• 제목/요약/키워드: Transforming growth factor beta 3

검색결과 232건 처리시간 0.026초

법랑기질유도체가 인간 치주인대세포의 증식 및 성장인자 발현에 미치는 영향 (Effects of enamel matrix derivatives on the proliferation and the release of growth factors of human periodontal ligament cells)

  • 정겨운;방은경
    • 대한치과보철학회지
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    • 제54권3호
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    • pp.203-209
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    • 2016
  • 목적: 치주조직재생을 위해서는 치주인대세포의 증식 및 이주를 촉진시키는 것이 필수적이나 현재까지 이것을 만족시키는 재생술식은 없다. 최근 법랑기질유도체(enamel matrix derivatives)가 치주조직 재생 술식에 적용되고 있으나 그 기전에 대해서는 완전히 알려지지 않았다. 따라서 본 연구의 목적은 법랑기질유도체가 치주인대세포의 증식과 성장인자 발현에 미치는 영향에 대하여 알아보고자 함이다. 재료 및 방법: 건강한 성인의 제 3 대구치로부터 치주인대세포를 추출한 후, 법랑기질유도체(Emdogain (Biora, Malmo, Sweden))의 농도가 각각 0, 12.5, 25, 50, 100, and $200{\mu}g/mL$인 배지에서 배양시켰다. 치주인대 세포증식과 알칼리성 인산분해효소(alkaline phosphatase) 활성도를 측정하고, 발현되는 성장인자를 평가하였다. 결과: 치주인대세포의 세포증식은 $25{\mu}g/mL$이상의 농도의 법랑기질유도체를 첨가한 군에서, 알칼리성 인산분해효소 활성도는 $50{\mu}g/mL$의 법랑기질유도체를 첨가한 군에서 각각 유의하게 증가하였고, $50{\mu}g/mL$의 법랑기질유도체를 첨가한 군에서 치주인대세포의 VEGF (vascular endothelial growth factor)와 TGF(transforming growth factor)-${\beta}$의 발현이 유의하게 증가하였다. 결론: 법랑기질 유도체는 인간 치주인대세포의 세포증식과 알칼리성 인산분해효소 활성을 증진시키고, VEGF와 TGF-${\beta}$등 성장인자의 발현을 촉진함으로써 치주조직 재생에 기여할 수 있을 것이다.

류머티스 관절염과 골관절염 환자에서 Transforming growth factor β의 발현 양상 (Expressions of transforming growth factor β in patients with rheumatioid arthritis and osteoarthritis)

  • 김채기;윤원찬;송용호;김상경;최정윤
    • IMMUNE NETWORK
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    • 제1권3호
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    • pp.244-249
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    • 2001
  • The transforming growth $factor-{\beta}$ ($TGF-{\beta}$) is a multifunctional cytokine modulating the onset and course of autoimmune disease as shown in experimental models. In synovial inflammation, there is a potential role for $TGF-{\beta}$ in repairment, the inhibition of cartilage and bone destruction, and the down-regulation of immune response. The biologic effects of $TGF-{\beta}$ depend on the cell type, the isoform and the availability of active $TGF-{\beta}$. We investigated $TGF-{\beta}$ expression in patients with rheumatoid arthritis (RA) and compared to those of osteoarthritis (OA). And we determined a correlation between $TGF-{\beta}1$ and $TGF-{\beta}2$, and also the relationships between each $TGF-{\beta}$ isoform and the parameters for disease activity of RA. Methods: The study population consisted of 20 patients with RA and 20 patients with OA. The commercial ELISA kit was used to study $TGF-{\beta}1$ and $TGF-{\beta}2$ levels in peripheral blood (PB) and synovial fluids (SF). Results: 1) While PB $TGF-{\beta}1$ level was of no difference between RA and OA patient groups, SF $TGF-{\beta}1$ level was higher in RA group than OA group. Similarly, PB $TGF-{\beta}2$ levels of RA and OA groups was not different, but SF $TGF-{\beta}2$ levels was higher in RA group than OA group. 2) In patients with RA, the $TGF-{\beta}1$ levels were higher than $TGF-{\beta}2$ in both the PB and SF, while in patients with OA, there showed higher readings for $TGF-{\beta}1$ than $TGF-{\beta}2$ in SF but no difference between $TGF-{\beta}1$ and $TGF-{\beta}2$ levels in PB. 3) In patients with RA, there were no correlations between PB $TGF-{\beta}1$ and PB $TGF-{\beta}2$ levels, nor between SF $TGF-{\beta}1$ and SF $TGF-{\beta}2$ levels. At the same way, there was no correlation between PB $TGF-{\beta}1$ and SF $TGF-{\beta}1$ levels, nor between each levels of $TGF-{\beta}2$ in patients with RA. 4) There was also no correlation between each $TGF-{\beta}$ isoform and the parameters for disease activity such as ESR, CRP, tender joint count, swollen joint count, rheumatoid factor, and the duration of morning stiffness except between in PB $TGF-{\beta}1$ and disease duration of RA (r=0.637, p<0.01). Conclusion: Each $TGF-{\beta}$ isoforms were higher in synovial fluid of patients with RA than that of patients with OA. The data from the RA patients demonstrated different patterns of expressions of the isoforms depending on which compartment (PB or SF) was investigated. The quantification of different $TGF-{\beta}$ isoform is thought to be important when $TGF-{\beta}$ is measured under disease conditions of RA.

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Transforming Growth Factor-β-Induced RBFOX3 Inhibition Promotes Epithelial-Mesenchymal Transition of Lung Cancer Cells

  • Kim, Yong-Eun;Kim, Jong Ok;Park, Ki-Sun;Won, Minho;Kim, Kyoon Eon;Kim, Kee K.
    • Molecules and Cells
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    • 제39권8호
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    • pp.625-630
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    • 2016
  • The RNA-binding protein Rbfox3 is a well-known splicing regulator that is used as a marker for post-mitotic neurons in various vertebrate species. Although recent studies indicate a variable expression of Rbfox3 in non-neuronal tissues, including lung tissue, its cellular function in lung cancer remains largely unknown. Here, we report that the number of RBFOX3-positive cells in tumorous lung tissue is lower than that in normal lung tissue. As the transforming growth factor-${\beta}$ (TGF-${\beta}$) signaling pathway is important in cancer progression, we investigated its role in RBFOX3 expression in A549 lung adenocarcinoma cells. TGF-${\beta}1$ treatment inhibited RBFOX3 expression at the transcriptional level. Further, RBFOX3 depletion led to a change in the expression levels of a subset of proteins related to epithelial-mesenchymal transition (EMT), such as E-cadherin and Claudin-1, during TGF-${\beta}1$-induced EMT. In immunofluorescence microscopic analysis, mesenchymal morphology was more prominent in RBFOX3-depleted cells than in control cells. These findings show that TGF-${\beta}$-induced RBFOX3 inhibition plays an important role in EMT and propose a novel role for RBFOX3 in cancer progression.

사람 폐 섬유아세포의 전환성장인자-β1에 의한 fibronectin 분비와 α-smooth muscle actin 표현에 있어서 활성산소족의 역할 (Role of Reactive Oxygen Species in Transforming Growth Factor-β1-inuduced Fibronectin Secretion and α-Smooth Muscle Actin Expression in Human Lung Fibroblasts)

  • 하헌주;유미라;어수택;박춘식;이희발
    • Tuberculosis and Respiratory Diseases
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    • 제58권3호
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    • pp.267-276
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    • 2005
  • 연구배경 : 전환성장인자-${\beta}1$(transforming growth factor-${\beta}1$: $TGF-{\beta}1$)은 폐 섬유화를 매개하는 주된 인자이지만 $TGF-{\beta}1$에 의한 폐 섬유화의 발생과 진행기전의 이해는 아직 불완전하다. $TGF-{\beta}1$은 다양한 세포에서 활성산소족(reactive oxygen species: ROS)을 통하여 세포내 신호를 전달하고 ${\alpha}$-smooth muscle actin (${\alpha}$-SMA)의 신생합성을 통하여 상피세포와 폐 섬유아세포를 근 섬유아세포 표현형으로의 변화를 유도하는 주된 인자이다. ROS는 또 다양한 세포에서 세포외기질 (extracellular matrix: ECM) 축적을 유발하는 것이 알려져 있음으로 본 연구에서는 폐 섬유아세포인 MRC-5 세포에서 $TGF-{\beta}1$이 ROS를 매개하여 fibronectin 분비와 ${\alpha}-SMA$ 표현의 증가에 관여하는지를 검색하였다. 방 법 : 성장이 동일화된 MRC-5 세포를 $TGF-{\beta}1$ (0.2-10ng/ml)으로 96 시간까지 자극하였고, 필요에 따라 항산화제인 N-acetylcysteine (NAC)이나 NADPH oxidase 억제제인 diphenyleniodonium (DPI)을 $TGF-{\beta}1$ 투여 1 시간 전부터 전처리하였다. Dichlorofluorescein (DCF)에 민감한 세포내 ROS는 FACS로, 분비된 fibronectin과 세포의 ${\alpha}-SMA$ 표현은 Western blot 분석으로 측정하였다. 결 과 : $TGF-{\beta}1$은 용량의존적으로 fibronectin 분비와 ${\alpha}-SMA$ 표현을 상향조절하였다. NAC와 DPI는 $TGF-{\beta}1$에 의한 fibronectin 분비 증가와 ${\alpha}-SMA$ 상향조절을 유의하게 억제하였다. $TGF-{\beta}1$에 의한 세포내 ROS의 증가도 NAC나 DPI에 의하여 유의하게 억제되었다. 결 론 : 본 연구의 결과는 폐 섬유아세포에서 NADPH oxidase 에 의하여 생산된 ROS가 $TGF-{\beta}1$에 의한 fibronectin 분비와 ${\alpha}-SMA$ 표현을 상향조절함으로써 폐 섬유화의 발생과 진행에 관여할 수 있음을 증명하였다.

Chondrogenic Differentiation of Bone Marrow Stromal Cells in Transforming Growth $Factor-{\beta}_{1}$ Loaded Alginate Bead

  • Park, Ki-Suk;Jin Chae-Moon;Kim, Soon-Hee;Rhee John M.;Khang Gil-Son;Han, Chang-Whan;Yang, Yoon-Sun;Kim, Moon-Suk;Lee, Hai-Bang
    • Macromolecular Research
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    • 제13권4호
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    • pp.285-292
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    • 2005
  • We developed alginate beads loaded with transforming growth $factor-{\beta}_{1}(TGF-{\beta}_{1})$ to examine the possible application of the scaffold and cytokine carrier in tissue engineering. In this study, bone marrow stromal cells (BMSCs) and $TGF{\beta}_{1}$ were uniformly encapsulated in the alginate beads and then cultured in vitro. The cell morphology and shape of the alginate beads were observed using inverted microscope, scanning electron microscope (SEM), histological staining and RT-PCR to confirm chondrogenic differentiation. The amount of the $TGF{\beta}_{1}$ released from the $TGF-{\beta}_{1}$ loaded alginate beads was analyzed for 28 days in vitro in a phosphate buffered saline (pH 7.4) at $37^{\circ}C$. We observed the release profile of $TGF-{\beta}_{1}$ from $TGF-{\beta}_{1}$ loaded alginate beads with a sustained release pattern for 35 days. Microscopic observation showed the open cell pore structure and abundant cells with a round morphology in the alginate beads. In addition, histology and RT-PCR results revealed the evidence of chondrogenic differentiation in the beads. In conclusion, these results confirmed that $TGF-{\beta}_{1}$ loaded alginate beads provide excellent conditions for chondrogenic differentiation.

Transforming Growth Factor β1/Smad4 Signaling Affects Osteoclast Differentiation via Regulation of miR-155 Expression

  • Zhao, Hongying;Zhang, Jun;Shao, Haiyu;Liu, Jianwen;Jin, Mengran;Chen, Jinping;Huang, Yazeng
    • Molecules and Cells
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    • 제40권3호
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    • pp.211-221
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    • 2017
  • Transforming growth factor ${\beta}1$ $(TGF{\beta}1)/Smad4$ signaling plays a pivotal role in maintenance of the dynamic balance between bone formation and resorption. The microRNA miR-155 has been reported to exert a significant role in the differentiation of macrophage and dendritic cells. The goal of this study was to determine whether miR-155 regulates osteoclast differentiation through $TGF{\beta}1/Smad4$ signaling. Here, we present that $TGF{\beta}1$ elevated miR-155 levels during osteoclast differentiation through the stimulation of M-CSF and RANKL. Additionally, we found that silencing Smad4 attenuated the upregulation of miR-155 induced by $TGF{\beta}1$. The results of luciferase reporter experiments and ChIP assays demonstrated that $TGF{\beta}1$ promoted the binding of Smad4 to the miR-155 promoter at a site located in 454 bp from the transcription start site in vivo, further verifying that miR-155 is a transcriptional target of the $TGF{\beta}1/Smad4$ pathway. Subsequently, TRAP staining and qRT-PCR analysis revealed that silencing Smad4 impaired the $TGF{\beta}1$-mediated inhibition on osteoclast differentiation. Finally, we found that miR-155 may target SOCS1 and MITF to suppress osteoclast differentiation. Taken together, we provide the first evidence that $TGF{\beta}1/Smad4$ signaling affects osteoclast differentiation by regulation of miR-155 expression and the use of miR-155 as a potential therapeutic target for osteoclast-related diseases shows great promise.

후코이단에 의한 인간 폐 섬유모세포의 활성 억제 효과 (Inhibitory Effect of Fucoidan on TGF-β1-Induced Activation of Human Pulmonary Fibroblasts)

  • 임미진;이대성;최그레이스;이정민;최일환
    • 한국수산과학회지
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    • 제49권6호
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    • pp.807-814
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    • 2016
  • Fucoidan, one of the dominant sulfated polysaccharides extracted from brown seaweed, possesses a wide range of biological activities. Transforming growth $factor-{\beta}$ ($TGF-{\beta}$) plays a pivotal role in the pathogenesis of pulmonary fibrosis, by stimulating the synthesis of profibrotic factors. In this study, we investigated the in vitro effects of fucoidan on collagen synthesis, ${\alpha}-smooth$ muscle actin (${\alpha}-SMA$) expression, and interleukin (IL)-6 production in $TGF-{\beta}$-stimulated human pulmonary fibroblasts. The expression of type I collagen and ${\alpha}-SMA$ was detected by Western blot, and the production of IL-6 by enzyme-linked immunosorbent assay. $TGF-{\beta}1$ treatment of pulmonary fibroblasts enhanced the expression of ${\alpha}-SMA$, type I collagen, and IL-6 whereas these effects were inhibited in cells pretreated with fucoidan. The activation of Smad2/3, p38 mitogen-activated protein kinases (MAPKs), and Akt was also inhibited in fucoidan-pretreated, $TGF-{\beta}1-stimulated$ human pulmonary fibroblasts. These data demonstrate the anti-fibrotic potential of fucoidan in $TGF-{\beta}-induced$ human pulmonary fibroblasts, via the inhibition of Smad2/3, p38 MAPKs, and Akt phosphorylation. Our results suggest the therapeutic potential of fucoidan in the prevention or treatment of pulmonary fibrosis.

인간 폐섬유아세포에서 TGF-β 자극에 의한 VEGF 분비 (Transforming growth factor-β promoted vascular endothelial growth factor release by human lung fibroblasts)

  • 박상욱;신주화;심재원;김덕수;정혜림;박문수;심정연
    • Clinical and Experimental Pediatrics
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    • 제51권8호
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    • pp.879-885
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    • 2008
  • 목 적 : 폐섬유아세포는 예전에는 기도의 구조적 세포로만 알려져 왔으나, 최근에는 천식에서 기관지 운동의 톤을 조절할 뿐만 아니라 기도의 면역조절과 기도 개형에서 중요한 역할을 하는 것으로 밝혀지고 있다. VEGF는 혈관 내피세포에서 강력한 작용을 하는 다기능적 사이토카인으로서, 상피내 세포의 세포분열을 유도하고, 상피세포의 투과도를 증가시키며, 상피세포의 이동을 향상시키는 역할을 하는 것으로 알려져 있다. TARC는 Th2 세포의 선택적 이동을 유도하는 케모카인으로 알려져 있다. 본 연구에서는 PDGF와 TGF-${\beta}$로 자극시킨 인간 폐섬유아세포에서 VEGF와 TARC가 생성되는지와 dexamethasone이 폐섬유아세포에서 VEGF의 분비를 억제하는지를 알아보고자 하였다. 또한 폐섬유아세포와 기관지 평활근 세포와 함께 배양했을 때 VEGF 생성에 미치는 효과를 단독배양 시와 비교하였다. 방 법 : 폐섬유아세포와 인간 기관지 평활근세포를 각각 혹은 함께 배양한 뒤 48시간동안 무혈청 배지에서 성장을 정지시킨 후 TGF-${\beta}$ (10 ng/mL)와 PDGF (20 ng/mL)로 자극하였다. 자극 후의 세포 증식 반응과 배양액 상층액의 VEGF, TARC 농도를 측정하여 dexamethasone ($10^{-6}M$)으로 전처치 후 자극한 것과 비교하였다. 결 과 : PDGF와 TGF-${\beta}$로 자극하였을 경우 폐섬유아세포에서 VEGF 분비가 의미있게 증가하였고, 특히 PDGF와 TGF-${\beta}$로 함께 자극하였을 경우 더욱 의미있는 상승을 보였다. Dexamethasone은 폐섬유아세포의 VEGF 분비를 PDGF로 자극한 경우와 PDGF, TGF-${\beta}$ 같이 자극한 경우 모두에서 억제하였다. 인간 기관지 평활근 세포와 폐섬유아세포를 혼합 배양했을 때 VEGF 분비에는 상승적인 효과가 없었다. Dexamethasone은 폐섬유아세포 증식을 억제시키지 않았다. 폐섬유아세포를 PDGF와 TGF-${\beta}$로 자극했을 때 TARC는 분비되지 않았다. 결 론 : 폐섬유아세포는 VEGF 분비를 통해 기도 개형에 관여하며, 기관지 평활근 세포와 함께 배양해도 VEGF 분비에 상승 효과는 없다. Dexamethasone은 VEGF 분비를 억제하였으나 폐섬유아세포의 증식을 억제하지는 못하였다.

Tensile stress regulation of NGF and NT3 in human dermal fibroblast

  • 김미나;홍정우;노민수;나용주;신현정
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회A
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    • pp.1585-1587
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    • 2008
  • Fibroblast is constantly subjected to mechanical loads in connective tissues where mechanical signals are converted to intercellular biochemical events. The aim of this study is to understand the effects of tensile stress on the neurotrophin (NT) and transforming growth factor (TGF) expression of fibroblast in vitro. Nerve growth factor (NGF) stimulates fibroblast migration, and TGF is related to tissue repair. In this study, at the uniaxial stretch of 10% strain and frequency of 0.5 Hz, different resting times of 0, 20, and 60 min are placed in between 10 min stimulations periods. Results show increase in NGF mRNA levels and a substantial decrease in NT3 mRNA after 1 hr of stimulation, indicating that the tensile stress may regulate NGF and NT3, key factors for the neurocosmetic applications. The mRNA level for TGF-${\alpha}$ and TGF-${\beta}2$ had increased up to two-folds after 1 hr of stimulation, showing that the tensile stress may control TGF, an important part of wound healing.

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