• Title/Summary/Keyword: in vivo micronucleus test

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The Micronucleus Test of the Diglyceride Preparation with Conjugated Linoleic Acid by Using Mice (마우스를 이용한 공액리놀레산 함유 디글리세라이드 조성물에 대한 소핵시험)

  • Hong, Soon-Gi;Chung, Shin-Gyo;Hyun, Sun-Hee
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.37 no.7
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    • pp.853-857
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    • 2008
  • To assess the clastogenic effects of the diglyceride preparation containing conjugated linoleic acid (DG+CLA) in vivo micronucleus test was performed using ICR mice. Each of the groups consisted of three doses of DG+CLA (500, 1,000 and 2,000 mg/kg, p.o.), Mitomycin C (positive control, 2 mg/kg, i.p.) and negative control (olive oil, 10 mL/kg, p.o.). A slide preparation was made at 24 hours after 1st treatment with DG+CLA. As a result of counting the icronucleated polychromatic erythrocyte (MNPCE) of 2,000 polychromatic erythrocyte (PCE), the number of aberrant cells was not increased in any of the three doses of DG+CLA orally administered. There was no clinical sign connected with administration of DG+CLA. These results indicate that DG+CLA is not capable of inducing micronuclei in vivo mice cells and thus has no genotoxicity in micronucleus.

In vivo Genotoxicity of Silver Nanoparticles after 90-day Silver Nanoparticle Inhalation Exposure

  • Kim, Jin-Sik;Sung, Jae-Hyuck;Ji, Jun-Ho;Song, Kyung-Seuk;Lee, Ji-Hyun;Kang, Chang-Soo;Yu, Il-Je
    • Safety and Health at Work
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    • v.2 no.1
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    • pp.34-38
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    • 2011
  • Objectives: The antimicrobial activity of silver nanoparticles has resulted in their widespread use in many consumer products. Yet, despite their many advantages, it is also important to determine whether silver nanoparticles may represent a hazard to the environment and human health. Methods: Thus, to evaluate the genotoxic potential of silver nanoparticles, in vivo genotoxicity testing (OECD 474, in vivo micronuclei test) was conducted after exposing male and female Sprague-Dawley rats to silver nanoparticles by inhalation for 90 days according to OECD test guideline 413 (Subchronic Inhalation Toxicity: 90 Day Study) with a good laboratory practice system. The rats were exposed to silver nanoparticles (18 nm diameter) at concentrations of $0.7\;{\times}\;10^6$ particles/$cm^3$ (low dose), $1.4\;{\times}\;10^6$ particles/$cm^3$ (middle dose), and $2.9\;{\times}\;10^6$ particles/$cm^3$ (high dose) for 6 hr/day in an inhalation chamber for 90 days. The rats were killed 24 hr after the last administration, then the femurs were removed and the bone marrow collected and evaluated for micronucleus induction. Results: There were no statistically significant differences in the micronucleated polychromatic erythrocytes or in the ratio of polychromatic erythrocytes among the total erythrocytes after silver nanoparticle exposure when compared with the control. Conclusion: The present results suggest that exposure to silver nanoparticles by inhalation for 90 days does not induce genetic toxicity in male and female rat bone marrow in vivo.

The Evaluation of Antifungal Activities and Safeties of 6-[(N-3,4-Difluorophenyl)amino]-7-Chloro-5,8-Quinolinedione (6-[(N-3,4-디플루오로페닐)아미노]-7-클로로-5,8-퀴놀린디온의 항진균작용 및 안전성 평가)

  • Yu, Chung-Gyu;Kim, Dong-Hyeon;Yun, Yeo-Pyo;Lee, Byeong-Mu;Heo, Mun-Yeong;Jeong, Hae-Mun;Gwon, Sang-Mi;Jeong, Seong-Hui
    • YAKHAK HOEJI
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    • v.40 no.5
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    • pp.608-615
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    • 1996
  • 6-[(N-3,4-Difluorophenyl)amino]-7-chloro-5,8-quinolinedione(RCK4) was tested for antifungal activities, against systemic infections with Candida albicans in normal mice. The therapeutic potential of RCK4 had been assessed in comparison with ketoconazole and fluconazole. RCK4 had $ED_{50},\;0.30{\pm}0.14$ but ketoconazole and fluconazole had $ED_{50},\;8.00{\pm}0.73,\;10.00{\pm} 0.43mg/kg$ respectively. Intraperitoneally administered RCK3 at the $ED_{50}$ for 7 days and 14 days reduced Candida albicans colony count in the kidneys and liver as well as ketoconazole and fluconazole at these $ED_{50}$. And administered RCK4 at the $ED_{50}$ for 14 days improved survival rates as well as ketoconazole. Acute oral toxicity studies of RCK4 were carried out in ICR mice of both sexes. These acute oral toxicities of RCK4 were low and $LD_{50}$ values were over 2,850mg/kg in ICR mice. The genotoxicities of RCK4 had been evaluated. RCK4 was negative in Ames test with Salmonella typhimurium and chromosomal aberration test in CHL cells. The clastogenicity was tested on the RCK4 with in vivo mouse micronucleus assay. RCK4 did not show any clastogenic effect in mouse peripheral blood and was negative in mouse micronucleus assay. These results indicate that RCK4 has no genotoxic potential under these experimental conditions.

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Genotoxic Evaluation of Gyllus bimaculatus in 3 Sets of Mutagenicity Tests

  • Ahn, Mi-Young;Bae, Hye-Jin;Lee, Byung-Mu;Ryu, Kang-Sun;Kim, Iksoo;Kim, Jin-Won
    • Proceedings of the Korean Society of Sericultural Science Conference
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    • 2003.10a
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    • pp.128-129
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    • 2003
  • Cricket (Gyilus bimacutus) is mass-bred in 6 time cycles per one year in insect farms. They are used as dry or live foods for animals, tropical fish, reptile and amphibians. Therefore, it is necessary to study the genotoxicity of whole bodies of G. bimaculatus. The aim of this present study was to evaluate the genotoxicity of the G bimaculatus extract with three methods, Ames test, chromosome aberration test in Chinese hamster ovary cells in vitro and micronucleus (MN) test in vivo which involve the different test systems (bacteria, mammalian cells and mice nuclei). (omitted)

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Mutagenicity Studies of the Herbicide Methiozolin (제초제 Methiozolin의 유전독성평가)

  • Koo, Suk-Jin;Lee, Zong-Yun;Park, Cheol-Beom
    • The Korean Journal of Pesticide Science
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    • v.15 no.4
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    • pp.374-382
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    • 2011
  • We investigated the mutagenicity of methiozolin, newly developed herbicide, in vitro reverse mutation test using Salmonella typhimurium and Escherichia coli, chromosome aberration test using chinese hamster lung (CHL) cells and in vivo micronucleus test of mice. In the reverse mutation test, the methiozolin did not induce mutagenicity in Salmonella typhimurium TA98, TA100, TA1535, TA1537, Escherichia coli WP2uvrA with and without metabolic activation at $5,000{\mu}g$/plate. In the chromosome aberration test, the results showed no incidence of increased structural and numerical chromosome abberrations at any doses tested (80, 40, $20{\mu}g$/mL). In micronucleous test, the ratio of micronuclei was measured in polychromatic erythrocytes with treated methiozolin for ICR mice. No incidence of increased micronuclei were observed in polychromatic erythrocytes (1,500, 1,000, 500 mg/kg). Based on these results, we concluded that methiozolin has no mutagenic toxicity in vitro and in vivo systems.

Establishing the Genotoxicological Safety of Gamma-irradiated Egg White and Yolk (감마선 조사 계란의 유전독성학적 안전성 평가)

  • Song, Hyun-Pa;Shin, Eun-Hye;Yun, Hye-Jeong;Jo, Cheor-Un;Kim, Dong-Ho
    • Food Science and Preservation
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    • v.16 no.5
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    • pp.782-788
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    • 2009
  • The genotoxicological safety of gamma-irradiated egg white and yolk was examined to ensure that required safety parameters were met, and in an effort to further apply gamma-irradiation for improvement of the hygienic qualities of eggs. Egg white and yolk were irradiated at 20 kGy, much higher than the legally approved dose (less than 5 kGy), and possible genotoxicity was evaluated using in vitro and in vivo tests. The SOS chromotest employing Escherichia coli PQ37, and a chromosomal aberration test in cultured Chinese hamster lung (CHL) cells, were performed in vitro with or without metabolic activation (S9). An in vivo micronucleus development test was conducted using mouse bone marrow cells. Negative results were obtained in the SOS chromotest. The incidence of chromosomal aberration in CHL cells and the frequency of micronuclear developmentin mouse bone marrow cells treated with irradiated samples were not significantly different from those of non-irradiated controls. Thus, it may be concluded that up to 20 kGy of gamma irradiation applied to egg white and yolk did not show any genotoxic effects under our experimental conditions.

The First Report to Evaluate Safety of Cyanobacterium Leptolyngbya sp. KIOST-1 for Use as a Food Ingredient: Oral Acute Toxicity and Genotoxicity Study

  • Lee, Youngdeuk;Kim, Taeho;Lee, Won-Kyu;Ryu, Yong-Kyun;Kim, Ji Hyung;Jeong, Younsik;Park, Areumi;Lee, Yeon-Ji;Oh, Chulhong;Kang, Do-Hyung
    • Journal of Microbiology and Biotechnology
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    • v.31 no.2
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    • pp.290-297
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    • 2021
  • Leptolyngbya sp. KIOST-1 (LK1) is a newly isolated cyanobacterium that shows no obvious cytotoxicity and contains high protein content for both human and animal diets. However, only limited information is available on its toxic effects. The purpose of this study was to validate the safety of LK1 powder. Following Organisation for Economic Co-operation and Development (OECD) guidelines, a single-dose oral toxicity test in Sprague Dawley rats was performed. Genotoxicity was assessed using a bacterial reverse mutation test with Salmonella typhimurium (strains TA98, TA100, TA1535, and TA1537) and Escherichia coli WP2 uvrA, an in vitro mammalian chromosome aberration test using Chinese hamster lung cells, and an in vivo mammalian erythrocyte micronucleus test using Hsd:ICR (CD-1) SPF mouse bone marrow. After LK1 administration (2,500 mg/kg), there were no LK1-related body weight changes or necropsy findings. The reverse mutation test showed no increased reverse mutation upon exposure to 5,000 ㎍/plate of the LK1 powder, the maximum tested amount. The chromosome aberration test and micronucleus assay demonstrated no chromosomal abnormalities and genotoxicity, respectively, in the presence of the LK1 powder. The absence of physiological findings and genetic abnormalities suggests that LK1 powder is appropriate as a candidate biomass to be used as a safe food ingredient.

Suppressive Effect of N-Acetylcysteine on the Adriamycin-Induced Micronuclei Formation in Mouse Bone-marrow Cells (생쥐 골수세포에서 아드리아마이신의 소핵생성에 미치는 N-마세틸시스테인의 억제효과)

  • 손수정;허인회;최성규;허문영
    • YAKHAK HOEJI
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    • v.37 no.3
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    • pp.278-285
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    • 1993
  • The anticlastogenic effect of N-acetylcysteine was tested in vivo in mouse bone-marrow micronucleus assay. The frequencies of micronuclei induced by adriamycin (5 mg/kg i.p.) in bonemarrow cells were decreased by the oral administration of N-acetylcysteine at 12 h before adriamycin injection. The observed suppressing effect was not a reflection of a delay in the formation of micronuclei by the cytotoxic effect of N-acetylcysteine. The anticlastogenic effects of SH compound including N-acetylcysteine, cysteine, cystine, S-carboxy methylcysteine and glutathione were also investigated by the multiple pretreatment. Each SH compound was administered orally every day for 5 days and adriamycin (5 mg/kg i.p.) was injected at 24h after the last dose of test compound. N-acetylcysteine and glutathione showed significantly the suppressive effect at dose of 10 and 25 mg/kg for N-acetylcysteine and at the dose of 25 mg/kg for glutathione. Our study suggests that N-acetylcysteine is capable of protecting the chromosomal damages in the normal cells during cancer chemotherapy by adriamycin, and may act as an anticlastogen against induction of micronuclei by superoxide generating agent such as adriamycin.

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Single Dose Oral Toxicity and Genotoxicological Safety Study of Ssanghwa-tang Fermented with Lactobacillus acidophyllus (유산균 발효 쌍화탕에 대한 단회 투여 경구 독성 및 유전 독성 연구)

  • Chung, Tae-Ho;Shim, Ki-Shuk;Kim, Dong-Seon;Lee, Jae-Hoon;Ma, Jin-Yeul
    • The Journal of Korean Medicine
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    • v.32 no.1
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    • pp.67-83
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    • 2011
  • Objectives: The purpose of this study was to examine the single dose toxicity with oral administration and genotoxicities of Ssanghwa-tang fermented with Lactobacillus acidophyllus. Materials and Methods: Clinical signs, weight changes, lethal doses$(LD_{50})$, and postmortem evaluation were determined by Globally Harmonized Classification System(GHCS) in a single-dose oral toxicity study. In vitro mammalian chromosomal aberration test was conducted with Ames test by cell proliferation suppression assessment using the cultivated CHO-K1(Chinese hamster ovary fibroblast) origins. Bacterial reversion assay was performed using Salmonella typhimurium (TA98, TA100, TA1535, and TA1537) and Escherichia coli (WP2uvrA). In vivo micronucleus test was performed using ICR mouse bone marrow. Results: No clinical sign was observed and none of the groups with doses up to 2000 mg/kg showed significant acute oral toxicity in the single dose oral administration. None of the sample doses taken during the 6 to 18 hour groups showed significant aberrant metaphases comparing to the negative control group in the in vitro mammalian chromosomal aberration test. No evidence of mutagenicity was seen for Escherichia coli (WP2uvrA) or Salmonella typhimurium (TA98, TA100, TA1535, and TA1537). No significant increase in the frequency of micronuclei was seen in the micronucleus test. Conclusion: These results indicate that the $LD_{50}$ value of Ssanghwa-Tang fermented with Lactobacillus acidophyllus may be over 2000 mg/kg and it have no acute oral toxicity and genotoxicity.

Antigenotoxicity of Galangin and its Action Mechanism (Galangin의 유전독성 억제효과와 작용기전)

  • 허문영;류재천
    • Environmental Mutagens and Carcinogens
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    • v.18 no.2
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    • pp.77-82
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    • 1998
  • In order to compare the suppressive effect of galangin on the genotoxicity by N-methyl-N-nitrosourea (MNU) or benzo[a]pyrene B(a)P, in vivo micronycleus test using mouse peripheral blood and in vitro sister chromatid exchange(SCE) test using mouse spleen lymphocytes were performed. MNU or B(a)P-induced micronucleated reticulocytes in vivo was decreased by the simultaneous treatment of galangin. MNU or B(a)P-induced SCEs in vitro was also decreased by the simultaneous treatment of galangin. On the other hand, the determinations of [$^3$H]MNU-induced total DNA binding and methylated DNA were performed to find out the mechanism of action. [$^3$H]MNU-induced total DNA binding was inhibited by the treatment of galangin in calf thymus DNA. HPLC analysis of DNA hydrolysates showed that galangin caused a decrease of 7-methyl guanine and $O^{6}$-methyl guanine in calf thymus DNA. To elucidate the action mechanism of galangin against B(a)P, alteration of B(a)P metabolism was studied. Galangin inhibited B(a)P metabolism in the presence of S-9 mix and decreased B(a)P-DNA binding in calf thymus DNA with S-9 mix.

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