Micro- and nanoplastic toxicity on aquatic life: Determining factors
Токсичность микро- и нанопластика для водных организмов: определяющие факторы
2019-12-19
SCID: 54.1/k9umrhgu
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aquatic lifemicro- and nanoplastic toxicityoxidative stressparticle sizepolymer type
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Abstract (AI)
Plastic pollution has become a major environmental concern due to its omnipresence and degradation to smaller particles. The potential toxicological effects of micro- and nanoplastic on biota have been investigated in a growing number of exposure studies. We have performed a comprehensive review of the main determining factors for plastic particle toxicity in the relevant exposure systems, from publications until including the year 2018. For a focused scope, effects of additives or other pollutants accumulated by the plastic particles are not included. In summary, current literature suggests that plastic particle toxicity depends on concentration, particle size, exposure time, particle condition, shape and polymer type. Furthermore, contaminant background, food availability, species, developmental stage and sex have major influence on the outcome of plastic particles exposures. Frequently reported effects were on body and population growth, energy metabolism, feeding, movement activity, physiological stress, oxidative stress, inflammation, the immune system, hormonal regulation, aberrant development, cell death, general toxicity and altered lipid metabolism. Several times reported were increased growth and food consumption, neuro-, liver- or kidney pathology and intestinal damage. Photosynthesis disruption was reported in studies investigating effects on phytoplankton. For the currently unquantified plastic particles below 10 μm, more toxic effects were reported in all aquatic life, as compared to plastic particles of larger size.
Key Findings
1
Additional recurring effects include increased growth and food consumption, neuro-, liver-, and kidney pathology, intestinal damage, and disrupted phytoplankton photosynthesis.
2
Contaminant background, food availability, species, developmental stage, and sex substantially influence outcomes of micro- and nanoplastic exposure.
3
Particles smaller than 10 μm were associated with more toxic effects across aquatic life than larger plastic particles, although their occurrence remains unquantified.
4
Plastic particle toxicity in aquatic organisms depends on concentration, particle size, exposure duration, condition, shape, and polymer type.
5
Reported effects include altered growth, energy metabolism, feeding, movement, physiological and oxidative stress, inflammation, immune and hormonal function, development, cell death, and lipid metabolism.
Research Object
Aquatic organisms and ecosystems exposed to micro- and nanoplastic particles
Research Subject
Determinants of micro- and nanoplastic toxicity, including particle properties, exposure conditions, contaminant background, food availability, and organismal traits, and the resulting biological effects
Publication Details
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2019-12-19
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