• 제목/요약/키워드: odontoblastic differentiation

검색결과 16건 처리시간 0.027초

MAPK 경로를 통한 HO-1과 분화 표지자 발현 (MAPK Signal Pathways in Regulation of Odontoblastic Differentiation by Induction of HO-1 in Human Dental Pulp Cells)

  • 김선주
    • 치위생과학회지
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    • 제10권4호
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    • pp.227-231
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    • 2010
  • The purpose of this study was to examine the MAPK signaling pathways involved in regulation of HO-1 and the odontoblast differentiation markers during the odontoblastic differentiation for HDPCs. We evaluated cell growth by MTT assay and differentiation marker mRNA expression by RT-PCR. When the cells were treated with p38 inhibitor (SB203580, $10{\mu}M$), JNK inhibitor (SP600125, $10{\mu}M$), and ERK inhibitor (PD98059, $20{\mu}M$) for 7 days, cell growth and expression of HO-1 and differentiation makers were significantly decreased in HDPCs. Our results suggest that odontoblastic differentiation is positively regulated by HO-1 induction in HDPCs via ERK, JNK, and p38 signaling pathways. Thus, pharmacological HO-1 induction might represent a potent therapeutic approach for pulp capping and the regeneration of HDPCs.

MicroRNA-27 Promotes Odontoblast Differentiation via Wnt1 Signaling

  • Cho, Ji-Ho;Kim, Su-Gwan;Park, Byung-Sun;Go, Dae-San;Park, Joo-Cheol;Kim, Do Kyung
    • International Journal of Oral Biology
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    • 제40권4호
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    • pp.197-204
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    • 2015
  • MicroRNA (miRNA, miR) is essential in regulating cell differentiation either by inhibiting mRNA translation or by inducing its degradation. However, the role of miRNA in odontoblastic cell differentiation is still unclear. In this study, we examined the molecular mechanism of miR-27-mediated regulation of odontoblast differentiation in MDPC-23 mouse odontoblastic cells derived from mouse dental papilla cells. The results of the present study demonstrated that the miR-27 expression increases significantly during MDPC-23 odontoblastic cell differentiation. Furthermore, miR-27 up-regulation promotes the differentiation of MDPC-23 cells and accelerates mineralization without cell proliferation. The over-expression of miR-27 significantly increased the expression levels of Wnt1 mRNA and protein. In addition, the results of target gene prediction revealed that Wnt1 mRNA has an miR-27 binding site in its 3'UTR, and is increased by miR-27. These results suggested that miR-27 promotes MDPC-23 odontoblastic cell differentiation by targeting Wnt1 signaling. Therefore, miR-27 is a critical odontoblastic differentiation molecular target for the development of miRNA based therapeutic agents in dental medicine.

Changes in SIRT gene expression during odontoblastic differentiation of human dental pulp cells

  • Jang, Young-Eun;Go, Su-Hee;Lee, Bin-Na;Chang, Hoon-Sang;Hwang, In-Nam;Oh, Won-Mann;Hwang, Yun-Chan
    • Restorative Dentistry and Endodontics
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    • 제40권3호
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    • pp.223-228
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    • 2015
  • Objectives: The aim of this study was to investigate the expression of 7 different sirtuin genes (SIRT1-SIRT7) in human dental pulp cells (HDPCs), and to determine the role of SIRTs in the odontoblastic differentiation potential of HDPCs. Materials and Methods: HDPCs were isolated from freshly extracted third molar teeth of healthy patients and cultulred in odontoblastic differentiation inducing media. Osteocalcin (OCN) and dentin sialophosphoprotein (DSPP) expression was analyzed to evaluate the odontoblastic differentiation of HDPCs by reverse transcription-polymerase chain reaction (RT-PCR), while alizarin red staining was used for the mineralization assay. To investigate the expression of SIRTs during odontoblastic differentiation of HDPCs, real time PCR was also performed with RT-PCR. Results: During the culture of HDPCs in the differentiation inducing media, OCN, and DSPP mRNA expressions were increased. Mineralized nodule formation was also increased in the 14 days culture. All seven SIRT genes were expressed during the odontogenic induction period. SIRT4 expression was increased in a time-dependent manner. Conclusions: Our study identified the expression of seven different SIRT genes in HDPCs, and revealed that SIRT4 could exert an influence on the odontoblast differentiation process. Further studies are needed to determine the effects of other SIRTs on the odontogenic potential of HDPCs.

인간치수세포 분화과정에서 과산화수소에 대한 Lysyl Oxidase의 역할 (Effects of Relative Lysyl Oxidase and Hydrogen Peroxide on Odontoblastic Differentiation)

  • 이화정
    • 치위생과학회지
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    • 제13권3호
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    • pp.321-329
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    • 2013
  • 과산화수소는 치아미백에 널리 사용되는 물질로 과다 사용시 치수세포에 손상을 일으킬 수 있다. 본 연구의 목적은 활성산소인 과산화수소에 의해 유도되는 상아모세포의 단계별 분화와 LOX isoforms과의 관계를 밝히고자 하였다. 치수세포에 분화유도 배지와 과산화수소를 시간과 농도별로 처리한 후 LOX 유전자 발현은 RT-PCR로 측정하였고, LOX enzyme activity는 고감도 형광분석으로 확인하였다. 또한 가장 많은 발현억제를 보인 LOX와 LOXL을 선택하여 siRNA 처리 후 분화표지자의 발현변화와 LOX enzyme activity를 확인하였다. 1. 과산화수소 처리에 따라 LOX, LOXL, LOXL3 mRNA 발현은 농도와 시간 의존적으로 감소하였으나 LOXL2와 LOXL4 mRNA는 변화가 없었다. 2. 과산화수소 처리된 LOX enzyme activity는 0.3 mM과 24시간에서 가장 많은 증가를 보였다. 3. ALP, OPN, OCN의 mRNA 발현은 LOX와 LOXL siRNAs 모두에서 억제되었고, DMP1과 DSPP는 LOX siRNA에서 더 많은 억제 효과를 보였다. 하지만, 분화단계별(초기, 중기, 말기) 차이는 보이지 않았다. 4. LOX와 LOXL siRNAs를 처리하여 LOX enzyme activity를 측정한 결과 LOX siRNA를 처리한 실험군에서 더 많은 억제효과를 보였다. 이러한 결과는 상아모세포 성장과 분화과정에 낮은 농도의 과산화수소가 분화를 유도하고 여기에 LOX가 관련됨을 알 수 있었다. 결론적으로, 과산화수소는 LOX 유전자 발현조절을 통해 치수세포의 성장과 분화에서 중추적인 역할을 할 것이라고 생각된다.

Nicotinamide phosphoribosyltransferase regulates the cell differentiation and mineralization in cultured odontoblasts

  • Kang, Kyeong-Rok;Kim, Jae-Sung;Seo, Jeong-Yeon;Lim, HyangI;Kim, Tae-Hyeon;Yu, Sun-Kyoung;Kim, Heung-Joong;Kim, Chun Sung;Chun, Hong Sung;Park, Joo-Cheol;Kim, Do Kyung
    • The Korean Journal of Physiology and Pharmacology
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    • 제26권1호
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    • pp.37-45
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    • 2022
  • The aim of the present study was to investigate the physiological role of nicotinamide phosphoribosyltransferase (NAMPT) associated with odontogenic differentiation during tooth development in mice. Mouse dental papilla cell-23 (MDPC-23) cells cultured in differentiation media were stimulated with the specific NAMPT inhibitor, FK866, and Visfatin (NAMPT) for up to 10 days. The cells were evaluated after 0, 4, 7, and 10 days. Cell viability was measured using the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay. The mineralization assay was performed by staining MDPC-23 cells with Alizarin Red S solution. After cultivation, MDPC-23 cells were harvested for quantitative PCR or Western blotting. Analysis of variance was performed using StatView 5.0 software (SAS Institute Inc., Cary, NC, USA). Statistical significance was set at p < 0.05. The expression of NAMPT increased during the differentiation of murine odontoblast-like MDPC-23 cells. Furthermore, the up-regulation of NAMPT promoted odontogenic differentiation and accelerated mineralization through an increase in representative odontoblastic biomarkers, such as dentin sialophosphoprotein, dentin matrix protein-1, and alkaline phosphatase in MDPC-23 cells. However, treatment of the cells with the NAMPT inhibitor, FK866, attenuated odontogenic differentiation, as evidenced by the suppression of odontoblastic biomarkers. These data indicate that NAMPT regulated odontoblastic differentiation through the regulation of odontoblastic biomarkers. The increase in NAMPT expression in odontoblasts was closely related to the formation of the extracellular matrix and dentin via the Runx signaling pathway. Therefore, these data suggest that NAMPT is a critical regulator of odontoblast differentiation during tooth development.

Effect of Metformin on Cell Growth and Differentiation in Cultured Odontoblasts

  • Oh, Chang Young;Kim, Su-Gwan;Go, Dae-San;Yu, Sun-Kyoung;Kim, Tae-Hoon;Kim, Chun Sung;Park, Joo-Cheol;Kim, Do Kyung
    • International Journal of Oral Biology
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    • 제42권2호
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    • pp.39-45
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    • 2017
  • Metformin (1,1-dimethylbiguanide hydrochloride), derived from French lilac (Galega officinalis), is a first-line anti-diabetic drug prescribed for patients with type 2 diabetes. However, the role of metformin in odontoblastic cell differentiation is still unclear. This study therefore undertook to examine the effect of metformin on regulating odontoblast differentiation in MDPC-23 mouse odontoblastic cells derived from mouse dental papilla cells. As compared to controls, metformin significantly accelerated the mineralization, significantly increased and accelerated the expressions of ALP and Col I mRNAs, and significantly increased the accelerated expressions of DSPP and DMP-1 mRNAs, during differentiation of MDPC-23 cells. There was no alteration in cell proliferation of MDPC-23 cells, on exposure to metformin. These results suggest that the effect of metformin on MDPC-23 mouse odontoblastic cells derived from mouse dental papilla cells, facilitates the odontoblast differentiation and mineralization, without altering the cell proliferation.

인간치수세포에서 상아모세포의 분화과정 동안 Lysyl Oxidase Family의 역할 (Role of Lysyl Oxidase Family during Odontoblastic Differentiation of Human Dental Pulp Cells Induced with Odontogenic Supplement)

  • 이화정;한수연
    • 치위생과학회지
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    • 제13권3호
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    • pp.296-303
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    • 2013
  • LOX는 결합조직의 세포외기질에 존재하여 교원섬유와 탄성섬유의 교차결합을 촉진시키는 핵심적인 효소이다. 뼈세포에서 세포분화 및 세포이동과 관련된 LOX의 역할은 보고되었으나, 상아모세포 분화에서 LOX에 대한 직접적인 효과는 거의 알려지지 않았다. 이 연구에서는 인간치수세포에서 상아모세의 분화과정 동안 LOX의 역할에 대해 실험하였다. 치수세포에 저 혈청 분화유도 배지를 처리하여 0, 1, 3, 7, 14일 동안 배양하였다. 세포성장은 세포계수, 분화와 관련된 유전자들은 RT-PCR, 광물화는 alrizarin red S 염색으로 각각 실험하였다. LOX 유전자 발현은 RT-PCR로 측정하였고, LOX 효소활성은 고감도 형광분석을 시행하였다. 1. 세포성장은 저 혈청 분화유도 배지에서 시간 의존적으로 증가하였다. 2. 분화표지자인 ALP, OPN, OCN, DMP1, DSPP는 시간 의존적으로 발현되었으나 초기, 중기, 말기에 대한 차별화는 이루어지지 않았다. 3. 광물화는 3일부터 관찰되기 시작하여 14일까지 증가되었다. 4. LOX와 LOXL은 mRNA 발현이 7일까지 증가되었고, 14일에서 큰 감소를 보였다. 하지만, LOXL3와 LOXL4 mRNA는 낮은 발현을 보였고, LOXL2 mRNA는 발현되지않았다. 5. Collagen type I mRNA는 7일까지 증가하다가 14일에서 의미있게 감소를 보였고, collagen type IV는 낮은 mRNA 발현을 보였다. 6. LOX 효소 활성은 분화유도기간 중 7일에서 가장 많은 발현을 보였고, 교원질 1형 기질이 교원질 IV형 기질보다 두드러진 발현을 보였다. 이상의 결과를 종합해 볼 때, LOX isoform의 발현과 LOX 효소 활성은 인간치수세포에서 상아모세포 분화과정 동안 중요한 조절자로 사료된다.

Vitamin D Promotes Odontogenic Differentiation of Human Dental Pulp Cells via ERK Activation

  • Woo, Su-Mi;Lim, Hae-Soon;Jeong, Kyung-Yi;Kim, Seon-Mi;Kim, Won-Jae;Jung, Ji-Yeon
    • Molecules and Cells
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    • 제38권7호
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    • pp.604-609
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    • 2015
  • The active metabolite of vitamin D such as $1{\alpha}$,25-dihydroxyvitamin ($D_3(1{\alpha},25(OH)_2D_3)$ is a well-known key regulatory factor in bone metabolism. However, little is known about the potential of vitamin D as an odontogenic inducer in human dental pulp cells (HDPCs) in vitro. The purpose of this study was to evaluate the effect of vitamin $D_3$ metabolite, $1{\alpha},25(OH)_2D_3$, on odontoblastic differentiation in HDPCs. HDPCs extracted from maxillary supernumerary incisors and third molars were directly cultured with $1{\alpha},25(OH)_2D_3$ in the absence of differentiation-inducing factors. Treatment of HDPCs with $1{\alpha},25(OH)_2D_3$ at a concentration of 10 nM or 100 nM significantly upregulated the expression of dentin sialophosphoprotein (DSPP) and dentin matrix protein1 (DMP1), the odontogenesis-related genes. Also, $1{\alpha},25(OH)_2D_3$ enhanced the alkaline phosphatase (ALP) activity and mineralization in HDPCs. In addition, $1{\alpha},25(OH)_2D_3$ induced activation of extracellular signal-regulated kinases (ERKs), whereas the ERK inhibitor U0126 ameliorated the upregulation of DSPP and DMP1 and reduced the mineralization enhanced by $1{\alpha},25(OH)_2D_3$. These results demonstrated that $1{\alpha},25(OH)_2D_3$ promoted odontoblastic differentiation of HDPCs via modulating ERK activation.

Effect of Resveratrol on Cell Differentiation and Mineralization in Cultured Odontoblasts

  • Shin, Sang Hun;Kim, Jae-Sung;Kim, Su-Gwa;Go, Dae-San;Yu, Sun-Kyoung;Kim, Chun Sung;Park, Joo-Cheol;Kim, Do Kyung
    • International Journal of Oral Biology
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    • 제43권3호
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    • pp.133-140
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    • 2018
  • Resveratrol (3,4',5,-trihydroxystilbene), a phytoalexin present in grapes, exerts a variety of actions to reduce superoxides, prevents diabetes mellitus, and inhibits inflammation. Resveratrol acts as a chemo-preventive agent and induces apoptotic cell death in various cancer cells. However, the role of resveratrol in odontoblastic cell differentiation is unclear. In this study, the effect of resveratrol on regulating odontoblast differentiation was examined in MDPC-23 mouse odontoblastic cells derived from mouse dental papilla cells. Resveratrol significantly accelerated mineralization as compared with the control culture in differentiation of MDPC-23 cells. Resveratrol significantly increased expression of ALP mRNA as compared with the control in differentiation of MDPC-23 cells. Resveratrol significantly accelerated expression of Col I mRNA as compared with the control in differentiation of MDPC-23 cells. Resveratrol significantly increased expressions of DSPP and DMP-1 mRNAs as compared with the control in differentiation of MDPC-23 cells. Treatment of resveratrol did not significantly affect cell proliferation in MDPC-23 cells. Results suggest resveratrol facilitates odontoblast differentiation and mineralization in differentiation of MDPC-23 cells, and may have potential properties for development and clinical application of dentin regeneration materials.

The Role of Autonomous Wntless in Odontoblastic Differentiation of Mouse Dental Pulp Cells

  • Choi, Hwajung;Kim, Tak-Heun;Ko, Seung-O;Cho, Eui-Sic
    • Journal of Korean Dental Science
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    • 제9권1호
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    • pp.9-18
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    • 2016
  • Purpose: Wnt signaling plays an essential role in the dental epithelium and mesenchyme during tooth morphogenesis. Deletion of the Wntless (Wls) gene in odontoblasts appears to reduce canonical Wnt activity, leading to inhibition of odontoblast maturation. However, it remains unclear if autonomous Wnt ligands are necessary for differentiation of dental pulp cells into odontoblast-like cells to induce reparative dentinogenesis, one of well-known feature of pulp repair to form tertiary dentin. Materials and Methods: To analyze the autonomous role of Wls for differentiation of dental pulp cells into odontoblast-like cells, we used primary dental pulp cells from unerupted molars of Wls-floxed allele mouse after infection with adenovirus for Cre recombinase expression to knockout the floxed Wls gene or control GFP expression. The differentiation of dental pulp cells into odontoblast-like cells was analyzed by quantitative real-time polymerase chain reaction. Result: Proliferation rate was significantly decreased in dental pulp cells with Cre expression for Wls knockout. The expression levels of Osterix (Osx), runt-related transcription factor 2 (Runx2), and nuclear factor I-C (Nfic) were all significantly decreased by 0.3-fold, 0.2-fold, and 0.3-fold respectively in dental pulp cells with Wls knockout. In addition, the expression levels of Bsp, Col1a1, Opn, and Alpl were significantly decreased by 0.7-fold, 0.3-fold, 0.8-fold, and 0.6-fold respectively in dental pulp cells with Wls knockout. Conclusion: Wnt ligands produced autonomously are necessary for proper proliferation and odontoblastic differentiation of mouse dental pulp cells toward further tertiary dentinogenesis.