• 제목/요약/키워드: MC3T3-E1 Cells

검색결과 202건 처리시간 0.029초

혈관 플라그 형성 저해단백질에 대한 아연의 기능 (Role of zinc for calcification inhibitor protein in vascular smooth muscle cell plaque formation)

  • 신미영;권인숙
    • Journal of Nutrition and Health
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    • 제49권1호
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    • pp.59-62
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    • 2016
  • Purpose: Zinc, a biomineral present within and outside cells, manages various cellular mechanisms. In this study, we examined whether zinc was involved in vascular smooth muscle cell (VSMC) calcification via regulation of calcification inhibitor protein, osteopontin (OPN). Methods: Rat aorta cell line (A7r5 cells) and primary vascular smooth muscle cells (pVSMCs) from rat aorta were cultured with phosphate (1-5 mM) and zinc ($0-15{\mu}M$) as appropriate, along with osteoblasts (MC3T3-E1) as control. The cells were then stained for Ca and P deposition for calcification examination as well as osteopontin expression as calcification inhibitor protein was measured. Results: Both Ca and phosphate deposition increased as the addition of phosphate increased. In the same manner, the expression of osteopontin was upregulated as the addition of phosphate increased in both cell types. When zinc was added, Ca and P deposition decreased in VSMCs, while it increased in osteoblasts. Conclusion: The results imply that zinc may prevent VSMC calcification by stimulating calcification inhibitor protein OPN synthesis in VSMCs.

지르코니아 표면처리가 골유착에 미치는 영향 (Investigation of effect of zirconia on osseointegration by surface treatments)

  • 정진우;송영균
    • 구강회복응용과학지
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    • 제37권1호
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    • pp.23-30
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    • 2021
  • 목적: 본연구의 목적은 다양한 산용액을 이용하여 지르코니아의 표면을 처리하여 표면의 양상과 골유착에 미치는 영향을 알아보는 것이다. 연구 재료 및 방법: 준비된 지르코니아 디스크에 다양한 산용액 및 광촉매 산부식을 이용하여 표면을 처리하였다. 각 시편을 SEM으로 관찰하고, 골유착을 관찰하기 위해 MC3T3E-1 세포를 이용하여 형광염색과 역전사 중합효소 연쇄반응을 통해 평가하였다. 결과: 처리한 방법에 따라 다양한 거칠기를 보였다. 불산처리군은 표면의 거칠기가 증가하였으나 약한 네트워크 구조를 가지고 있었다. 골유착능에서는 광촉매 산부식을 시행한 군에서 더 좋은 결과를 보였다(P < 0.05). 결론: 지르코니아를 광촉매 산부식방법으로 처리할 경우 다른 산처리방법에 비해 골유착능을 높이는데 효과적일 것으로 사료된다.

대장균(大腸菌)의 xylRjT 변이주(變異株)의 분리(分離) 및 그 특성(特性) (Isolation and Characterization of xylR/TMutants in Escherichia coli)

  • 노동현;이인구
    • Current Research on Agriculture and Life Sciences
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    • 제10권
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    • pp.125-135
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    • 1992
  • Xylose 오페론의 조절기구(調節機構)를 밝히고 xyl 유전자(遺傳子)를 가진 재조합유전자(再組合遺傳子)들의 수용세포(受容細胞)로 사용(使用)하기 위해 대장균(大腸菌)에 NTG를 처리(處理)하여 xylose를 이용(利用)할 수 없는 xyl 변이주(變異株)를 최종(最終) 9주(株) 선발(選拔)하였다. MC-Xyl 한천평판배지(寒天平板培地)에서 백색(白色) 콜로니로 분리(分離)된 xyl 변이주(變異株)들은 모두 LB와 DM-Glc 배지(培地)에서는 친주(親株)인 E. coli JM109와 동일(同一)하게 자랐으나, DM-Xyl 배지(培地)에서는 생육(生育)하지 못했다. 그러나 xyl 유전자(遺傳子) 전체(全體)를 가진 pBX1으로 형질변형(形質變形)시킨 결과(結果) 모두MC-Xyl 한천평판배지(寒天平板培地)에서는 적색(赤色) 콜로니를 나타내고 xylose isomerase 활성(活性)도 친주(親株)와 유사(類似)하게 되살아 났다. 이들의 부귀(復歸) 돌연변이빈도(突然變異頻度)는 $10^{-8}{\sim}10^{-11}$ 이하(以下)로 유전적(遺傳的)으로 안정(安定)되었다. 분리(分離)된 xyl 변이주(變異株)와 그들의 형질전환주(形質轉換株)에 대하여 MC-Xyl과 MC-Xylu 한천평판배지(寒天平板培地)에서 콜로니의 색(色)을 관찰(觀察)하였고 xylose isomerase와 xylulokinase의 활성(活性)을 측정(測定)하여 다시 xylT 변이주(變異株) 3주(株)(DH13, DH121, DH125) xylA 변이주(變異株) 1주(株)(DH77), xylB 변이주(變異株) 1주(株)(DH43) 그리고 xylose 존재하(存在下)에서 이들 효소(酵素)들의 생성(生成)을 조절(調節)하는 xylR 변이주(變異株) 3주(株)(DH10, DH53, DH60), 마지막으로 xylR, A 유전자부위(遺傳子部位)에 변이(變異)가 일어난 것(DH35)으로 최종선별(最終選別)하였다.

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고농도 포도당이 뼈모세포와 치주인대세포의 세포자멸사에 미치는 영향에 관한 연구 (Effect of Glucose at High Concentrations on the Apoptosis of the Cultured Periodontal Ligament Cells and Osteoblasts)

  • 박성호;주성숙;홍정표;신제원
    • Journal of Oral Medicine and Pain
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    • 제32권4호
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    • pp.357-364
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    • 2007
  • 고농도 포도당이 뼈모세포와 치주인대세포의 세포자멸사에 미치는 영향과 그 경로를 알아보기 위하여 뼈모세포주인 MC3T3-E1 (E1) 세포와 사람 치주인대로부터 일차배양을 통해 얻은 치주인대세포를 1,000 mg/L 농도의 포도당이 포함된 배양액 (대조군)과 4,500 mg/L 농도의 포도당이 포함된 배양액 (실험군)으로 나누어 24시간과 48시간 배양하였다. 그 후, ELISA assay를 통해 p38 MAPK와 caspase-3의 발현을 평가하고 Western blot을 통해 JNK-1과 ERK-1의 발현을 평가하여 다음과 같은 결론을 얻었다. 1. 뼈모세포와 치주인대세포 모두 대조군에 비해 실험군에서 caspase-3와 p38 MAPK 발현이 증가하였다. 2. 실험군에서의 caspase-3와 p38 MAPK 발현은 뼈모세포에 비해 치주인대세포에서 더욱 크게 증가하였다. 3. 뼈모세포와 치주인대세포 모두 대조군에 비해 실험군에서 JNK-1 발현이 증가하였다. 4. 뼈모세포와 치주인대세포 모두 ERK-1 발현에는 변화가 없었다. 이상의 결과로 보아, 고혈당 조건에 의해 뼈모세포와 치주인대세포의 세포자멸사가 증가하며, 치주인대세포가 고혈당 조건에 더욱 민감하게 반응하여 세포자멸사가 크게 증가하는 것으로 생각된다. 또한 이들 세포의 세포자멸사 과정은 p38 MAPK와 JNK-1 경로가 관여하며 ERK-1 경로는 관여하지 않는 것으로 추정된다.

치과용 임플란트 주위 뼈모세포에 대한 전기자극의 영향에 관한 연구 (The Effect of Electrical Stimulation on Osteoblast Surrounding Dental Implant)

  • 우경엽;권긍록;최부병
    • 구강회복응용과학지
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    • 제19권3호
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    • pp.195-206
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    • 2003
  • Several factors can affect the formation of bone tissues surrounding implants. One of the factors is electrical stimulation. It is known to change the movement of cells, form and destroy cells, and alter concentration and chemical component of soft tissues and bones. The effect of electrical stimulation on bone formation can vary according to the intensity of electric currents, stimulating time, the method of sending electric currents, and tissues and cells currents are applied to. This study examines how various enviroments affect osteoblasts. (1) effect on osteoblast with varying intensity of currents Osteoblast-like cells were raised on four plates where implants can be placed. A constant current sink (MC3T3-E1) that can adjust the intensity and stimulating time of electric currents was used. The four plates were stimulated with $0{\mu}A$, $10{\mu}A$, $20{\mu}A$, and $40{\mu}A$, respectively. After 24 hours of stimulation, the number and distribution of cells surrounding implants were examined. (2) effect on osteoblast with varying conditions The 3 study was performed with same method. (1) The change of attached cell number 72-hour after application of various currents (2) The change of attached cell number 72-hour after application of various interval (3) The comparison of attached cell number by implant surface texture The following are the results: 1. The distribution and density of cells surrounding implant is highest under the intensity of electric currents of $20{\mu}A$. 2. The number of cells attached implants is highest under the intensity of electric currents of $20{\mu}A$. 3. The number of cells attached implants is highest under continous electric currents 4. The number of cells attached implants is not different by implant surface texture.

Microgrooves on titanium surface affect peri-implant cell adhesion and soft tissue sealing; an in vitro and in vivo study

  • Lee, Hyo-Jung;Lee, Jaden;Lee, Jung-Tae;Hong, Ji-Soo;Lim, Bum-Soon;Park, Hee-Jung;Kim, Young-Kwang;Kim, Tae-Il
    • Journal of Periodontal and Implant Science
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    • 제45권3호
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    • pp.120-126
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    • 2015
  • Purpose: With the significance of stable adhesion of alveolar bone and peri-implant soft tissue on the surface of titanium for successful dental implantation procedure, the purpose of this study was to apply microgrooves on the titanium surface and investigate their effects on peri-implant cells and tissues. Methods: Three types of commercially pure titanium discs were prepared; machined-surface discs (A), sandblasted, large-grit, acid-etched (SLA)-treated discs (B), SLA and microgroove-formed discs (C). After surface topography of the discs was examined by confocal laser scanning electron microscopy, water contact angle and surface energy were measured. Human gingival fibroblasts (hGFs) and murine osteoblastic cells (MC3T3-E1) were seeded onto the titanium discs for immunofluorescence assay of adhesion proteins. Commercially pure titanium implants with microgrooves on the coronal microthreads design were inserted into the edentulous mandible of beagle dogs. After 2 weeks and 6 weeks of implant insertion, the animal subjects were euthanized to confirm peri-implant tissue healing pattern in histologic specimens. Results: Group C presented the lowest water contact angle ($62.89{\pm}5.66{\theta}$), highest surface energy ($45{\pm}1.2mN/m$), and highest surface roughness ($Ra=22.351{\pm}2.766{\mu}m$). The expression of adhesion molecules of hGFs and MC3T30E1 cells was prominent in group C. Titanium implants with microgrooves on the coronal portion showed firm adhesion to peri-implant soft tissue. Conclusions: Microgrooves on the titanium surface promoted the adhesion of gingival fibroblasts and osteoblastic cells, as well as favorable peri-implant soft tissue sealing.

Salicylate Regulates Cyclooxygenase-2 Expression through ERK and Subsequent $NF-_kB$ Activation in Osteoblasts

  • Chae, Han-Jung;Lee, Jun-Ki;Byun, Joung-Ouk;Chae, Soo-Wan;Kim, Hyung-Ryong
    • The Korean Journal of Physiology and Pharmacology
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    • 제7권4호
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    • pp.239-246
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    • 2003
  • The expression of cyclooxygenase-2 (COX-2) is a characteristic response to inflammation and can be inhibited with sodium salicylate. $TNF-{\alpha}$ plus $IFN-{\gamma}$ can induce extracellular signal-regulated kinase (ERK), IKK, $I{\kappa}B$ degradation and NF-${\kappa}B$ activation. The inhibition of the ERK pathway with selective inhibitor, PD098059, blocked cytokine-induced COX-2 expression and $PGE_2$ release. Salicylate treatment inhibited COX-2 expression induced by $TNF-{\alpha}$/$IFN-{\gamma}$ and regulated the activation of ERK, IKK and $I{\kappa}B$ degradation and subsequent NF-${\kappa}B$ activation in MC3T3E1 osteoblasts. Furthermore, antioxidants such as catalase, N-acetyl-cysteine or reduced glutathione attenuated COX-2 expression in combined cytokines-treated cells, and also inhibited the activation of ERK, IKK and NF-${\kappa}B$ in MC3T3E1 osteoblasts. In addition, $TNF-{\alpha}$/$IFN-{\gamma}$ stimulated ROS release in the osteoblasts. However, salicylate had no obvious effect on ROS release in DCFDA assay. The results showed that salicylate inhibited the activation of ERK and IKK, $I{\kappa}B$ degradation and NF-${\kappa}B$ activation independent of ROS release and suggested that salicylate exerts its anti-inflammatory action in part through inhibition of ERK, IKK, $I{\kappa}B$, $NF-{\kappa}B$ and resultant COX-2 expression pathway.

Chitosan/hydroxyapatite composite coatings on porous Ti6Al4V titanium implants: in vitro and in vivo studies

  • Zhang, Ting;Zhang, Xinwei;Mao, Mengyun;Li, Jiayi;Wei, Ting;Sun, Huiqiang
    • Journal of Periodontal and Implant Science
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    • 제50권6호
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    • pp.392-405
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    • 2020
  • Purpose: Titanium implants are widely used in the treatment of dentition defects; however, due to problems such as osseointegration failure, peri-implant bone resorption, and periimplant inflammation, their application is subject to certain restrictions. The surface modification of titanium implants can improve the implant success rate and meet the needs of clinical applications. The goal of this study was to evaluate the effect of the use of porous titanium with a chitosan/hydroxyapatite coating on osseointegration. Methods: Titanium implants with a dense core and a porous outer structure were prepared using a computer-aided design model and selective laser sintering technology, with a fabricated chitosan/hydroxyapatite composite coating on their surfaces. In vivo and in vitro experiments were used to assess osteogenesis. Results: The quasi-elastic gradient and compressive strength of porous titanium implants were observed to decrease as the porosity increased. The in vitro experiments demonstrated that, the porous titanium implants had no biological toxicity; additionally, the porous structure was shown to be superior to dense titanium with regard to facilitating the adhesion and proliferation of osteoblast-like MC3T3-E1 cells. The in vivo experimental results also showed that the porous structure was beneficial, as bone tissue could grow into the pores, thereby exhibiting good osseointegration. Conclusions: Porous titanium with a chitosan/hydroxyapatite coating promoted MC3T3-E1 cell proliferation and differentiation, and also improved osseointegration in vitro. This study has meaningful implications for research into ways of improving the surface structures of implants and promoting implant osseointegration.

Prostaglandin과 Dibutyryl cAMP가 조골세포의 활성과 파골세포 형성에 미치는 영향 (The Effects of Prostaglandin and Dibutyryl cAMP on Osteoblastic Cell Activity and Osteoclast Generation)

  • 목성규;유형근;신형식
    • Journal of Periodontal and Implant Science
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    • 제26권2호
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    • pp.448-468
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    • 1996
  • To maintain its functional integrity, bone is continuously remodelled by a process involving resorption by osteoeclasts and formation by osteoblasts, In order to respond to changes in the physical environment or to trauma with the relevant action, this process is strictly regulated by locally synthesized or systemic fators, Prostaglandin $E_2(PGE_2$) is perhaps one of the best studied factors, having been known to affect bone cell function for several decades.$PGE_2$ has both anabolic and catabolic activities. Excess of $PGE_2$ has been implicated in a number of pathological states associated with bone loss in a number of chronic inflammatory conditions such as periodontal disease and rheumatoid arthritis. $PGE_2$ and other arachidonic acid metabolites have been shown to be potent stimulators of osteoclastic bone resorption in organ culture. The anabolic effects of $PGE_2$ were first noticed when an increase in periosteal woven bone formation was seen after the infusion of $PGE_2$ into infants in order to prevent closure of the ductus arteriosus. The cellular basis for the catabolic actions of $PGE_2$ has been well characterized. $PGE_2$increases osteoclast recruitment in bone marrow cell cultures. Also $PGE_2$ has a direct action on osteoclast serving to inhibit activity and can also indirectly activate osteoclast via other cells in the vicinity, presumably osteoblast. The cellular mechanisms for the anabolic actions of $PGE_2$ are not nearly so well understood. The purpose of this paper was to study the effects of $PGE_2$ and dibutyl(DB)cAMP on osteoblastic clone MC3T3El cells and on the generation of osteoclasts from their precursor cells. The effect of $PGE_2$ and DBcAMP on the induction of alkaline phoaphatase(AlP) was investigated in osteoblastic clone MC3T3El cells cultured in medium containing 0.4% fetal bovine serum. $PGE_2$ and DBcAMP stimulated ALP activity and MTT assay in the cells in a dose-dependent manner at concentrations of lO-SOOng/ml. Cycloheximide, protein synthesis inhibitor, inhibited the stimulative effect of $PGE_2$ and DBcAMP on ALP activity in the cells. $PGE_2$also increased the intracellular cAMP content in a dose-dependent fashion with a maximal effect at 500ng/ml. The effect of $PGE_2$ on the generation of osteoclasts was investigated in a coculture system of mouse bone marrow cells with primary osteoblastic cells cultured in media containing 10% fetal bovine serum.After cultures, staining for tartrate-resistant acid phosphatase(TRAP)-marker enzyme of osteoclast was performed. The TRAP(+) multinucleated cells(MNCs), which have 3 or more nuclei, were counted. More TRAP(+) MNCs were formed in coculture system than in control group. $PGE_2(10^{-5}10^{-6}M)$ stimulated the formation of osteoclast cells from mouse bone marrow cells in culture. $PGE_2(10^{-6}M)$ stimulated the formation of osteoclast cells from mouse bone marrow cells in coculture of osteoblastic clone MC3T3E1 cells This results suggest that $PGE_2$ stimulates the differentiation of osteoblasts and generation of osteoclast, and are involved in bone formation, as well as in bone resorption.

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덱사메타존이 골아유사세포의 성장과 분화에 미치는 영향 (The Effects of Dexamethasone on Growth and Differentiation of Osteoblast-like Cell)

  • 이재목
    • Journal of Periodontal and Implant Science
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    • 제29권2호
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    • pp.277-289
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    • 1999
  • The ultimate aim of periodontal treatment is periodontal regeneration, which necessiates the regeneration of bone tissues. To evaluate the effects of Dex growth and differentiation of MC3T3-E1 cells, cells were seeded in alpha-modified eagle medium containing 10% fetal bovine serum, 10mM beta-glycerophosphate , $50{\mu}g/ml$ of ascorbic acid, with or without $10^{-7}M$ Dex and examined cell proliferation activities, alkaline phosphatase activities, and bone nodule formation until 25days. The results were as follows : 1. In Dex group, cell proliferation activities were lower until 15 days compared to control group. Bone nodules formation were showed at 10 days. 2. In the time-response effect, ALP activities were increased until the 10 days in control groups thereafter decreased and ALP activities of Dex group were lower aspect than control group until the 10 days In this study, bone nodule formation of osteoblast-like cells were accelerated by Dex and cell proliferation activities, ALP activity of Dex group showed lower than control group. Dex was considered that it did suppress initial growth, but accerelate mineralization of osteoblast-like cells.

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