• Title/Summary/Keyword: Tumor necrosis factor a (TNF-${\alpha}$

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Study on Relationship between Tumor Necrosis $Factor-\alpha$ Gene Polymorphism and Obese Patients

  • Kang Byung-Ku;Lee Si-Hyeong;Shin Jo-Young
    • The Journal of Korean Medicine
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    • v.26 no.1 s.61
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    • pp.85-92
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    • 2005
  • Objective: A number of candidate genes have been in implicated in the pathogenesis of obesity in humans. Tumor necrosis factor-alpha $(TNF-{\alpha})$ is expressed primarily in adipocytes, and elevated levels of this cytokine have been linked to obesity and insulin resistance. Recently, the A allele of a polymorphism at position 308 in the promoter region of $TNF-{\alpha}$ (G-308A) has been shown to increase transcription of the gene in adipocytes. Therefore, we designed this study to test whether obese and non-obese subjects differ in $TNF-{\alpha}$ genotype distribution, and how the genotypes affect anthropometric parameters, including degrees of body mass index (BMI). Methods : The study included 153 obese but otherwise healthy women ($BMI{\geq}kg/m^2$, range 25-54.7, age range 15-40 years) and 82 non-obese healthy women ($BMI, age range 15-40 years). Total fat mass and percent body fat were determined by dual-energy X-ray absorptiometry. Genomic DNA was extracted and used for Ncol restriction fragment length polymorphism (RFLP) based genotyping of $TNF-{\alpha}$. Results: No differences were observed for allelic and genotype frequencies between the obese ($BMI{\geq}25$) and non-obese women. Also, no association of TNF-(l polymorphism was observed with body mass index (BMI) for genotype in obese women. In addition, age, pertent body fat, BMI, and cholesterol levels did not differ by $TNF-{\alpha}$ genotype. However, waist-to­hip ratio (WHR) was significantly lower in subjects with $TNF-{\alpha}$ GA or AA genotype (0.94 0.07 vs. 0.920.03, P<0.005). Conclusion: These results suggest that $TNF-{\alpha}$ promoter polymorphism at position-308 is not a significant factor for BMI, but affects the WHR in obese healthy women from Koreans.

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Nitric Oxide, TNF-${\alpha}$ and TGF-${\beta}$ Formation of Rat Kupffer Cell Activated by the ${\beta}$-Glucan from Ganoderma lucidum (영지의 ${\beta}$-glucan성 다당류에 의해 활성화된 흰쥐 간내 Kupffer 세포의 NO, TNF-${\alpha}$ 및 TGF-${\beta}$ 형성)

  • Han, Man-Deuk;Lee, June-Woo;Jeong, Hoon;Kim, Yong-Seok;Ra, Su-Jung;Yoon, Kyung-Ha
    • Microbiology and Biotechnology Letters
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    • v.27 no.1
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    • pp.28-34
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    • 1999
  • Ganoderan (GAN), an immunomodulating ${\beta}$-glucan from mushroom Ganoderma lucidum, was evaluated for its ability to induce formation of nitric oxide (NO), tumor necrosis factor-${\alpha}$(TNF-${\alpha}$) and transforming growth factor (TGF-${\beta}$) from rat Kupffer cell in vitro. Hepatic macrophages activated by GAN significantly elevated concentration of NO and TNF-${\alpha}$ in cultured medium, but not significantly elevated that of TGF-${\beta}$. GAN-activated Kupffer cells secrete 14.9${\mu}$M (p<0.01) of NO and 2619.5${\rho}$g/ml (p<0.01) of TNF-${\alpha}$after 36hr of incubation at 37$^{\circ}C$. The results revealed that GAN enhanced 4-fold production of NO and 19 fold formation of TNF-${\alpha}$ compared to the control. The proliferation of GAN-activated Kupffer cells was inhibited as compared with its negative control. Comparing the activity among glucans derived from microorganisms, highly branched zymosan, glucomannan from Saccharomyces cerevisiae, significantly increased TNF-${\alpha}$ and NO production. These results indicate that the ${\beta}$-glucan from G. lucidum activates rat Kupffer cell and secretes NO and TNF-${\alpha}$. It also suggest that rat Kupffer cell posses certain receptor for ${\beta}$-anomeric glucan.

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Effect of Retrovirus Mediated TNF-$\alpha$ Gene Transfer to Tumor Necrosis Factor(TNF) Sensitive Tumor Cell Lines on Sensitivity to TNF (Retroviral Vector를 이용한 TNF-$\alpha$ 유전자의 이입이 암세포의 종양괴사인자(TNF) 감수성에 미치는 효과)

  • Oh, Yeon-Mok;Park, Kyeo-Yeong;Jung, Man-Pyo;Yoo, Chul-Gyu;Kim, Young-Whan;Han, Sung-Goo;Sim, Young-Soo;Han, Yong-Chol
    • Tuberculosis and Respiratory Diseases
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    • v.41 no.2
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    • pp.87-96
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    • 1994
  • Background : Since tumor necrosis factor was discovered in 1975, TNF has been well known about its cytotoxic effect on tumor cells in vivo and in vitro. According to the recent improvement of molecular biological techinques, it is possible that exogenous TNF gene is transferred to tumor cells and is expressed in theirs. By virtue of TNF gene transfer, we have expected that TNF expressed in TNF-gene-transferred tumor cells would kill tumor cells in vivo without systemic side effect. The expected mechanisms in which antitumor effects of TNF expressed in TNF-gene-transferred tumor cells are working would be as followings. In the first mechanism, TNF expressed in TNF-gene-transferred tumor cells would kill tumor cells around(like homicide). In the second mechanism, TNF expressed in TNF-gene-transferred tumor cells would kill themselves(like suicide). In the third mechanism, TNF expressed in TNF-gene-transferred tumor cells would recruit immune effector cells and kill tumor cells indirectly. In the last mechanism, TNF expressed in TNF-gene-transferred tumor cells would augment cytokine such as interferon-$\gamma$ to kill tumor cells. Among these four mechanisms of antitumor effect, only the second mechanism has not been established yet. Therefore, to elucidate the second mechanism, We performed this study. Method : We transferred TNF-$\alpha$ gene to NCI-H2058, a human mesothelioma cell line and WEHI164, a murine fibrosarcoma cell line by using retroviral vector(pLT12SNTNF). And, We determined by using MTT assay whether TNF expressed in TNF-gene-transferred tumor cell lines would kill themselves like suicide or not. Then, if TNF-gene-transferred tumor cell lines would not suicide themselves, I would know more about the TNF sensitivity of TNF-gene-transferred tumor cell lines to exogenous TNF also by MTT assay. Result : NCI-H2058 and WEHI164 which were sensitive to TNF, became far less sensitive to endogenous and exogenous TNF after being transferred TNF-$\alpha$ gene to. Conclusion : TNF-gene-transfer to NCI-H2058 and WEHI164 gave them resistance to TNF.

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Association between Tumor Necrosis Factor-$\alpha$ Gene Polymorphism and Bronchopulmonary Dysplasia in Preterm Infants (조산아 기관지폐이형성증과 Tumor Necrosis Factor-$\alpha$ 유전자 다형성과의 연관성)

  • Jo, Heui-Seung;Chang, Yoon-Hwan;Kim, Han-Suk;Kim, Byeong-Il;Choi, Jung-Hwan
    • Neonatal Medicine
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    • v.18 no.1
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    • pp.42-48
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    • 2011
  • Purpose: Several factors including prolonged inflammatory response are thought to contribute to the pathogenesis of bronchopulmonary dysplasia (BPD). The clinical findings can be explained by an increased production of proinflammatory cytokines such as tumor necrosis factor alpha (TNF-$\alpha$ ). We investigated the relationship between susceptibility to BPD and TNF-$\alpha$ promoter polymorphisms to identify genetic factors of the disease. Methods: Thirty-eight preterm infants who had developed BPD and 55 controlled infants with a birth weight <1,500 g were analyzed for TNF-$\alpha$ genotypes. The alleles of five promoter sites (-1031/-863/-857/-308/-238) of TNF-$\alpha$ gene were determined using $Taqman^{(R)}$-based allelic discrimination assays. Results: Gestational age ($27^{+5}{\pm}2^{+0}$ wk vs. $29^{+2}{\pm}1^{+4}$ wk, P<0.0001) and birth weight (990${\pm}$270 g vs. 1,220${\pm}$230 g, P<0.0001) were lower in the BPD group compared to the control group. The incidence of respiratory distress syndrome (71.1% vs. 49.1%, P=0.035) and patent ductus arteriosus (71.1% vs. 50.9%, P=0.052) was higher in the BPD group compared to the control group. The frequencies of the alleles and genotypes of five promoter sites (-1031/-863/-857/-308/-238) of TNF-$\alpha$ gene did not show differences between the BPD group and the control group. Conclusion: TNF-$\alpha$ promoter polymorphisms are not associated with susceptibility to BPD in Korean preterm infants.

Comparison of TNF-Mediated Glucose Catabolism between the TNF-Sensitive and -Resistant Cell Lines

  • Kim, Yeon-Hyang;Park, Bok-Ryun;Cheong, Hee-Sun;Kwon, Oh-Hwan;Kim, Dae-Que;Kim, Soung-Soo
    • BMB Reports
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    • v.32 no.2
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    • pp.140-146
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    • 1999
  • When murine fibrosarcoma L929 cells, a TNF-sensitive cell line, were treated with recombinant human tumor necrosis factor-$\alpha$ (rhTNF-$\alpha$), the activities of glycolytic regulatory enzymes and lactate dehydrogenase increased up to 100-150% compared to the control L929 cells after TNF treatment. By using various metabolic inhibitors and activators, it was found that cAMP-dependent protein kinase is responsible for the increase of activities of the glycolytic enzymes. The activities of glycolytic regulatory enzymes and lactate dehydrogenase of TNF-resistant A549 cells, a human lung carcinoma cell line, did not increase significantly compared to TNF-sensitive L929 cells upon TNF treatment. In contrast, the pyruvate carboxylase activities of A549 cells, but not L929 cells, increased up to 30~40% after TNF treatment. The data suggest that pyruvate carboxylase activity may contribute to the compensation of energy loss mediated by TNF treatment in TNF-resistant A549 cells.

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The Effects of Chelidonium majus on NO and $TNF-{\alpha}$ Production in Macrophages (백굴채가 대식세포의 NO 및 $TNF-{\alpha}$ 생성에 미치는 영향)

  • 김홍준;문석재;김동웅;문구;원경숙;윤준철;김유경;원진희
    • The Journal of Korean Medicine
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    • v.24 no.2
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    • pp.138-147
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    • 2003
  • Objectives : In this study, we investigated the mechanism by which Chelidonium majus (CM) regulates nitric oxide (NO) production. Methods : Using mouse peritoneal macrophages, the mechanism by which CM regulates NO or tumor necrosis $factor-{\alpha}(TNF-{\alpha})$ production was examined. NO release was measured by the Griess method. $TNF-{\alpha}$ production was measured by the ELISA method. The protein extracts were prepared and samples were analyzed for the inducible NOS(iNOS) expression and nuclear factor kappa $B(NF-{\kappa}B)$ activation by Western blotting. Results : When CM was used in combination with recombinant $interferon-{\gamma}{\;}(rIFN-{\gamma})$, there was a marked cooperative induction of NO production. CM had an effect on NO production by itself. The expression of the iNOS gene was increased in $rIFN-{\gamma}$ plus CM-stimulated peritoneal macrophages and almost completely inhibited by pre-treatment with pyrrolidine dithiocarbamate (PDTC), an inhibitor of $NF-{\kappa}B$. The $NF-{\kappa}B$ activation was increased in rIFN-{\gamma} plus CM-induced peritoneal macrophages. The increased production of NO from $rIFN-{\gamma}$ plus CM-stimulated peritoneal rnacrophages was decreased by the treatment with $N^{G}-monomethyl-{_L}-arginine{\;}(N^{G}MMA){\;}N^{\alpha}-Tosyl-Phe$ chloromethyl ketone (TPCK) , and was almost completely inhibited by pre-treatment with PDTC. Furthermore, treatment with CM alone or rIFN-{\gamma} plus CM in peritoneal macrophages caused a significant increase in $TNF-{\alpha}$ production. PDTC decreased CM-induced $TNF-{\alpha}$ production significantly. After CM treatment in HT-29 or AGS cells, cell viability decreased. Conclusions : These findings demonstrate that CM increases the production of NO and $TNF-{\alpha}{\;}by{\;}rIFN-{\gamma}-primed$ macrophages and suggest that NF-B plays a critical role in mediating these effects of CM.

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High Throughput Fluorogenic Assay for TNF-alpha Converting Enzyme(TACE) inhibitors

  • Keum, Se-Hoon;Lee, Bong-Yong
    • Proceedings of the PSK Conference
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    • 2003.04a
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    • pp.125.2-126
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    • 2003
  • Human tumor necrosis factor-alpha (TNFa) is a key pro-inflammatory cytokine produced by activated monocytes and macrophage as a part of the self-defence machinery. TNF-a converting enzyme (TACE) is the metalloproteinase that processes the membrane bound precursor of TNFa to the soluble component. (omitted)

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Analysis of the Tumor Necrosis Factor-${\alpha}$ Promoter Polymorphism in Children with Henoch-Sch$\"{o}$nlein Purpura (Henoch-Sch$\"{o}$nlein 자반증에서 Tumor Necrosis Factor-${\alpha}$ 유전자 다형성 분석)

  • Yang, Hye-Ran;Ko, Jae-Sung;Seo, Jeong-Kee
    • Pediatric Gastroenterology, Hepatology & Nutrition
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    • v.10 no.1
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    • pp.11-19
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    • 2007
  • Purpose: Henoch-Sch$\"{o}$nlein purpura (HSP) is a systemic vasculitis involving the skin, joints, gastrointestinal tract, and kidney. Although the pathogenesis of HSP is still unclear, tumor necrosis factor (TNF-${\alpha}$) is regarded as an important cytokine contributing to the disease. The goal of this study was to determine the role of TNF-${\alpha}$ in the pathogenesis of HSP, and to evaluate the TNF-${\alpha}$ polymorphism for genetic susceptibility to HSP. Methods: From March 2004 to November 2005, 40 children with HSP and 32 healthy controls were included. Serum TNF-${\alpha}$ levels were measured using the ELISA method during the acute and convalescent phase of HSP. The genotypic and allelic frequencies of the TNF-${\alpha}$ gene polymorphisms at positions -308 and -238 were evaluated in patients and controls. Results: Serum TNF-${\alpha}$ levels were $23.17{\pm}11.31$ pg/mL in the acute phase of children with HSP and $10.56{\pm}5.59$ pg/mL in the convalescent phase (p=0.000). There was no significant correlation between the serum TNF-${\alpha}$ levels and the clinical scores of HSP (r=0.310, p=0.070). The genotypic frequency of the TNF-${\alpha}$ -308 polymorphism in children with HSP was not significantly different compared to healthy controls (GG 80%, GA 20% vs. GG 93.8%, GA 6.2%; p=0.094). The genotypic frequency of the TNF-${\alpha}$ -238 polymorphism in children with HSP was not significantly different (GG 97.5%, GA 2.5% vs. GG 93.8%, GA 6.3%; p=0.429). Conclusion: TNF-${\alpha}$ is assumed to be the main cytokine associated with the pathogenesis of HSP during the acute phase. However, the presence of TNF-${\alpha}$ gene polymorphisms at positions -308 and -238 did not distinguish children with HSP from normal controls.

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Role of Tumor Necrosis Factor-${\alpha}$ Promoter Polymorphism and Insulin Resistance in the Development of Non-alcoholic Fatty Liver Disease in Obese Children

  • Yang, Hye-Ran;Ko, Jae-Sung;Seo, Jeong-Kee
    • Pediatric Gastroenterology, Hepatology & Nutrition
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    • v.15 no.1
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    • pp.44-51
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    • 2012
  • Purpose: Tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$) polymorphism has been suggested to play an important role in the pathogenesis of non-alcoholic fatty liver disease (NAFLD) in obese adults, and known to be a mediator of insulin resistance. In this study, we evaluated the role of TNF-${\alpha}$ promoter polymorphisms and insulin resistance in the development of NAFLD in obese children. Methods: A total of 111 obese children (M:F=74:37; mean age, $11.1{\pm}2.0$ yrs) were included. The children were divided into 3 groups: controls (group I, n=61), children with simple steatosis (group II, n=17), and children with non-alcoholic steatohepatitis (group III, n=33). Serum TNF-${\alpha}$ levels, homeostasis model assessment of insulin resistance (HOMA-IR), and TNF-${\alpha}$ -308 and -238 polymorphisms were evaluated. Results: There were no differences in TNF-${\alpha}$ polymorphism at the -308 or the -238 loci between group I and group II + III ($p$=0.134 and $p$=0.133). The medians of HOMA-IR were significantly different between group I and group II + III ($p$=0.001), with significant difference between group II and group III ($p$=0.007). No difference was observed in the HOMA-IR among the genotypes at the -308 locus ($p$=0.061) or the -238 locus ($p$=0.207) in obese children. Conclusion: TNF-${\alpha}$ promoter polymorphisms at the -308 and -238 loci were not significantly associated with the development of NAFLD in children; nevertheless, insulin resistance remains a likely essential factor in the pathogenesis of NAFLD in obese children, especially in the progression to NASH.

Parkin induces apoptotic cell death in TNF-α-treated cervical cancer cells

  • Lee, Kyung-Hong;Lee, Min-Ho;Kang, Yeo-Wool;Rhee, Ki-Jong;Kim, Tae-Ue;Kim, Yoon-Suk
    • BMB Reports
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    • v.45 no.9
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    • pp.526-531
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    • 2012
  • Many malignant tumors become resistant to tumor necrosis factor-alpha (TNF-${\alpha}$)-induced cell death during carcinogenesis. In the present study, we examined whether parkin acts as a tumor suppressor in HeLa cells, a human cervical cancer cell line resistant to TNF-${\alpha}$-induced cell death. TNF-${\alpha}$-treatment alone did not affect HeLa cell viability. However, expression of parkin restored TNF-${\alpha}$-induced apoptosis in HeLa cells. Increased cell death was due to the activation of the apoptotic pathway. Expression of parkin in TNF-${\alpha}$-treated HeLa cells stimulated cleavage of the pro-apoptotic proteins caspase-8, -9, -3, -7 and poly ADP ribose polymerase (PARP). In addition, parkin expression resulted in decreased expression of the caspase inhibitory protein, survivin. These results suggest that parkin acts as a tumor suppressor in human cervical cancer cells by modulating survivin expression and caspase activity. We propose that this pathway is a novel molecular mechanism by which parkin functions as a tumor suppressor.