• Title/Summary/Keyword: Genetic toxicity test

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[Retracted] Novel Genotoxic Strategies for Efficiently Detect Chemicals' Carcinogenicity ([논문 철회] 노동자 건강보호를 위한 최신 유전독성학 연구전략)

  • Rim, Kyung-Taek
    • Journal of Environmental Health Sciences
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    • v.44 no.1
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    • pp.31-43
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    • 2018
  • Objectives: Effective genetic toxicology and molecular biology research techniques and strategies that are highly correlated with the carcinogenic inhalation toxicity test and related research are required. The aim of this study was to maximize the utilization of chemical substances to prevent workers' occupational diseases. Methods: We surveyed the literature, domestic and international references, and the status of relevant domestic and foreign professional organizations. Expert advisory opinions were reflected, and experts were consulted by participating in domestic and overseas academic conferences. Results: The current status of domestic and international genotoxic toxicity evaluation was examined through various documents from related organizations. Cell models for in vitro lung toxicology were investigated and summarized, and the human resources and performance results of genetic toxicity studies and pilot projects were compared and analyzed by holding an advisory meeting. We examined domestic and international genotoxicity guidelines and investigated new test methods for the development of genotoxicity and carcinogenicity. Ultimately, we described long-term future predictions, including the implementation of our researchers' recommendations and occupational genetic toxicology forecasts for future worker health protection. Conclusions: This research project aims to establish current genetic toxicology and molecular biology research techniques and strategies that can maximize the linkage with the carcinogenic inhalation toxicity test and research in the future. We expanded the study of genetic toxicity and establish a foundation forgenetic toxicity in accordance with research trends in Korea and abroad.

Safety study on Genetic Toxicity of Cervi Pantotrichum Cornu Herbal acupuncture Solution(CPCHA) (유전독성시험에 의한 녹용약침의 안전성 연구)

  • Seo, Bu-Il;Byun, Boo-Hyeong
    • The Korea Journal of Herbology
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    • v.20 no.2
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    • pp.1-6
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    • 2005
  • Objectives : The purpose of this study is to investigate genetic toxicity of Cervi pantotrichum Cornu herbal acupuncture solution(CPCHA). Methods : In this study, a series of investigation have been carried out to analyze the effects of Cervi pantotrichum Cornu herball acupuncture solution(CPCHA) on colony forming ability of NIH3T3cells, Hela cells and adrenorectal coloncell for genetic toxicity test. Results and Conclusions : From the above results, it is suggested that Cervi pantotrichum Cornu herball acupuncture solution(CPCHA) was limited 0.5-10ug/ml by test. Cervi pantotrichum Cornu herball acupuncture solution(CPCHA) did not exert the protective role to the genetic toxicity in kinds of cell lines used in this study. From these results, Cervi pantotrichum Cornu herbal aqua-acupuncture solution needs further study to prove it's function in cell culture system.

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Genotoxicity Study of Glycopeptide (G-7%NANA)

  • Kim, Ha-Young;Kim, Min-Hee;Kim, Hee-Kyong;Park, Yeong-Chul
    • Toxicological Research
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    • v.34 no.3
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    • pp.259-266
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    • 2018
  • Glycomacropeptide (GMP), a whey protein of milk, has functions including differentiation and development of nervous system, and anticancer and antiviral effects. To develop new functions, N-acetylneuraminic acid (NANA) containing 7% sialic acid was separated from GMP to produce G-7%NANA. N-glycolylneuraminic acid (Neu5Gc) is another type of sialic acid separated from GMP, which has been linked to immune disorders and chronic inflammation-mediated diseases. Therefore, safety was a concern in the use of G-7%NANA in functional foods. To ensure safety, in this study, three genetic toxicity tests on G-7%NANA were conducted. In the reverse mutation test using Salmonella typhimurium TA98, TA100, TA1535, TA1537, and Escherichia coli WP2uvrA, and in the chromosome aberration test using CHO-K1 cells, no significant differences from negative control were found at all dose levels. Similarly, no dose-related differences were evident compared to negative control in the micronucleus test using ICR mice. There was no evidence of G-7%NANA-related genetic toxicity.

A Chromosome Aberration Test of HMC05 on Cultured Chinese Hamster Lung Cells (HMC05의 배양 Chinese Hamster Lung 세포를 이용한 염색체이상 시험)

  • Shin, Heung-Mook
    • The Korea Journal of Herbology
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    • v.25 no.1
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    • pp.1-7
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    • 2010
  • Objectives : We investigated genetic toxicity of HMCO5 in relation to chromosome aberration test on Cultured Chinese Hamster Lung (CHL) in the presence and absence of S-9 mix. Methods : Experimental groups were divided into two groups: with S-9mix (+S) or without S-9 mix (-S). -S group was also divided 2 series by treatment hours (6 hr: 6-S; or 24 hr; 24-S). Each group treated with vehicle only (complete culture medium), HMCO5 (1,250, 2,500, $5,000\;{\mu}g/ml$), and cyclophosphamide monohydrate (CPA) and ethylmethanesulfonate (EMS), respectively. Results : HMC05 did not show any aberrant metaphase. However, there were significant (p < 0.01) aberrant metaphases with CPA in S+ and with EMS in S-. Conclusions : These results indicate that HMC05 formula does not show any toxicity in chromosome aberration test.

General and Genetic Toxicology of Enzyme-Treated Ginseng Extract - Toxicology of Ginseng Rh2+ -

  • Jeong, Mi-Kyung;Cho, Chong-Kwan;Yoo, Hwa-Seung
    • Journal of Pharmacopuncture
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    • v.19 no.3
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    • pp.213-224
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    • 2016
  • Objectives: Ginseng Rh2+ is enzyme-treated ginseng extract containing high amounts of converted ginsenosides, such as compound k, Rh2, Rg3, which have potent anticancer activity. We conducted general and genetic toxicity tests to evaluate the safety of ginseng Rh2+. Methods: An acute oral toxicity test was performed at a high-level dose of 4,000 mg/kg/day in Sprague-Dawley (SD) rats. A 14-day range-finding study was also conducted to set dose levels for the 90-day study. A subchronic 90-day toxicity study was performed at dose levels of 1,000 and 2,000 mg/kg/day to investigate the no-observed-adverse-effect level (NOAEL) of ginseng Rh2+ and target organs. To identify the mutagenic potential of ginseng Rh2+, we conducted a bacterial reverse mutation test (Ames test) using amino-acid-requiring strains of Salmonella typhimurium and Escherichia coli (E. coli), a chromosome aberration test with Chinese hamster lung (CHL) cells, and an in vivo micronucleus test using ICR mice bone marrow as recommended by the Korean Ministry of Food and Drug Safety. Results: According to the results of the acute oral toxicity study, the approximate lethal dose (ALD) of ginseng Rh2+ was estimated to be higher than 4,000 mg/kg. For the 90-day study, no toxicological effect of ginseng Rh2+ was observed in body-weight changes, food consumption, clinical signs, organ weights, histopathology, ophthalmology, and clinical pathology. The NOAEL of ginseng Rh2+ was established to be 2,000 mg/kg/day, and no target organ was found in this test. In addition, no evidence of mutagenicity was found either on the in vitro genotoxicity tests, including the Ames test and the chromosome aberration test, or on the in vivo in mice bone marrow micronucleus test. Conclusion: On the basis of our findings, ginseng Rh2+ is a non-toxic material with no genotoxicity. We expect that ginseng Rh2+ may be used as a novel adjuvant anticancer agent that is safe for long-term administration.

Studies on the Genetic Toxicity of NP-77A

  • Kim, Jai-Hyun;Cho, In-Koo;Park, Kun-Hyuck;Ha, Kwang-Won
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1995.04a
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    • pp.123-123
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    • 1995
  • To evaluate the genetic toxicity of NP-77A which is selected as the candidate of anti-HBV agent, we performed ames test, micronucleus test, and chromosome aberration test on the CHL cell in vitro. The Ames test was carried out with 5 fold diluted 5 concentrations from 25mg/plate using S. typhimurium and E.coli. After 48hrs incubation, revertant colony numbers was calculated with and without metabolic activation system. In vivo micronucleus test, we investigated the rate of the occurrence of micronucleus after I.P. administration to mice. Andalso, we observed the incidence rate of cells with chromosomal aberration by NP-77A treatment using CHL cell line.

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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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    • v.3 no.2
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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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    • v.3 no.2
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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.

Genetic Toxicity Test of Emodin by Ames, Micronucleus, Comet Assays and Microarray Analysis Showing Differential Result

  • Go, Seo-Y.;Kwon, Kyoung-J.;Park, Sue-N.;Sheen, Yhun-Y.
    • Biomolecules & Therapeutics
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    • v.15 no.3
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    • pp.192-198
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    • 2007
  • Emodin (1,3,8-trihydroxy-6-methylanthraquinone) is a major constituent of rhubarb. Although it has been claimed to have a wild spectrum of therapeutic value, its side effects, especially in human kidney cells have not been well characterized. In this study, we have carried out in vitro genetic toxicity test of emodin and microarray analysis of differentially expressed genes in response to emodin. The result of Ames test showed mutations with emodin treatment in base substitution strain TA1535 both with and without exogenous metabolic activation. Likewise, emodin showed mutations in frame shift TA98 both with and without exogenous metabolic activation. The result of COMET assay in L5178Y cells with emodin treatment showed DNA damage both with and without exogenous metabolic activation. Emodin did not increase micronuclei in CHO cells both with and without exogenous metabolic activation. 150 Genes were selected as differentially expressed genes in response to emodin by microarray analysis and these genes would be candidate biomarkers of genetic toxic action of emodin.

Erythrocyte Micronucleus Test of Pomace Schisandra chinensis Extracts Using ICR Mouse (ICR 마우스를 이용한 오미자박 추출물의 소핵 시험)

  • Seokho, Kim;Sun Youn, Kim;Young-Suk, Kim;Jong-Min, Lim;Bon-Hwa, Ku;Kyeong Tae, Kwak;Byeong Yeob, Jeon
    • Herbal Formula Science
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    • v.30 no.4
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    • pp.259-267
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    • 2022
  • Objectives : In this study, erythrocyte micronucleus test of pomace Schisandra chinensis extracts was conducted in order to up-cycling to a high value-added industry using by-products discarded in the production process of Schisandra chinensis products and active ingredients such as dibenzocyclooctadiene lignans in Schisandra chinensis. Methods : The micronucleus test was performed according to the 'OECD Guidelines'. Including the negative control group(0 mg/kg) and the positive control group(CPA 70 mg/kg), pomace Schisandra chinensis extracts were orally administered to ICR mouse at doses of 500, 1,000, and 2,000 mg/kg. After sacrificing the experimental animals bone marrow cells were collected and micronucleated polychromatic erythrocyte were counted. And genetic toxicity was confirmed according to the frequency of micronucleus. Results : As a result of the micronucleus test, there were no changes in body weight, clinical signs, or death in any group. But, a significant increase was observed in the frequency of micronucleated polychromatic erythrocyte among polychromatic erythrocytes in the positive control group administered with CPA compared to the negative control group(p<0.05). Whereas, no significant increase was observed in the group administered with pomace Schisandra chinensis extracts compared to the negative control group. Conclusions : Pomace Schisandra chinensis extracts did not induce micronucleus in bone marrow cells of ICR mouse up to a concentration of 2,000 mg/kg, and it was judged that no genetic toxicity was observed.