• 제목/요약/키워드: micronucleus (MN)

검색결과 48건 처리시간 0.026초

Genetic Toxicity Test of Methylcarbamate by Ames, Micronucleus, Comet Assays and Microarray Analysis

  • Kwon, Kyoung-J.;Go, Seo-Y.;Park, Sue-N.;Sheen, Yhun-Y.
    • Biomolecules & Therapeutics
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    • 제15권3호
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    • pp.199-204
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    • 2007
  • Carbamates have excellent insecticidal activities against a broad spectrum of insects. They possess knocking-down, fast-killing, and systemic effects, however, they are toxic to mammals. In this study, we have carried out in vitro genetic toxicity test of methylcarbamate and microarray analysis of differentially expressed genes in response to methylcarbamate. Methylcarbamate did not show mutations in base substitution strain TA1535 both with and without exogenous metabolic activation. Methylcarbamate did not show mutations in frame shift TA98 both with and without exogenous metabolic activation. Methylcarbamate showed DNA damage based on single cell gel/comet assay in L5178Y cells both with and without exogenous metabolic activation. Methylcarbamate did not increase micronuclei in CHO cells both with and without exogenous metabolic activation. Microarray analysis of gene expression profiles in L5178Y cells in response to methylcarbamate selected differentially expressed 132 genes that could be candidate biomarkers of genetic toxic action of methylcarbamate.

Genetic Toxicity Test of 1,2-Dibromoethane by Ames, Micronucleus, Comet Assays and Microarray Analysis

  • Kim, Ki-Y.;Kim, Ji-H.;Kwon, Kyoung-J.;Go, Seo-Y.;Min, Kyung-N.;Lee, Woo-S.;Park, Sue-N.;Shee, Yhun-Y.
    • Biomolecules & Therapeutics
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    • 제14권4호
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    • pp.246-252
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    • 2006
  • 1,2-Dibromoethane(DBE) has been widely used as a soil fumigant, an additive to leaded gasoline and an industrial solvent. In this study, we have carried out in vitro genetic toxicity test of 1,2-dibromoethane and microarray analysis of differentially expressed genes in response to 1,2-dibromoethane. 1,2-Dibromoethane showed mutations in base substitution strain TA1535 both with and without exogenous metabolic activation. 1,2-Dibromoethane showed mutations in frame shift TA98 both with and without exogenous metabolic activation. 1,2-Dibromoethane showed DNA damage based on single cell gel/comet assay in L5178Y cells both with and without exogenous metabolic activation. 1,2-Dibromoethane increased micronuclei in CRO cells both with and without exogenous metabolic activation. Microarray analysis of gene expression profiles in L5178Y cells in response to 1,2-dibromoethane selected differentially expressed 241 genes that would be candidate biomarkers of genetic toxic action of 1,2-dibromoethane.

Genetic Toxicity Test of o-Nitrotoluene by Ames, Micronucleus, Comet Assays and Microarray Analysis

  • Lee, Eun-Mi;Lee, So-Youn;Lee, Woo-Sun;Kang, Jin-Seok;Han, Eui-Sik;Go, Seo-Youn;Sheen, Yhun-Yong;Kim, Seung-Hee;Park, Sue-Nie
    • Molecular & Cellular Toxicology
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    • 제3권2호
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    • pp.107-112
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    • 2007
  • o-Nitrotoluene is used to synthesize artificial dyes and raw materials of urethane resin. In this study, we have carried out in vitro genetic toxicity tests and microarray analysis to understand the underlying mechanisms and the mode of action of toxicity of onitrotoluene. TA1535 and TA98 cells were treated with o-nitrotoluene to test its toxicity by basic genetic toxicity test. Ames and two new in vitro micronucleus and COMET assays were applied using CHO cells and L5178Y cells, respectively. In addition, microarray analysis of differentially expressed genes in L5178Y cells in response to o-nitrotoluene was analyzed using Affymatrix genechip. The result of Ames test was that o-nitrotoluene treatment did not increase the mutations both in base substitution strain TA1535 and in frame shift TA98. o-Nitrotoluene has not increased micronuclei in CHO cells. But onitrotoluene increased DNA damage in L5178Y cell. Two-hundred two genes were initially selected as differentially expressed genes in response to o-nitrotoluene by microarray analysis and forty four genes among them were over 2 times of log fold changed. These forty four genes could be candidate biomarkers of genetic toxic action of o-nitrotoluene related to induction of mutation and/or induction of micronuclei and DNA damage. Further confirmation of these candidate markers related to the DNA damage will be useful to understand the detailed mechanism of action of o-nitrotoluene.

Genetic Toxicity Test of 8-Hydroxyquinoline by Ames, Micronucleus, Comet Assays and Microarray Analysis

  • Lee, Woo-Sun;Kim, Hyun-Joo;Lee, Eun-Mi;Kim, Joo-Hwan;Suh, Soo-Kyung;Kwon, Kyung-Jin;Sheen, Yhun-Yong;Kim, Seung-Hee;Park, Sue-N.
    • Molecular & Cellular Toxicology
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    • 제3권2호
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    • pp.90-97
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    • 2007
  • 8-Hydroxyquinoline is used as antibacterial agent and antioxidant based on its function inducing the chelation of ferrous ion present in host resulting in production of chelated complex. This complex being transported to cell membrane of bacteria and fungi exerts antibacterial and antifungal action. In this study, we have carried out in vitro genetic toxicity tests and microarray analysis to understand the underlying mechanisms and the mode of action of toxicity of 8-hydroxyquinoline. TA1535 and TA98 cells were treated with 8-hydroxyquinoline to test its toxicity by basic genetic toxicity test, Ames and two new in vitro micronucleus and COMET assays were applied using CHO cells and L5178Y cells, respectively. In addition, microarray analysis of differentially expressed genes in L5178Y cells in response to 8-hydroxyquinoline were analyzed using Affymatrix genechip. The result of Ames test was that 8-hydroxyquinoline treatment increased the mutations in base substitution strain TA1535 and likewise, 8-hydroxyquinoline also increased mutations in frame shift TA98. 8-Hydroxyquinoline increased micronuclei in CHO cells and DNA damage in L5178Y. 8-Hdroxyquinoline resulted in positive response in all three tests showing its ability to induce not only mutation but also DNA damage. 783 Genes were initially selected as differentially expressed genes in response to 8-hydroxyquinoline by microarray analysis and 34 genes among them were over 4 times of log fold changed. These 34 genes could be candidate biomarkers of genetic toxic action of 8-hydroxyquinoline related to induction of mutation and/or induction of micronuclei and DNA damage. Further confirmation of these candidate markers related to their biological function will be useful to understand the detailed mode of action of 8-hydroxyquinoline.

까마귀쪽나무열매추출물의 유전독성 평가 (Genotoxicity Study of Litsea japonica Fruit Flesh Extract)

  • 윤지현;박인재;박성환;최구희;김현정;조주현
    • 한국식품위생안전성학회지
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    • 제33권3호
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    • pp.207-213
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    • 2018
  • 본 연구는 까마귀쪽나무열매추출물(LJF-HE)의 유전독성을 평가하고자 하였다. 유전독성연구는 OECD와 MFDS(Korea Ministry of Food and Drug Safety) 지침에 따라 복귀돌연변이시험, 염색체이상시험, 마우스 골수세포를 이용한 소핵시험을 실시하였다. 세균을 이용한 복귀돌연변이시험은 까마귀쪽나무열매추출물(LJF-HE) 처리군에서 S9 mix 존재유무에 상관없이 복귀돌연변이 콜로니 수는 음성 대조군과 비교하였을 때 증가 양상을 나타내지 않은 반면에 양성 대조물질에서 유발된 복귀돌연변이 콜로니 수는 대사활성계 미적용(S9-) 및 적용(S9+)의 모든 시험 균주에 대하여 음성(용매)대조 값의 2배를 넘어 증가한 것으로 나타났다. 염색체 이상 시험에서 까마귀쪽나무열매추출물(LJF-HE) 처리군에서 모든 세포주의 처리시간 및 S9 mix 존재유무에 상관없이 5%미만의 비정상적인 염색체이상을 나타내었으나, 음성대조군에 비해 유의적인 변화는 없었다. 소핵시험은 까마귀쪽나무열매추출물(LJF-HE) 처리군에서 음성 대조군과 비교하여 소핵을 가진 다염성 적혈구의 증가는 볼 수 없었으며 통계학적인 유의성도 나타나지 않았다. 상기의 결과를 종합하면 까마귀쪽나무열매추출물(LJF-HE)은 유전독성을 유발하지 않는 것으로 판단되어진다.

Genetic Toxicity Test of Glycidol by Ames, Micronucleus, Comet Assays and Microarray Analysis

  • Kim, Ji-H.;Kim, Ki-Y.;Kwon, Kyoung-J.;Go, Seo-Y.;Min, Kyung-N.;Lee, Woo-S.;Park, Sue-N.;Sheen, Yhun-Y.
    • Biomolecules & Therapeutics
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    • 제14권4호
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    • pp.240-245
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    • 2006
  • The primary use for glycidol is as a stabilizer in the manufacture of vinylpolymers, however, it is also used as an intermediate in the production of pharmaceuticals, as an additives for oil and synthetic hydraulic fluids, and as a diluting agent is same epoxy resins. In this study, we have carried out in vitro genetic toxicity test of glycidol and microarray analysis of differentially expressed genes in response to glycidol. The result of Ames test showed mutations with glycidol treatment in base substitution strain TA1535 both with and without exogenous metabolic activation. Likewise, glycidol showed mutations in frame shift TA98 both with and without exogenous metabolic activation. The result of COMET assay in L5178Y cells with glycidol treatment showed DNA damage both with and without exogenous metabolic activation. Glycidol increased micronuclei in CHO cells both with and without exogenous metabolic activation. 150 Genes were selected as differentially expressed genes in response to glycidol by microarray analysis and these genes would be candidate biomarkers of genetic toxic action of glycidol.

방사선 조사량에 따른 인체 정상 림파구의 미세핵 발생빈도 (Frequency of Micronuclei in Lymphocytes Following Gamma and Fast-neutron Irradiations)

  • 김성호;조철구;김태환;정인용;류성렬;고경환;윤형근
    • Radiation Oncology Journal
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    • 제11권1호
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    • pp.35-42
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    • 1993
  • 원자력 시설 이용 증대에 따른 불의의 방사선 사고에 대비하여 방사선 작업종사자의 피폭시 진단을 위한 검사방법이 필요하다. 이 방법은 검사를 위한 검체의 채취가 용이하고, 짧은 시간내에 간편하게 많은 Sample을 처리하여야 한다는 조건을 만족시켜야 한다. 인체의 다양한 조직 및 세포 중에서 위의 조건을 만족시킬 수 있는 말초 혈액의 림파구는 비교적 방사선에 대한 감수성이 높다고 알려져 있으며, 채집 또한 용이하여 생물학적 선량 측정의 도구로써 이용가치가 높아 방사선 작업 종자사나 피폭 가능성이 있는 사람의 screening test에 사용될수 있다. 정상인에 있어서의 림파구내 미세핵 존재 여부와 방사선 피폭량에 따른 미세핵 발생빈도를 시험관내 실험을 통하여 표준화시켜 향후 방사선 피폭시 피폭선량을 역으로 산출해 낼 수 있는 방사선 장해의 평가 기술 개발의 기초자료를 마련하기 위하여 본 실험을 시행하였다. 정상인으로 부터 혈액을 채취하여 림파구만을 Ficoll-Hypaque gradient 방법으로 추출하여 배양한 다음, 본 치료방사선과의 중성자 치료기 (MC-50, scanditronix)와 Co-60 teletherapy unit(Theratron-780, AECL)를 이용하여 방사선 조사를 시행하였다. Cytokinesis-block method를 이용하여 첫번째 분열을 한 림파구에서 미세핵(Micronucleus)을 현미경을 통하여 계수한 다음, 이의 선량-반응 관계식을 linear-quadratic model을 사용하여 구하고, 이를 근거로 하여 gamma-ray에 대한 중성자의 Relative biological effectiveness (RBE)를 산출하였다. 방사선에 피폭되지 않은 림파구의 미세핵 발생빈도는 binucieated cell한 개당 $0.013{\pm}0.0002$로써 사람에 따라 통계학적으로 큰 차이를 보이지 않았다. 그림 2와 3에서 보는 바와 같이 개개인으로부터 얻은 data는 감마선과 중성자선 모두에서 선량-반응 곡선의 linear-quadratic equation에 잘 일치하였다. 감마선과 중성자선 모두에서 선량에 따른 미세핵의 발생빈도는 선량이 높을수록 비례하여 증가하였는데, 감마선의 경우에는 $r^2=1.000,\;x^2=0.7074$, p=0.95였으며, 중성자선인 경우에는 $r^2=0.996,\;x^2=7.6834$, p=0.11 였다. 이를 linear-quadratic model로 분석하면, 가장 적합한 선은 감마선인 경우에는 y= ($0.31{\pm}0.049)\;D+(0.0022{\pm}0.0002)\;D^2+(13.19{\pm}1.854$) 였으며, 중성자선인 경우에는 y=($0.99{\pm}0.528)\;D+(0.0093{\pm}0.0047)\;D^2+(13.31{\pm}7.309$) 였었다. 감마선에 대한 중성자선의 상대적 생물학적 효과비 (RBE)는 y=aD+$bD^2$+c를 다음과 같은 식으로 변형시켜 계산하였다. $$\frac{[-a{pm}\sqrt{a^2-4b\;(c-y}}]}{2{\times}6}$$ 미세핵 발생빈도가 세포당 0.05와 0.8사이에서의 중성자선의 상대적 생물학적 효과비는 $2.37{\pm}0.17$ 이었다. 이상의 결과를 종합하여 볼 때 선량에 따른 미세핵 발생빈도는 기존의 방사선 감수성 test의 결과와 대동소이하여, 앞으로 방사선 감수성을 측정하는 방법으로 이용할 수 있으며, 또한 실험방법이 비교적 간단하며 짧은 시간에 결과를 도출할 수 있어 생물학적 선량측정 도구로써 널리 이용될 수 있을 것으로 생각되어 진다.

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에틸렌옥사이드(Ethylene oxide)에 노출된 병원 근로자들의 소핵 빈도와 유전적 감수성 지표와의 연관성 (Analysis of Micronuclei and Its Association with Genetic Polymorphisms in Hospital Workers Exposed to Ethylene Oxide)

  • 이선영;김양지;최영주;이중원;이영현;신미연;김원;윤충식;김성균;정해원
    • 한국환경보건학회지
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    • 제37권6호
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    • pp.429-439
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    • 2011
  • Objectives: Ethylene oxide (EtO) is classified as a human carcinogen, but EtO is still widely used to sterilize heat-sensitive materials in hospitals. Employees working around sterilizers are exposed to EtO after sterilization. The aim of the present study was to assess the exposure of EtO level, coupled with occupationally induced micronuclei from hospital workers. The influence of genetic polymorphisms of detoxifying genes (GSTT1 and GSTM1) and DNA repair genes (XRCC1 and XRCC3) on the frequencies of micronuclei in relation to exposure of EtO was also investigated. Methods: The study population was composed of 35 occupationally exposed workers to EtO, 18 student controls and 44 unexposed hospital controls in Korea. Exposure to EtO is measured by passive personal samplers. We analyzed the frequencies of micronuclei by performing cytokinesis-block micronucleus assay (CBMN assay) and GSTM1, GSTT1, XRCC1, and XRCC3 were also genotyped by performing polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP). Results: The frequencies of micronuclei in EtO exposure group, student controls and hospital controls were $18.00{\pm}7.73$, $10.47{\pm}7.96$ and $13.86{\pm}6.35$ respectively and their differences were statistically significant, but no significant differences according to the level of EtO were observed. There was a dose-response relationship between the frequencies of micronuclei and cumulative dose of EtO, but no significantly differences were observed. We also investigated the influence of genetic polymorphisms (GSTM1, GSTT1, XRCC1, and XRCC3) on the frequencies of micronuclei, but there were no differences in the frequencies of micronuclei by genetic polymorphisms. Conclusions: The frequencies of micronuclei in EtO exposure group was significantly higher than control groups. A dose-response relationship was found between the level of EtO exposure and the frequencies of micronuclei, but no statistically differences were observed. We also found that the frequencies of micronuclei were increased according to cumulative EtO level. There was no association of the genetic GSTM1, GSTT1, XRCC1, and XRCC3 state with the frequency of micronuclei induced by EtO exposure.