A review of microcystin detections in Estuarine and Marine waters: Environmental implications and human health risk

Обзор выявления микроцистинов в эстуарных и морских водах: экологические последствия и риск для здоровья человека
Ellen P. Preece, Flavien Hardy, Barry Moore, Michael D. Bryan
2016-11-29

coastal seafoodestuarine and coastal watersharmful cyanobacterial bloomshuman health riskmicrocystins
Toxin production by harmful cyanobacteria blooms (CyanoHABs) constitutes a major, worldwide environmental threat to freshwater aquatic resources that is expected to expand in scale and intensity with global climate change. Extensive literature exists on the most frequently encountered cyanotoxin, microcystin, in freshwater environments. Yet, the expansion of microcystin producing CyanoHABs and the transport of contaminated inland waters to estuarine and coastal marine waters has only recently received attention. This paper synthesizes information on the salinity tolerance of microcystin producing cyanobacteria and summarizes available case reports on microcystin presence in estuarine and coastal waters. We highlight a potential food-borne exposure route to humans by reviewing the growing body of evidence that shows microcystins can accumulate in coastal seafood. These cases reinforce the importance of freshwater nutrient reduction and the need for freshwater management efforts to look beyond lacustrine and riverine systems. Events reviewed here likely only represent a small proportion of cases where microcystins affect estuarine and coastal waters. We strongly suggest increased monitoring and research efforts to understand, react to, and prevent ecological and health problems associated with the growing problem of toxic CyanoHABs in coastal environments.
1
Expanded monitoring and research are needed to detect, prevent, and respond to ecological and health problems from coastal CyanoHABs.
2
Freshwater nutrient reduction and management must extend beyond lakes and rivers to address downstream coastal impacts of toxic cyanobacterial blooms.
3
Microcystin-producing cyanobacteria can tolerate some salinity and reach estuarine and coastal marine waters through contaminated inland-water transport.
4
Microcystins can accumulate in coastal seafood, creating a potential food-borne exposure pathway and human health risk.
5
Reported cases demonstrate that microcystins occur in estuarine and coastal waters, although documented events likely represent only a small fraction of actual occurrences.

Microcystin-producing cyanobacterial harmful algal blooms and microcystin contamination in estuarine and coastal marine waters, including coastal seafood

Microcystin salinity tolerance, occurrence, environmental implications, accumulation in coastal seafood, and associated human health risks

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2016-11-29
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Ellen P. Preece
Flavien Hardy
Barry Moore
Michael D. Bryan
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