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      조류기인 유기물질의 제브라피쉬에 대한 뇌파측정기반 독성평가 = Electroencephalography (EEG) based Toxicity Test of Algae Organic Matter on Zebrafish

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      https://www.riss.kr/link?id=A108604137

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      Harmful algae blooms have become a serious environmental problem in major river basins in Korea. They are known to produce various algal organic matters (AOMs) including intracellular organic matters (IOMs) and extracellular organic matters (EOMs). Generally AOMs cannot be easily removed by coagulation/flocculation process in conventional drinking water plants. AOMs produced by blue-green algae also include various toxins such as Microcystins, Anatoxin-a, and Saxitoxin known to have harmful effects on living organisms in aquatic environment. In this study, toxic effects of EOMs produced by three different algae species (Microcystis sp., Anabaena sp., and Oscillatoria sp.) on zebrafish were investigated using electroencephalography (EEG) recording method, a technology for recording brain activity. Electroencephalographic changes in zebrafish revealed that a low EOM had a negative effect on zebrafish compared to both Anabaena sp. and Oscillatoria sp. at 30 ppm EOM exposures. This result might be due to Microcystins present in EOMs produced by Microcystis sp. As a result of power spectrum density anallysis, exposure to EOMs produced by Microcystis sp. caused a state of vigilance in zebrafish. This EEG based toxicity test can be used to examine effects of harmful materials at low levels on living organisms in an aquatic system.
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      Harmful algae blooms have become a serious environmental problem in major river basins in Korea. They are known to produce various algal organic matters (AOMs) including intracellular organic matters (IOMs) and extracellular organic matters (EOMs). Ge...

      Harmful algae blooms have become a serious environmental problem in major river basins in Korea. They are known to produce various algal organic matters (AOMs) including intracellular organic matters (IOMs) and extracellular organic matters (EOMs). Generally AOMs cannot be easily removed by coagulation/flocculation process in conventional drinking water plants. AOMs produced by blue-green algae also include various toxins such as Microcystins, Anatoxin-a, and Saxitoxin known to have harmful effects on living organisms in aquatic environment. In this study, toxic effects of EOMs produced by three different algae species (Microcystis sp., Anabaena sp., and Oscillatoria sp.) on zebrafish were investigated using electroencephalography (EEG) recording method, a technology for recording brain activity. Electroencephalographic changes in zebrafish revealed that a low EOM had a negative effect on zebrafish compared to both Anabaena sp. and Oscillatoria sp. at 30 ppm EOM exposures. This result might be due to Microcystins present in EOMs produced by Microcystis sp. As a result of power spectrum density anallysis, exposure to EOMs produced by Microcystis sp. caused a state of vigilance in zebrafish. This EEG based toxicity test can be used to examine effects of harmful materials at low levels on living organisms in an aquatic system.

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      참고문헌 (Reference)

      1 윤태일 ; 박세진 ; 차일권, "정수처리공정에서 조류유래 유기물질의 제거" 대한환경공학회 27 (27): 377-384, 2005

      2 이인정 ; 이철구 ; 허성남 ; 이재관, "액체크로마토그래피-형광검출법에 의한 호소시료의 아나톡신-a 분석" 한국분석과학회 24 (24): 225-230, 2011

      3 이재현 ; 신귀암, "수돗물을 통해 노출되는 녹조독소의 인체위해성 평가" 한국환경과학회 26 (26): 345-362, 2017

      4 Ali, S., "Zebrafish embryos and larvae : A new generation of disease models and drug screens" 93 (93): 115-133, 2011

      5 Dai, Y. J., "Zebrafish as a model system to study toxicology" 33 (33): 11-17, 2014

      6 Oathes, D. J., "Worry, generalized anxiety disorder, and emotion : Evidence from the EEG gamma band" 79 (79): 165-170, 2008

      7 frikanova, T., "Validation of the zebrafish pentylenetetrazol seizure model : Locomotor versus electrographic responses to Antiepileptic Drugs" 8 (8): 54166-, 2013

      8 Howe, K., "The zebrafish reference genome sequence and its relationship to the human genome" 496 : 498-503, 2013

      9 Petroff, R., "Power spectrum analysis of EEG in a translational nonhuman primate model after chronic exposure to low levels of the common marine neurotoxin, domoic acid" 80 : 124-129, 2020

      10 Levitas-Djerbi, T., "Modeling sleep and neuropsychiatric disorders in zebrafish" 44 : 89-93, 2017

      1 윤태일 ; 박세진 ; 차일권, "정수처리공정에서 조류유래 유기물질의 제거" 대한환경공학회 27 (27): 377-384, 2005

      2 이인정 ; 이철구 ; 허성남 ; 이재관, "액체크로마토그래피-형광검출법에 의한 호소시료의 아나톡신-a 분석" 한국분석과학회 24 (24): 225-230, 2011

      3 이재현 ; 신귀암, "수돗물을 통해 노출되는 녹조독소의 인체위해성 평가" 한국환경과학회 26 (26): 345-362, 2017

      4 Ali, S., "Zebrafish embryos and larvae : A new generation of disease models and drug screens" 93 (93): 115-133, 2011

      5 Dai, Y. J., "Zebrafish as a model system to study toxicology" 33 (33): 11-17, 2014

      6 Oathes, D. J., "Worry, generalized anxiety disorder, and emotion : Evidence from the EEG gamma band" 79 (79): 165-170, 2008

      7 frikanova, T., "Validation of the zebrafish pentylenetetrazol seizure model : Locomotor versus electrographic responses to Antiepileptic Drugs" 8 (8): 54166-, 2013

      8 Howe, K., "The zebrafish reference genome sequence and its relationship to the human genome" 496 : 498-503, 2013

      9 Petroff, R., "Power spectrum analysis of EEG in a translational nonhuman primate model after chronic exposure to low levels of the common marine neurotoxin, domoic acid" 80 : 124-129, 2020

      10 Levitas-Djerbi, T., "Modeling sleep and neuropsychiatric disorders in zebrafish" 44 : 89-93, 2017

      11 Cardozo, K. H. M., "Metabolites from algae with economical impact" 146 (146): 60-78, 2007

      12 Yoon, H. J., "Impact of DBPs on the fate of zebrafish : Behavioral and lipid profile changes" 11 (11): 391-398, 2020

      13 Hamid, N. H. A., "Evaluation of human stress using EEG Power Spectrum" 1-4, 2010

      14 Hwang, K. S., "Efficacy and pharmacokinetics evaluation of 4-(2-chloro-4-fluorobenzyl)-3-(2-thienyl)-1, 2, 4-oxadiazol-5(4H)-one(GM-90432)as an anti-seizure agent" 141 : 104870-, 2020

      15 Oberemm, A., "Effects of microcystin-LR and cyanobacterial crude extracts on embryo-larval development of zebrafish(Danio rerio)" 31 (31): 2918-2921, 1997

      16 Paralkar, A., "Effect of ozone on EOM and coagulation" 88 : 143-154, 1996

      17 Zhang, Y., "Effect of PAC addition on immersed ultrafiltration for the treatment of algal-rich water" 186 (186): 1415-1424, 2011

      18 Knyazev, G. G., "EEG delta oscillations as a correlate of basic homeostatic and motivational processes" 36 (36): 677-695, 2012

      19 Chen, J., "Disinfection by-product formation during chlor(am)ination of algal organic matters(AOM)extracted from microcystis aeruginosa : Effect of growth phases, aom and bromide concentration" 24 (24): 1-10, 2017

      20 Hong, M. H., "Characteristics of chlorination byproducts formation by microcystis sp. and coelastrum sp. of Hoeya reservoir" Pusan National University 2018

      21 Wang, J., "Characteristics of algae-derived organic matter and its role in formation of disinfection by-products" Daejeon University 2022

      22 Nguyen, M. L., "Characteristics and reactivity of algaeproduced dissolved organic carbon" 131 (131): 1574-1582, 2005

      23 Lee, Y. H., "An EEG system to detect brain signals from multiple adult zebrafish" 164 : 112315-, 2020

      24 Dai, R., "Algae removal performance of UV-radiation-enhanced coagulation for two representative algal species" 745 : 141013-, 2020

      25 Kim, H., "A Study on the removal of harmful compounds as algae by advanced oxidation processes" Korean Society on Water Environment and Korean Society of Water and Wastewater 216-217, 2019

      26 Lee, Y. H., "A Microfluidic system for stable and continuous EEG monitoring from multiple larval zebrafish" 20 (20): 5903-, 2020

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