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      Estimating toxic equivalent factors for microcystin congeners using protein phosphatase inhibition assay

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      https://www.riss.kr/link?id=A108637679

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      다국어 초록 (Multilingual Abstract)

      The guidelines for microcystins (MCs), which are cyanobacterial toxin, in drinking water or recreational water do not reflect the difference in the toxicity of MC congeners. In this study, the toxicity equivalent factors (TEFs) of four types of MC congeners, widely found in freshwater environments, were estimated based on the relative extent of enzyme inhibition using the protein phosphatase inhibition assay. The TEFs of MC-RR, MC-YR, and MC-LA to MC-LR were 0.149, 0.257, and 0.392, respectively. Based on these results, we presented an equation for converting the concentration of four MC congeners measured from environmental samples into toxic equivalent quantity for MC-LR (TEQMC-LR). Practical and efficient risk management for MC congeners is possible if the guidelines are established based on TEQMC-LR by applying the TEF for the four MC congeners presented in this study.
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      The guidelines for microcystins (MCs), which are cyanobacterial toxin, in drinking water or recreational water do not reflect the difference in the toxicity of MC congeners. In this study, the toxicity equivalent factors (TEFs) of four types of MC con...

      The guidelines for microcystins (MCs), which are cyanobacterial toxin, in drinking water or recreational water do not reflect the difference in the toxicity of MC congeners. In this study, the toxicity equivalent factors (TEFs) of four types of MC congeners, widely found in freshwater environments, were estimated based on the relative extent of enzyme inhibition using the protein phosphatase inhibition assay. The TEFs of MC-RR, MC-YR, and MC-LA to MC-LR were 0.149, 0.257, and 0.392, respectively. Based on these results, we presented an equation for converting the concentration of four MC congeners measured from environmental samples into toxic equivalent quantity for MC-LR (TEQMC-LR). Practical and efficient risk management for MC congeners is possible if the guidelines are established based on TEQMC-LR by applying the TEF for the four MC congeners presented in this study.

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      참고문헌 (Reference)

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      6 Mowe MA, "Tropical cyanobacterial blooms : a review of prevalence, problem taxa, toxins and influencing environmental factors" 74 : 205-224, 2015

      7 Heinze R, "Toxicity of the cyanobacterial toxin microcystin-LR to rats after 28 days intake with the drinking water" 14 : 57-60, 1999

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      9 Testai E, "Toxic Cyanobacteria in Water: A Guide to Their Public Health Consequences, Monitoring and Management" CRC Press 94-108, 2021

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      2 윤효정 ; 서정관 ; 김탁수 ; 조아름 ; 김정곤 ; 이두희 ; 김필제 ; 최경희, "마이크로시스틴의 어류내 축적성 및 인체 위해성 평가:국내 저수지 사례연구" 한국환경보건학회 42 (42): 10-18, 2016

      3 김화빈 ; 박혜경 ; 신교동 ; 문정숙, "국내산 유독 남조류의 독소생산 특성" 한국물환경학회 26 (26): 834-840, 2010

      4 오경희 ; 한아원 ; 조영철, "국내 호수에서 Microcystins의 생합성에 관여하는 mcyA 유전자의 염기서열 다양성 분석" 한국미생물학회 46 (46): 162-168, 2010

      5 Beversdorf LJ, "Variable cyanobacterial toxin and metabolite profiles across six eutrophic lakes of differing physiochemical characteristics" 9 : 62-, 2017

      6 Mowe MA, "Tropical cyanobacterial blooms : a review of prevalence, problem taxa, toxins and influencing environmental factors" 74 : 205-224, 2015

      7 Heinze R, "Toxicity of the cyanobacterial toxin microcystin-LR to rats after 28 days intake with the drinking water" 14 : 57-60, 1999

      8 Kuiper-Goodman T, "Toxic Cyanobacteria in Water: A Guide to Their Public Health Consequences, Monitoring and Management" E & FN Spon 115-153, 1999

      9 Testai E, "Toxic Cyanobacteria in Water: A Guide to Their Public Health Consequences, Monitoring and Management" CRC Press 94-108, 2021

      10 Fastner J, "Toxic Cyanobacteria in Water: A Guide to Their Public Health Consequences, Monitoring and Management" CRC Press 21-52, 2021

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      16 Faassen EJ, "Occurrence of the microcystins MC-LW and MC-LF in Dutch surface waters and their contribution to total microcystin toxicity" 11 : 2643-2654, 2013

      17 Henrie T, "Occurrence and state approaches for addressing cyanotoxins in US drinking water" 109 : 40-47, 2017

      18 Wiese M, "Neurotoxic alkaloids : saxitoxin and its analogs" 8 : 2185-2211, 2010

      19 Fastner J, "Microcystin-content, hepatotoxicity and cytotoxicity of cyanobacteria in some German water bodies" 32 : 165-170, 1995

      20 Lindholm T, "Microcystin occurrence in lakes in Åland, SW Finland" 505 : 129-138, 2003

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      34 Zhong Y, "Distribution, input pathway and soil–air exchange of polycyclic aromatic hydrocarbons in Banshan Industry Park, China" 444 : 177-182, 2013

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      36 Sassolas A, "Development of a colorimetric inhibition assay for microcystin-LR detection : comparison of the sensitivity of different protein phosphatases" 85 : 2498-2503, 2011

      37 McElhiney J, "Detection of the cyanobacterial hepatotoxins microcystins" 203 : 219-230, 2005

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      39 Albay M, "Depth profiles of cyanobacterial hepatotoxins(microcystins)in three Turkish freshwater lakes" 505 : 89-95, 2003

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      41 Graham JL, "Cyanotoxin mixtures and taste-and-odor compounds in cyanobacterial blooms from the midwestern United States" 44 : 7361-7368, 2010

      42 Hitzfeld BC, "Cyanobacterial toxins : removal during drinking water treatment, and human risk assessment" 108 : 113-122, 2000

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      45 Ibelings BW, "Current approaches to cyanotoxin risk assessment and risk management around the globe" 49 : 63-74, 2015

      46 Janse I, "Contrasting microcystin production and cyanobacterial population dynamics in two Planktothrix-dominated freshwater lakes" 7 : 1514-1524, 2005

      47 Fischer WJ, "Congener-independent immunoassay for microcystins and nodularins" 35 : 4849-4856, 2001

      48 Gupta N, "Comparative toxicity evaluation of cyanobacterial cyclic peptide toxin microcystin variants(LR, RR, YR)in mice" 188 : 285-296, 2003

      49 Vesterkvist PSM, "Comparative cellular toxicity of hydrophilic and hydrophobic microcystins on Caco-2 cells" 4 : 1008-1023, 2012

      50 Xing L, "Combined toxicity of three chlorophenols 2, 4-dichlorophenol, 2, 4, 6-trichlorophenol and pentachlorophenol to Daphnia magna" 14 : 1677-1683, 2012

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      53 Oh Kyoung-Hee ; Beak Kung-Min ; Shin Yuna ; Cho Young-Cheol, "Assessing the microcystins concentration through optimized protein phosphatase inhibition assay in environmental samples" 한국미생물학회 60 (60): 602-609, 2022

      54 Munday R, "Acute toxicities of saxitoxin, neosaxitoxin, decarbamoyl saxitoxin and gonyautoxins 1&4 and 2&3 to mice by various routes of administration" 76 : 77-83, 2013

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      56 Heresztyn T, "A colorimetric protein phosphatase inhibition assay for the determination of cyanobacterial peptide hepatotoxins based on the dephosphorylation of phosvitin by recombinant protein phosphatase 1" 16 : 242-252, 2001

      57 Bouaïcha N, "A colorimetric and fluorometric microplate assay for the detection of microcystin-LR in drinking water without preconcentration" 40 : 1677-1683, 2002

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