• 제목/요약/키워드: Clastogenicity

검색결과 43건 처리시간 0.028초

6-[(N-4-클로로페닐)아미노-7-클로로-5,8-퀴놀린디온의 in vivo 항진균 작용 및 독성평가 (The Evaluation of in Vivo Antifungal Activities and Toxicities of 6-[(N-4-Chlorophenyl)amino]-7-Chloro-5,8-Quinolinediones)

  • 유충규;김동현;윤여표;이병무;허문영;장성재;김효정;박윤미
    • 약학회지
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    • 제39권4호
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    • pp.417-426
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    • 1995
  • 6-[(N-4-Chlorophenyl)amino]-7-chloro-5,8-quinolinedione (RCK20) was tested for antifungal activities, in vivo, against Candida albicans. RCK20 was compared vath ketoconazole and fluconazole in the treatment of systemic infection with Candida albicans in normal rats. The therapeutic potential of RCK20 had been assessed by evaluating their activities (survival rate) against systemic infections with in normal mice with Candida albicans. RCK20 improved survival rates as well as ketokonazole. RCK20 had ED$_{50}$. 0.25$\pm$0.18 mg/kg but ketoeonazole and fluconazole had ED$_{50}$, 8.00$\pm$0.73, 10$\pm$0.43 mg/kg respectively. Activities of RCK20 showed superior to that of ketoconazole and fluconazole. Intraperitoneauy administered RCK20 at the ED$_{50}$, 0.25 mg/kg for 7days and 14days reduced Candida albicans colony count in the kidneys and livers as well as ketoconazole and fluconazole at these ED$_{50}$, 8.00 and 10 mg/kg. Acute oral toxicity studies of RCK20 were carried out in ICR mice of both sexes. These acute oral toxicities of RCK20 were low and LD$_{50}$ values were over 2.850 mg/kg in ICR mice. The Genotoxicities of RCK20 had been evaluated. RCK20 was negative in Ames test with Salmonella typhimurium (TA98 and TA100). The clastogenicity was tested on the RCK20 with in vivo mouse micronucleus assay. RCK20 did not show any clastogenic effect in mouse peripheral blood and was negative in mouse micronucleus assay. These results indicate that RCK20 has no genotoxic potential under these experimental condition.

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Genotoxicity on Structural Derivatives of Sophoricoside, a Component of Sophora Japonica, in Bacterial and Mammalian Cells

  • Ryu, Jae-Chun;Kim, Youn-Jung;Kim, Mi-Soon;Kim, Min-Ji;Sarma, Sailendra Nath;Jung, Sang-Hun
    • Molecular & Cellular Toxicology
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    • 제1권3호
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    • pp.179-188
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    • 2005
  • To develop the novel anti-allergic drug, many sophoricoside derivatives were synthesized. Among these derivatives, JSH-II-3, VI-3, VII-3, VIII-3, VII-20 and VII-20 (sodium salt) were selected and subjected to high throughput toxicity screening (HTTS) because they revealed strong IL-5 inhibitory activity and limitation of quantity. Single cell gel electrophoresis (Comet) assay, mouse lymphoma thymidine kinase ($tk^{+/-}$) gene assay (MOLY), chromosomal aberration assay in mammalian cells and Ames reverse mutation assay in bacterial system were used as simplified, inexpensive, short-term in vitro screening tests in our laboratory. Through the primary screening using the comet assay, we could choose the first candidates of sophoricoside derivatives with no genotoxic potentials as JSH-VI-3, VII-3, VII-20 and VII-20 (sodium salt). Also JSH-VII-3, VII-20 and VII-20 (sodium salt) are non-mutagenic in MOLY assay, while JSH-II-3 is mutagenic at high concentration with the presence of metabolic activation system in both comet assay and MOLY assay. The selected derivatives (JSH-VI-3, VII-3, VII-20 and VII-20 (sodium salt) are not mutagenic in S. typhimurium TA98 and TA100 strains both in the presence and absence of metabolic activation. From results of chromosomal aberration assay, 6 h treatment of JSH-VI-3, VII-3 and VII-20 (sodium salt) were not revealed clastogenicity both in the presence and absence of S-9 mixture. Therefore, we suggests that JSH-VI-3, VII-3, VII-20 and VII-20 (sodium salt), as the optimal candidates with both no genotoxic potential and IL-5 inhibitory effects must be chosen. To process the development into new anti-inflammatory drug of these derivatives, further investigation will need.

식물유래 플라보노이드 Quercetin과 Isoquercetin의 생체 내 유전독성평가 (Evaluation of in vivo Genotoxicity of Plant Flavonoids, Quercetin and Isoquercetin)

  • 박범수;한세희;이지연;정영신
    • 한국식품위생안전성학회지
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    • 제31권5호
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    • pp.356-364
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    • 2016
  • 식물에서 흔히 존재하는 isoquercetin의 유전독성을 평가하기 위하여 최종평가항목인 DNA 절단 및 염색체 손상을 quercetin과 비교 평가하였다. 7주령의 수컷 ICR 마우스를 사용하였고 3일 동안 시험물질을 경구로 투여하였다. 부형제로 0.5% carboxymethylcellulose를 사용하였고 isoquercetin과 quercetin은 각각 250, 500 mg/kg/day로 투여하였으며, 양성대조물질로 ethyl methanesulfonate 200 mg/kg/day를 사용하였다. 일차 투여 후 48시간에 그리고 마지막 투여 후 3시간 내에 부검하였고 조직을 적출하였다. DNA 손상은 Comet assay를 사용하여 위와 간세포에서 관찰하였고, 소핵시험은 골수세포에서 소핵 분석방법을 사용하여 평가하였다. 두 가지 유전독성 시험을 동일 마우스를 사용하여 수행하였다. 그 결과, isoquercetin과 quercetin의 경구 투여는 500 mg/kg/day에서도 위와 간에서 DNA 손상을 초래하지 않았으며 골수세포에서 소핵을 유발하지 않았다. 따라서 본 연구에서 사용한 플라보노이드는 본 실험 조건하에서 유전독성을 유발하지 않는 것으로 사료된다.

DK1002에 대한 급성독성시험 및 유전독성에 관한 연구 (Acute and Genetic Toxicity Study of DK1002, a Drug Candidate for Analgesics)

  • 류재천;김경란;김현주;정상운;김명국;박희석;김용해
    • Toxicological Research
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    • 제14권3호
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    • pp.427-433
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    • 1998
  • The acute and genetic toxicity of DK1002 was subjected in this study. DK1002 which is a morphine-like new drug candidate synthesized by Dong-Kook Pharmaceutical Co. Ltd. is now under developing as a analgesics that have better drug efficacy and least addictive property. In acute toxicity study, the 50% lethal doses ($LD_{50}$) of DK1002 were determined as>2000mg/kg (p.o.), 237.0mg/kg(i.p.), 57.5mg/kg(i.v.), and 1266.9mg/kg (s.c.). And also, to study the genotoxicity of DK1002, we performed bacterial reversion assay with Salmonella typhimurium TA98, TA100, TA1535, and TA1537, and in vitro chromosomal aberration assay with Chinese hamster lung cells in the presence and absence of S-9 metabolic activation system. In vivo micronucleus assay using mouse bone marrow cells was also performed. From these results, DK1002 was revealed nonmutagenic potential in S. typhimurium TA98, TA100, TA1535, and TA537 both in the absence and presecne of metablic activation system. No clastogenicity of DK1002 was observed in chromosomal aberration assay in vitro as well as in micronucleus assay in vivo.

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Evaluation of the Genotoxicity of Decursin and Decursinol Angelate Produced by Angelica gigas Nakai

  • Kim, Kang-Min;Kim, Tae-Ho;Park, Yun-Jung;Kim, Ik-Hwan;Kang, Jae-Seon
    • Molecular & Cellular Toxicology
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    • 제5권1호
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    • pp.83-87
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    • 2009
  • In this study, we assessed the stability and toxicological safety of Angelica gigas Nakai (A. gigas Nakai) extract, which is comprised of decursin and decursinol angelate (D/DA). D/DA was tested for mutagenicity using Ames Salmonella tester strains (TA102, TA1535, and TA1537) with or without metabolic activation (S9 mix). No increase in the number of revertants was observed in response to any of the doses tested (1.25, 12.5, 125, and $1,250{\mu}/mLg$). In addition, a chromosome aberration test was conducted in the Chinese hamster lung (CHL) cell line. To accomplish this, cells were treated with D/DA (3.28, 13.12, 52.46, and $209.84{\mu}g/mL$) or with Mitomycin C ($0.1{\mu}/mLg$) as a positive control in the case of no metabolic activation or benzo(a)pyrene ($20{\mu}g/mL$) in the case of metabolic activation. No significant increase in chromosome aberrations was observed in response to treatment with any of these concentrations, regardless of activation of the metabolic system. According to these results, we concluded that D/DA did not induce bacterial reverse mutation or clastogenicity in vitro in the range of concentrations evaluated in these experiments.

Inhibitory Effects of the Methanolic Extract of an Edible Brown Alga, Ecklonia stolonifera and Its Component, Phloroglucinol on Aflatoxin $B_1$ Mutagenicity In Vitro (Ames Test) and on Benzo(a)pyrene or N-Methyl N-nitrosourea Clastogenicity In Vivo (Mouse Micronucleus Test)

  • Lee, Ji-Hyeon;Kim, Nam-Deuk;Choi, Jae-Sue;Kim, Young-Jin;Heo, Moon-Young;Lim, Sun-Young;Park, Kun-Young
    • Natural Product Sciences
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    • 제4권2호
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    • pp.105-114
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    • 1998
  • The antimutagenic activity of a methanol extract of Ecklonia stolonifera (Laminariaceae) against aflatoxin $B_1\;(AFB_1)$ was demonstrated with the Salmonella typhimurium assay. The numbers of revertants per plate decreased significantly when this extract was added to the assay system using S. Salmonella typhimurium TA100. The methanol extract also exhibited significant inhibitory effects on the micronuclei formation in mouse peripheral blood reticulocytes and the DNA damage in mouse spleen lymphocytes induced by N-methyl-N-nitrosourea (MMU) and benzo(a)pyrene (B(a)P). The MeOH extract was then sequentially partitioned with $CH_2Cl_2,\;CH_2Cl_2$ insoluble intermediate, EtOAc, n-BuOH, and $H_2O$. All fractions possessed antimutagenic activity but the $H_2O$ fraction was inactive. Among active fractions, the EtOAc and $CH_2Cl_2$ insoluble intermediate fractions showed the highest activity. Column chromatography using $SiO_2$ and Sephadex LH-20 yielded phloroglucinol from the EtOAc fraction. Phloroglucinol also demonstrated significant antimutagenic activity, and inhibitory effects on the micronuclei formation in mouse peripheral blood reticulocytes and DNA damage in mouse spleen lymphocytes induced by MMU and B(a)P.

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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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    • 제5권3호
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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.

Genotoxicity Study on Khal, a Halocidin Derivative, in Bacterial and Mammalian Cells

  • Kim, Youn-Jung;Kim, Mi-Soon;Jeon, Hee-Kyoung;Ryu, Jae-Chun
    • Molecular & Cellular Toxicology
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    • 제2권3호
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    • pp.151-158
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    • 2006
  • Khal was a synthetic congener of halocidin, a heterodimeric peptide consisting of 19 and 15 amino acid residues detected in Halocynthia aurantium. This compound was considered a candidate for the development of a novel peptide antibiotic. The genotoxicity of Khal was subjected to high throughput toxicity screening (HTTS) because they revealed strong antibacterial effects. Mouse lymphoma thymidine kinase ($tk^{+/-}$) gene assay (MOLY), single cell gel electrophoresis (Comet) assay and chromosomal aberration assay in mammalian cells and Ames reverse mutation assay in bacterial system were used as simplified, inexpensive, short-term in vitro screening tests in our laboratory. These compounds are not mutagenic in S. typhimurium TA98 and TA100 strains both in the presence and absence of metabolic activation. Before performing the comet assay, $IC_{20}$ of Khal was determined the concentration of $25.51\;{\mu}/mL\;and\;21.99\;{\mu}g/mL$ with and without S-9, respectively. In the comet assay, Khal was not induced DNA damage in mouse lymphoma cell line. Also, the mutation frequencies in the Khal-treated cultures were similar to the vehicle controls. It is suggests that Khal is non-mutagenic in MOLY assay. And no clastogenicity was observed in Khal-treated Chinese hamster lung cells. The results of this battery of assays indicate that Khal has no genotoxic potential in bacterial or mammalian cell systems. Therefore, we suggest that Khal, as the optimal candidates with both no genotoxic potential and antibacterial effects must be chosen.

재조합 인과립구 콜로니 자극인자 HM10411의 유전독성 연구 (Genotoxicity Study of HM10411, Recombinant Human Granulocyte Colony Stimulating Factor)

  • 권정;이미가엘;홍미영;조지희;정문구;권세창;이관순
    • Biomolecules & Therapeutics
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    • 제10권4호
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    • pp.268-273
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    • 2002
  • Mutagenic potential of HM10411 (recombinant human granulocyte colony stimulating factor) was evaluated by bacterial reverse mutation test, in vitro chromosome aberration test and in vivo micronucleus test. The bacterial reverse mutation test was performed using the histidine auxotroph strains of Salmonella typhimurium TA100, TA1535, TA98, TA1537 and tryptophan auxotroph strain of Escherichia coli WP2 uvrA. The negative results of the bacterial reverse mutation test suggest that HM10411 does not induce mutation, in the genome of Salmonella typhimurium and E. coli under the conditions used. In addition, it has little clastogenicity either in vitro chromosome aberration test or in vivo micronucleus test. For in vitro chromosomal aberration test, Chinese hamster lung(CHL) cells were exposed to HM10411 of 23, 46 or 92 $\mu\textrm{g}$/ml for 6 or 24 hours in the absence and for 6 hours in the presence of metabolic activation system. There was no significant increase in the number of aberrant metaphase in HM 10411-treated groups at any dose levels both in the presence and absence of metabolic activation system. The micronucleus test was carried out using specific pathogen free(SPF) 7-week old male ICR mice, The test item, HM10411 was intraperitoneally administered at 1150, 2300 or 4600 $\mu\textrm{g}$/kg once a day for 2 consecutive days. There was no significant increase in the frequencies of micronucleated polychromatic erythrocytes(PCEs) at any treated groups compared with negative control group. Therefore, these results demonstrate that the test item, HM10411, was not mutagenic under the condition of these studies.

Evaluation of the Genetic Toxicity of Synthetic Chemicals (XI) - a Synthetic Sulfonylurea Herbicide, Pyrazosulfuron-ethyl-

  • Ryu, Jae-Chun;Kim, Eun-Young;Kim, Young-Seok;Yun, Hye-Jung
    • 한국환경성돌연변이발암원학회지
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    • 제24권1호
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    • pp.33-39
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    • 2004
  • To validate and to estimate the chemical hazard playa very important role to environment and human health. The detection of many synthetic chemicals including agrochemicals that may pose a genetic hazard in our environment is of great concern at present. Since these substances are not limited to the original products, and enter the environment, they have become widespread environmental pollutants, thus leading to a variety of chemicals that possibly threaten the public health. Pyrazosulfuron-ethyl [Ethyl-5-(4,6-dimethoxypyrimidin-2-ylcarbamoylsulfamoyl)-1-methylpyrazole-4-carboxylate, $C_{14}H_{18}N{6}O_{7}S,$ M.W. =414.39, CAS No. 93697-74-6], is one of well known rice herbicide belong in the sulfonyl urea group. To clarify the genotoxicity of this agrochemical, Ames bacterial reversion assay, in vitro chromosomal aberration assay with Chinese hamster lung (CHL) fibroblast and bone marrow micronucleus assay in mice were subjected. In Ames assay, although pyrazosulfuron-ethyl revealed cytotoxic at 5,000-140 $\mug/plate$ in Salmonella typhimurium TA100, no dose-dependent mutagenic potential in 4.4~70 $\mug/plate$ of S. typhimurium TA 98, TA 100, TA1535 and TA 1537 both in the absence and presence of S-9 metabolic activation system was observed. Using CHL fibroblasts, the 50% cell growth inhibition concentration $(IC_{50})$ of pyrazosulfuron-ethyl was determined as 1,243 $\mug/mL,$ and no chromosomal aberration was observed both in the absence and presence of S-9 mixture in the concentration range of 311-1,243 $\mug/mL.$ And also, in vivo micronucleus assay using mouse bone marrow, pyrazosulfuron-ethyl revealed no remarkable induction of MNPCE (micronucleated polychromatic erythrocytes/1000 polychromatic erythrocytes) in the dose range of 625-2,500 mg/kg body weight when administered orally. Consequently, Ames bacterial gene mutation with Salmonella typhimurium, in vitro chromosome aberration with mammalian cells and in vivo bone marrow micronucleus assay revealed no clastogenic potential of pyrazosulfuron-ethyl in this study.

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