• Title/Summary/Keyword: frequency of micronucleus formation

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In Vivo Evaluation of the Safety of Hydrolyzed GMP Powder containing Highly Concentrated Sialic Acid (23%) produced by Enzyme Separation and Solvent Enrichment Method using Micronucleus Test in Mice (효소분리 및 용매정제법으로 제조한 고농도 Sialic Acid(23%)가 함유된 GMP 가수분해분말의 마우스 골수세포의 소핵시험을 이용한 안전성 평가연구)

  • Kim, Hee-Kyong;Cho, Hyang-Hyun;Noh, Hye-Ji
    • Journal of Dairy Science and Biotechnology
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    • v.34 no.2
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    • pp.83-89
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    • 2016
  • This study was designed to determine the mutagenic potential of hydrolyzed glycomacropeptide (GMP) powder (hereafter referred to as 23%-GNANA; product name: HELICOBACTROL-23) in a micronucleus test using bone marrow in ICR mice. Three experimental groups were used: a 3-step concentration group, with a maximum concentration of 2,000 mg/kg, and other sequentially two-fold lower concentrations, a negative control group, and a positive control group. The test material was administered for 2 d to observe the frequency of micronucleus formation up to 48 h after the test material was absorbed by the body. When the polychromatic erythrocyte (PCE) content of erythrocytes was compared, no significant differences were noted between the negative control group and the test group (p<0.05). Similarly, when the average numbers of micronucleated PCE (MNPCE) in 2,000 PCE per animal were compared, no significant difference was observed between the negative control group and the test group (p<0.05). No dose-response relationship with regard to the concentration of the test material administered was noted. These results allow us to conclude that hydrolyzed whey protein powder does not cause formation of micronuclei in mouse bone marrow cells under the applied conditions. In this study, the average frequency of micronucleus formation in PCE was significantly higher in the positive control group compared with the negative control group; thus, the test conditions were appropriate for detecting the frequency of micronucleus formation induced by the test material. In conclusion, the safety of 23%-GNANA test substance was verified in an in vivo micronucleus test in mice, conducted before the registration of HELICOBACTROL-23 as a food additive.

Genotoxicity Studies of the Complex of Acriflavine and Guanosine (Acriflavine과 Guanosine 복합체(AG60)의 유전독성시험)

  • 정영신;홍은경;김상건;안의태;이경영;강종구
    • Environmental Mutagens and Carcinogens
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    • v.22 no.2
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    • pp.106-111
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    • 2002
  • AG6O, the complex of acriflavine and guanosine, has been shown to possess the synergistic antitumorigenic activity in the previous paper (J. Pharm. Pharmacol. 1997, 49:216). In this study, we have investigated the genotoxic properties of AG60 using in vitro and in vivo system such as Ames bacterial reversion test, chromosomal aberration assay and micronucleus assay. In Ames reverse mutation test, AG60 treatment at the dose range up to 250 $\mu\textrm{g}$/plate caused the dose-independent random induction of the mutagenic colony formation in S. typhimurium TA98, TA100, TA1537, and E. coli WP2uvrA, while any mutagenic effect of AG60 wasn't observed in S. typhimurium TA1535. Any significant chromosomal aberration wasn't observed in chinese hamster lung (CHL) fibroblast cells incubated with PBS or AG60 at the concentrations of 2.5, 5, 10 $\mu\textrm{g}$/$m\ell$ for 24 hours without but even with 59 metabolic activation system for 6 hours. In vivo ICR mice, the intramuscular injection of AG60 at the doses of 7.15, 14.3, and 28.6 mg/kg did not induce the frequency of micronucleus formation. However, mitomycin C, as one of the positive controls at the dose of 2 mg/kg caused the 8.4% induction in the frequency of micronucleus and 24% increase in the chromosomal aberration.

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The micronucleus formation in peripheral blood of mitomycin C-treated mice using supravital staining with acridine orange (마우스 말초혈액 망상적혈구를 이용한 Mitomycin C의 소핵생성효과)

  • 허문영;류재천
    • Environmental Mutagens and Carcinogens
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    • v.16 no.1
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    • pp.24-29
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    • 1996
  • In this study, the micronucleus test with peripheral blood using acridine orange coated slides was evaluated in mice treated with mitomycin C(MMC) at doses of 0.5, 1.0 and 1.5 mg/kg body weight. The peripheral bloods were obtained at 0, 24, 48 and 72h after treatment. The frequencies of micronucleated reficulocytes(MNRET) in the MMC-treated groups increased dose-dependently, and showed a peak time at 48h after treatment. We also performed the sex differences of MNRET frequency in 0.5 mg/kg MMC treated group, and we observed no sex differences in this experiment. And we evaluated the usefulness of a direct acting clastogen, N-methyl-N-nitrosourea and a indirect acting clastogen, benzo(a) pyrene as the positive control in this supravital micronucleus test. They also caused a significant increase in MNRET frequencies. These results suggest that the supravital staining micronucleus test using MNRET can be useful tool to evalulate the quantitative and qualitative assessment of genotoxicity in vivo compared to classical in vivo micronucleus test using bone-marrow cells.

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DNA Damage and Micronuclei Induced by Di (2-ethylhexyl) phthalate in Human Breast Carcinoma MCF-7 cells (Di(2-ethylhexyl) phthalate에 의해 유도된 DNA손상과 소핵 형성)

  • 김종원;한의식;박미선;엄미옥;김인숙;전혜승;정해관;심웅섭;오혜영
    • Environmental Mutagens and Carcinogens
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    • v.21 no.1
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    • pp.34-43
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    • 2001
  • Di-2-ethylhexyl phthalate (DEHP) is the most commonly used phthalate ester in polyvinyl chloride formulations including food packing and storage of human blood. DEHP is a well known as non-genotoxic carcinogen and endocrine disrupting chemical (EDC). DEHP have shown all negative results in ICH-guildeline recommended standard genotoxicity test battery. In this study, to assess the clastogenic and DNA damaging effect in human-derived tissue specific cells, DEHP was treated in human derived MCE-7 cells, HepG2 cells, LNCap cells, BeWo cells, MCE-10A cells, and female peripheral blood cells using micronucleus assay and in human breast carcinoma MCF-7 cells up to $1.28$\times$10^{-2}$ M using Comet assay. The in vitro micronucleus assay is a mutagenicity test system for the detection of chemicals which induce the formation of small membrane bound DNA fragment i.e. micronuclei in the cytoplasm of interphase cells, originated from clastogenic and/or aneugenic mechanism. The single cell gel electrophoresis assay (Comet assay) is used to detect DNA strand-breaks and alkaline labile site. In our results, DEHP increased significantly and/or dose-depentently and time-dependently micronucleus frequency at the 6 and 24 hr without metabolic activation system only in MCE-7 cells. DEHP treated with 2 hrs in MCF-7 cells using Comet assay induced DNA damage dose-depentantly.

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Genotoxicological Safety Evaluation of Crude Antifungal Compounds Produced by Bacillus subtilis SN7 (Bacillus subtilis SN7이 생성한 조항균 물질의 유전독성학적 안정성평가)

  • Chang, Hae-Choon;Koh, Sang-Bum;Lee, Jae-Joon
    • The Korean Journal of Community Living Science
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    • v.28 no.1
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    • pp.131-141
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    • 2017
  • This study was carried out to perform genotoxicological safety evaluation of crude antifungal compounds produced by Bacillus subtilis SN7 (B. subtilis SN7) isolated from meju. Bacterial reverse mutation assay with Salmonella typhimurium TA98, TA100, TA1535, and TA1537 or Escherichia coli WP2uvrA in the presence and absence of the S9 metabolic activation system was carried out, and the crude antifungal compounds produced by B. subtilis SN7 showed no significant increase in the number of revertant colonies. In the chromosomal aberration tests using Chinese hamster lung (CHL) cells, sample treatment groups showed no increase in the frequency of chromosome aberrations compared to the negative control group. Furthermore, in the micronucleus formation test, the crude antifungal compounds showed no significance increase in the frequency of polychromatic erythrocytes with micronuclei. These results suggest that the crude antifungal compounds produced by B. subtilis SN7 isolated from meju showed no harmful genotoxic effects.

Comparison of the Sensitivity of Two Micronucleus Assays for Detection of Micronucleus Induction by Cigarette-Smoke Condensate (담배연기응축물의 소핵생성 측정시 두가지 방법간의 민감성 비교)

  • Sohn Hyung-Ok;Lee Young-Gu;Han Jung-Ho;Hur Jae-Yeon;Lee Dong-Wook;Hyun Hak-Chul;Shin Han-Jae
    • Journal of the Korean Society of Tobacco Science
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    • v.26 no.2 s.52
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    • pp.152-158
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    • 2004
  • Among short-term in vitro genotoxicity assays, micronucleus assays are rapid, inexpensive, and less labor-intensive system. We have undertaken a comparative study of sensitivity of cigarette smoke condensate(CSC) by general micronucleus(MN) assay and cytokinesis-block micronucleus(CBMN) assay. In this study, V79 Chinese hamster cells were employed to evaluate and compare the genotoxicity of CSC of Kentucky Reference Cigarette 2R4F by 2 kinds of in vitro MN assay methods. To determine the optimum concentration of cytochalasin B(CYB) to obtain the maximal number of binucleated cells for CBMN assay, triplicate cultures of growing cells were treated with CYB for 15 h. CYB treatments caused a concentration-dependent increase in cytotoxicity($1\~4{\mu}g/mL$) and proportion($0.25\~1\;{\mu}g/mL$) of binucleated cells. These data suggested that 1 ug/mL of CYB is as an optimum dose for CBMN assay in binucleated V79 cells. Short treatment(4 h) of CSC induced a micronucleated cells with a concentration-dependent response in the presence or absence of CYB, but CSC-induced MNs were weakened when S9 was present. Long treatments(19 h) of CSC also induced a significant increase MN formation with a concentration-dependent response. At a concentration of 75 ${mu}g/mL$, the MN cell frequencies of general MN assay and CBMN assay were $6.5\%\;and\;11.7\%$, respectively. Linear regression analysis revealed a good correlation in CBMN assay between a concentration of CSC and MN cell frequency. All these data indicated that CBMN assay is more sensitive to the induction CSC-induced MN than general MN assay.

Genotoxicity Assessment of Gardenia Yellow using Short-term Assays

  • Chung, Young-Shin;Eum, Ki-Hwan;Ahn, Jun-Ho;Choi, Seon-A;Noh, Hong-June;Seo, Young-R.;Oh, Se-Wook;Lee, Michael
    • Molecular & Cellular Toxicology
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    • v.5 no.3
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    • pp.257-264
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    • 2009
  • Gardenia yellow, extracted from gardenia fruit, has been widely used as a coloring agent for foods, and thus, safety of its usage is of prime importance. In the current study, short-term genotoxicity assays were conducted to evaluate the potential genotoxic effects of gardenia yellow. The gardenia yellow used was found to contain 0.057 mg/g of genipin, a known biologically active compound of the gardenia fruit extract. Ames test did not reveal any positive results. No clastogenicity was detected by a chromosomal aberration test, even on evaluation at the highest feasible concentration of gardenia yellow. Gardenia yellow was also shown to be non-genotoxic using an in vitro comet assay and a micronucleus test with L5178Y cells, although a marginal increase in DNA damage and micronuclei frequency was reported in the respective assays. Additionally, in vivo micronucleus test results clearly demonstrated that oral administration of gardenia yellow did not induce micronuclei formation in the bone marrow cells of male ICR mice. Taken together, our results indicate that gardenia yellow is not mutagenic to bacterial cells, and that it does not cause chromosomal damage in mammalian cells, either in vitro or in vivo.

Evaluation of the genotoxicity and cytotoxicity in the buccal epithelial cells of patients undergoing orthodontic treatment with three light-cured bonding composites by using micronucleus testing

  • Toy, Ebubekir;Yuksel, Sengul;Ozturk, Firat;Karatas, Orhan Hakki;Yalcin, Muhammet
    • The korean journal of orthodontics
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    • v.44 no.3
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    • pp.128-135
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    • 2014
  • Objective: This study evaluated the cytotoxicity and genotoxicity of fixed orthodontic treatment with three different light-cured orthodontic bonding composites by analyzing micronucleus (MN) formation in the buccal mucosa during a 6-month period. Methods: Thirty healthy volunteers were selected from consecutive patients referred for orthodontic treatment. Equilibrium 2 brackets and molar tubes (Dentaurum) were bonded with three different lightcured orthodontic bonding composites-Transbond XT (3M Unitek), Kurasper F (Kuraray Europe), or GrenGloo (Ormco Corporation)- to all teeth in both arches. Exfoliated buccal epithelial cells were scraped from the middle part of the inner cheeks with sterile cement spatulas before treatment and at 1, 3, and 6 months after treatment. MNs and nuclear alterations, such as karyorrhexis (KR), karyolysis (KL), and binucleated cells (BNs), were scored under a light microscope. Repeated measure ANOVA was used to calculate statistical differences in degenerative nuclear abnormalities. Results: MN rates did not significantly differ among different time points within the same cell type (p > 0.05). In contrast, the number of BNs in buccal epithelial cells significantly increased in all composite groups (p < 0.01, Transbond XT; p < 0.001, Kurasper F and GrenGloo). KL frequency significantly increased between the beginning and end of the study in the Kurasfer F ($0.80{\pm}0.79$ to $1.90{\pm}1.10$; p < 0.05) and GrenGloo ($1.30{\pm}1.06$ to $2.40{\pm}1.08$; p < 0.05) groups. Conclusions: After 6 months of fixed orthodontic treatment with different light-cured composites, morphological signs of cytotoxicity were observed but genotoxic effects were absent.

Evaluation of micronucleus frequency in cytokinesis-blockedlymphocytes of cattle in the vicinity of Uljin nuclear power station (세포질 분열 차단 림프구를 이용한 울진원자력발전소 주변 소의 미소핵 발생 평가)

  • Kim, Se-ra;Kang, Chang-mo;Kim, Sung-ho
    • Korean Journal of Veterinary Research
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    • v.44 no.3
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    • pp.343-348
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    • 2004
  • Cytogenetic and hematological analysis was performed in peripheral blood of cattle in the vicinity of Uljin nuclear power station and control area. The frequency of micronuclei(MN) in peripheral blood lymphocytes from cattle was used as a biomarker of radiobiological effects resulting from exposure to environmental radiation. An estimated dose of radiation was calculated by a best fitting linear-quadratic model based on the radiation-induced MN formation from the bovine lymphocytes exposed in vitro to radiation over the range from 0 Gy to 4 Gy. MN ratio in lymphocytes of cattle from Uljin nuclear power station and control area were 8.90/1,000 and 9.60/1,000, respectively. There were no significant differences in MN frequencies and hematological values in cattle between Uljin and control area.

In Vitro Assessment of Cytotoxicity and Mutagenicity of Rock Wool Fibers (암면에 의한 세포독성 및 변이원성의 실험실적 평가)

  • Hong, Yun-Chul;Lee, Kwan-Hee
    • Journal of Preventive Medicine and Public Health
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    • v.30 no.3 s.58
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    • pp.555-566
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    • 1997
  • This study was carried out to evaluate the cytotoxicity of rock wool fibers(RWFs) such as cell division disturbance, chromosomal and DNA damage, and mutagenicity using cultured cells. RWFs were the man made mineral fibers. In order to find the correlation between the cytotoxicity of RWFs and the phagocytic capacity of cells, the phagocytic processes were observed using scanning electron microscope. Cell division disturbance by RWFs was evaluated by the formation of multinucleated giant cells. The chromosomal damage was evaluated by the micronucleus formation. For the evaluation of oxidative DNA damage, 8-hydroxy-2'-deoxyguanosine (8-OH-dG) formation was measured utilizing calf thymus DNA. Mutagenicity was determined by the point mutation of HGPRT and the effect of RWFs on cell transformation was also observed. 1. Compared with the results of chrysotile, RWFs were no or little effect on the cell growth according to the results done by the tests of cell proliferation inhibition and relative plating efficiency. 2. The frequency of multinucleated giant cell formation was increased by the treatment of RWFs and it was dose-dependent. However, the effect of RWFs was weaker than that of chrysotile. 3. The number of micronuclei formed in the RWFs treated cells was between those of cells treated with chrysotile and those of untreated cells. 4. The 2 fold increase in the formation of 8-OH-dG in calf thymus DNA was observed in the cells treated with RWFs in the presence of $H_2O_2$. On the other hand, chrysotile had no effect on the 8-OH-dG formation. 5. RWFs had no effect on the HGPRT point mutation and cell transformation. These results showed that RWFs could induce chromosomal damage, cell division disturbance and oxidative DNA damage in the RWFs treated cells.

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