References
In this guide
In this guideAlexander, R. P., O’Neill, A., Dean, K. J., Turner, A. D., & Maskrey, B. H. (2024). Detection of the Cyclic Imines Pinnatoxin G, 13-Desmethyl Spirolide C and 20-Methyl Spirolide G in Bivalve Molluscs from Great Britain. Marine Drugs, 22(12), 556. https://doi.org/10.3390/md22120556
ANSES, (2021). Opinion on the state of knowledge on brevetoxins in shellfish, data on toxicity, occurrence and brevetoxin-producing microalgae. ANSES revised OPINION on the state of knowledge on brevetoxins in shellfish, data on toxicity, occurrence and brevetoxin-producing microalgae
Amzil Z, Derrien A, Terrillon AT, Savar V, Bertin T, Peyrat M, Duval A, Lhaute K, Arnich N, Hort V, Nicolas M (2023). Five years monitoring the emergence of unregulated toxins in shellfish in France (EMERGTOX 2018-2022). Marine Drugs, 21, 435. https://doi.org/10.3390/md21080435
Aune, T., Espenes, A., Aasen, J. A. B., Quilliam, M. A., Hess, P., & Larsen, S. (2012). Study of possible combined toxic effects of azaspiracid-1 and okadaic acid in mice via the oral route. Toxicon, 60(5), 895–906. https://doi.org/10.1016/j.toxicon.2012.06.007
Bacciocchi S, Campacci D, Siracusa M, Dubbini A, Leoni F, Tavoloni T, Accoroni S, Gorbi S, Guiliani ME, Stramenga A, Piersanti A (2021). Tetrodotoxin (TTX) and Vibro alginolyticus in mussels from Central Adriatic Sea (Italy): Are they closely related? Marine Drugs, 19(6), 304. https://doi.org/10.3390/md19060304
Bane V, Lehane M, Dikshit M, O’Riordan A, Furey A (2014). Tetrodotoxin: chemistry, toxicity, source, distribution and detection. Toxins, 6(2), 693–755. https://doi.org/10.3390/toxins6020693
Blanco L, Lago J, Gonzalez V, Paz B, Rambla-Alegre M, Cabado AG (2019). Occurrence of tetrodotoxin in bivalves and gastropods from harvesting areas and other natural spaces in Spain. MDPI, 11(6), 331. https://doi.org/10.3390/toxins11060331
Bordin P, Dall’Ara S, Tartaglione L, Antonelli P, Calfapietra A, Varriale F, Guiatti D, Milandri A, Dell’Aversano C, Arcangeli G, Barco L (2021). First occurrence of tetrodotoxins in bivalve mollusks from Northern Adriatic Sea (Italy). Food Control, 120(4), 107510. http://dx.doi.org/10.1016/j.foodcont.2020.107510
Cefas (2014). Final Report: Research to support the development of a monitoring programme for new or emerging marine biotoxins in shellfish in UK waters. Final_Report_-_Research.pdf
CRLMB (Community Reference Laboratory for Marine Biotoxins), (2005). Report on toxicology working group meeting, Cesenatico, Italy, 24-25 October, 2005.
DAERA (Department of Agriculture, Environment and Rural Affairs), (2024). The Lough Neagh Report, Blue Green Algae and Water Quality in Northern Ireland, July 2024. The Lough Neagh Report
Davidson K, Baker C, Higgins C, Higman W, Swan S, Veszelovski A, Turner AD (2015). Potential threats posed by new or merging biotoxins in UK waters and examination of detection methodologies used for their control: Cyclic imines. Marine Drugs, 13(12), 7087-112. https://doi.org/10.3390/md13127057
Dhanji-Rapkova M, Turner AD, Baker-Austin C, Huggett JF, Ritchie JM (2021). Distribution of tetrodotoxin in Pacific oysters (Crassostrea gigas). MDPI, 19(2), 84. https://doi.org/10.3390/md19020084
EFSA (2008). Marine biotoxins in shellfish – Azaspiracid group. Scientific Opinion of the Panel on Contaminants in the Food chain. EFSA Journal, 6(10): 723. https://doi.org/10.2903/j.efsa.2008.723
EFSA (2009a). Scientific Opinion on marine biotoxins in shellfish – domoic acid. EFSA Journal, 7(7), 1181. https://doi.org/10.2903/j.efsa.2009.1181
EFSA (2009b). Scientific Opinion on marine biotoxins in shellfish – Palytoxin group. EFSA Journal, 7(12): 1393. https://doi.org/10.2903/j.efsa.2009.1393
EFSA (2009c). Scientific Opinion on marine biotoxins in shellfish – Saxitoxin group. EFSA Journal, 1019, 1-76. https://doi.org/10.2903/j.efsa.2009.1019
EFSA (2010a). Scientific Opinion on marine biotoxins in shellfish – Cyclic imines (spirolides, gymnodimines, pinnatoxins and pteriatoxins). EFSA Journal, 8(6): 1628. https://doi.org/10.2903/j.efsa.2010.1628
EFSA (2010b). Scienitfic Opinion on marine biotoxins in shellfish – Emerging biotoxins: Brevetoxin group. EFSA Journal, 8(7):1677. https://doi.org/10.2903/j.efsa.2010.1677
EFSA (2017). Risk for public health related to the presence of tetrodotoxin (TTX) and TTX analogues in marine bivalves and gastropods. EFSA Journal, 15(4), 4752. https://doi.org/10.2903/j.efsa.2017.4752
FAO/WHO (2016). Technical paper on toxicity equivalency factors for marine biotoxins associated with bivalve molluscs. Rome. 1–133. Toxicity equivalence factors for marine biotoxins associated with bivalve molluscs - Technical paper
FSAI (2016). The occurrence of marine biotoxins and risk of exposure to seafood consumers in Ireland. Report of the Scientific Committee of the Food Safety Authority of Ireland. marine-biotoxins-report-final-(1).pdf
Gerssen A, Bovee THF, Klijnstra MD, Poelman M, Portier L, Hoogenboom RLAP (2018). First report of the occurrence of tetrodotoxins in bivalve mollusks in the Netherlands. MDPI, 10(11), 450. https://doi.org/10.3390/toxins10110450
Hort V, Arnich N, Guerin T, Lavison-Bompard G, Nicolas M (2020). First detection of tetrodotoxins in bivalves and gastropods from the French Mainland Coasts. Toxins, 12(9), 599. (anses-02965280). https://doi.org/10.3390/toxins12090599
Islam QT, Razzak MA, Islam MA, Bari MI, Basher A, Chowdhury FR, Sayeduzzaman AB, Ahasan HA, Faiz MA, Arakawa O, Yotsu-Yamashita M, Kuch U, Mebs D (2011). Puffer fish poisoning in Bangladesh: clinical and toxicological results from large outbreaks in 2008. Transactions of the Royal Society of Tropical Medicine and Hygiene, 105(2), 74–80. https://doi.org/10.1016/j.trstmh.2010.10.002
Ito, E., Satake, M., Ofuji, K., Kurita, N., McMahon, T., James, K., & Yasumoto, T. (2000). Multiple organ damage caused by a new toxin azaspiracid, isolated from mussels produced in Ireland. Toxicon, 38(7), 917–930. https://doi.org/10.1016/S0041-0101(99)00203-2
Jauffrais, T., Marcaillou, C., Herrenknecht, C., Truquet, P., Séchet, V., Nicolau, E., Tillmann, U., & Hess, P. (2012). Azaspiracid accumulation, detoxification and biotransformation in blue mussels (Mytilus edulis) experimentally fed Azadinium spinosum. Toxicon, 60(4), 582–595. https://doi.org/10.1016/j.toxicon.2012.04.351
Krock B, Tillmann U, Tebben J, Trefault N, Gu H (2019). Two novel azaspiracids from Azadinium poporum, and a comprehensive compilation of azaspiracids produced by Amphidomatacae, (Dinophyceae). Harmful Algae, 82, 1-8. https://doi.org/10.1016/j.hal.2018.12.005
Lad, A., Breidenbach, J. D., Su, R. C., Murray, J., Kuang, R., Mascarenhas, A., Najjar, J., Patel, S., Hegde, P., Youssef, M., Breuler, J., Kleinhenz, A. L., Ault, A. P., Westrick, J. A., Modyanov, N. N., Kennedy, D. J., & Haller, S. T. (2022). As We Drink and Breathe: Adverse Health Effects of Microcystins and Other Harmful Algal Bloom Toxins in the Liver, Gut, Lungs and Beyond. Life, 12(3), Article 3. https://doi.org/10.3390/life12030418
Lago, J., Rodríguez, L. P., Blanco, L., Vieites, J. M., & Cabado, A. G. (2015). Tetrodotoxin, an Extremely Potent Marine Neurotoxin: Distribution, Toxicity, Origin and Therapeutical Uses. Marine Drugs, 13(10), Article 10. https://doi.org/10.3390/md13106384
Otero, P., & Silva, M. (2022). Emerging Marine Biotoxins in European Waters: Potential Risks and Analytical Challenges. Marine Drugs, 20(3), Article 3. https://doi.org/10.3390/md20030199
Pigozzi, S., Bianchi, L., Boschetti, L., Cangini, M., Ceredi, A., Magnani, F., Milandri, A., Montanari, S., Pompei, M., Riccardi, E., & Rubini, S. (2008). First evidence of spirolide accumulation in northwestern Adriatic shellfish. Copenhagen. 319-322.
Ramos, V., & Vasconcelos, V. (2010). Palytoxin and analogs: Biological and ecological effects. Marine Drugs, 8(7), 2021–2037. https://doi.org/10.3390/md8072021
Reid, N., Reyne, M. I., O’Neill, W., Greer, B., He, Q., Burdekin, O., McGrath, J. W., & Elliott, C. T. (2024). Unprecedented Harmful algal bloom in the UK and Ireland’s largest lake associated with gastrointestinal bacteria, microcystins and anabaenopeptins presenting an environmental and public health risk. Environment International, 190, 108934. https://doi.org/10.1016/j.envint.2024.108934
Testai E, Buratti FM, Funari E, Manganelli M, Vichi S (2016). Review and analysis of occurrence, exposure and toxicity of cyanobacteria toxins in food. EFSA supporting publication: EN-998, 309pp. https://doi.org/10.2903/sp.efsa.2016.EN-998
Tillmann, U., Jaén, D., Fernández, L., Gottschling, M., Witt, M., Blanco, J., & Krock, B. (2017). Amphidoma languida (Amphidomatacea, Dinophyceae) with a novel azaspiracid toxin profile identified as the cause of molluscan contamination at the Atlantic coast of southern Spain. Harmful Algae, 62, 113–126. https://doi.org/10.1016/j.hal.2016.12.001
Turner A, Powell A, Schofield A, Lees D, Baker-Austin C (2015). Detection of the pufferfish toxin tetrodotoxin in European bivalves, England, 2013 to 2014. Eurosurveillance, 20(2), 1–7. https://doi.org/10.2807/1560-7917.es2015.20.2.21009
Vareli K, Zarli E, Zacharioudakis Vagenas G, Varelis V, Pilidis G, Briasoulis E, Sainis I (2012). Microcystin producing cyanobacterial communities in Amvrakikos Gulf (Mediterranean Sea, NW Greece) and toxin accumulation in mussels (Mytilus galloprovincialis). Harmful Algae, 15, 109-118. http://dx.doi.org/10.1016/j.hal.2011.12.005
Vilariño, N., Louzao, M. C., Abal, P., Cagide, E., Carrera, C., Vieytes, M. R., & Botana, L. M. (2018). Human Poisoning from Marine Toxins: Unknowns for Optimal Consumer Protection. Toxins, 10(8), Article 8. https://doi.org/10.3390/toxins10080324
WHO (2020). Cyanobacterial toxins: Microcystins. Background document for development of WHO Guidelines for drinking-water quality and Guidelines for safe recreational water environments.
Microsoft Word GDWQ.2ndEdit.Cyanobacterial.toxins.doc
WHO (2022). Guidelines for drinking water quality. Fourth edition incorporating the first and second addenda. Guidelines for drinking water
Žegura, B., Štraser, A., & Filipič, M. (2011). Genotoxicity and potential carcinogenicity of cyanobacterial toxins – a review. Mutation Research/Reviews in Mutation Research, 727(1), 16–41. https://doi.org/10.1016/j.mrrev.2011.01.002