression of osteoclastogenesis in the co-culture system, and to reduced expression of RANKL in $IL-1{\alpha}$-stimulated BMSCs. Addition of RANKL abolished the inhibition of osteoclastogenesis by curcumin, whereas the addition of prostaglandin $E_2$ ($PGE_2$) did not. The decreased osteoclastogenesis induced by curcumin may reduce bone loss and be of potential benefit in preventing and/or attenuating osteoporosis.