• 제목/요약/키워드: genotoxicity tests

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Genotoxic evaluation of recombinant human erythropoietin (rHu-EPO) in shod-term assays. (인체 재조합 적혈구 조혈인자, rHu-EPO의 유전독성 평가)

  • 김형식;곽승준;천선아;임소영;안미영;김원배;김병문;안병옥;서동상
    • Environmental Mutagens and Carcinogens
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    • v.16 no.2
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    • pp.103-108
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    • 1996
  • The mutagenic potential of rHu-EPO was evaluated using the short-term genotoxicity tests including Ames, chromosome aberration and micronuclei tests. In Salmonella typhimurium assay, rHu-EPO did not show any mutagenic response in the absence or presence of S9 mix with TA98, TA100, TA1535, and TA1537. In chromosome aberration test, rHu-EPO did not show any significant effect on Chinese Hamster Ovary(CHO) cells compared with control. In micronucleus test using male ICR mice, a dose-dependence increase in the frequency of micronucleuted polychromatic erythrocytes(MNPCEs) was observed in bone marrow cells treated with rHu-EPO. However, it was related to the secondary effect of rHu-EPO and the number of MNPCEs was equal to spontaneous frequency. These results indicate that rHu-EPO does not show any positive response in short-term genotoxicity assays.

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Publication trends of somatic mutation and recombination tests research: a bibliometric analysis (1984-2020)

  • Tagorti, Ghada;Kaya, Bulent
    • Genomics & Informatics
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    • v.20 no.1
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    • pp.10.1-10.15
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    • 2022
  • Human exposure to pollutants has been on the rise. Thus, researchers have been focused on understanding the effect of these compounds on human health, especially on the genetic information by using various tests, among them the somatic mutation and recombination tests (SMARTs). It is a sensitive and accurate method applicable to genotoxicity analysis. Here, a comprehensive bibliometric analysis of SMART assays in genotoxicity studies was performed to assess publication trends of this field. Data were extracted from the Web of Science database and analyzed by the bibliometric tools HistCite, Biblioshiny (RStudio), VOSViewer, and CiteSpace. Results have shown an increase in the last 10 years in terms of publication. A total of 392 records were published in 96 sources mainly from Brazil, Spain, and Turkey. Research collaboration networks between countries and authors were performed. Based on document co-citation, five large research clusters were identified and analyzed. The youngest research frontier emphasized on nanoparticles. With this study, how research trends evolve over years was demonstrated. Thus, international collaboration could be enhanced, and a promising field could be developed.

TOXIC MECHANISM OF ATRAZINE IN TRANSGENIC MUTAGENESIS SYSTEM USING BIG BLUE$\circledR$ RAT2 lacI TRANSGENIC FIBROBLASTS AND HORMONAL DISTURBANCES IN VITRO

  • Kim, Youn-Jung;Ryu, Jae-Chun
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2001.10a
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    • pp.183-183
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    • 2001
  • Atrazine, one of herbicide widely used in agriculture, is classified as a possible human carcinogen (2B group) that may cause breast and ovarian cancers by IARC, and is known as an endocrine disruptor. Atrazine has been subjected to broad ranges of genotoxicity tests with predominantly negative results, but reported conflicting results across two or more independent tests as well. This fact indicates that a more comprehensive genotoxicity assessment needs for atrazine.(omitted)

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Genotoxicological Safety of the Gamma-Irradiated Korean Red Ginseng In vitro (감마선 조사 홍삼의 안전성에 관한 유전독성학적 연구)

  • 조성기;육홍선;변명우
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.3
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    • pp.491-496
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    • 1996
  • This experiment was performed to determine the safety of the Korean red ginseng irradiated with gamma rays with respect to genotoxicity. Ethanol extracts of the 5 and 10 kGy gamma-irradiated red ginseng were examined in two short-term in vitro tests : (1) Salmonella typhimurium reversion assay(Ames test) in strain TA 98, TA 100 and TA 102 (2) Micronucleus test in cultured Chinese hamster ovary(CHO) cells. No mutagenicity was detected in the two assays with or without metabolic activation. It was suggested that the Korean red ginseng irradiated with gamma rays did not cause genotoxicity in vitro. Further tests of genotoxicity in vivo, chronic and reproductive toxicity should be carried out to determine whether it is safe to irradiate Korean red ginseng with practical doses of gamma rays.

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Assessment of genotoxicity of Ssanghwa-tang, an herbal formula, by using bacterial reverse mutation, chromosome aberration, and in vivo micronucleus tests

  • Jang, Ji-Hye;Seo, Chang-Seob;Lee, Mee-Young;Shin, Hyeun-Kyoo;Han, Su-Cheol;Ha, Hyekyung
    • The Journal of Korean Medicine
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    • v.42 no.4
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    • pp.25-39
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    • 2021
  • Objectives: Ssanghwa-tang (SHT) is a traditional herbal formula comprising nine medicinal herbs, and it is used for reducing fatigue in Korea. SHT exerts various effects such as anti-inflammatory, antioxidant, and anti-aging activities, and protection against acute hepatotoxicity. However, the genotoxicity of SHT has not yet been established. Methods: Ten components were identified in SHT water extract by using high-performance liquid chromatography analysis. We assessed the genotoxicity of SHT by using bacterial reverse mutation (Ames test), chromosome aberration, and in vivo micronucleus tests. Results: The contents of paeoniflorin, glycyrrhizin, and liquiritin apioside in SHT were 15.57, 6.94, and 3.48 mg/g extract, respectively. SHT did not increase the revertant colonies of Salmonella typhimurium and Escherichia coli strains in the presence or absence of metabolic activity. Although SHT did not induce structurally abnormal chromosomes in Chinese hamster lung (CHL) cells in the presence of metabolic activity, the number of structurally aberrated chromosomes increased dose-dependently in the absence of metabolic activity. In the in vivo micronucleus test, SHT did not affect the formation of micronuclei compared with the vehicle control. Conclusions: Genotoxicity of SHT was not observed in the Ames test and in vivo micronucleus test. However, based on the results of chromosome aberration test, it can be presumed that SHT has the potential to induce genotoxicity because it induced structurally abnormal chromosomes in the absence of metabolic activity.

Genotoxicity Assessment of Erythritol by Using Short-term Assay

  • Chung, Young-Shin;Lee, Michael
    • Toxicological Research
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    • v.29 no.4
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    • pp.249-255
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    • 2013
  • Erythritol is a sugar alcohol that is widely used as a natural sugar substitute. Thus, the safety of its usage is very important. In the present study, short-term genotoxicity assays were conducted to evaluate the potential genotoxic effects of erythritol. According to the OECD test guidelines, the maximum test dose was 5,000 ${\mu}g$/plate in bacterial reverse mutation tests, 5,000 ${\mu}g/ml$ in cell-based assays, and 5,000 mg/kg for in vivo testing. An Ames test did not reveal any positive results. No clastogenicity was observed in a chromosomal aberration test with CHL cells or an in vitro micronucleus test with L5178Y $tk^{+/-}$ cells. Erythritol induced a marginal increase of DNA damage at two high doses by 24 hr of exposure in a comet assay using L5178Y $tk^{+/-}$ cells. Additionally, in vivo micronucleus tests clearly demonstrated that oral administration of erythritol did not induce micronuclei formation of the bone marrow cells of male ICR mice. Taken together, our results indicate that erythritol is not mutagenic to bacterial cells and does not cause chromosomal damage in mammalian cells either in vitro or in vivo.

Genotoxicicological Safety Estimate for the Rhus-II (옻나무 추출액(Rhus-II)의 안전성에 관한 유전독성학적 평가)

  • Choi Changsun;Han Dong Un
    • Journal of Food Hygiene and Safety
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    • v.20 no.1
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    • pp.18-21
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    • 2005
  • These observations were performed to investigate the safety of the natural herbs (Rhus-II) in respect of genotoxicity. This substance was examined in two in-vitro tests: (1) Salmonella typhimurium reversion assay (Ames test) in strain TA 98, TA 100, TA 1535 and TA 1537, (2) in vitro chromosome aberration test in cultured Chinese hamster ovary (CHO) cells. In the reverse mutation test, Rhus-II did not induced mutagenicity in Salmonella typhimurium reversion assay(Ames test) with or without metabolic activation. In the chromosome aberration assay using CHO cells, there was no increased incidence of structural and numerical aberrations with or without metabolic activation. These results indicated that, the Rhus-II had no genotoxicity.

Genotoxicological Safety of Gamma Irradiated Salted and Fermented Shrimp (감마선조사 새우젓의 유전독성학적 안전성평가)

  • 강일준;정차권;이영숙;오성훈;변명우
    • Food Science and Preservation
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    • v.8 no.2
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    • pp.193-198
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    • 2001
  • Gamma irradiation at 20 kGy was apploed to salted and fermented shrimps to evaluate its possible genotoxicity. The genotoxicity of irradiated salted and fermented shrimps was evaluated by Salmonella typhimurium reversion assay, chromosomal aberration test and in vivo micronucleus assay. The results were negative in the bacterial reversion assay with S. typhimurium TA98, TA100. No mutagenicity was detected in the assay both with and without metabolic activation. In chromosomal aberration tests with CHL cells and in vivo mouse micronucleus assay, no significant difference in the incidences of chromosomal aberration and micronuclei was observed between nonirradiated and 20 kGy-irradiated salted and fermented shrimps. These results indicate that salted and fermented shrimps irradiated at 20 kGy did not show any genotoxic effects under these experimental conditions.

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Hygienic Quality and Genotoxicological Safety of Gamma Irradiated Pork (감마선조사에 의한 돈육의 위생화 및 유전독성학적 안전성 평가)

  • 강일준;윤정한;강영희;이효구;변명우
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.28 no.5
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    • pp.1092-1098
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    • 1999
  • Gamma irradiation was applied to pork for improving its hygienic quality and evaluating its possible genotoxicity. The effective dose of irradiation was 3 kGy in pork for the sterilization of all contaminated microorganisms tested. After 8 weeks of storage at 5oC, no growth of microorganisms except for psychrophile and total aerobic bacteria was observed in the more than 3 kGy irradiated pork. The genotoxicity of high dose irradiated pork(30 kGy) was evaluated by Salmonella typhimurium reversion assay, chromosomal aberration test and in vivo micronucleus assay. The results were negative in the bacterial reversion assay with S. typhimurium TA98, TA100, TA1535, TA1537. In chromosomal aberration tests with CHL cells and in vivo mouse micronucleus assay, no significant difference in the incidences of chromosomal aberration and micronuclei was seen between nonirradiated and 30 kGy irradiated porks. These results indicate that 30 kGy irradiated pork did not show any genotoxic effects under these experimental conditions.

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Prediction of Photo-Carcinogenicity from Photo-Ames Assay (Photo-Ames Assay를 이용한 광발암성 예측)

  • Hong Mi Young;Kim Ji Young;Chung Moon Koo;Lee Michael
    • Environmental Mutagens and Carcinogens
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    • v.25 no.1
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    • pp.6-12
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    • 2005
  • Many compounds might become activated after absorption of UV light energy. In some cases, the resulting molecule may undergo further biological reaction of toxicological relevance related especially to the photo-carcinogenicity resulting from photo-genotoxicity. However, no regulatory requirements have been issued with the exception of guideline issued by the Scientific Committee of Cosmetology, Commission of the European Communities (SCC/EEC) on the testing of sunscreens for their photo-genotoxicity. Thus, the objectives of this study are to investigate the utility of photo-Ames assay for detecting photo-mutagens, and to evaluate its ability to predict rodent photo-carcinogenicity. Photo-Ames assay was performed on five test substances that demonstrated positive results in photo-carcinogenicity tests: 8-methoxypsoralen (photoactive substance that forms DNA adducts in the presence of ultraviolet A irradiation), chlorpromazine (an aliphatic phenothiazine an a-adr-energic blocking agent), lomefloxacin (an antibiotic in a class of drugs called fluoroquinolones), anthracene (a tricyclic aromatic hydrocarbon a basic substance for production of anthraquinone, dyes, pigments, insecticides, wood preservatives and coating materials) and retinoic acid (a retinoid compound closely related to vitamin A). Out of 5 test substances, 3 showed a positive outcome in photo-Ames assay. With this limited data set, an investigation into the predictive value of this photo-Ames test for determining the photo-carcinogenicity showed that photo-Ames assay has relatively low sensitivity (the ability of a test to predict carcinogenicity). Thus, to determine the use of in vitro genotoxicity tests for prediction of carcinogenicity,' several standard photo-genotoxicity assays should be compared for their suitability in detecting photo-genotoxic compounds.

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