• 제목/요약/키워드: periodontal ligament cell viability

검색결과 39건 처리시간 0.028초

Evaluation of the Viability of Rat Periodontal Ligament Cells after Storing at 0℃/2 MPa Condition up to One Week: In Vivo MTT Method

  • Jang, Sun Mi;Cho, Sin-Yeon;Kim, Eui-Seong;Jung, Il-Young;Lee, Seung Jong
    • Journal of Korean Dental Science
    • /
    • 제9권1호
    • /
    • pp.1-8
    • /
    • 2016
  • Purpose: The aim of this study was to evaluate the rat periodontal ligament cell viability under $0^{\circ}C/2$ MPa condition up to one week using in vivo 3-(4,5-dimethylthiazol-2-y1)-2,5-diphenyltetrazolium bromide (MTT) assay. Materials and Methods: As soon as 110 upper molar teeth of rats were extracted, they were stored in Hartman's solution under $0^{\circ}C/2$ MPa condition for 1, 2, 3, 4, and 7 days each. All specimens were treated with in vivo MTT assay and the value of optical density was measured by ELISA reader. These values were statistically analyzed by one-way ANOVA. Result: There was no statistical difference on MTT value between immediate and 1 day storage group. There were statistically significant differences between 1 day and 2 days tsorage, 2 and 3 days storage groups, respectively. Teeth of 34, and 7 days storage groups showed significantly lower MTT valuesc ompared with shorter period storage groups. Conclusion: When the MTT values were substituted in standard curve, 1 day storage group at $0^{\circ}C/2$ MPa condition showed 68% cell viability when compared with immediate group. It dropped to 13% at 2 days, and to less than 5% at 3 days or more.

Celecoxib의 항산화 작용에 따른 성체 치주인대 줄기세포 사멸억제 (Inhibition of Human Periodontal Stem Cell Death Following the Antioxidant Action of Celecoxib)

  • 이경희
    • 대한통합의학회지
    • /
    • 제11권2호
    • /
    • pp.169-179
    • /
    • 2023
  • Purpose : Although human periodontal ligament stem cells (hPDLSCs) are a supportive factor for tissue engineering, oxidative stress during cell culture and transplantation has been shown to affect stem cell viability and mortality, leading to failed regeneration. The aim of this study was to evaluate the antioxidant and protective effects against cell damage of celecoxib, a selective cyclooxygenase-2 (COX-2) inhibitor, and the antioxidant signal of hPDLSCs in H2O2-induced oxidative stress. Methods : To induce oxidative stress in cultured hPDLSCs, H2O2 was used as an exogenous reactive oxygen species (ROS). Dose-dependent celecoxib (.1, 1, 10, or 100 µM) was administered after H2O2 treatment. WST-1 assay was used to assess cell damage and western blot was used to observe antioxidant activity of hPDLSCs in oxidative stress. Immunohistochemistry was performed for inverting the localization of the SOD and Nrf2 antibody. Results : We found that progressive cell death was induced in hPDLSCs by H2O2 treatment. However, low-dose celecoxib reduced H2O2-induced cellular damage and eventually enhanced the SOD activity and Nrf2 signal of hPDLSCs. Oxidative stress-induced morphological change in hPDLSCs included lowered the survival and number of spindle-shaped cells, and shrinkage and shortening of cell fibers. Notably, celecoxib promoted cell survival function and activated antioxidants such as SOD and Nrf2 by positively regulating the cell survival signal pathway, and also reduced the number of morphological changes in hPDLS. Immunohistochemistry results showed a greater number of SOD- and Nrf2-stained cells in the celecoxib-treated group following oxidative stress. Conclusion : By increasing SOD and Nrf2 expression at the antioxidant system, the findings suggest that celecoxib enhanced the antioxidative ability of hPDLSCs and protected cell viability against H2O2-induced oxidative stress by increasing SOD and Nrf2 expression in the antioxidant system.

Transforming growth factor-$\beta$가 인체 치주 인대세포 활성 및 백서의 실험적 치아 이동에 미치는 영향에 관한 연구 (THE EFFECTS OF TRANSFORMING GROWTH FACTOR-$\beta$ ON THE VIABILITY OF HUMAN PERIODONTAL LIGAMENT CELL AND ON THE EXPERIMENTAL TOOTH MOVEMENT IN RAT)

  • 박윤경;김상철
    • 대한치과교정학회지
    • /
    • 제28권2호
    • /
    • pp.311-327
    • /
    • 1998
  • 본 연구의 목적은 시험관내에서 TGF-${\beta}$가 치주인대세포의 증식에 미치는 영향을 관찰하고, 치주 인대내에 TGF-${\beta}$ 를 투여하여 치주 인대조직에 대한 TGF-${\beta}$의 생물학적 역할을 알아보고자 시험관내에서 배양된 사람의 치주인대세포에 0.1, 1, 5, 10ng/ml농도의 TGF-${\beta}$를 투여하여 1,2,3일간 배양한후 MTT방법으로 세포의 활성을 관찰하였고, 백서의 실험적 이동시 압박측 및 견인측의 치주인대내에 TGF-${\beta}$를 투여하여 치주인대조직의 조직병리학적 관찰을 하여 다음과 같은 결과를 얻었다. 1. 0.1ng/ml 농도의 TGF-${\beta}$를 치주인대세포에 투여한 경우, 배양 1, 2, 3일째에 대조군과 유의한 차이가 없었다. 2. 1ng, 5ng/ml 농도의 TGF-${\beta}$를 치주인대세포에 투여한 경우, 배 양 1, 2일째에는 대조군과 유의한 차이가 없었으나 3일째에는 유의하게 증가되었다. 3. 10ng/m1 농도의 TGF-${\beta}$를 치주인대세포에 투여한 경우, 배양 1일째에는 대조군과 유의한 차이가 없었으나 2, 3일째에는 유의하게 증가하였다. 4. 실험적 치아이동시, TGF-${\beta}$ 투여군에서 3일째까지는 압박측에서의 초자양변성이 대조군에 비해 적었으나 7일째 이후에는 군 간의 차이가 없었고, 파골세포 출현 및 모세혈관 증식은 7일째까지 대조군보다 많이 관찰되었다. 5. 실험적 치아이동시, TGF-${\beta}$ 투여군에서 3일째부터 14일째까지 견인측의 골모세포 활성 및 신생골 형성이 증가되었던 점이 대조군과 구별되었다.

  • PDF

사람의 치수 및 치주인대 세포에 대한 Bioaggregate 시멘트의 생체적합성에 대한 연구 (Biocompatibility of bioaggregate cement on human pulp and periodontal ligament (PDL) derived cells)

  • 정주령;김의성;신수정
    • Restorative Dentistry and Endodontics
    • /
    • 제35권6호
    • /
    • pp.473-478
    • /
    • 2010
  • 연구목적: 본 연구는 인간의 치수 및 치근단 조직에서 유리된 세포를 이용하여 비교적 최근 소개된 Bioaggregate의 생체친화성을 평가하는 데에 있다. 연구 재료 및 방법: 사람의 발거치로 부터 치수 및 치근단 조직에서 배양된 세포를 이용하였다. Bioaggregate와 white MTA를 혼합하여 세포배양판에 적용한 후 같은 수의 세포를 배양하였다. 1, 3, 그리고 7일 후 위상차현미경을 사용하여 세포의 부착과 성장을 관찰하고 cell viability test를 시행하였다. 얻어진 결과는 Student t-test및 one way ANOVA를 이용하여 분석하였다. 결과: 두가지 종류의 세포 모두 Bioaggregate와 MTA가 혼합된 배양판에서 잘 성장하였으며 Bioaggregate군에서는 inhibition zone이 관찰되지 않았다. Cell viability test에서 두 그룹간 통계적인 유의성 차이는 없었다. 결론: Bioaggreagete는 치수 및 치근단 세포에 대하여 MTA와 유사한 세포친화성을 보였다.

Effect of (-)-epigallocatechin-3-gallate on maintaining the periodontal ligament cell viability of avulsed teeth: a preliminary study

  • Jung, Im-Hee;Yun, Jeong-Ho;Cho, Ah-Ran;Kim, Chang-Sung;Chung, Won-Gyun;Choi, Seong-Ho
    • Journal of Periodontal and Implant Science
    • /
    • 제41권1호
    • /
    • pp.10-16
    • /
    • 2011
  • Purpose: Avulsed tooth can be completely recovered, if sound periodontal ligament (PDL) of tooth is maintained. Although a lot of storage solutions have been explored for the better storage of avulsed tooth, there is a shortcoming that the preservation time is much short. On the other hand, there has been studies that (-)-epigallocatechin-3-gallate (EGCG), the most abundant polyphenol in green tea, which is related to the anti inflammatory, antioxygenic, and antibacterial effects, allows the successful preservations of tissues and cells. This study evaluated the effect of EGCG on avulsed-teeth preservation of Beagle dogs for a period of time. Methods: The atraumatically extracted teeth of Beagle dogs were washed and preserved with 0/10/$100\;{\mu}M$ of EGCG at the time of immediate, period 1 (4 days in EGCG-contained media and additional 1 day in EGCG-free media), period 2 (8 days in EGCG-contained media and additional 2 days in EGCG-free media) and period 3 (12 days in EGCG-contained media and additional 2 days in EGCG-free media). Then, the cell viabilities of preserved teeth was calculated by dividing optical density (OD) of 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay with OD of eosin assay to eliminate the measurement errors caused by the different tissue volumes. Results: From the results, the immediately analyzed group presented the highest cell viability, and the rate of living cells on teeth surface decreased dependent on the preservation period. However, the $100\;{\mu}M$ of EGCG-treated group showed statistically significant positive cell activity than EGCG-free groups throughout preservation periods. Conclusions: Our findings showed that $100\;{\mu}M$ EGCG could maintain PDL cell viability of extracted tooth. These results suggest that although EGCG could not be a perfect additive for tooth preservation, it is able to postpone the period of tooth storage. However, further in-depth studies are required for more plausible use of EGCG.

Analysis of gene expression during mineralization of cultured human periodontal ligament cells

  • Choi, Hee-Dong;Noh, Woo-Chang;Park, Jin-Woo;Lee, Jae-Mok;Suh, Jo-Young
    • Journal of Periodontal and Implant Science
    • /
    • 제41권1호
    • /
    • pp.30-43
    • /
    • 2011
  • Purpose: Under different culture conditions, periodontal ligament (PDL) stem cells are capable of differentiating into cementoblast-like cells, adipocytes, and collagen-forming cells. Several previous studies reported that because of the stem cells in the PDL, the PDL have a regenerative capacity which, when appropriately triggered, participates in restoring connective tissues and mineralized tissues. Therefore, this study analyzed the genes involved in mineralization during differentiation of human PDL (hPDL) cells, and searched for candidate genes possibly associated with the mineralization of hPDL cells. Methods: To analyze the gene expression pattern of hPDL cells during differentiation, the hPDL cells were cultured in two conditions, with or without osteogenic cocktails (${\beta}$-glycerophosphate, ascorbic acid and dexamethasone), and a DNA microarray analysis of the cells cultured on days 7 and 14 was performed. Reverse transcription-polymerase chain reaction was performed to validate the DNA microarray data. Results: The up-regulated genes on day 7 by hPDL cells cultured in osteogenic medium were thought to be associated with calcium/iron/metal ion binding or homeostasis (PDE1A, HFE and PCDH9) and cell viability (PCDH9), and the down-regulated genes were thought to be associated with proliferation (PHGDH and PSAT1). Also, the up-regulated genes on day 14 by hPDL cells cultured in osteogenic medium were thought to be associated with apoptosis, angiogenesis (ANGPTL4 and FOXO1A), and adipogenesis (ANGPTL4 and SEC14L2), and the down-regulated genes were thought to be associated with cell migration (SLC16A4). Conclusions: This study suggests that when appropriately triggered, the stem cells in the hPDL differentiate into osteoblasts/cementoblasts, and the genes related to calcium binding (PDE1A and PCDH9), which were strongly expressed at the stage of matrix maturation, may be associated with differentiation of the hPDL cells into osteoblasts/cementoblasts.

Synergic induction of human periodontal ligament fibroblast cell death by nitric oxide and N-methyl-D-aspartic acid receptor antagonist

  • Seo, Tae-Gun;Cha, Se-Ho;Woo, Kyung-Mi;Park, Yun-Soo;Cho, Yun-Mi;Lee, Jeong-Soon;Kim, Tae-Il
    • Journal of Periodontal and Implant Science
    • /
    • 제41권1호
    • /
    • pp.17-22
    • /
    • 2011
  • Purpose: Nitric oxide (NO) has been known as an important regulator of osteoblasts and periodontal ligament cell activity. This study was performed to investigate the relationship between NO-mediated cell death of human periodontal ligament fibroblasts (PDLFs) and N-methyl-D-aspartic acid (NMDA) receptor antagonist (+)-5-methyl-10, 11-dihydro-5H-dibenzo[a,d]cyclohepten-5, 10-imine hydrogen maleate (MK801). Methods: Human PDLFs were treated with various concentrations (0 to 4 mM) of sodium nitroprusside (SNP) with or without $200\;{\mu}M$ MK801 in culture media for 16 hours and the cell medium was then removed and replaced by fresh medium containing MTS reagent for cell proliferation assay. Western blot analysis was performed to investigate the effects of SNP on the expression of Bax, cytochrome c, and caspase-3 proteins. The differences for each value among the sample groups were compared using analysis of variance with 95% confidence intervals. Results: In the case of SNP treatment, as a NO donor, cell viability was significantly decreased in a concentration-dependent manner. In addition, a synergistic effect was shown when both SNP and NMDA receptor antagonist was added to the medium. SNP treated PDLFs exhibited a round shape in culture conditions and were dramatically reduced in cell number. SNP treatment also increased levels of apoptotic marker protein, such as Bax and cytochrome c, and reduced caspase-3 in PDLFs. Mitogen-activated protein kinase signaling was activated by treatment of SNP and NMDA receptor antagonist. Conclusions: These results suggest that excessive production of NO may induce apoptosis and that NMDA receptor may modulate NO-induced apoptosis in PDLFs.

지연된 의도적 재식술을 통한 치주 조직 재생 방법의 고찰 (Delayed intentional replantation: new approach for periodontal regeneration and establishment of theoretical background)

  • 김유경;김동주;이은웅;임현창;이중석;정의원;윤정호;김의성;이승종;최성호
    • 대한치과의사협회지
    • /
    • 제53권7호
    • /
    • pp.485-499
    • /
    • 2015
  • Purpose: Delayed intentional replantation was introduced as a new alternative to treat the teeth with severe periodontal involvement. The purpose of this study was to elucidate the possibility of delayed intentional replantation and establish theoretical backgrounds. Materials and Methods: Studies were performed into the following two subjects; (1)Clinical evaluation of patients who underwent delayed intentional replantation using clinical and radiographic data. Severe periodontitis involved teeth were carefully extracted and proper time for delayed replantation was evaluated by analyzing inflammation markers (IL-6, TNF-${\alpha}$). (2) Theoretical studies for efficacy of delayed intentional replantation using (-)-Epigallocatechin-3-gallate (EGCG) for preservation of periodontal ligament cells on root surface by minimizing inflammation and treatment of inflammatory extraction sockets. Results: Meaningful success ratio and survival rate were found in delayed intentional replantation showing reduced bone loss and maintained bone level. Additionally, viability of EGCG applied periodontal ligament cells was much higher than control group. Also, EGCG promoted healing of inflammatory extraction sockets by inhibiting inflammatory cell proliferation. Conclusion: Within the limitations of this study, 1-2 weeks after extraction is an appropriate time to do delayed intentional replantation. Also, EGCG provides helpful effects on viability of periodontal ligament cells and periodontium.

The role of lysophosphatidic acid receptor 1 in inflammatory response induced by lipopolysaccharide from Porphyromonas gingivalis in human periodontal ligament stem cells

  • Kim, Dong Hee;Seo, Eun Jin;Tigyi, Gabor J.;Lee, Byung Ju;Jang, Il Ho
    • International Journal of Oral Biology
    • /
    • 제45권2호
    • /
    • pp.42-50
    • /
    • 2020
  • Lysophosphatidic acid (LPA) is a lipid messenger mediated by G protein-coupled receptors (LPAR1-6). It is involved in the pathogenesis of certain chronic inflammatory and autoimmune diseases. In addition, it controls the self-renewal and differentiation of stem cells. Recent research has demonstrated the close relationship between periodontitis and various diseases in the human body. However, the precise role of LPA in the development of periodontitis has not been studied. We identified that LPAR1 was highly expressed in human periodontal ligament stem cells (PDLSCs). In periodontitis-mimicking conditions with Porphyromonas gingivalis-derived lipopolysaccharide (Pg-LPS) treatment, PDLSCs exhibited a considerable reduction in the cellular viability and osteogenic differentiation potential, in addition to an increase in the inflammatory responses including tumor necrosis factor-α and interleukin-1β expression and nuclear factor kappa-light-chain-enhancer of activated B cells (NF-κB) activation. Of the various LPAR antagonists, pre-treatment with AM095, an LPAR1 inhibitor, showed a positive effect on the restoration of cellular viability and osteogenic differentiation, accompanied by a decrease in NF-κB signaling, and action against Pg-LPS. These findings suggest that the modulation of LPAR1 activity will assist in checking the progression of periodontitis and in its treatment.

Effects of four novel root-end filling materials on the viability of periodontal ligament fibroblasts

  • Akbulut, Makbule Bilge;Arpaci, Pembegul Uyar;Eldeniz, Ayce Unverdi
    • Restorative Dentistry and Endodontics
    • /
    • 제43권3호
    • /
    • pp.24.1-24.12
    • /
    • 2018
  • Objectives: The aim of this in vitro study was to evaluate the biocompatibility of newly proposed root-end filling materials, Biodentine, Micro-Mega mineral trioxide aggregate (MM-MTA), polymethylmethacrylate (PMMA) bone cement, and Smart Dentin Replacement (SDR), in comparison with contemporary root-end filling materials, intermediate restorative material (IRM), Dyract compomer, ProRoot MTA (PMTA), and Vitrebond, using human periodontal ligament (hPDL) fibroblasts. Materials and Methods: Ten discs from each material were fabricated in sterile Teflon molds and 24-hour eluates were obtained from each root-end filling material in cell culture media after 1- or 3-day setting. hPDL fibroblasts were plated at a density of $5{\times}10^3/well$, and were incubated for 24 hours with 1:1, 1:2, 1:4, and 1:8 dilutions of eluates. Cell viability was evaluated by XTT assay. Data was statistically analysed. Apoptotic/necrotic activity of PDL cells exposed to material eluates was established by flow cytometry. Results: The Vitrebond and IRM were significantly more cytotoxic than the other root-end filling materials (p < 0.05). Those cells exposed to the Biodentine and Dyract compomer eluates showed the highest survival rates (p < 0.05), while the PMTA, MM-MTA, SDR, and PMMA groups exhibited similar cell viabilities. Three-day samples were more cytotoxic than 1-day samples (p < 0.05). Eluates from the cements at 1:1 dilution were significantly more cytotoxic (p < 0.05). Vitrebond induced cell necrosis as indicated by flow cytometry. Conclusions: This in vitro study demonstrated that Biodentine and Compomer were more biocompatible than the other root-end filling materials. Vitrebond eluate caused necrotic cell death.