• 제목/요약/키워드: Bone Mineralization

검색결과 207건 처리시간 0.032초

Nectandrin A Enhances the BMP-Induced Osteoblastic Differentiation and Mineralization by Activation of p38 MAPK-Smad Signaling Pathway

  • Kim, Do Yeon;Kim, Go Woon;Chung, Sung Hyun
    • The Korean Journal of Physiology and Pharmacology
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    • 제17권5호
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    • pp.447-453
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    • 2013
  • Osteoblastic activity of nectandrin A was examined in C2C12 cells. Nectandrin A enhances the BMP-induced osteoblastic differentiation and mineralization, manifested by the up-regulation of differentiation markers (alkaline phosphatase and osteogenic genes) and increased calcium contents. In C2C12 cells co-transfected with expression vector encoding Smad4 and Id1-Luc reporter, nectandrin A increased Id1 luciferase activity in a concentration-dependent manner, when compared to that in BMP-2 treated cells, indicating that Smad signaling pathway is associated with nectandrin A-enhanced osteoblastic differentiation in C2C12 cells. In addition, nectandrin A activated p38 mitogen-activated protein kinase (MAPK) in time- and concentration-dependent manners, and phosphorylated form of pSmad1/5/8 and alkaline phosphatase activity were both decreased when the cells were pretreated with SB203580, a p38 MAPK inhibitor, suggesting that p38 MAPK might be an upstream kinase for Smad signaling pathway. Taken together, nectandrin A enhances the BMP-induced osteoblastic differentiation and mineralization of C2C12 cells via activation of p38 MAPK-Smad signaling pathway, and it has a therapeutic potential for osteoporosis by promoting bone formation.

사람 태아 골모 세포에 대한 냉동 동종골과 근골격이식재의 골형성 유도에 관한 효과 (Effects of Irradiated Frozen Allogenic Bone and Musculoskeletal Transplant Foundation on Bone Formation in Human Fetal Osteoblasts)

  • 윤호상;피성희;윤형근
    • Journal of Periodontal and Implant Science
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    • 제36권2호
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    • pp.435-448
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    • 2006
  • The purpose of this study was to investigate the effects of ICB(Irradiated frozen allogenic bone, Rocky Mountain Tissue Bank, USA) and MTF(Decalcified freeze-dried bone allograft, Musculoskeletal Transplant Foundation, USA) on the cell proliferation and differentiation of human fetal osteoblasts. Human fetal osteoblasts (hFOB1) were cultured with $10\;ng/m{\ell}$of ICB and MTF. The negatvie control group was cultured with DMSO and positive control group was cultured with BMF ($2\;ng/m{\ell}$). MIT was performed to examine the viability of the cell, and alkaline phosphatase activity was analyzed to examine the mineralization. Calcium accumulation was also evaluated. ICB and MTF did not increase the rate of the cellular proliferation of hFOB1s while they enhanced ALP and calcium accumulation. The expression of osteocalcin (OC) and bone silaloprotein (BSP) increased in hFOB1 treated with ICB and MTF ($10\;ng/m{\ell}$). These results suggest that ICB and MTF stimulate osteoblastic activity of the hFOBl.

유근피가 골세포의 mineralization, bone morphogenetic protein-2, alkaline phosphatase, type I collagen 및 collagennase-1에 미치는 영향 (Effects of Ulmus davidiana Planch(Ulmaceae) on mineralization, bone morphogenetic protein-2, alkaline phosphatase, type I collagen and collagennase-1 in bone cells)

  • 변유석;윤종화;황민섭;김갑성;조현석
    • Journal of Acupuncture Research
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    • 제22권3호
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    • pp.13-22
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    • 2005
  • 손상된 조직의 보호와 항염증작용이 있는 것으로 알려진 유근피를 수액추출하여 골다공증의 치료에 응용 가능한가를 실험하였다. 이전의 실험에서 유근피 추출액이 파골세포를 함유한 장골세포의 치료를 통해 Cathepsin K를 억제하는 것을 확인 하였었다. 이를 통하여 유근피는 골다공증 치료에서 골재흡수억제제로 서의 prodrug의 역할을 할 수 있음을 시사하였다. 본 실험에서는 MC3T3-El pre-osteoblastic 세포조직을 이용하여 골화를 유발한 상태에서 유근피가 골아세포의 성장과 감작에 대한 것을 in vitro로 연구하였다. 이 결과 유근피는 용량과 시간의존적으로 ALP의 활동을 향상시킴으로써 강화작용이 있음을확인할 수 있었다. 투여량은 최소치 $50{\mu}g/m{\ell}$에서 최대치 $150{\mu}g/m{\ell}$에서 관찰되었다. $100{\mu}g/m{\ell}$ UD에서 bone morphogenetic protein-2의 향상을 관찰할 수 있었으며, MC3T3-El 세포내의 ALP mRNA농도역시 증가 하였다. $60{\mu}g/m{\ell}$ UD에서 Type I collagen mRNA에 대해서 오랜 배양 기간 동안 약간의 증가를 나타내었으나 15-20일 사이의 배양에서는 급격히 유전자 발현을 억제하는 것으로 나타났다. 이러한 결과는 골아 세포의 감작을 통해 유근피가 골대사에 영향을 미침을 시사하는 것이다. 그러므로 추후 연구를 통하여 일반적인 골대사질환에 유근피를 적극적으로 활용할 수 있음을 알 수 있었다.

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Hard Tissue Analysis of NMR after Fluoride Administration

  • Kim, Hye-Young;Nam, Seoul-Hee;Han, Man-Seok
    • Journal of Magnetics
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    • 제21권4호
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    • pp.599-602
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    • 2016
  • Fluoride (F) is an important element for the mineralization of body tissues. The purpose of this study was to administer fluoride prenatally to rats to evaluate its beneficial concentration for rat bone using microstructural analysis, to analyze its effect on the bone structure, and to evaluate the effect of its transfer through rat placenta. Fourier transform infrared spectroscopy (FTIR) and nuclear magnetic resonance spectrometry (NMR) were performed. The $^{19}F$ NMR and $^{31}P$ NMR signals suggested the existence of fluoride ions in the apatite lattice because the signals were caused by the fluoride ions that were coupled to the phosphate atoms and were affected in the phosphate phases other than the element phases in the apatite. Consequently, if it was not affected too much, the desirable concentration of prenatal fluoride treatment could have a helpful effect on the bone crystal structure through placental fluoride transfer.

Carnosol induces the osteogenic differentiation of bone marrow-derived mesenchymal stem cells via activating BMP-signaling pathway

  • Abdallah, Basem M.
    • The Korean Journal of Physiology and Pharmacology
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    • 제25권3호
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    • pp.197-206
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    • 2021
  • Carnosol is a phenolic diterpene phytochemical found in rosemary and sage with reported anti-microbial, anti-oxidant, anti-inflammatory, and anti-carcinogenic activities. This study aimed to investigate the effect of carnosol on the lineage commitment of mouse bone marrow-derived mesenchymal stem cells (mBMSCs) into osteoblasts and adipocytes. Interestingly, carnosol stimulated the early commitment of mBMSCs into osteoblasts in dose-dependent manner as demonstrated by increased levels of alkaline phosphatase activity and Alizarin red staining for matrix mineralization. On the other hand, carnosol significantly suppressed adipogenesis of mBMSCs and downregulated both early and late markers of adipogenesis. Carnosol showed to induce osteogenesis in a mechanism mediated by activating BMP signaling pathway and subsequently upregulating the expression of BMPs downstream osteogenic target genes. In this context, treatment of mBMSCs with LDN-193189, BMPR1 selective inhibitor showed to abolish the stimulatory effect of carnosol on BMP2-induced osteogenesis. In conclusion, our data identified carnosol as a novel osteoanabolic phytochemical that can promote the differentiation of mBMSCs into osteoblasts versus adipocytes by activating BMP-signaling.

BK Knockout by TALEN-Mediated Gene Targeting in Osteoblasts: KCNMA1 Determines the Proliferation and Differentiation of Osteoblasts

  • Hei, Hongya;Gao, Jianjun;Dong, Jibin;Tao, Jie;Tian, Lulu;Pan, Wanma;Wang, Hongyu;Zhang, Xuemei
    • Molecules and Cells
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    • 제39권7호
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    • pp.530-535
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    • 2016
  • Large conductance calcium-activated potassium (BK) channels participate in many important physiological functions in excitable tissues such as neurons, cardiac and smooth muscles, whereas the knowledge of BK channels in bone tissues and osteoblasts remains elusive. To investigate the role of BK channels in osteoblasts, we used transcription activator-like effector nuclease (TALEN) to establish a BK knockout cell line on rat ROS17/2.8 osteoblast, and detected the proliferation and mineralization of the BK-knockout cells. Our study found that the BKknockout cells significantly decreased the ability of proliferation and mineralization as osteoblasts, compared to the wild type cells. The overall expression of osteoblast differentiation marker genes in the BK-knockout cells was significantly lower than that in wild type osteoblast cells. The BK-knockout osteoblast cell line in our study displays a phenotype decrease in osteoblast function which can mimic the pathological state of osteoblast and thus provide a working cell line as a tool for study of osteoblast function and bone related diseases.

탈회골기질 이식에 대한 치수세포의 반응에 관한 실험적 연구 (AN EXPERIMENTAL STUDY ON THE REACTION OF PULPAL CELLS TO THE IMPLANTED DEMINERALIZED BONE MATRIX)

  • 김선헌;김민석;오원만
    • Restorative Dentistry and Endodontics
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    • 제20권2호
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    • pp.744-757
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    • 1995
  • Implantation of demineralized bone matrices was done into the amputated pulp in vivo and sequential reaction of the pulpal ectomesenchymal cells was observed. The bone matrices, obtained from cat long bone were crushed into below $700{\mu}m$, demineralized with 0.5N HCl and allografted into pulp of molar teeth. At seven days after implantation many undifferentiated mesenchymal cells aggregated near the matrices in the pulpal tissue. At fourteen days after implantation, the cells differentiated into preosteoblast-like cells which have secretory cell characteristics. At one or two months after implantation osteoid tissue was formed. The cells, which are located at the surface of the tissue, contained abundant dilated rough endoplasmic reticulum, Golgi apparatus and secretory granules in the cytoplasm. The matrix of the tissue has less collagen fibers than those in normal dentin. These results suggest that the interaction of pulpal mesenchymal cells with demineralized bone matrix can be a model which induces mineralization.

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매식체 주위 열개형 골결손부에서 차단막과 골 이식술의 사용이 골 형성에 미치는 영향에 대한 임상 및 조직병리학적 연구 (Clinical and histopathological study on the effect of Nonresorbable membrane with Demineralized freeze dried bone graft for Guided Bone Regeneration in Implant Dehiscence Defects)

  • 권칠성;홍기석;임성빈;정진형;이종헌
    • Journal of Periodontal and Implant Science
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    • 제35권3호
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    • pp.687-702
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    • 2005
  • The purpose of this study is to examine the effect of non-resorbable membrane such as e-PTFE which was used with DFDB in bone regeneration on dehiscence defect in peri-implant area. Amomg the patients, who have recieved an implant surgery at the department of Periodontics in Dan Kook University Dental Hospital, 12 patients showed implant exposure due to the dehiscence defect and 15 implants of these 22 patients were the target of the treatment. Periodontists randomly applied $Gore-Tex^{(R)}$ to the patients and treated them with antibiotics for five days both preoperatively and postoperatively. Reentry period was 26 weeks on average in maxilla and 14 weeks on average in mandible. The results were as follows : 1. Dehiscence bone defect frequently appeared in premolar in mandible and anterior teeth in maxilla respectively. 2. Among 15 cases, 1 membrane exposure was observed and in this case, regenerated area was decreased. 3. In non-resorbable membrane, bone surface area $9.25{\pm}4.84$ preoperatively and significantly increased to $11.48{\pm}7.52$ postoperatively(0.05). 4. The increase of bone surface area in non-resorbable membrane was $2.23{\pm}3.38$. 5. As a result of histopathological finding, DFDB surrounded by new bone formation and lamellate bone, resorption of DFDB and bone mineralization was found. Also, fibrosis of connective tissue beneath the membrane was found. This study shows that the surgical method using DFDB and non-resorbable membrane on dehiscence defect in peri-implant area is effective in bone regeneration.

Elevated extracellular calcium ions promote proliferation and migration of mesenchymal stem cells via increasing osteopontin expression

  • Lee, Mi Nam;Hwang, Hee-Su;Oh, Sin-Hye;Roshanzadeh, Amir;Kim, Jung-Woo;Song, Ju Han;Kim, Eung-Sam;Koh, Jeong-Tae
    • Experimental and Molecular Medicine
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    • 제50권11호
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    • pp.2.1-2.16
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    • 2018
  • Supplementation of mesenchymal stem cells (MSCs) at sites of bone resorption is required for bone homeostasis because of the non-proliferation and short lifespan properties of the osteoblasts. Calcium ions ($Ca^{2+}$) are released from the bone surfaces during osteoclast-mediated bone resorption. However, how elevated extracellular $Ca^{2+}$ concentrations would alter MSCs behavior in the proximal sites of bone resorption is largely unknown. In this study, we investigated the effect of extracellular $Ca^{2+}$ on MSCs phenotype depending on $Ca^{2+}$ concentrations. We found that the elevated extracellular $Ca^{2+}$ promoted cell proliferation and matrix mineralization of MSCs. In addition, MSCs induced the expression and secretion of osteopontin (OPN), which enhanced MSCs migration under the elevated extracellular $Ca^{2+}$ conditions. We developed in vitro osteoclast-mediated bone resorption conditions using mouse calvaria bone slices and demonstrated $Ca^{2+}$ is released from bone resorption surfaces. We also showed that the MSCs phenotype, including cell proliferation and migration, changed when the cells were treated with a bone resorption-conditioned medium. These findings suggest that the dynamic changes in $Ca^{2+}$ concentrations in the microenvironments of bone remodeling surfaces modulate MSCs phenotype and thereby contribute to bone regeneration.

Effects of propofol-induced autophagy against oxidative stress in human osteoblasts

  • Kim, Eun-Jung;Choi, In-Seok;Yoon, Ji-Young;Park, Bong-Soo;Yoon, Ji-Uk;Kim, Cheul-Hong
    • Journal of Dental Anesthesia and Pain Medicine
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    • 제16권1호
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    • pp.39-47
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    • 2016
  • Background: Oxidative stress occurs during the aging process and other conditions such as bone fracture, bone diseases, and osteoporosis, but the role of oxidative stress in bone remodeling is unknown. Propofol exerts antioxidant effects, but the mechanisms of propofol preconditioning on oxidative stress have not been fully explained. Therefore, the aim of this study was to evaluate the protective effects of propofol against $H_2O_2$-induced oxidative stress on a human fetal osteoblast (hFOB) cell line via activation of autophagy. Methods: Cells were randomly divided into the following groups: control cells were incubated in normoxia (5% $CO_2$, 21% $O_2$, and 74% $N_2$) without propofol. Hydrogen peroxide ($H_2O_2$) group cells were exposed to $H_2O_2\;(200{\mu}M)$ for 2 h, propofol preconditioning (PPC)/$H_2O_2$ group cells were pretreated with propofol then exposed to $H_2O_2$, 3-methyladenine (3-MA)/PPC/$H_2O_2$ cells were pretreated with 3-MA (1 mM) and propofol, then were exposed to $H_2O_2$. Cell viability and apoptosis were evaluated. Osteoblast maturation was determined by assaying bone nodular mineralization. Expression levels of bone related proteins were determined by western blot. Results: Cell viability and bone nodular mineralization were decreased significantly by $H_2O_2$, and this effect was rescued by propofol preconditioning. Propofol preconditioning effectively decreased $H_2O_2$-induced hFOB cell apoptosis. However, pretreatment with 3-MA inhibited the protective effect of propofol. In western blot analysis, propofol preconditioning increased protein levels of collagen type I, BMP-2, osterix, and TGF-${\beta}1$. Conclusions: This study suggests that propofol preconditioning has a protective effect on $H_2O_2$-induced hFOB cell death, which is mediated by autophagy activation.