• Title/Summary/Keyword: Tradescantia-micronucleus assay

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Study on the genotoxicity of soi1 leachate from two polluted sites in Cheongju with Tradescantia-micronuclus assay (자주달개비 미세핵 분석법을 이용한 청주공단주변 토양침출수의 유전독성 평가)

  • Kim Jin Gyu;Lee Byeong Heon;Sin Hae Sik;Lee Jin Hong
    • Proceedings of the Korea Society of Environmental Biology Conference
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    • 2002.11a
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    • pp.119-122
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    • 2002
  • Soil contaminants are common in industrialized sites, They can affect directly soil and indirectly ground water and food. Soil mutagens and carcinogens are of great interest due to their potentially hazardous effects on human health. The aim of this study was to monitor the genotoxicity of contaminated soils, Soil leachates were collected from two polluted sites and one control site in Cheongju. Tradescantia BNL 4430 clone was used as experimental matierials. Chromosomal damages induced by soil leachates were detected by the Tradescantia-micronucleus assay. It is known from the result that Tradescantia-micronucleus assay is an excellent botanical tool for detection of biological risk due to environmental toxicants.

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Study on the Biological Effects of TSP Collected from the Subway Station with Tradescantia Bioassay (지하철 시설내 부유먼지에 함유된 돌연변이원의 생물학적 영향 평가)

  • Kim, Jin-Kyu;Shin, Hae-Shik;Lee, Jeong-Joo;Kim, Kyun;Lee, Jin-Hong
    • Environmental Analysis Health and Toxicology
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    • v.17 no.3
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    • pp.245-252
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    • 2002
  • Airborne pollutants in the subway facilities can be potentially harmful to the health of passengers. This study was designed to examine whether the suspended particulates have mutagenic or carcinogenic effect on the plant cell systems. Total suspended particulates were collected with a high volume air sampler, in the entrance, the waiting room, and the platform of each subway station. The biological end -points in this experiment were the pink mutations in stamen hairs and micronuclei in the pollen mother cells of Tradescantia. The exudates were collected by shaking the filter papers from the sampler in distilled water for 24 hours. All the plant cuttings exposed to the exudates resulted in positive responses. The micronucleus assay proved more reliable and sensitive to the test than the stamen hair assay. The results indicate that the air particulates can give an adverse effect on the health of subway passengers.

Genotoxicity of Heavy Metals among the Particulates in the Working Environment as Assessed by Tradescantia-Micronucleus (Trad-MCN) Assay (자주달개비 미세핵 분석법을 이용한 작업환경내 총 먼지 중 수용성 추출물의 유전독성 평가)

  • Shin, Hae-Shik;Kim, Jin-Kyu;Lee, Jae-Hwan;Hwang, Kap-Sung;Kim, Kyun;Lee, Jeong-Joo;Lee, Jin-Hong
    • Journal of Korean Society for Atmospheric Environment
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    • v.19 no.6
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    • pp.639-646
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    • 2003
  • In this study, we evaluated genotoxicity of heavy metals among particulates with Tradescantia-micronucleus (Trad-MCN) assay in the various working environment. In a synthetic fiber factory and a rubber factory, chromium concentration was higher than any other heavy metals. On the other hand, nickel concentration was the highest in a semi-conductor factory. The difference in genotoxicity among the working environment was statistically significant as Trad-MCN frequencies were 4.07 $\pm$0.35 MCN/100 tetrads (p< 0.01) for the synthetic fiber factory,5.73 $\pm$0.81 MCN/100 tetrads (p< 0.01) for the rubber factory, and 15.60$\pm$2.58 (p< 0.01) (p< 0.001) for the semi -conductor factory. As a result, heavy metals among particulates in the working environment can be considered to have hazardous potential to human health, although they cannot directly induce DNA damage to the workers in the working environments.

Biomonitoring the Genotoxicity of Environmental Pollutants Using the Tradescantia Bioassay (환경 중 유전독성물질 검색을 위한 자주달개비 생물검정 기법의 적용연구)

  • 신해식
    • Proceedings of the Korea Society of Environmental Toocicology Conference
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    • 2004.05a
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    • pp.47-60
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    • 2004
  • Higher plants can be valuable genetic assay systems for monitoring environmental pollutants and evaluating their biological toxicity. Two assays are considered ideal for in situ monitoring and testing of soil, airborne and aqueous mutagenic agents; the Tradescantia stamen hair assay for somatic cell mutations and the Tradescantia micronucleus assay for chromosome aberrations. Both assays can be used for in vivo and in vitro testing of mutagens. Since higher plant systems are now recognized as excellent indicators and have unique advantages over in situ monitoring and screening, higher plant systems could be accepted by regulatory authorities as an alternative first-tier assay system for the detection of possible genetic damages resulting from the pollutants or chemicals used and produced by industrial sectors. It has been concluded that potential mutagen and carcinogen such as the heavy metals among indoor air particulates, volatile compounds in the working places, soil, and water pollutants contribute to the overall health risk. This contribution can be considerable under certain circumstances. It is therefore important to identify the level of genotoxic activity in the environment and to relate it to the biomarkers of a health risk in humans. The results from the higher plant bioassays could make a significant contribution to assessing the risks of pollutants and protecting the public from agents that can cause mutation and/or cancer. The plant bioassays, which are relatively inexpensive and easy to handle, are recommended for the scientists who are interested in monitoring pollutants and evaluating their environmental toxicity to living organisms.

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Assessment of Environmental Pollution with Tradescantia Bioassays (자주달개비 생물검정 기법을 이용한 환경오염 평가)

  • Kim Jin Gyu;Sin Hae Sik
    • Proceedings of the Korea Society of Environmental Biology Conference
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    • 2004.05a
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    • pp.1-15
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    • 2004
  • Higher plants can be valuable genetic assay systems for monitoring environmental pollutants and evaluating their biological toxicity. Two assays are considered ideal for in situ monitoring and testing of soil, airborne and aqueous mutagenic agents; the Tradescantia stamen hair assay for somatic cell mutations and the Tradescantia micronucleus assay for chromosome aberrations. Both assays can be used for in vivo and in vitro testing of mutagens. Since higher plant systems are now recognized as excellent indicators and have unique advantages over in situ monitoring and screening, higher plant systems could be accepted by regulatory authorities as an alternative first-tier assay system for the detection of possible genetic damages resulting from the pollutants or chemicals used and produced by industrial sectors. It has been concluded that potential mutagen and carcinogen such as the heavy metals among indoor air particulates, volatile compounds in the working places, soil, and water pollutants contribute to the overall health risk. This contribution can be considerable under certain circumstances. It is therefore important to identify the level of genotoxic activity in the environment and to relate it to the biomarkers of a health risk in humans. The results from the higher plant bioassays could make a significant contribution to assessing the risks of pollutants and protecting the public firom agents that can cause mutation anuor cancer. The plant bioassays, which are relatively inexpensive and easy to handle, are recommended for the scientists who are interested in monitoring pollutants and evaluating their environmental toxicity to living organisms.

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Dose-Response Relationship of Micronucleus Frequency in Pollen Mother Cells of Tradescantia (자주달개비 화분모세포 미세핵 생성률의 방사선량-반응 관계)

  • Kim, Jin-Kyu;Song, Hi-Sup;Hyun, Soung-Hee
    • Journal of Radiation Protection and Research
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    • v.24 no.4
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    • pp.225-230
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    • 1999
  • This study was carried out to investigate the radiation dose-response of micronucleus frequencies in Tradescantia pollen mother cells. The number of micronuclei increased in the tetrads as a result of chromosome deletion after irradiation. The maximal frequency of micronuclei showed a good dose-response relationship in the range of dose $0{\sim}50$ cGy. On the basis of the relationship, a dose of 1 cGy results maximally in two additional micronuclei in 100 tetrads. The radiation dose-response relationship of micronucleus occurrence is prerequisite to biological monitoring of radiations. The micronucleus assay can be applied to biological risk assessment of environmental toxicants, and to integrity test of water or soils of interest.

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Comparative Study on Biological Effects of Gamma-Radiation and Bisphenol A with Tradescantia Micronucleus Assay (자주달개비 미세핵 분석법을 이용한 비스페놀 에이 및 감마선의 생물학적 영향 비교 연구)

  • 신해식;송희섭;현성희;이진홍;김진규
    • Korean Journal of Environmental Biology
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    • v.20 no.2
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    • pp.158-164
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    • 2002
  • Some of synthetic chemicals can net as an endocrine disrupting substance in higher animals. Dioxins, DDT, PCBs and bisphenol A (BPA) are classified into endocrine disruptors and aye under a strict control in many countries. This research was designed to compare the clastogenic effects of BPA to those of ionizng radiation to establish the relaltive effectiveness of BPA by means of Tradescantia micronucleus assay. For the uptake of the BPA through the stems, groups of fresh cuttings of Tradescantia BNL 4430 weve placed in BPA solutions of 0 to 4 $\mu$M for 6 hours under continuous aeration. The other groups of the cuttings were irradiated with 0 to 0.5 Gy of gamma- rays. The frequencies of micronucleus showed a positive dose- response relationship in the range of 0 to 0.5 Gy, and a clear concentration-response relationship in the experimental range of BPA concentrations. By comparing the two experimental results, it is possible to estimate the BPA concentration and its equivalent radiation dose for a fixed value of MCN frequency. BPA of $ll.8\mu{M}$ can give rise to 53.3 MCN/100 tetrads, which is the same frequency induced by 25 cGy of gamma- rays. It is of biological importance that clinical symptoms start to develop after a whole body exposure to radiation higher than 25 cGy. The results indicate that the pollen mother cells are an excellent biological end- point for toxicity test of suspected endocrine disrupting chemicals such as bisphenol A, cotylphenol and nonylphenol.

The Comparison of Volatile Organic Compounds (VOCs) Analysis and Tradescantia Micronucleus (Trad-MCN) Bioassay for Evaluation of Hazardous Materials in Chemical Workplace Field (화학공장 실내 작업장에서의 유해물질 평가를 위한 VOC 분석법과 자주달개비 미세핵 분석법의 비교)

  • Heo, Gwi Suk;Lee, Jae Hwan;Shin, Hae Shik;Kim, Jin Kyu;Lee, Young Yup;Lee, Dai Woon;Lee, Jin Hong
    • Analytical Science and Technology
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    • v.16 no.1
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    • pp.1-11
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    • 2003
  • This research examined the presence of hazardous materials in chemical workplace field using an integrated chemical/biological monitoring. Chemical workplace field air for volatile organic compounds (VOCs) analysis was collected using a collection tube packed with Tena.x TA adsorbent 400 mg. Workplace field air samples were analyzed by gas chromatography/mass spectrometry (GC/MS). Simultaneously, Tradescantia BNL 4430 clone was exposed in situ to monitor hazardous materials in chemical workplace field. GC/MS analysis showed the presence of various VOCs such as trichloroethylene, toluene, ethylbenzene, (m,p,o)-xylenes, styrene, 1,3,5-trimethylbenzene, and 1,2,4-trimethylbenzene. The results showed that in situ monitoring of VOCs with the Tradescantia-micronucleus (Trad-MCN) assay gave positive results in chemical workplace field and negative response at outdoor air. In conclusion, inhalation of these field air by workers may affect chronic demage to their health by inducing micronuclei formation in Tradescantia pollen mother cells. The combination of chemical/biological monitoring is very effective to evaluate hazardous materials in workplace field and can be alternatively used for screening hazardous materials.

Comparative Study on Biological Effects of Electromagnetic Fields and Gamma-radiation with Tradescantia Micronucleus Assay (자주달개비 미세핵 분석법을 이용한 전자파 및 감마선의 생물학적 영향 비교 연구)

  • 김진규;신해식;이진홍
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2003.11a
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    • pp.463-464
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    • 2003
  • 현대인들은 다양한 전자기기 휴대폰, 컴퓨터, 전자레인지로부터 발생하는 전자파에 뇌를 노출시키고 있다. 전자기기의 전자파는 뇌에 중대한 손상을 가져올 수 있으며, 조기 노화를 초래할 수 있다고 경고하고 있다. 전자파의 실질적인 위험은 뇌가 열을 받는 것이 아니라 비열방사선이라고 널리는 강도가 낮은 방사선이라고 한다. 휴대폰, 컴퓨터의 모니터에서 발생되는 전자파에 장시간 노출로 인한 각종 전자파 유해가 생기고 여러 가지 신경 계통에 대한 장해가 증가하고 있다. 전자파가 인체에 미치는 영향에 대한 많은 연구가 이루어지고 있으나 서로 상반되는 연구결과가 많이 나타나고 있다. (중략)

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