• Title/Summary/Keyword: inhibition of bone loss

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Inhibitory Effects of Achyranthis Bidentatae Radix on Osteoclast Differentiation and Bone Resorption (우슬의 파골세포 분화 억제와 골 흡수 억제효과)

  • Kim, Ju-Ho;Ki, Ji-Ye;Ann, Ji-Young;Park, Hye-Jung;Kim, Hyun-Ju;Kwak, Han-Bok;Oh, Jae-Min;Kim, Yun-Kyung
    • The Korea Journal of Herbology
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    • v.25 no.1
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    • pp.65-74
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    • 2010
  • Objectives : Achyranthis Bidentatae Radix (ABR) has been used for treating of many symptoms especially osteoporosis and rheumatoid arthritis. In this study, we determined the effects of water extract of ABR in RANKL (Receptor Activator for Nuclear Factor $\kappa$ B Ligand)-induced osteoclast differentiation culture system. Methods : We assayed mRNA expression levels of NFATc1, c-Fos, TRAP, OSCAR, $FcR{\gamma}$, DAP12 and GAPDH in bone marrow macrophages (BMMs) treated with ABR. The protein expression levels of NFATc1, c-Fos, MAPKs and $\beta$-actin in cell lysates treated with ABR were analysed by Western blotting. In addition we determined the effects of water extract of ABR on LPS-induced bone-loss mouse. Results : Water extract of ABR showed remarkable inhibition on RANKL-treated osteoclast differentiation without cytotoxicity. ABR down-regulated the induction of c-Fos and NFATc1 by RANKL. ABR suppressed phosphorylation of JNK, p38 and I-${\kappa}B$. ABR rescued bone erosion by LPS induction in vivo study. Conclusions : These results demonstrate that ABR may be a useful remedy for curing of bone-loss disease such as osteoporosis.

Inhibitory Effects of Water Extract of Cervi parvum cornu, Carthami tinctorii fructus and Their Combination on Osteoclast Differentiation and Bone Resorption (녹용(鹿茸), 홍화자(紅花子) 단일 및 혼합 물 추출물( 抽出物)의 파골세포(破骨細胞) 분화(分化) 억제(抑制)와 골흡수(骨吸收) 억제(抑制) 효과(效果))

  • Ann, Ji-Young;Kim, Ju-Ho;Ki, Ji-Ye;Kwak, Han-Bok;Oh, Jae-Min;Kim, Yun-Kyung
    • Herbal Formula Science
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    • v.18 no.2
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    • pp.167-182
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    • 2010
  • Cervi parvum cornu (Deer Antler) and Carthami tinctorii fructus (Also known as Carthami seed) are widely used for treating osteoporosis and rheumatoid arthritis. In this study, We found out that the water extract of Cervi parvum cornu(WECPC), Carthami tinctorii fructus(WECTF) and their combination have effects of suppressing the RANKL-induced osteoclast differentiation. We assayed mRNA expression levels of NFATc1, c-Fos, TRAP and GAPDHS from bone marrow macrophages(BMMs) by means of RT-PCR. Similarly, the protein expression levels of NFATc1, c-Fos, MAPKs and $\beta$-actin in cell lysates were analyzed by means of Western blotting. then we determined the anti-osteoporotic effects of WECPC, WECTF and their combination using Lipopolysaccharide (LPS)-induced bone-loss mouse. WECPC, WECTF and their combination showed remarkable inhibition on RANKL-treated osteoclast differentiation without cytotoxicity. WECPC suppressed degradation of I-${\kappa}B$. WECPC, WECTF and their combination down-regulated the induction of c-Fos and NFATc1 by RANKL. Lastly, in vivo data showed that WECPC, WECTF and their combination rescued the bone erosion by LPS treatment. Thus, these results demonstrate that WECPC, WECTF and their combination can be efficacious remedies for bone-loss diseases such as osteoporosis and rheumatoid arthritis.

Effect of Ssangwha-tang Fermented by Lactobacillus fermentum on Osteoclast Differentiation and Osteoporosis of Ovariectomized Rats (Lactobacillus fermentum으로 발효한 쌍화탕의 파골 세포 분화와 난소 적출한 랫트의 골다공증에 미치는 영향)

  • Shim, Ki-Shuk;Lee, Ji-Hye;Lee, Jae-Hoon;Ma, Jin-Yeul
    • Korean Journal of Oriental Medicine
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    • v.16 no.1
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    • pp.149-155
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    • 2010
  • Objective : Ssangwha-tang is a traditional medicine formula widely prescribed for a decrease of fatigue after an illness in Korea. The aim of this study is to investigate the effect of Ssangwha-tang fermented by Lactobacillus fermentum (SF) on osteoclast differentiation in vitro and on bone metabolism of an ovariectomized rat in vivo. Methods : Tartrate-resistant acid phosphatase activity and staining were applied to evaluate the formation of osteoclasts. Ovariectomized rats were orally administrated with SF (30 ml/kg/day) for 12 weeks. Serum aspartate aminotransferase, alanine aminotransferase, alkaline phosphatase, total cholesterol, high-density lipoprotein-cholesterol, low-density lipoprotein-cholesterol, triglyceride, phosphate, calcium levels were determined. Effect of SF on bone loss were studied by histological analysis and the measurement of bone mineral density. Results : SF significantly inhibited tartrate-resistant acid phosphatase activity and formation of osteoclasts in RAW264.7 cells stimulated by receptor activator for nuclear factor ${\kappa}B$ (NF-${\kappa}B$) ligand (RANKL). In addition, SF significantly decreased the level of triglyceride and increased the level of low-density lipoprotein. Moreover, the decrease of trabeculae of the femur was partially prevented in ovariectomized rats administrated with SF. Conclusions : SF treatment could prevent ovariectomy induced bone loss and its effects could be medicated by the inhibition of osteoclastogenesis.

Insulin growth factor binding protein-3 enhances dental implant osseointegration against methylglyoxal-induced bone deterioration in a rat model

  • Takanche, Jyoti Shrestha;Kim, Ji-Eun;Jang, Sungil;Yi, Ho-Keun
    • Journal of Periodontal and Implant Science
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    • v.52 no.2
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    • pp.155-169
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    • 2022
  • Purpose: The aim of this study was to determine the effect of insulin growth factor binding protein-3 (IGFBP-3) on the inhibition of glucose oxidative stress and promotion of bone formation near the implant site in a rat model of methylglyoxal (MGO)-induced bone loss. Methods: An in vitro study was performed in MC3T3 E1 cells treated with chitosan gold nanoparticles (Ch-GNPs) conjugated with IGFBP-3 cDNA followed by MGO. An in vivo study was conducted in a rat model induced by MGO administration after the insertion of a dental implant coated with IGFBP-3. Results: MGO treatment downregulated molecules involved in osteogenic differentiation and bone formation in MC3T3 E1 cells and influenced the bone mineral density and bone volume of the femur and alveolar bone. In contrast, IGFBP-3 inhibited oxidative stress and inflammation and enhanced osteogenesis in MGO-treated MC3T3 E1 cells. In addition, IGFBP-3 promoted bone formation by reducing inflammatory proteins in MGO-administered rats. The application of Ch-GNPs conjugated with IGFBP-3 as a coating of titanium implants enhanced osteogenesis and the osseointegration of dental implants. Conclusions: This study demonstrated that IGFBP-3 could be applied as a therapeutic component in dental implants to promote the osseointegration of dental implants in patients with diabetes, which affects MGO levels.

Antiosteoporotic Effects of Polygoni Multiflori Radix (PMR) in Ovariectomized (OVX)-Induced Osteoporosis ddY Mice (하수오 물 추출물이 마우스 골다공증에 미치는 영향)

  • Do, Yoon-Jung;Ku, Sae-Kwang;Kim, Hong-Tae;Oh, Tae-Ho;Cho, Young-Moo;Kim, Sung-Woo;Ryu, Il-Sun;Lee, Keun-Woo
    • Journal of Veterinary Clinics
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    • v.28 no.4
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    • pp.375-386
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    • 2011
  • Polygoni Multiflori Radix (PMR), a dried root tuber of Polygonum multiflorum Thunberg with bioactivities in bone metabolism is one of the most famous tonic traditional medicines. To observe in vivo anti-osteoporotic efficacy of PMR extracts, we orally administered once a day for 28 days (Qd ${\times}$ 28) to bilateral ovariectomized (OVX)-induced osteoporosis ddY mice after 1 week of recovery periods at 125, 250 and 500 mg/kg (of body weight). A positive control drug, Alendronate (FOSA) 10 mg/kg-dosing group was added. As results of OVX-induced osteoporotic process, estrogen-deficient osteoporotic changes were also dramatically decreased in all PMR extracts-dosing groups. Especially middle dosage of PMR extracts, 250 mg/kg constantly and significantly (p < 0.01 or p < 0.05) inhibited the loss of bone strength and bone quality. Based on the results, it was concluded that PMR extracts (125, 250 or 500 mg/kg; orally dosing) has relatively good favorable effect to prevention and/or treatment of OVX-induced osteoporosis. Therefore, although the efficacy was slighter than that of Alendronate on the inhibition of bone loss, it is expected that PMR extracts will be promising as a new anti-osteoporotic agents for prevent the fracture induced in osteoporotic patients because natural herbal medicine origin PMR extracts will be dose not show serious side effects especially the problem in upper alimentary irritation by bisphosphonate and hypercalcaemia of parathyroid hormone analogs.

Rocaglamide-A Potentiates Osteoblast Differentiation by Inhibiting NF-κB Signaling

  • Li, Aiguo;Yang, Libin;Geng, Xiaolin;Peng, Xingmei;Lu, Tan;Deng, Yanjun;Dong, Yuzheng
    • Molecules and Cells
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    • v.38 no.11
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    • pp.941-949
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    • 2015
  • Rheumatoid arthritis is a chronic inflammatory disease that leads to bone and cartilage erosion. The inhibition of osteoblast differentiation by the inflammatory factor TNF-${\alpha}$ is critical for the pathogenesis of rheumatoid arthritis. To modulate TNF-${\alpha}$ mediated inhibition of osteoblast differentiation is required to improve therapeutic efficacy of rheumatoid arthritis. Here, we explored the potential role of rocaglamide-A, a component of Aglaia plant, in osteoblast differentiation. Rocaglamide-A prevented TNF-${\alpha}$ mediated inhibition of osteoblast differentiation, and promoted osteoblast differentiation directly, in both C2C12 and primary mesenchymal stromal cells. Mechanistically, Rocaglamide-A inhibited the phosphorylation of NF-${\kappa}B$ component p65 protein and the accumulation of p65 in nucleus, which resulted in the diminished NF-${\kappa}B$ responsible transcriptional activity. Oppositely, overexpression of p65 reversed rocaglamide-A's protective effects on osteoblast differentiation. Collectively, rocaglamide-A protected and stimulated osteoblast differentiation via blocking NF-${\kappa}B$ pathway. It suggests that rocaglamide-A may be a good candidate to develop as therapeutic drug for rheumatoid arthritis associated bone loss diseases.

CCR5 deficiency in aged mice causes a decrease in bone mass

  • Oh, Eun-Ji;Zang, Yaran;Kim, Jung-Woo;Lee, Mi Nam;Song, Ju Han;Oh, Sin-Hye;Kwon, Seung Hee;Yang, Jin-Woo;Koh, Jeong-Tae
    • International Journal of Oral Biology
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    • v.44 no.4
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    • pp.173-181
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    • 2019
  • The CC chemokine receptor 5 (CCR5) is a G protein-coupled receptor that regulates chemotaxis and effector functions of immune cells. It also serves as the major co-receptor for the entry of human immunodeficiency virus (HIV). Recently, CCR5 inhibitors have been developed and used for the treatment or prevention of HIV infections. Additionally, it has been identified that CCR5 controls bone homeostasis by regulating osteoclastogenesis and the communication between osteoblasts and osteoclasts. However, the effects of CCR5 inhibition on bone tissue in elderly patients are unknown. This study aimed to examine the bone phenotype of aged CCR5 knockout (KO) mice. Femoral and tibial bones were isolated from 12-month and 18-month old wild-type (WT) and CCR5 KO mice, and microcomputed tomography and histology analyses were performed. Twelve-month-old CCR5 KO mice exhibited a decreased trabecular bone mass and cortical bone thickness in both femoral and tibial bones compared with age-matched WT mice. Eighteen-month-old mice also showed a decreased trabecular bone mass in femurs compared with control WT mice, but not in tibial bones. Unlike in 12-month-old mice, the cortical margin of femurs and tibias in 18-month-old mice were rough, likely because they were aggravated by the deficiency of CCR5. Overall, our data suggest that the deficiency of CCR5 with aging can cause severe bone loss. When CCR5 inhibitors or CCR5 inactivating technologies are used in elderly patients, a preventive strategy for bone loss should be considered.

Differential effects of type 1 diabetes mellitus and subsequent osteoblastic β-catenin activation on trabecular and cortical bone in a mouse mode

  • Chen, Sixu;Liu, Daocheng;He, Sihao;Yang, Lei;Bao, Quanwei;Qin, Hao;Liu, Huayu;Zhao, Yufeng;Zong, Zhaowen
    • Experimental and Molecular Medicine
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    • v.50 no.12
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    • pp.3.1-3.14
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    • 2018
  • Type 1 diabetes mellitus (T1DM) is a pathological condition associated with osteopenia. $WNT/{\beta}$-catenin signaling is implicated in this process. Trabecular and cortical bone respond differently to $WNT/{\beta}$-catenin signaling in healthy mice. We investigated whether this signaling has different effects on trabecular and cortical bone in T1DM. We first established a streptozotocin-induced T1DM mouse model and then constitutively activated ${\beta}$-catenin in osteoblasts in the setting of T1DM (T1-CA). The extent of bone loss was greater in trabecular bone than that in cortical bone in T1DM mice, and this difference was consistent with the reduction in the expression of ${\beta}$-catenin signaling in the two bone compartments. Further experiments demonstrated that in T1DM mice, trabecular bone showed lower levels of insulin-like growth factor-1 receptor (IGF-1R) than the levels in cortical bone, leading to lower $WNT/{\beta}$-catenin signaling activity through the inhibition of the IGF-1R/Akt/glycogen synthase kinase $3{\beta}$ ($GSK3{\beta}$) pathway. After ${\beta}$-catenin was activated in T1-CA mice, the bone mass and bone strength increased to substantially greater extents in trabecular bone than those in cortical bone. In addition, the cortical bone of the T1-CA mice displayed an unexpected increase in bone porosity, with increased bone resorption. The downregulated expression of WNT16 might be responsible for these cortical bone changes. In conclusion, we found that although the activation of $WNT/{\beta}$-catenin signaling increased the trabecular bone mass and bone strength in T1DM mice, it also increased the cortical bone porosity, impairing the bone strength. These findings should be considered in the future treatment of T1DM-related osteopenia.

Inhibitory Effects of Water Extracts of Eucommiae Cortex and Psoraleae Semen Alone and in Combination on Osteoclast Differentiation and Bone

  • Park, Jin Soo;Park, Ga Young;Choi, Han Gyul;Kim, Seong Joung;Kim, June Hyun;park, Min Cheol;Kim, Yun Kyung;Han, Sang Yong;Jo, Eun Heui
    • Journal of Acupuncture Research
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    • v.34 no.2
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    • pp.1-18
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    • 2017
  • Objectives : The purpose of this study was to evaluate the effects of water extracts of Eucommiae cortex (EC), Psoraleae semen (PS), and their combination on receptor activator of nuclear factor-kappa-B ligand (RANKL)-induced osteoclast differentiation. Methods : We assayed the protein expression levels of nuclear factor of activated T-cells, cytoplasmic 1 (NFATc1), c-Fos, mitogen-activated protein kinases (MAPKs), and ${\beta}-actin$ in cell lysates using western blotting. Similarly, mRNA expression levels of NFATc1, c-Fos, tartrateresistant acid phosphate (TRAP), and glyceraldehyde-3-phosphate dehydrogenase, spermatogeni (GAPDHS) from bone marrow macrophages (BMMs) were analyzed using reverse transcription-polymerase chain reaction (RT-PCR). Furthermore, we determined the anti-osteoporotic effects of the water extracts of EC, PS, and their combination in a lipopolysaccharide (LPS)-induced bone-loss mouse model. Results : The in vitro data revealed showed that the combination of EC and PS extract showed a more remarkable inhibition of osteoclast differentiation than each herb did alone. The combination downregulated the induction of c-Fos, NFATc1, and TRAP by suppressing the phosphorylation of p38 and c-Jun N-terminal kinases (JNKs) and inhibiting nuclear factor kappa-light-chain-enhancer of activated B cells ($NF-{\kappa}B$). Lastly, the in vivo data showed that PS reduced the LPS-induced bone erosion. Conclusion : The result of this study suggests that EC and PS could be potential therapeutic agents for bone loss diseases such as osteoporosis.

Apelin-APJ axis inhibits TNF-alpha-mediated expression of genes involved in the inflammatory response in periodontal ligament cells

  • Lee, Gyuseok;Song, Won-Hyun;Kim, Su-Jin;Kim, Young-Gwon;Ryu, Je-Hwang
    • International Journal of Oral Biology
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    • v.44 no.4
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    • pp.182-190
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    • 2019
  • Periodontitis is an inflammatory disease of the supportive tissues surrounding the teeth, and is characterized by irreversible destruction of the gingiva, periodontal ligament (PDL), and alveolar bone, which results in the loss of teeth. In the present study, we elucidated the correlation between periodontitis and apelin (APLN), an adipokine and a regulatory peptide, respectively, which are involved in inflammation and bone remodeling. The expression of APLN is negatively correlated with periodontitis progression in gingival tissue. In addition, treatment with TNF-α downregulated the expression of APLN in PDL cells and gingival fibroblasts, indicating the protective role played by APLN against periodontitis progression. The overexpression of APLN or treatment with exogenous APLN suppressed the TNF-α-mediated catabolic gene expression of MMP1, IL6, and PTGS2 in PDL cells. Moreover, the inhibition of the APLNA-PJ axis by ML221, an APJ inhibitor, induced catabolic gene expression in PDL cells. Thus, the results of this study provided evidence to support APLN as a regulatory factor of the inflammatory response during periodontitis.