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      KCI등재 SCIE SCOPUS

      Insecticidal spectrum of fluralaner to agricultural and sanitary pests

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      https://www.riss.kr/link?id=A104735270

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      다국어 초록 (Multilingual Abstract)

      Fluralaner, as an isoxazoline insecticide, has been developed as antiparasitic (namely Bravecto®) with selective toxicity for insect versus mammals. Even though the toxic effect of fluralaner to several insects have been already examined, but also more agricultural and sanitary insects should be tested before it could be used widely. Four insects, including two agricultural insects, one sanitary insect and one stored product insect were tested in the present study. Compared to the broad-spectrum and high activity insecticide of fipronil, fluralaner showed mostly higher activity to tested pests, Chilo suppressalis, Tribolium castaneum, Spodoptera litura except Blattella germanica with topical application. Through summarizing and analyzing various published data, we concluded that, to date, the toxic activity of fluralaner to 19 insects from 11 orders were already examined, and fluralaner displayed excellent activity. Compared to fipronil, fluralaner mostly shows more excellent activity to tested insect with maximal 1.67 ×104-fold difference so much. In the present study, the toxicity activity of fluralaner was compared to the broad-spectrum phenylpyrazole insecticide fipronil to tested insect pests and the results exhibited that fluralaner would be a novel alternative insecticide with broad insecticidal spectrum and be widely used in more other areas not only as veterinary drug.
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      Fluralaner, as an isoxazoline insecticide, has been developed as antiparasitic (namely Bravecto®) with selective toxicity for insect versus mammals. Even though the toxic effect of fluralaner to several insects have been already examined, but also mo...

      Fluralaner, as an isoxazoline insecticide, has been developed as antiparasitic (namely Bravecto®) with selective toxicity for insect versus mammals. Even though the toxic effect of fluralaner to several insects have been already examined, but also more agricultural and sanitary insects should be tested before it could be used widely. Four insects, including two agricultural insects, one sanitary insect and one stored product insect were tested in the present study. Compared to the broad-spectrum and high activity insecticide of fipronil, fluralaner showed mostly higher activity to tested pests, Chilo suppressalis, Tribolium castaneum, Spodoptera litura except Blattella germanica with topical application. Through summarizing and analyzing various published data, we concluded that, to date, the toxic activity of fluralaner to 19 insects from 11 orders were already examined, and fluralaner displayed excellent activity. Compared to fipronil, fluralaner mostly shows more excellent activity to tested insect with maximal 1.67 ×104-fold difference so much. In the present study, the toxicity activity of fluralaner was compared to the broad-spectrum phenylpyrazole insecticide fipronil to tested insect pests and the results exhibited that fluralaner would be a novel alternative insecticide with broad insecticidal spectrum and be widely used in more other areas not only as veterinary drug.

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      참고문헌 (Reference)

      1 Qu, M., "Triazophos resistance mechanisms in the rice stem borer (Chilo suppressalis Walker)" 77 : 99-105, 2003

      2 Andric, G., "Toxicity of several contact insecticides to Tribolium castaneum (Herbst) populations after selection with pirimiphos-methyl and deltamethrin" 30 : 209-216, 2015

      3 Gassel, M., "The novel isoxazoline ectoparasiticide fluralaner: selective inhibition of arthropod γ-aminobutyric acid- and L-glutamate-gated chloride channels and insecticidal/acaricidal activity" 45 : 111-124, 2014

      4 Walther, F. M., "The effect of food on the pharmacokinetics of oral fluralaner in dogs" 7 : 84-, 2014

      5 Ozoe, Y., "The antiparasitic isoxazoline A1443 is a potent blocker of insect ligand-gated chloride channels" 391 : 744-749, 2010

      6 Wu, M., "Susceptibility of the rice stem borer, Chilo suppressalis (Lepidoptera: Crambidae), to flubendiamide in China" 107 : 1250-1255, 2014

      7 Gao, C., "Susceptibility baseline and chlorantraniliprole resistance monitoring in Chilo suppressalis (Lepidoptera:Pyralidae)" 106 : 2190-2194, 2013

      8 Walther, F. M., "Safety of concurrent treatment of dogs with fluralaner (Bravecto™) and milbemycin oxime -praziquantel" 7 : 481-, 2014

      9 Peng, Y. C., "Ryanodine receptor genes of the rice stem borer, Chilo suppressalis: molecular cloning, alternative splicing and expression profiling" 135 : 69-77, 2017

      10 Cheng, X., "Responses of striped stem borer, Chilo suppressalis (Lepidoptera: Pyralidae), from Taiwan to a range of insecticides" 66 : 762-766, 2010

      1 Qu, M., "Triazophos resistance mechanisms in the rice stem borer (Chilo suppressalis Walker)" 77 : 99-105, 2003

      2 Andric, G., "Toxicity of several contact insecticides to Tribolium castaneum (Herbst) populations after selection with pirimiphos-methyl and deltamethrin" 30 : 209-216, 2015

      3 Gassel, M., "The novel isoxazoline ectoparasiticide fluralaner: selective inhibition of arthropod γ-aminobutyric acid- and L-glutamate-gated chloride channels and insecticidal/acaricidal activity" 45 : 111-124, 2014

      4 Walther, F. M., "The effect of food on the pharmacokinetics of oral fluralaner in dogs" 7 : 84-, 2014

      5 Ozoe, Y., "The antiparasitic isoxazoline A1443 is a potent blocker of insect ligand-gated chloride channels" 391 : 744-749, 2010

      6 Wu, M., "Susceptibility of the rice stem borer, Chilo suppressalis (Lepidoptera: Crambidae), to flubendiamide in China" 107 : 1250-1255, 2014

      7 Gao, C., "Susceptibility baseline and chlorantraniliprole resistance monitoring in Chilo suppressalis (Lepidoptera:Pyralidae)" 106 : 2190-2194, 2013

      8 Walther, F. M., "Safety of concurrent treatment of dogs with fluralaner (Bravecto™) and milbemycin oxime -praziquantel" 7 : 481-, 2014

      9 Peng, Y. C., "Ryanodine receptor genes of the rice stem borer, Chilo suppressalis: molecular cloning, alternative splicing and expression profiling" 135 : 69-77, 2017

      10 Cheng, X., "Responses of striped stem borer, Chilo suppressalis (Lepidoptera: Pyralidae), from Taiwan to a range of insecticides" 66 : 762-766, 2010

      11 Halliday, W. R., "Resistance status of red flour beetle (Coleoptera: Tenebrionidae) infesting stored peanuts in the southeastern United States" 81 : 74-77, 1988

      12 Wu, S., "Resistance of the tobacco army moth (Prodenia litura) to insecticides and its control" 11 : 39-43, 1995

      13 Zhao, C., "Research progress on bioeffect and toxicology of insecticide fluralaner and its derivatives" 17 : 251-256, 2015

      14 Wei, Y., "Pyrethroid resistance and cross-resistance in the German cockroach, Blattella germanica (L)" 57 : 1055-1059, 2001

      15 Gautam, S. G., "Phosphine resistance in adult and immature life stages of Tribolium castaneum (Coleoptera: Tenebrionidae) and Plodia interpunctella (Lepidoptera: Pyralidae) populations in California" 109 : 221-, 2016

      16 Holbrook, G. L., "Origin and extent of resistance to fipronil in the German cockroach, Blattella germanica (L.)(Dictyoptera: Blattellidae)" 96 : 1548-1558, 2003

      17 Ahmad, M., "Monitoring of resistance to new chemistry insecticides in Spodoptera litura (Lepidoptera: Noctuidae) in Pakistan" 108 : 1279-1288, 2015

      18 Kyu Sik Chang, "Monitoring for insecticide resistance in field-collected populations of Blattella germanica (Blattaria: Blattellidae)" 한국응용곤충학회 13 (13): 309-312, 2010

      19 Chen, C., "Method for monitoring insecticide resistance in rice stem borer (Chilo suppressalis Walker) and relative susceptible baselines data" 23 : 25-28, 2000

      20 Lu Xu, "Lethal and sublethal effects of sulfoxaflor on the small brown planthopper Laodelphax striatellus" 한국응용곤충학회 19 (19): 683-689, 2016

      21 Srinivasan, R., "Laboratory evaluation of fipronil against Periplaneta americana & Blattella germanica" 122 : 57-66, 2005

      22 Wei, Q., "Knockdown of the ionotropic γ-aminobutyric acid receptor (GABAR) rdl gene decreases fipronil susceptibility of the small brown planthopper, Laodelphax striatellus (Hemiptera:Delphacidae)" 88 : 249-261, 2015

      23 Ko, A. E., "Insecticide resistance and diminished secondary kill performance of bait formulations against German cockroaches (Dictyoptera: Blattellidae)" 72 : 1778-1784, 2016

      24 Zhao, C. -Q., "Insect γ-aminobutyric acid receptors and isoxazoline insecticides:toxicological profiles relative to the binding sites of [3H]fluralaner, [3H]-4′-ethynyl-4-n-propylbicycloorthobenzoate, and [3H]avermectin" 62 : 1019-1024, 2014

      25 Kaur, M., "Impact of sesquiterpenes from Inula racemosa (Asteraceae) on growth, development and nutrition of Spodoptera litura (Lepidoptera: Noctuidae)" 73 : 1031-1038, 2017

      26 Casida, J. E., "Golden age of RyR and GABA-R diamide and isoxazoline insecticides:common genesis, serendipity, surprises, selectivity, and safety" 28 : 560-566, 2015

      27 Su, J., "Geographic susceptibility of Chilo suppressalis Walker (Lepidoptera: Crambidae), to chlorantraniliprole in China" 70 : 989-995, 2014

      28 Zhao, C. Q., "GABAA receptor target of tetramethylenedisulfotetramine" 111 : 8607-8612, 2014

      29 Gant, D. B., "Fipronil: action at the GABA receptor" 2 : 147-156, 1998

      30 Li, X., "Fipronil resistance mechanisms in the rice stem borer, Chilo suppressalis Walker" 89 : 169-174, 2007

      31 Wang, X., "Fipronil insecticide toxicology: oxidative stress and metabolism" 46 : 876-899, 2016

      32 Ahmad, M., "Efficacy of insecticide mixtures against pyrethroid- and organophosphate-resistant populations of Spodoptera litura (Lepidoptera: Noctuidae)" 65 : 266-274, 2009

      33 Nasirian, H., "Duration of fipronil topical application toxicity in Blattella germanica field population strains" 9 : 800-804, 2006

      34 Asahi, M., "Differential mechanisms of action of the novel γ-aminobutyric acid receptor antagonist ectoparasiticides fluralaner (A1443) and fipronil" 71 : 91-95, 2015

      35 Fang, Q., "Differential fipronil susceptibility and metabolism in two rice stem borers from China" 101 : 1415-1420, 2008

      36 Agropages, "Detection of rice planthoppers and rice stem borer in Zhejiang province in 2016"

      37 Song, S., "Cross-resistance and baseline susceptibility of Spodoptera litura (Fabricius) (Lepidoptera: Noctuidae) to cyantraniliprole in the south of China" 72 : 922-928, 2016

      38 He, Y. P., "Comparison of dose responses and resistance ratios in four populations of the rice stem borer, Chilo suppressalis (Lepidoptera: Pyralidae), to 20 insecticides" 64 : 308-315, 2008

      39 Nenaah, G. E., "Chemical composition, toxicity and growth inhibitory activities of essential oils of three Achillea species and their nano-emulsions against Tribolium castaneum (Herbst)" 53 : 252-260, 2014

      40 Lee, K., "Catalytic enantioselective addition of organoboron reagents to fluoroketones controlled by electrostatic interactions" 8 : 768-777, 2016

      41 Moemenbellah-Fard, M. D., "Carbamate insecticides resistance monitoring of adult male German cockroaches, Blattella germanica (L.), in southern Iran" 1 : 41-47, 2013

      42 Huang, S., "Baseline toxicity data of insecticides against the common cutworm Spodoptera litura (Fabricius) and a comparison of resistance monitoring methods" 52 : 209-213, 2006

      43 Lahm, G. P., "Azolylphenyl isoxazoline insecticides acting at the GABA gated chloride channel" 23 : 3001-3006, 2013

      44 Rohdich, N., "A randomized, blinded, controlled and multi-centered field study comparing the efficacy and safety of Bravecto™(fluralaner)against frontline™(fipronil) in flea- and tick-infested dogs" 7 : 83-, 2014

      45 Niu, H. T., "A comparison on toxicity of fipronil and butene-fipronil against diamondback moth larvae in laboratory" 11 : 28-30, 2007

      46 Mita, T., "(Nissan Chemical Industries, Ltd.) isoxazoline-substituted benzamide compound and harmful organism-controlling agent. (pp. WO 2005-085126, JP 082007-308471)"

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
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      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      2016 1.08 0.26 0.85
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
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