The structure and toxicity of winter cyanobacterial bloom in a eutrophic lake of the temperate zone

Winter cyanobacterial blooms have become increasingly common in eutrophic lakes advocating a need for their monitoring and risk assessment. The present study evaluated the toxicity of a winter cyanobacterial bloom in a eutrophicated freshwater lake located in Western Poland. The bloom was dominated...

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Published inEcotoxicology (London) Vol. 27; no. 6; pp. 752 - 760
Main Authors Wejnerowski, Łukasz, Rzymski, Piotr, Kokociński, Mikołaj, Meriluoto, Jussi
Format Journal Article
LanguageEnglish
Published New York Springer US 01.08.2018
Springer
Springer Nature B.V
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Abstract Winter cyanobacterial blooms have become increasingly common in eutrophic lakes advocating a need for their monitoring and risk assessment. The present study evaluated the toxicity of a winter cyanobacterial bloom in a eutrophicated freshwater lake located in Western Poland. The bloom was dominated by potentially toxic species: Planktothrix agardhii , Limnothrix redekei , and Aphanizomenon gracile . The toxin analysis revealed the presence of demethylated forms of microcystin-RR and microcystin-LR in ranges of 24.6–28.7 and 6.6–7.6 µg/L, respectively. The toxicity of sampled water was further evaluated in platelet-rich plasma isolated from healthy human subjects using lipid peroxidation and lactate dehydrogenase assays. No significant adverse effects were observed. The present study demonstrates that toxicity of some winter cyanobacterial blooms in the temperate zone, like that in Lubosińskie Lake, may not exhibit significant health risks despite microcystin production.
AbstractList Winter cyanobacterial blooms have become increasingly common in eutrophic lakes advocating a need for their monitoring and risk assessment. The present study evaluated the toxicity of a winter cyanobacterial bloom in a eutrophicated freshwater lake located in Western Poland. The bloom was dominated by potentially toxic species: Planktothrix agardhii, Limnothrix redekei, and Aphanizomenon gracile. The toxin analysis revealed the presence of demethylated forms of microcystin-RR and microcystin-LR in ranges of 24.6–28.7 and 6.6–7.6 µg/L, respectively. The toxicity of sampled water was further evaluated in platelet-rich plasma isolated from healthy human subjects using lipid peroxidation and lactate dehydrogenase assays. No significant adverse effects were observed. The present study demonstrates that toxicity of some winter cyanobacterial blooms in the temperate zone, like that in Lubosińskie Lake, may not exhibit significant health risks despite microcystin production.
Winter cyanobacterial blooms have become increasingly common in eutrophic lakes advocating a need for their monitoring and risk assessment. The present study evaluated the toxicity of a winter cyanobacterial bloom in a eutrophicated freshwater lake located in Western Poland. The bloom was dominated by potentially toxic species: Planktothrix agardhii , Limnothrix redekei , and Aphanizomenon gracile . The toxin analysis revealed the presence of demethylated forms of microcystin-RR and microcystin-LR in ranges of 24.6–28.7 and 6.6–7.6 µg/L, respectively. The toxicity of sampled water was further evaluated in platelet-rich plasma isolated from healthy human subjects using lipid peroxidation and lactate dehydrogenase assays. No significant adverse effects were observed. The present study demonstrates that toxicity of some winter cyanobacterial blooms in the temperate zone, like that in Lubosińskie Lake, may not exhibit significant health risks despite microcystin production.
Winter cyanobacterial blooms have become increasingly common in eutrophic lakes advocating a need for their monitoring and risk assessment. The present study evaluated the toxicity of a winter cyanobacterial bloom in a eutrophicated freshwater lake located in Western Poland. The bloom was dominated by potentially toxic species: Planktothrix agardhii, Limnothrix redekei, and Aphanizomenon gracile. The toxin analysis revealed the presence of demethylated forms of microcystin-RR and microcystin-LR in ranges of 24.6-28.7 and 6.6-7.6 [micro]g/L, respectively. The toxicity of sampled water was further evaluated in platelet-rich plasma isolated from healthy human subjects using lipid peroxidation and lactate dehydrogenase assays. No significant adverse effects were observed. The present study demonstrates that toxicity of some winter cyanobacterial blooms in the temperate zone, like that in Lubosinskie Lake, may not exhibit significant health risks despite microcystin production.
Winter cyanobacterial blooms have become increasingly common in eutrophic lakes advocating a need for their monitoring and risk assessment. The present study evaluated the toxicity of a winter cyanobacterial bloom in a eutrophicated freshwater lake located in Western Poland. The bloom was dominated by potentially toxic species: Planktothrix agardhii, Limnothrix redekei, and Aphanizomenon gracile. The toxin analysis revealed the presence of demethylated forms of microcystin-RR and microcystin-LR in ranges of 24.6-28.7 and 6.6-7.6 µg/L, respectively. The toxicity of sampled water was further evaluated in platelet-rich plasma isolated from healthy human subjects using lipid peroxidation and lactate dehydrogenase assays. No significant adverse effects were observed. The present study demonstrates that toxicity of some winter cyanobacterial blooms in the temperate zone, like that in Lubosińskie Lake, may not exhibit significant health risks despite microcystin production.Winter cyanobacterial blooms have become increasingly common in eutrophic lakes advocating a need for their monitoring and risk assessment. The present study evaluated the toxicity of a winter cyanobacterial bloom in a eutrophicated freshwater lake located in Western Poland. The bloom was dominated by potentially toxic species: Planktothrix agardhii, Limnothrix redekei, and Aphanizomenon gracile. The toxin analysis revealed the presence of demethylated forms of microcystin-RR and microcystin-LR in ranges of 24.6-28.7 and 6.6-7.6 µg/L, respectively. The toxicity of sampled water was further evaluated in platelet-rich plasma isolated from healthy human subjects using lipid peroxidation and lactate dehydrogenase assays. No significant adverse effects were observed. The present study demonstrates that toxicity of some winter cyanobacterial blooms in the temperate zone, like that in Lubosińskie Lake, may not exhibit significant health risks despite microcystin production.
Audience Academic
Author Kokociński, Mikołaj
Meriluoto, Jussi
Wejnerowski, Łukasz
Rzymski, Piotr
Author_xml – sequence: 1
  givenname: Łukasz
  surname: Wejnerowski
  fullname: Wejnerowski, Łukasz
  email: wejner@amu.edu.pl
  organization: Department of Hydrobiology, Faculty of Biology, Adam Mickiewicz University
– sequence: 2
  givenname: Piotr
  surname: Rzymski
  fullname: Rzymski, Piotr
  organization: Department of Environmental Medicine, Poznan University of Medical Sciences
– sequence: 3
  givenname: Mikołaj
  surname: Kokociński
  fullname: Kokociński, Mikołaj
  organization: Department of Hydrobiology, Faculty of Biology, Adam Mickiewicz University
– sequence: 4
  givenname: Jussi
  surname: Meriluoto
  fullname: Meriluoto, Jussi
  organization: Biochemistry, Faculty of Science and Engineering, Åbo Akademi University
BackLink https://www.ncbi.nlm.nih.gov/pubmed/29934736$$D View this record in MEDLINE/PubMed
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Issue 6
Keywords Toxicity
Winter cyanobacterial blooms
Cyanotoxins
Planktothrix agardhii
Aphanizomenon gracile
Language English
License Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits use, duplication, adaptation, distribution, and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
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Snippet Winter cyanobacterial blooms have become increasingly common in eutrophic lakes advocating a need for their monitoring and risk assessment. The present study...
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proquest
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pubmed
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StartPage 752
SubjectTerms adverse effects
Analysis
Aphanizomenon gracile
Blooms
Cyanobacteria - physiology
Earth and Environmental Science
Ecology
Ecotoxicology
Environment
Environmental Management
Eutrophic lakes
Eutrophication
Fresh water
Freshwater
Freshwater lakes
Health risks
Humans
Inland water environment
L-Lactate dehydrogenase
L-Lactate Dehydrogenase - metabolism
Lactate dehydrogenase
Lactic acid
Lakes
Lakes - chemistry
Lakes - microbiology
Lipid peroxidation
Lipid Peroxidation - drug effects
Lipids
Microcystin-LR
Microcystins
Microcystins - analysis
monitoring
Peroxidation
Planktothrix agardhii
Platelet-Rich Plasma - enzymology
Platelet-Rich Plasma - physiology
Poland
risk
Risk assessment
Temperate zones
Toxicity
Toxins
Water analysis
Water pollution
Water sampling
Winter
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Title The structure and toxicity of winter cyanobacterial bloom in a eutrophic lake of the temperate zone
URI https://link.springer.com/article/10.1007/s10646-018-1957-x
https://www.ncbi.nlm.nih.gov/pubmed/29934736
https://www.proquest.com/docview/2058111477
https://www.proquest.com/docview/2058505871
https://www.proquest.com/docview/2116912983
https://pubmed.ncbi.nlm.nih.gov/PMC6061131
Volume 27
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