Application of Anti-Immune Complex Reagents in Small Molecule Analyte Immunoassays. [PDF]
Du K, He H, Zhao L, Gao L, Li T.
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Sub-Nanomolar Detection and Discrimination of Microcystin Congeners Using Aerolysin Nanopores. [PDF]
Agerova A +13 more
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Trends in <i>Arthrospira</i> sp. (Spirulina) Applications: A 15-Year Bibliometric Analysis and Systematic Review. [PDF]
Hosseini H, Bounnit T, Saadaoui I.
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Screening of Lipid-Reducing Activity and Cytotoxicity of the Exometabolome from Cyanobacteria. [PDF]
Luz R +4 more
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Potential health risk assessment of cyanobacteria across global lakes. [PDF]
Hu H +9 more
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Toxic Cyanopeptides Monitoring in Thermal Spring Water by Capillary Electrophoresis Tandem Mass Spectrometry. [PDF]
Carmona-Molero R +4 more
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The brackish, bloom-forming cyanobacterium Nodularia spumigena produces a peptide called nodularin, which may induce liver damage in fish.
Catherine Legrand
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Production of the cyanotoxin nodularin—A multifactorial approach
Abstract Summer blooms in the Baltic Sea are dominated by the diazotrophic cyanobacteria Nodularia spumigena and Aphanizomenon sp. During the blooms, N. spumigena is concentrated to the water surface and exposed to high irradiances of both photosynthetic active radiation (PAR, 400–700 nm) and ultraviolet radiation (UVR, 280–400 nm), in addition, this
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Biodegradation of microcystins and nodularin in freshwaters
Chemosphere, 2008Microcystin-LR (MC-LR) was readily biodegraded on addition to six different water samples irrespective of their previous exposure to microcystins. Subsequent studies with water from three of these water bodies confirmed the degradation of MC-LR and also demonstrated the biodegradation of MC-LF, nodularin and mixture of microcystins and nodularin. Rates
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The degradation of the cyanobacterial hepatotoxin nodularin (NOD) by UV radiation
Chemosphere, 2006This study investigates the decomposition of NOD by UV irradiation. Water solutions of pure NOD and NOD-containing Nodularia extract as well as Nodularia filaments collected on filters were exposed to UV-A, UV-B, and white fluorescent light (VIS) during 48 h experiments. In VIS, the toxin was fairly stable and only 3.8-4.6% of the original degraded. UV-
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