• Title/Summary/Keyword: $TGF-{\beta}3$

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Effect of Hypoxia and Reoxygenation on Cultured Human Dermal Fetal Fibroblast (저산소 및 재산소화가 배양된 태아 섬유아세포에 미치는 영향)

  • Park, Beyoung Yun;Choi, Jong Woo;Kwark, Hyug Jun;Lee, Won Jai;Rah, Dong Kyun
    • Archives of Plastic Surgery
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    • v.32 no.3
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    • pp.347-356
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    • 2005
  • The wound healing process in fetus is quite different form that of adult. Regeneration plays an important role and scarless wound healing is possible in early gestational fetal period. Recently, the various effects of the hypoxia and reoxygenation in the wound healing process have been investigated by many researchers. The hypoxic state is known to alter protein synthesis and gene expression of TGF-${\beta}$, VEGF. The authors hypothesize there may be differences between fetal and adult fibroblast and this difference may play a possible role in the mechanism of scarless fetal wound healing. In this study, we investigated the growth of fibroblast, the amount of collagen deposition, the amount of protein synthesis and gene expression in TGF-${\beta}$(transforming growth factor-${\beta}$), VEGF(vascular endothelial growth factor) under the various hypoxic and reoxygenation conditions. Through these processes, we tried to determine the relationships between scarless fetal wound healing and hypoxic condition. In control group, fetal and adult fibroblasts were cultured under normoxic condition. The experimental groups were allocated into four different groups. The differences in TGF-beta, VEGF under 24, 48, 72 hours were statistically investigated. Compared to adult fibroblast group, there was a statistically significant increase (p<0.01) in the rates of protein synthesis in TGF-beta and VEGF of fetal fibroblast. In this study, these results may reflect the possibility that fetal fibroblast are more susceptible to change in oxygen and has a superior rate of angiogenesis through increased VEGF expression. The possible superiority of angiogenesis in fetal fibroblast may play an important role in scarless wound healing.

Cytokine Production in Cholangiocarcinoma Cells in Response to Clonorchis sinensis Excretory-Secretory Products and Their Putative Protein Components

  • Pak, Jhang Ho;Lee, Ji-Yun;Jeon, Bo Young;Dai, Fuhong;Yoo, Won Gi;Hong, Sung-Jong
    • Parasites, Hosts and Diseases
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    • v.57 no.4
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    • pp.379-387
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    • 2019
  • Clonorchis sinensis is a carcinogenic human liver fluke that promotes hepatic inflammatory environments via direct contact or through their excretory-secretory products (ESPs), subsequently leading to cholangitis, periductal fibrosis, liver cirrhosis, and even cholangiocarcinoma (CCA). This study was conducted to examine the host inflammatory responses to C. sinensis ESPs and their putative protein components selected from C. sinensis expressed sequenced tag (EST) pool databases, including $TGF-{\beta}$ receptor interacting protein 1(CsTRIP1), legumain (CsLeg), and growth factor binding protein 2 (CsGrb2). Treatment of CCA cells (HuCCT1) with the ESPs or bacterial recombinant C. sinensis proteins differentially promoted the secretion of proinflammatory cytokines ($IL-1{\beta}$, IL-6, and $TNF-{\alpha}$) as well as anti-inflammatory cytokines (IL-10, $TGF-{\beta}1$, and $TGF-{\beta}2$) in a time-dependent manner. In particular, recombinant C. sinensis protein treatment resulted in increase (at maximum) of ~7-fold in $TGF-{\beta}1$, ~30-fold in $TGF-{\beta}2$, and ~3-fold in $TNF-{\alpha}$ compared with the increase produced by ESPs, indicating that CsTrip1, CsLeg, and CsGrb2 function as strong inducers for secretion of these cytokines in host cells. These results suggest that C. sinensis ESPs contribute to the immunopathological response in host cells, leading to clonorchiasis-associated hepatobiliary abnormalities of greater severity.

Expression of Cytokines in Radiation Injured Brain at Acute Phase

  • Lee, Jang-Bo;Kim, Min-Ho;Chung, Yong-Gu;Park, Jung-Yul
    • Journal of Korean Neurosurgical Society
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    • v.42 no.3
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    • pp.200-204
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    • 2007
  • Objective : Radiation therapy is an important treatment for brain tumor. However, serious complications such as radiation necrosis can occur and it may be secondary to the expression of acute phase genes, like cytokines. In particular, inflammatory cytokines (IL-$1{\beta}$, TNF-${\alpha}$) and other immunomodulatory cytokines (TNF-${\alpha}$, TGF-${\beta}1$) might be changed after irradiation (high single dose irradiation). Although it has been reported that IL-1 level is remarkably elevated within 8 week after the irradiation to the rat brain. the change of cytokines levels at acute phase (within 24 hours) has not been reported. In the present study, we examined TNF-${\alpha}$, TGF-${\beta}1$, and IL-$1{\beta}$ levels in acute phase to clarify the early effect of cytokines on the radiation-induced brain damage. Methods : Fifty Sprague-Dawley rats were used and these were divided into irradiation group and control group. After a burr-hole trephination on the right parietal area using a drill, a single 10Gy was irradiated at the trephined site. Their forebrains were extirpated at 30 min, 2 hr, 8 hr, 12 hr and 24 hr, respectively and examined for the expression of TNF-${\alpha}$, TGF-${\beta}1$, and IL-$1{\beta}$. Results : The expression of TNF-${\alpha}$ and TGF-${\beta}1$ were decreased until 12 hr after irradiation but elevated thereafter. The expression of IL-1 was peak at 8 hr and then decreased until 12 hr but elevated after this time window. The present study indicated that expression of cytokines (TNF-${\alpha}$, TGF-${\beta}1$ and IL-$1{\beta}$) were increased at 24 hr after the irradiation to the rat brain. IL-$1{\beta}$ level, on the other hand. reached peak at 8 hr after radiation injury. Conclusion : These findings indicate that IL-1, among various cytokines, may have a more important role in the inflammatory reaction by radiation injury at acute phase and provide some clues for better understanding of the pathogenesis of radiation injury.

Increased effects of Bee Venom on aromatase expression and activity in the human osteoblastic cells (인간 골아세포에서 aromatase 효소의 발현과 활성에 대한 봉독의 증강효과)

  • Choi, Woo-shik;Kim, Kap-sung
    • Journal of Acupuncture Research
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    • v.19 no.5
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    • pp.136-148
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    • 2002
  • 본 연구는 osteoblastic cells에서 estogen 의 생합성을 유도하는 aromatase의 activity에 대한 봉독(蜂毒)작용을 측정하여, 봉독치료시 Arthritis의 진행 억제 및 estogen의 의한 bone formation의 효과여부를 검증하기 위해 실행하였다. 사용된 세포주로는 Osteoblastic phenotype으로 분화가 유도되는 Human leukaemic cell line FLG 29.1 및 the primary first-passage osteoblastic cells (hOB cells)이며, 이들을 각각 배양하고 각각의 RNA를 isolation한 뒤 PCR 증폭을 하였다. Aromatase에 대한 활성인자인 TPA와 TGF-${\beta}1$ 및 봉독을 이용하여 aromatase의 expression 및 activity에 대해 미치는 영향을 측정한 바, aromatase expression은 FLG 29.1 cell와 hoB cells에서, 50nM TPA 24시간 처리, 봉독 2 ~ 4시간 처리와 TGF-${\beta}1$ 3시간 처리로 유도한 결과 TPA와 TGF-${\beta}1$의 경우는 서로 유사하였고, 봉독에서 상대적으로 높게 나타났다. Aromatase activity는 FLG 29.1 cell, hoB cells에서 24시간 incubation한 결과, 모든 실험에서 일정하게 선상증가를 보였다. $5{\mu}{\ell}/m{\ell}$ BV에서 TPA와 TGF-${\beta}1$보다 뚜렷하게 증가하였으며, 0.5mM Bt2-cAMP, 50nM dexametasone처리에서는 유의성이 없었다. Estrogen 생합성을 촉매하는 aromatase activity BV가 처리에서 현저하게 증가하였기에, Rheumatis arthritis의 bone destruction에 대해 BV가 효과적인 역할을 할 것으로 보여진다.

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Mechanisms Underlying the Effects of LPS and Activation-induced Cytidine Deaminase on IgA Isotype Expression

  • Park, Seok-Rae;Kim, Hyun-A;Chun, Sung-Ki;Park, Jae-Bong;Kim, Pyeung-Hyeun
    • Molecules and Cells
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    • v.19 no.3
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    • pp.445-451
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    • 2005
  • Activation-induced cytidine deaminase (AID) is needed for Ig class switch recombination (CSR). We explored the effect of LPS on the expression of AID during B cell differentiation, and the role of AID in IgA isotype expression. In normal spleen B cells, LPS increased AID transcription up to 48 h post-stimulation, i.e. around the time of Ig CSR. TGF-${\beta}1$ and AID were required for IgA expression, and LPS contributed to $TGF{\beta}1$-induced IgA production largely by inducing AID. Interestingly, LPS repressed AID transcription in $sIgA^+$ B cells but still stimulated IgA production mainly by increasing the rate of IgA secretion. Our data indicate that LPS contributes to $TGF{\beta}1$-induced IgA isotype expression in at least two ways: by stimulating AID transcription before CSR and by enhancing the IgA secretion rate after CSR.

Protective Effect of N-Acetylcysteine on Progression of Adriamycin-induced Nephyopathy

  • Han, Sang-Woong;Kim, Ho-Jung;Paik, Seung-Sam;Lee, Jong-Un
    • The Korean Journal of Physiology and Pharmacology
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    • v.9 no.3
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    • pp.159-164
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    • 2005
  • Effects of antioxidants on the established nephropathy were investigated. The experimental nephropathy was induced in rats by intravenous injection of adriamycin (2 mg/kg). Six weeks later, when proteinuria was apparent, the rats were supplemented with N-acetylcysteine (NAC, 1 g/kg/day) in drinking water for additional 6 weeks. Glomerulosclerosis score and tubulointerstitial injury index were determined by light microscopy. Expression of transforming growth factor (TGF) ${\beta}1$ and laminin ${\beta}1$ was determined in the renal cortex by reverse transcription-polymerase chain reaction, Western blotting, immunohistochemistry, and immunogold electron microscopy. The adriamycin-induced proteinuria as well as the glomerulosclerosis and tubulointerstitial injury was ameliorated by the treatment with NAC. Adriamycin increased the expression of TGF ${\beta}1$ mRNA and protein, which was ameliorated by NAC. Although the expression of laminin ${\beta}1$ mRNA was increased, adriamycin did not significantly alter that of its protein. These results indicate that antioxidants ameliorate the established nephropathy in association with normalization of overexpressed TGF ${\beta}1$.

PRODUCTION OF GM-CSF AND TGF-${\beta}1$ IN IRRADIATED HUMAN GINGIVAL FIBROBLASTS CULTURED WITH LIPOPOLYSACCHARIDE (Lipopolysaccharide로 자극시킨 방사선 조사 치은 섬유아 세포에서 granulocytemacrophage colony-stimulating factor와 transforming growth factor-${\beta}1$ 생성)

  • Kim, Hong-Sik;Lee, Seong-Geun;Kim, Kwang-Hyuk;Kim, Uk-Kyu;Kim, Jong-Ryoul;Chung, In-Kyo;Yang, Dong-Kyu
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • v.28 no.3
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    • pp.169-174
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    • 2002
  • Purpose: Irradiation in the oral cancer patients causes early and late complications such as intraoral mucositis and fibrosis, with a various expression of GM-CSF and TGF-${\beta}1$. The purpose of this study was to investigate the production of GM-CSF and TGF-${\beta}1$ by the irradiated human gingival fibroblasts cultivated with lipopolysaccharide. Materials and Methods: Irradiated (total dose, 60 Gy) human gingival fibroblasts were incubated with LPS. Culture supernatants that were collected at 24, 48, and 72 hours were assessed for GM-CSF and TGF-${\beta}1$ by enzyme-linked immunosorbent assay. Results: 1. GM-CSF production in nomal gingival fibroblasts was increased with incubation time, but decreased with incubation time in irradiated gingival fibroblasts. GM-CSF production in both normal and irradiated gingival fibroblasts induced with LPS was higher than the control. 2. TGF-${\beta}1$ production in normal gingival fibroblasts was decreased after 24 hours, but, it was increased until 48 hours in irradiated gingival fibroblasts. TGF-${\beta}1$ production in normal gingival fibroblasts exposed with LPS was higher than the control. Conversely, It was lower than the control in irradiated gingival fibroblasts exposed with LPS. Conclusion: This indicates that irradiation in gingival fibroblasts may play an important role in radiation-induced intraoral mucositis and fibrosis. However, LPS decreases the production of TGF-${\beta}1$ in the irradiated gingival fibroblasts.

Effects of Folium Perillae on cytokine productions in ischemic rats (소엽(蘇葉) 추출물이 뇌허혈이 유발된 백서의 cytokine분비에 미치는 영향)

  • Yang, Gi-Ho;Kim, Hyung-Woo;Cho, Su-Jin;Kim, Sang-Dae;Yoon, Kwan-Hee;Kim, Bu-Yeo;Jeong, Hyun-Woo;Cho, Su-In
    • The Korea Journal of Herbology
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    • v.22 no.3
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    • pp.93-99
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    • 2007
  • Objective : The present study was carried out to investigate the effects of Folium Perillae (FP) on several cytokine production such as IL-1$\beta$, TNF-$\alpha$, IL-10 and TGF-$\beta$ to determine related mechanisma in Rats. Methods: So, we investigated the effects of FP on levels of several cytokines such as IL-l$\beta$, TNF-$\alpha$, IL-10 and TGF-$\beta$ in ischemic rats. Results: In this experiment, IL-10, an immune-modulatory cytckine, level was elevated by treatment with FP, but another regulatory cytokine, TGF-$\beta$1 level was not affected. On the other hand, levels of IL-l$\beta$ and TNF-$\alpha$, an inflammatory cytokines, were lowered by treatment with FP effectively. Conclusion : In conclusion, these results suggest that FP is useful to treat patient with disease related to cerebral ischemia, because FP can elevate IL-10 level, lower IL-l$\beta$ and TNF-$\alpha$ levels.

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Bevacizumab accelerates corneal wound healing by inhibiting TGF-βexpression in alkali-burned mouse cornea

  • Lee, Sung-Ho;Leem, Hyun-Sung;Jeong, Seon-Mi;Lee, Koon-ja
    • BMB Reports
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    • v.42 no.12
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    • pp.800-805
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    • 2009
  • This study investigated the effect of subconjunctival injections of bevacizumab, an anti-VEGF antibody, on processes involved in corneal wound healing after alkali burn injury. Mice were divided into three groups: Group 1 was the saline-treated control, group 2 received subconjunctival injection of bevacizumab 1hr after injury and group 3 received bevacizumab 1 hr and 4 days after injury. Cornea neovascularization and opacity were observed using a slit lamp microscope. Corneal repair was assessed through histological analysis and immunostaining for CD31, $\alpha$-SMA, collagen I, and TGF-$\beta$2 7 days post-injury. In group 3, injection of bevacizumab significantly lowered neovascularization and improved corneal transparency. Immunostaining analysis demonstrated a reduction in CD31, $\alpha$-SMA and TGF-$\beta$2 levels in stroma compared to group 1. These results indicate that bevacizumab may be useful in reducing neovascularization and improving corneal transparency following corneal alkali burn injury by accelerating regeneration of the basement membrane.

Overview of Transforming Growth Factor β Superfamily Involvement in Glioblastoma Initiation and Progression

  • Nana, Andre Wendindonde;Yang, Pei-Ming;Lin, Hung-Yun
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.16
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    • pp.6813-6823
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    • 2015
  • Glioblastoma, also known as glioblastoma multiforme (GBM), is the most aggressive of human brain tumors and has a stunning progression with a mean survival of one year from the date of diagnosis. High cell proliferation, angiogenesis and/or necrosis are histopathological features of this cancer, which has no efficient curative therapy. This aggressiveness is associated with particular heterogeneity of the tumor featuring multiple genetic and epigenetic alterations, but also with implications of aberrant signaling driven by growth factors. The transforming growth factor ${\beta}$ ($TGF{\beta}$) superfamily is a large group of structurally related proteins including $TGF{\beta}$ subfamily members Nodal, Activin, Lefty, bone morphogenetic proteins (BMPs) and growth and differentiation factor (GDF). It is involved in important biological functions including morphogenesis, embryonic development, adult stem cell differentiation, immune regulation, wound healing and inflammation. This superfamily is also considered to impact on cancer biology including that of GBM, with various effects depending on the member. The $TGF{\beta}$ subfamily, in particular, is overexpressed in some GBM types which exhibit aggressive phenotypes. This subfamily impairs anti-cancer immune responses in several ways, including immune cells inhibition and major histocompatibility (MHC) class I and II abolishment. It promotes GBM angiogenesis by inducing angiogenic factors such as vascular endothelial growth factor (VEGF), plasminogen activator inhibitor (PAI-I) and insulinlike growth factor-binding protein 7 (IGFBP7), contributes to GBM progression by inducing metalloproteinases (MMPs), "pro-neoplastic" integrins (${\alpha}v{\beta}3$, ${\alpha}5{\beta}1$) and GBM initiating cells (GICs) as well as inducing a GBM mesenchymal phenotype. Equally, Nodal promotes GICs, induces cancer metabolic switch and supports GBM cell proliferation, but is negatively regulated by Lefty. Activin promotes GBM cell proliferation while GDF yields immune-escape function. On the other hand, BMPs target GICS and induce differentiation and sensitivity to chemotherapy. This multifaceted involvement of this superfamily in GBM necessitates different strategies in anti-cancer therapy. While suppressing the $TGF{\beta}$ subfamily yields advantageous results, enhancing BMPs production is also beneficial.