• 제목/요약/키워드: periodontal ligament

검색결과 508건 처리시간 0.025초

쥐치아재식 모델에서 치주인대의 처리방법에 따른 치주조직의 치유와 치근흡수에 관한 연구 (THE EFFECT OF TWO KINDS OF PERIODONTAL LIGAMENT MANAGEMENT UPON PERIODONTAL HEALING AND ROOT RESORPTION AFTER REPLANTATION IN RATS)

  • 권소란;금기연;이승종
    • Restorative Dentistry and Endodontics
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    • 제25권3호
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    • pp.338-358
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    • 2000
  • The effect of bench drying or removal of the periodontal ligament with NaOCl upon periodontal healing and root resorption after replantation of molars was studied in rats. A total of 40 Sprague-Dawley female rats were used and fed a powdered purina rat chow diet containing 0.4% beta-aminoproprionitrile. The maxillary first molars were extracted and the periodontal ligaments were removed either by bench drying for 15 minutes or by immersion in 2.5% NaOCl solution. The rats were sacrificed at 5, 10, and 21 days by heart infusion. In order to observe the effect of 0.5% stannous fluoride, $10^{-4}M$, $10^{-2}M$, and 1M etidronate disodium on the early stage of periodontal healing, the periodontal ligament was removed with 2.5% NaOCl followed by immersion of the molar in the respective solutions for 5 minutes. The rats were sacrificed after 10 days and the following results were obtained. 1. The removal of the periodontal ligament with 2.5% NaOCl seemed to be more effective than bench drying, since the resorption area in the NaOCl treated group showed a gradual increase whereas a decline in resorption area from 5 days to 21 days was observed in the bench dried group. 2. The application of 0.5% stannous fluoride seemed to enhance the periodontal ligament attachment and active migration of fibroblasts could be observed. 3. The application of $10^{-4}M$, $10^{-2}M$, and 1M etidronate disodium led to a good periodontal ligament attachment. No evident areas of root resorption were found. 4. The use of ${\beta}$-APN made it possible to extract the maxillary first molar with all five roots intact.

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PDGF와 $TGF-{\beta}1$이 배양 인체 치은 섬유모세포와 치주인대세포의 활성에 미치는 영향 (EFFECT OF PDGF AND $TGF-{\beta}1$ ON CELL ACTIVITY OF HUMAN GINGIVAL FIBROBLAST AND PERIODONTAL LIGAM ENT CELL IN VITRO)

  • 정순규;남궁혁;신형식
    • Journal of Periodontal and Implant Science
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    • 제25권1호
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    • pp.133-145
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    • 1995
  • The migration and proliferation of periodontal ligament cells are desired goal of periodontal regeneration therapy. PDGF and $TGF-{\beta}1$ are well known to regulate the cell activity of mesenchymal origin cell. The purpose of this study was to determine the effects of these growth factors on human gingival fibroblast and periodontal ligament cell actvity, and to identify the regulatory effect of $TGF-{\beta}1$ on the response to PDGF by MIT assay. Human gingival fibroblast and periodontal ligament cells were cultured from extracted teeth for non-periodontal reason. Cultured human gingival fibroblast and periodontal ligament cells in vitro were treated with polyperpetide growth factor PDGF and $TGF-{\beta}1$ in both a dose and time - dependent manner. Cell morphology were determined by inverted microscope and cell acitivity were determined by MIT assay. The result of this study demonstrated that PDGF and $TGF-{\beta}1$ were not changed the morphology of these cell compared with control group. PDGF or $TGF-{\beta}1$ increased cell activity of periodontal ligament cell in dose and time dependent manner but gingival fibroblast were decreased to the level of control group at third day. Additionally, incubation with $TGF-{\beta}1$ addition to PDGF resulted in a enhanced cell activity of PDGF. Therefore, cell acitivty of gingival fibroblast were not changed compared with control group. This stiudy demonstrates that PDGF and $TGF-{\beta}1$ are major mitogens for human periodontal ligament cell in vitro, and $TGF-{\beta}1$ is a regulator of cell activity to PDGF in human gingival fibroblast and periodontal ligament cell.

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Bisphosphonate가 배양된 치주인대세포의 조골작용에 미치는 효과 (Effect of Bisphosphonate on Osteoblastic Activity of the Human Periodontal Ligament Cells in Vitro)

  • 김은영;김옥수;정현주
    • Journal of Periodontal and Implant Science
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    • 제31권1호
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    • pp.179-193
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    • 2001
  • previous studies have demonstrated an increase in bone mass and density with use of bisphosphonate in osteoporosis. This agent acts as an inhibitor of osteoclastic activity and results in increase of net osteoblastic activity. The purpose of the present study was to examine the effect of the bisphosphonate on osteoblastic activity of the human periodontal ligament cells in vitro. Periodontal ligament cells were primarily obtained from extracted healthy third molars. Cells of 4th to 6th passage were cultured in Dulbecco's modified Eagle's medium containing alendronate sodium or etidronate disodium at the concentration of $10^{-12}{\sim}10^{-6}mol/L$ in 5% $Co_2$ incubator at $37^{\circ}C$. Cell count and MTT assay for cellular activity were done at 2 to 7 days of culture. Alkaline phosphatase activity at 4 to 7 days of culture and formation of mineralized nodules at 28 days of culture with addition of $50{\mu}g/m{\ell}$ ascorbic acid, 10 nM${\beta}-glycerophosphate$, $10^{-7}M$ dexamethasone were evaluated. 1. Alendronate sodium Compared to the control, the proliferation of periodontal ligament cells was generally increased and the cellular activity was maintained at 2 days of culture and generally decreased at 7 days of culture. Alkaline phosphatase activity of periodontal ligament cells was inceased and the formation of mineralized nodules by periodontal ligament cells was enhanced compared to the control. 2. Etidronate disodium The proliferation of periodontal ligament cells was increased at 2 days of culture and decreased or maintained at 7 days of culture. Compared to the control, the cellular activity of periodontal ligament cells was generally decreased. Alkaline phosphatase activity of peridontal ligament cells was increased and the formation of mineralized nodules by periodontal ligament cells was enhanced compared to the control. These results suggest that alendronate sodium and etidronate disodium may have a potential effect on osteoblastic lineage of periodontal ligament cells, distinct from their inhibitory action on osteoclasts and could contribute to enhance periodontal regeneration and alveolar bone regeneration.

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수소이온 농도의 변화가 배양 인체 치주인대 세포의 활성에 미치는 영향 (BIOLOGICAL EFFECTS OF pH CONCENTRATION ON CULTURED HUMAN PERIODONTAL LIGAMENT CELL ACTIVITY IN VITRO)

  • 김성호;박귀운;유형근;신형식
    • Journal of Periodontal and Implant Science
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    • 제25권3호
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    • pp.539-556
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    • 1995
  • Periodontal therapeutic modalities should be re-establishing and regenerating the periodontal tissue previously lost to the disease. To achieve periodontal regeneration, periodontal ligament cells must selective migrate to the deneded root surface, attached and proliferated it. Local pH concentration is one of the most factors that periodontal regeneration. The aims of this study were to examine on biological effects of pH to the human periodontal ligament cells in vitro, especially on the cell morphology, attachment, activity, vitality and viability. Human periodontal ligament cells were cultured from extracted tooth for non-periodontal reason. Immediately after extraction, any soft tissue adhering to the cervical parts of the roots was carefully removed with a sterile curette. To produce different pH levels in the media, Eagle's MEM was adjusted from pH 6.6 to 8.2 in 0.2 intervals with 1 M NaOH and 1 N HCl. After cultivation, Then, Periodontal ligament cells were cultured at pH ranging from 6.6-8.2. attachment assay was done at 1, 2 day incubation and activity assay was done at 1, 2, 3 day incubation. The experiments were evaluated by scaning electron microscopic techniques (HITACHIX-650 Scaning Electron Microanalyzer, Tokyo, Japan), MTT assay, and the cultured periodontal ligament cells were fixed in neutral formalin for 24 hours and immunohistochemically processed by PCNA for proliferating ability. The surviving cells in the medium showed slightly increased volume and widening intercellular distances at low concentration of pH than control group (pH 7.4), and apparently shrinkage at high concentration of pH than control group (pH 7.4). The results of the statistical analysis from the experiment on attachment, vitality and viability were as follows. Attachment of periodontal ligament cells at 1st and 2nd day, similar attachment rate of low concentration pH compared with control value (pH 7.4). But above pH 8.0, attachment rate were statistically significant decrease from control value(P<0.05). Periodontal ligament cell's activities were maximum at pH 7.6 by MTT assay. Similar with control value at low concentration of pH. But, the activities were statistically significant decrease at high concentraration of pH(P<0.05). Cellular proliferating rate (PCNA index) were statistically significant decrease from control value at low and high concentration of pH(p<0.05). This results suggested that hjgh concentration pH, in other words, alkali pH was cytotoxic effects on human periodontal ligament cells in vitro.

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과잉치 치수 세포와 치주인대 세포의 유전자 발현 비교 (Comparison of Gene Expression from Supernumerary Dental Pulp and Periodontal Ligament Stem Cells)

  • 이상은;김종빈;김종수
    • 대한소아치과학회지
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    • 제45권2호
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    • pp.242-249
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    • 2018
  • 이 연구의 목적은 정량적 실시간 중합효소 연쇄 반응법을 이용하여 발거된 과잉치 치수 및 치주인대 줄기세포의 유전자 발현을 비교하는 것이다. 전신병력이 없는 만 6세 남아 2명의 상악 전치부에 매복된 과잉치를 발거하였다. 같은 날 치수 및 치주인대 세포를 채취하였고, 3계대까지 계대배양하였다. 분석을 위해 상아질모세포 특이 유전자인 Alkaline phosphatase (ALP), Dentin Matrix Protein 1 (DMP-1), Dentin sialophosphoprotein (DSPP), Osteocalcin (OCN) 그리고 Osteonectin (ONT)을 사용했고, glyceraldehyde 3-phosphate dehydrogenase (GAPDH)을 대조군으로 설정했다. 과잉치 치수 세포에서는 ONT, OCN, ALP, DMP-1, DSPP 순서로 발현량이 많았고, 치주인대 세포에서는 DMP-1과 DSPP의 순서만 바뀌었다. 치주인대 세포보다 치수 세포에서 모든 유전자의 발현량이 많았다. 이러한 상아질모세포의 특성을 고려해 보았을 때, 다른 조직으로의 분화 가능성이 있는 과잉치 줄기세포는 유용한 공여부로서 그 잠재력이 있음을 알 수 있었다.

Fibronectin과 성장인자의 단독 혹은 복합투여가 배양 인체 치은섬유모세포 및 치은인대세포의 활성에 미치는 효과 (THE EFFECTS OF FIBRONECTIN & GROWTH FACTOR ALONE OR COMBINED APPLICATION ON THE ACTIVITY OF GHUMAN GINGIVAL FIBROBLASTS AND PERIODONTAL LIGAMENT CELLS)

  • 김응태;한두석;유형근;신형식
    • Journal of Periodontal and Implant Science
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    • 제25권2호
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    • pp.239-251
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    • 1995
  • The selective migration, attachment and proliferation of periodontal ligament cells are the desired goal of periodontal regeneration therapy. Fibronectin is well known for an attachment protein for dentin surface. Also, Fibroblast growth factor (FGF) is well known to enhance the periodontal regeneration. The purpose of this study was to evaluation the effect of fibronection and FGF on the attachment rate and the cellular activity. Human gingival fibroblast and periodontal ligament cells were cultured from the teeth extracted for non-periodontal reson. Cultured human gingival fibroblast and periodontal ligament cells in vitro were treated with fibronectin and FGF a various dosage and culture times. Cellular activity was examined by MTT assay. The results of this study was demonstrated that cell attachment rate of experimental group was under the control value at 1st, 2nd, 3rd incubation day. But, at 3rd incubation day, attchment value tended to return to the control value. In case of fibronectin alone application, cellular activity was decreased than that of control at 1st, 2nd incubation day. But 3rd day, cellular activity was returned to the control value. The activity of gingival fibroblast in FGF alone application was decreased thatn that of control at each incubation day. But activity of periodontal cell group was increased cell activities at 2nd, 3rd day. Additionally cellular activity of fibronectin & FGF combined application on gingival fibroblast group was similar to control value at incubation day. But activity of periodontal ligament cell group was increased at 2nd, 3rd day compared with control group.This study demonstrated that combined application of fibronectin & FGF induced the selective chemotaxis for periodontal ligament cell in vitro.

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NACA 처리에 따른 치주줄기세포 사멸 억제 효과 (Protective Effect of NACA on Periodontal Stem Cell)

  • 이경희
    • 대한통합의학회지
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    • 제8권3호
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    • pp.53-62
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    • 2020
  • Purpose :Periodontal ligament stem cells maintain tissue homeostasis in periodontal ligament. The purpose of this study was to determine the characteristics of periodontal ligament stem cells isolated from premolar teeth and observe protective effects against oxidative damage caused by Triethylene glycol dimethacrylate (TEGDMA) following treatment with N-acetylsysteine amide (NACA) drug known as enzymatic antioxidants. Methods : Primary periodontal ligament stem cell (PDSC) culture was performed from simply extracted human premolar of orthodontic patients. The characteristics of the primary cultured PDSCs was analyzed using the FACS system. PDSCs was incubated with TEGDMA and NACA. The cell proliferation and survival was determined using WST-1 assay. Collected data were analyzed using SPSS Window 20. Results : Primary cultured PDSCs grow on the floor and develop rapidly in a cluster form from up to 14 days. The morphology of PDSCs showed the spindle-shaped cells and grew directionally. FACS analysis, In addition, positive expression of visible cells were observed in mesenchymal stem cell biomarkers. PDLSCs cell viability was significantly decreased at high concentration in both 3 and 6 hours after TEGDMA treatment. We observed a decrease in the number of cells as well as a morphological change of PDLSCs. Antioxidative effect was notable since the death of PDLSC death was significantly inhibited compared to the control group at 24 and 48 hours after NACA treatment. Conclusion : Therefore, based on the results of this study, further research should be encouraged considering the development of clinical treatment methods using various antioxidants as well as regenerative engineering techniques utilizing periodontal ligament stem cells.

치주인대세포 및 치은섬유아세포의 증식능에 대한 Epidermal growth factor의 영향 (The Effect of EGF on Proliferation Rate of the Human Periodontal Ligament Cells and Human Gingival Fibroblasts)

  • 김선우;이재목;서조영
    • Journal of Periodontal and Implant Science
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    • 제26권4호
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    • pp.841-858
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    • 1996
  • Epidermal growth factor(EGF) is one of polypeptide growth factors. EGF has been reported as a biological mediator which regulates activities of wound healing process including the cell proliferation, migration and metabolism. The purposes of this study is to evaluate the effects of EGF on the human periodontal ligament cells and human gingival fibroblast cells that promote regeneration of periodntal tissue. The mitogenic effects of epidermal growth factor on human periodontal ligament cells and human gingival fibroblasts were evaluated by determining the incorporation of 5-Bromo-2'-deoxy-uridine into DNA of the cells in a dose dependent manner. The prepared cells were the primary cultured gingival fibroblast and periodontal ligament cells from humans, the fourth or sixth subpassages were used in the experiments. Cells were seeded in DMEM containing 10% FBS. 1, 10, 50, 100, $200{\eta}g/ml$ and epidermal growth factor were added to the quiescent cells for 24 hours, 48 hours and 72 hours. They were labeled with $10\{mu}l/200{\mu}l$ 5-Bromo-2'-deoxy-uridine for the last 6 hours of each culture. The results of the five determinants were presented as mean and S.D.. The results were as follows : The DNA synthetic activity of human gingival fibroblasts were increased dose dependently by epidermal growth factor at 24 hours, 48 hours and 72 hours. The mitogenic effects were similar at the 24 and 48 hours of epidermal growth factor, but the DNA synthetic activity of human gingival fibroblasts generally decreased at 72 hours. The DNA synthetic activity of human periodontal ligament cells were increased dose dependently by epidermal growth factor at 24 hours but the DNA synthetic activity decreased at $200{\eta}g/ml$ of each hour. Generally the maximum mitogenic effects were observed at the 48 hours application of epidermal growth factor. The DNA synthetic activity of human periodontal ligament cells generally decreased lower at 24, 72 hours than at 48 hours the application of epidermal growth factor. In the comparison of DNA synthetic activity between human gingival fibroblasts and human periodontal ligament cells, human periodontal ligament cells had slightly higher proliferation activity than human gingival fibroblasts for a longer time at the high dosage of the epidermal growth factor. In conclusion, epidermal growth factor have important roles in the stimulation of DNA synthesis in human periodontal ligament cells and human gingival fibroblasts, and thus may be useful for clinical applications in periodontal regenerative procedures.

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Effect of seeding using an avidin-biotin binding system on the attachment of periodontal ligament fibroblasts to nanohydroxyapatite scaffolds: three-dimensional culture

  • Jang, Yong-Ju;Jung, Im-Hee;Park, Jung-Chul;Jung, Ui-Won;Kim, Chang-Sung;Lee, Yong-Keun;Kim, Chong-Kwan;Choi, Seong-Ho
    • Journal of Periodontal and Implant Science
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    • 제41권2호
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    • pp.73-78
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    • 2011
  • Purpose: For periodontal tissue engineering, it is a primary requisite and a challenge to select the optimum types of cells, properties of scaffold, and growth factor combination to reconstruct a specific tissue in its natural form and with the appropriate function. Owing to fundamental disadvantages associated with using a two-dimensional substrate, several methods of seeding cells into three-dimensional scaffolds have been reported and the authors have asserted its usefulness and effectiveness. In this study, we explore the cell attachment of periodontal ligament fibroblasts on nanohydroxyapatite (n-HA) scaffold using avidin biotin binding system (ABBS). Methods: Human periodontal ligament fibroblasts were isolated from the health tooth extracted for the purpose of orthodontic procedure. HA nanoparticles were prepared and $Ca(NO_3)_2-_4H_2O$ and $(OC_2H_5)_3P$ were selected as precursors of HA sol. The final scaffold was 8 mm in diameter and 3 mm in height disk with porosity value of 81.55%. $1{\times}10^5$ periodontal ligament fibroblasts were applied to each scaffold. The cells were seeded into scaffolds by static, agitating and ABBS seeding method. Results: The number of periodontal ligament fibroblasts attached was greater for ABBS seeding method than for static or agitating method (P<0.05). No meaningful difference has been observed among seeding methods with scanning electron microscopy images. However, increased strength of cell attachment of ABBS could be deduced from the high affinity between avidin and biotin ($Kd=10^{-15}\;M$). Conclusions: The high-affinity ABBS enhances the ability of periodontal ligament fibroblasts to attach to three-dimensionally constructed n-HA scaffold.

백서 치주인대세포에서 Doxycycline에 의한 mRANKL 발현 억제 (Inhibition of mRANKL Expression by Doxycycline in Rat Periodontal Ligament Cells)

  • 조관표;최득철;김영준
    • Journal of Periodontal and Implant Science
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    • 제36권2호
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    • pp.335-344
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    • 2006
  • Osteoblast or bone marrow stromal cell-derived RANKL is the major effector molecule essential for osteoclastogenesis. Previous studies have shown that tetracyclines have beneficial therapeutic effects in the prevention and treatment of inflammatory bone disease including periodontal disease. Periodontal ligament cells are thought not only to play an important role in the progression of periodontal disease, but to play an important role in alveolar bone remodeling. Previous studies indicated that receptor activation of nuclear factor $\kappa\;B$ ligand (RANKL) and osteoprotegerin (OPG) are expressed in periodontal ligament cells by pro-inflammatory cytokine, such as $IL-1{\beta}$ and $TNF-{\alpha}$. This study was designed to investigate the inhibitory effect of doxycycline on RANKL and OPG mRNA in rat periodontal ligament cells induced by $IL-1{\beta}$ (1 ng/ml). The results are as follows; 1. MTT assay showed that doxycycline at the concentration of $1-50\;{\mu}g/m{\ell}$ didn't result in statistically significant cell death at day 1 and 3. 2. RANKL mRNA expression was increased to 2.6 folds by $IL-1{\beta}$. When cells were treated with doxycycline ($50{\mu}g/m{\ell}$), $IL-1{\beta}$ -induced mRANKL expression was reduced by 33%. In contrast to RANKL, OPG mRNA expression was not inhibited by pre-treatment with doxycycline. These results suggest that doxycycline decrease the expression of mRANKL resulting in regulation of osteoclastogenesisp in rat periodontal ligament cells.