• 제목/요약/키워드: Toxicogenomics

검색결과 308건 처리시간 0.015초

Genotoxicity of Aluminum Oxide ($Al_2O_3$) Nanoparticle in Mammalian Cell Lines

  • Kim, Youn-Jung;Choi, Han-Saem;Song, Mi-Kyung;Youk, Da-Young;Kim, Ji-Hee;Ryu, Jae-Chun
    • Molecular & Cellular Toxicology
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    • 제5권2호
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    • pp.172-178
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    • 2009
  • Nanoparticles are small-scale substances (<100 nm) with unique properties, complex exposure and health risk implications. Aluminum oxide ($Al_2O_3$) nanoparticles (NP) have been widely used as abrasives, wear-resistant coatings on propeller shafts of ships, to increase the specific impulse per weight of composite propellants used in solid rocket fuel and as drug delivery systems to increase solubility. However, recent studies have shown that nano-sized aluminum (10 nm in diameter) can generate adverse effects, such as pulmonary response. The cytotoxicity and genotoxicity of $Al_2O_3$ NP were investigated using the dye exclusion assay, the comet assay, and the mouse lymphoma thymidine kinase (tk$^{+/-}$) gene mutation assay (MLA). IC$_{20}$ values of $Al_2O_3$ NP in BEAS-2B cells were determined the concentration of 273.44 $\mu$g/mL and 390.63 $\mu$g/mL with and without S-9. However IC$_{20}$ values of $Al_2O_3$ NP were found nontoxic in L5178Y cells both of with and without S-9 fraction. In the comet assay, L5178Y cells and BEAS-2B cells were treated with $Al_2O_3$ NP which significantly increased 2-fold tail moment with and without S-9. Also, the mutant frequencies in the $Al_2O_3$ NP treated L5178Y cells were increased compared to the vehicle controls with S-9. The results of this study indicate that $Al_2O_3$ NP can cause primary DNA damage and cytotoxicity but not mutagenicity in cultured mammalian cells.

Evaluation of the Genotoxicity of Decursin and Decursinol Angelate Produced by Angelica gigas Nakai

  • Kim, Kang-Min;Kim, Tae-Ho;Park, Yun-Jung;Kim, Ik-Hwan;Kang, Jae-Seon
    • Molecular & Cellular Toxicology
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    • 제5권1호
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    • pp.83-87
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    • 2009
  • In this study, we assessed the stability and toxicological safety of Angelica gigas Nakai (A. gigas Nakai) extract, which is comprised of decursin and decursinol angelate (D/DA). D/DA was tested for mutagenicity using Ames Salmonella tester strains (TA102, TA1535, and TA1537) with or without metabolic activation (S9 mix). No increase in the number of revertants was observed in response to any of the doses tested (1.25, 12.5, 125, and $1,250{\mu}/mLg$). In addition, a chromosome aberration test was conducted in the Chinese hamster lung (CHL) cell line. To accomplish this, cells were treated with D/DA (3.28, 13.12, 52.46, and $209.84{\mu}g/mL$) or with Mitomycin C ($0.1{\mu}/mLg$) as a positive control in the case of no metabolic activation or benzo(a)pyrene ($20{\mu}g/mL$) in the case of metabolic activation. No significant increase in chromosome aberrations was observed in response to treatment with any of these concentrations, regardless of activation of the metabolic system. According to these results, we concluded that D/DA did not induce bacterial reverse mutation or clastogenicity in vitro in the range of concentrations evaluated in these experiments.

Identification of Atherosclerosis Related Gene Expression Profiles by Treatment of Benzo(a)pyrene in Human Umbilical Vein Endothelial Cells

  • Lee, Sun-Hee;Lee, Seung-Eun;Ahn, Hyun-Jong;Park, Cheung-Seog;Cho, Jeong-Je;Park, Yong-Seek
    • Molecular & Cellular Toxicology
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    • 제5권2호
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    • pp.113-119
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    • 2009
  • Benzo(a)pyrene (BaP) is a persistent environmental contaminant and is present in tobacco smoke. BaP is considered a major contributor of cardiovascular disease. While the activation of endothelial cells by stimuli including tobacco smoke and air pollution contributes importantly to cardiovascular disease, the nature of BaP's mechanism is unclear. In this study, gene expression profiles were investigated in BaPtreated human umbilical vein endothelial cells (HUVECs). Various atherosclerosis related genes could be up- and down-regulated more than 2-fold by BaP, and mRNA levels of atherosclerosis related genes encoding apolipoproteinC III, TLR 2, ICAM 1 and exportin 4 were significantly increased by BaP. Our data suggest that BaP-mediated changes in gene expression contribute to the progression of cardiovascular disease.

Nitric Oxide Dependency in Inflammatory Response-related Gene Transcripts Expressed in Lipopolysaccharide-treated RAW 264.7 Cells

  • Pie, Jae-Eun;Yi, Hyeon-Gyu
    • Molecular & Cellular Toxicology
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    • 제5권4호
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    • pp.354-363
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    • 2009
  • Cytotoxic Nitric oxide (NO) overproduced by inducible NO Synthase (iNOS or NOS2), which was induced in inflammatory reactions and immune responses directly or indirectly affects the functions as host defense and can cause normal tissue damage. Microarray analysis was performed to identify gene profiles of both NO-dependent and -independent transcripts in RAW 264.7 macrophages that use selective NOS2 inhibitors aminoguanidine ($100\;{\mu}M$) and L-canavanine (1 mM). A total of 3,297 genes were identified that were up- or down-regulated significantly over 2-fold in lipopolysaccharide (LPS)-treated macrophages. NO-dependency was determined in the expressed total gene profiles and also within inflammatory conditions-related functional categories. Out of all the gene profiles, 1711 genes affected NO-dependently and -independently in 567 genes. In the categories of inflammatory conditions, transcripts of 16 genes (Pomp, C8a, Ifih1, Irak1, Txnrd1, Ptafr, Scube1, Cd8a, Gpx4, Ltb, Fasl, Igk-V21-9, Vac14, Mbl1, C1r and Tlr6) and 29 geneas (IL-1beta, Mpa2l, IFN activated genes and Chemokine ligands) affected NO-dependently and -independently, respectively. This NO dependency can be applied to inflammatory reaction-related functional classifications, such as cell migration, chemotaxis, cytokine, Jak/STAT signaling pathway, and MAPK signaling pathway. Our results suggest that LPS-induced gene transcripts in inflammation or infection can be classified into physiological and toxic effects by their dependency on the NOS2-mediated NO release.

CYP2D6 P34S Polymorphism and Mirtazapine Responses in Koreans with Major Depression

  • Jeon, Si-On;Chang, Hun-Soo;Lee, Hwa-Young;Ham, Byung-Joo;Kang, Rhee-Hun;Jeong, Yoo-Jung;Lee, Min-Soo
    • Molecular & Cellular Toxicology
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    • 제5권4호
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    • pp.346-353
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    • 2009
  • Drug metabolism is a critical determinant of the therapeutic and adverse effects of many psychotropic drugs. The metabolism depends on the pharmacokinetics of a drug, which includes its absorption, distribution, and elimination. Psychotropic drugs are metabolized mainly by cytochrome P450 (CYP) enzymes; about 20 of these enzymes exist and they are often responsible for the rate-limiting step of drug metabolism. CYP2D6 is the best-characterized P450 enzyme that exhibits polymorphism in humans. This study determined the relationship between the CYP2D6*10 (P34S) polymorphism and the response to mirtazapine in 153 Koreans with major depressive disorder (MDD). The genotype frequencies were compared using logistic regression analysis, and between-genotype differences in the decrease in the 21-item Hamilton Depression (HAMD21) score over the 12-week treatment period were analyzed using a linear regression analysis. The proportion of remitters was lower in patients with MDD possessing the S allele than in P allele carriers after 2 weeks of mirtazapine treatment. Similarly, the reductions in the HAMD21 and Clinical Global Impression (CGI) scores in S allele carriers were smaller than those in patients with the P allele after 2 weeks of mirtazapine treatment. In the analysis of depression symptoms, the sleep and delusion scores had smaller reductions in S allele carriers. Based on the Liverpool University Neuroleptic Side Effect Rating Scale (LUNSERS), the psychic adverse effects of mirtazapine were associated with CYP2D6 P34S, while weight gain was not. These results suggest that CYP2D6 P34S affects the outcome of mirtazapine treatment in patients with MDD, and that this polymorphism may be a good genetic marker for predicting the clinical outcome of mirtazapine treatment.

Immunohistochemical Analysis of TBX3 and $\beta$-catenin in Gastric Cancers

  • Song, Jae-Hwi;Yoon, Jung-Hwan;Kang, Young-Hwi;Cao, Zhang;Nam, Suk-Woo;Lee, Jung-Young;Park, Won-Sang
    • Molecular & Cellular Toxicology
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    • 제5권4호
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    • pp.328-334
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    • 2009
  • TBX3 has demonstrated oncogenic activity as a downstream target of the Wnt/$\beta$-catenin signaling pathway. In this study, the aim was to determine whether overexpression of the TBX3 protein is involved in the development and/or progression of gastric cancers. We analyzed the expression pattern of the TBX3 and $\beta$-catenin proteins in a series of 186 sporadic gastric cancers. Altered expression of the TBX3 and $\beta$-catenin proteins was observed in 54 (29.0%) and 48 (25.8%) of the 186 gastric cancers. Statistically, overexpression of the TBX3 and $\beta$-catenin proteins was not associated with the clinical and pathological parameters studied including: histological type, tumor location, tumor size, and the 5-year survival (P>0.05). However, TBX3 overexpression was closely associated with lymph node metastasis and aberrant $\beta$-catenin expression (P<0.05). In addition, overexpression of the TBX3 protein was confirmed by Western blot analysis of primary gastric cancer tissues and cell lines. These data suggest that TBX3 overexpression may play a role in the development and progression of sporadic gastric cancers.

Biological Safety and Anti-hepatofibrogenic Effects of Brassica rapa (Turnip) Nanoparticle

  • Park, Dae-Hun;Li, Lan;Jang, Hyung-Kwan;Kim, Young-Jin;Jang, Ja-June;Choi, Yeon-Shik;Park, Seung-Kee;Lee, Min-Jae
    • Molecular & Cellular Toxicology
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    • 제5권4호
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    • pp.317-322
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    • 2009
  • Hepatic fibrosis is one of chronic liver diseases which spread in worldwide and it has high risk to turn advanced cirrhosis and hepatocellualr carcinoma. Brassica family has been produced for commercial purpose and in Korea Brassica rapa (Turnip) is cultivated in Ganghwa County, Gyeonggi-do Korea and used for making Kimchi. Recently pharmacological effects of turnip have been known; diabete mellitus modulation, alcohol oxidization, and fibrosis inhibition. In previous study we found antifibrogenic effect of turnip water extract and in this study we made turnip nanoparticle to promote turnip delivery into liver. At the same time we assessed the biological safety of turnip nanoparticle. Thioacetamide (TAA) induced hepatic nodular formation and fibrosis (mean of fibrosis score: 4). However, 1% turnip nanoparticle inhibited TAA-induced hepatic nodular formation and fibrosis (mean of fibrosis score: 2-3). Activities of serum enzymes (aspartic acid transaminase (AST), alanine transaminase (ALT), and total bilirubin (T-Bil)), complete blood count (CBC), and the appearance of organs were not different from control and 1% turnip nanoparticle treatment. Conclusively 1% turnip nanoparticle significantly reduced TAA-induced hepatic fibrosis and was safe in 7-weeks feeding.

Polymorphisms of Transmembrane Channel-like 1 Gene are Associated with Kawasaki Disease in Korean Population

  • Lim, Tae-Wan;Kim, Su-Kang;Ban, Ju-Yeon;Chung, Joo-Ho;Song, Jeong-Yoon;Yoon, Kyung-Lim;Park, Sung-Wook;Kim, Keon-Sik;Shin, Ok-Young
    • Molecular & Cellular Toxicology
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    • 제5권4호
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    • pp.291-297
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    • 2009
  • Kawasaki disease (KD) is believed to be infectious but etiology and the mechanism of development remain elusive. The aim of this study was to investigate the association between transmembrane channel-like 1 (TMC1) gene and KD. One hundred nine KD patients and 424 normal controls were enrolled. Of all KD patients, 34 developed coronary artery lesions (CALs). Eleven single nucleotide polymorphisms (SNPs) within TMC1 gene were selected and SNP genotyping was performed by the direct sequencing. Genotype frequencies were analyzed with the SNPAnalyzer, Helixtree, and SNPStats programs. In the present study, six SNPs (rs7851577, rs10781105, rs2589615, rs1663743, rs1373628, and rs1373626) were significantly associated with the risk of KD. In further haplotype analysis, one haplotype (CGGACCCT) showed a significant association between KD and control groups. These results suggest that TMC1 gene may be a susceptibility gene for KD in Korean population.

Changes in Antioxidant Enzyme Activity and Physiological Responses to Cadmium and Tributyltin Exposure in the Ark Shell, Scapharca Broughtonii

  • An, Myung-In;An, Kwang-Wook;Choi, Cheol-Young
    • Molecular & Cellular Toxicology
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    • 제5권4호
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    • pp.273-282
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    • 2009
  • Cadmium (Cd) and tributyltin (TBT) are common contaminants of marine and freshwater ecosystems, and can induce the formation of reactive oxygen species (ROS). These ROS can, in turn, cause oxidative stress. In the present study, we investigated time-related effects of Cd (0.05 and 0.1 ppm) and TBT (5 and 10 ppb) treatment on antioxidant enzyme activity, i.e., the activity of superoxide dismutase (SOD) and catalase (CAT) in the gills and digestive glands of the ark shell, Scapharca broughtonii. In addition, hydrogen peroxide ($H_2O_2$) concentrations, lysozyme activity, and glutamate oxaloacetate transaminase (GOT) and glutamate pyruvate transaminase (GPT) levels were measured in the hemolymph. We found that Cd and TBT treatment significantly increased antioxidant enzyme mRNA expression and activity in the digestive glands and gills in a time-dependent manner. In response to the Cd and TBT treatments, antioxidant enzymes mRNA expression and activity increased up to day 5 in the digestive glands and then decreased by day 7. In the gills, antioxidant enzymes mRNA expression and activity increased up to day 3 and then decreased by day 5. Likewise, $H_2O_2$ concentrations significantly increased up to day 5 and then decreased by day 7. Finally, lysozyme activity decreased during the experimental period, whereas GOT and GPT levels were significantly increased in a time-dependent manner. These results suggest that antioxidant enzymes play an important role in decreasing ROS levels and oxidative stress in ark shells exposed to Cd and TBT.

Association Analysis between Polymorph isms of NOTCH4 Gene and Schizophrenia in Korean Population

  • Lee, Seo-Kyong;Kang, Sung-Wook;Kim, Su-Kang;Kim, Hak-Jae;Kim, Tae;Park, Jin-Kyung;Cho, Ah-Rang;Kim, Jong-Woo;Park, Hyun-Kyung;Kim, Youn-Jung;Choe, Bong-Keun;Song, Ji-Young
    • Molecular & Cellular Toxicology
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    • 제5권2호
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    • pp.160-164
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    • 2009
  • Notch signaling plays a crucial role in development of the nervous system. Neurodevelopmental hypothesis on etiology of schizophrenia has been implicated. The aim of this study is to determine whether single nucleotide polymorphisms (SNPs) of Notch homolog 4 (Drosophila) (NOTCH4) gene are associated with schizophrenia. This study included 283 schizophrenia patients diagnosed according to DSM-IV and 301 normal control subjects. Control subjects without history of psychiatric disorders were recruited. Four missense SNPs [rs915894 (exon 3, Lys117Gln), rs2071282 (exon 4, Pro204Leu), rs422951 (exon 6, Thr320Ala), and rs17604492 (exon 18, Gly942Arg)] of NOTCH4 gene were genotyped by the direct sequencing method. Multiple logistic regression models (codominant, dominant, and recessive models) were employed to evaluate odds ratio, 95% confidence interval, and p value. For analysis of genetic data, SNPStats, Haploview, HapAnalyzer, SNPAnalyzer, and Helixtree programs were also used. Of 4 SNPs, rs2071282 was weekly associated with schizophrenia in two alternative models (codominant model, P=0.049; dominant, P=0.041). However, these associations were not significant after Bonferroni correction. At 4 SNPs, one linkage disequilibrium (LD) block was made. This block consisted of rs915894 and rs2071282. In haplotype analysis, AC haplotype was weakly associated with schizophrenia (dominant, P=0.04). This association was disappeared after Bonferroni correction. Our result shows possibility that some SNPs of NOTCH4 gene may be weekly associated with development of schizophrenia in Korean population. However, replication result by other population will be needed.