At the dated check, the references listed below either did not resolve in
Crossref or DataCite, or carried a retraction notice. Each one is shown with the
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The 138 checked references that resolve
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resolves10.1007/s11356-019-05949-7Multiorgan histopathological changes in the juvenile seabream Sparus aurata as a biomarker for zinc oxide particles toxicity
resolves10.1007/s11356-016-7915-3Single and combined effects of aluminum (Al2O3) and zinc (ZnO) oxide nanoparticles in a freshwater fish, Carassius auratus
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resolves10.1016/j.ecoenv.2015.09.021Nano-sized polystyrene affects feeding, behavior and physiology of brine shrimp Artemia franciscana larvae
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resolves10.1007/s00204-013-1079-4Toxicity of Ag, CuO and ZnO nanoparticles to selected environmentally relevant test organisms and mammalian cells in vitro: a critical review
resolves10.1016/j.ecoenv.2012.07.010Fate of isotopically labeled zinc oxide nanoparticles in sediment and effects on two endobenthic species, the clam Scrobicularia plana and the ragworm Hediste diversicolor
resolves10.1016/j.chemosphere.2011.02.003Behavioural and biochemical responses of two marine invertebrates Scrobicularia plana and Hediste diversicolor to copper oxide nanoparticles
resolves10.1016/j.marenvres.2015.06.015Effect of silver nanoparticles on Mediterranean sea urchin embryonal development is species specific and depends on moment of first exposure
resolves10.1006/taap.1999.8706ATP-Dependent Silver Transport across the Basolateral Membrane of Rainbow Trout Gills
resolves10.1016/j.aquatox.2010.04.009Biomarkers in Mytilus galloprovincialis exposed to suspensions of selected nanoparticles (Nano carbon black, C60 fullerene, Nano-TiO2, Nano-SiO2)
resolves10.1093/toxsci/kfs006Zeta Potential and Solubility to Toxic Ions as Mechanisms of Lung Inflammation Caused by Metal/Metal Oxide Nanoparticles
resolves10.1371/journal.pone.0036937Immunomodulation by Different Types of N-Oxides in the Hemocytes of the Marine Bivalve Mytilus galloprovincialis
resolves10.1016/j.scitotenv.2016.01.186Tissue distribution of zinc and subtle oxidative stress effects after dietary administration of ZnO nanoparticles to rainbow trout
resolves10.13075/ijomeh.1896.00669Oxidative stress and apotosis
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resolves10.1016/j.scitotenv.2018.09.136Bioenergetic responses of freshwater mussels Unio tumidus to the combined effects of nano-ZnO and temperature regime
resolves10.1016/j.scitotenv.2019.133717The effects of ZnO nanostructures of different morphology on bioenergetics and stress response biomarkers of the blue mussels Mytilus edulis
resolves10.1016/j.cbpc.2015.04.006Hepatic metallothioneins in molecular responses to cobalt, zinc, and their nanoscale polymeric composites in frog Rana ridibunda
resolves10.1016/j.aquatox.2015.11.006Endocrine activities and cellular stress responses in the marsh frog Pelophylax ridibundus exposed to cobalt, zinc and their organic nanocomplexes
resolves10.1016/j.sjbs.2017.10.004A calcium channel blocker nifedipine distorts the effects of nano-zinc oxide on metal metabolism in the marsh frog Pelophylax ridibundus
resolves10.1016/j.aquatox.2017.02.009Endocrine and cellular stress effects of zinc oxide nanoparticles and nifedipine in marsh frogs Pelophylax ridibundus
resolves10.1016/j.chemosphere.2017.11.079Detoxification and cellular stress responses of unionid mussels Unio tumidus from two cooling ponds to combined nano-ZnO and temperature stress
resolves10.1016/j.chemosphere.2012.02.087Evaluation of biotargeting and ecotoxicity of Co2+-containing nanoscale polymeric complex by applying multi-marker approach in bivalve mollusk Anodonta cygnea
resolves10.1016/j.aquatox.2015.03.006The effects of zinc nanooxide on cellular stress responses of the freshwater mussels Unio tumidus are modulated by elevated temperature and organic pollutants
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resolves10.1016/j.cbpc.2015.04.005The influence of zinc chloride and zinc oxide nanoparticles on air-time survival in freshwater mussels
resolves10.1016/j.scitotenv.2019.135713Effect of ageing of bare and coated nanoparticles of zinc oxide applied to soil on the Zn behaviour and toxicity to fish cells due to transfer from soil to water bodies
resolves10.1021/acs.est.6b05279Assessing the Risk of Engineered Nanomaterials in the Environment: Development and Application of the nanoFate Model
resolves10.1155/2014/498420Physicochemical Properties of Nanomaterials: Implication in Associated Toxic Manifestations
resolves10.1021/acs.est.8b01663Ecotoxicological Effects of Transformed Silver and Titanium Dioxide Nanoparticles in the Effluent from a Lab-Scale Wastewater Treatment System
resolves10.17632/cnhjzb2x49.1Biochemical responses of freshwater mussel Unio tumidus to titanium oxide nanoparticles, Bisphenol A, and their combination
resolves10.1039/c4nr06670gGenotoxicity of metal oxide nanomaterials: review of recent data and discussion of possible mechanisms
resolves10.3390/ijerph120505581Modeling Flows and Concentrations of Nine Engineered Nanomaterials in the Danish Environment
resolves10.1021/es9015553Modeled Environmental Concentrations of Engineered Nanomaterials (TiO<sub>2</sub>, ZnO, Ag, CNT, Fullerenes) for Different Regions
resolves10.1242/jeb.172643Effects of mechanical disturbance and salinity stress on bioenergetics and burrowing behavior of the soft shell clam<i>Mya arenaria</i>
resolves10.1371/journal.pone.0061800Impact of Engineered Zinc Oxide Nanoparticles on the Individual Performance of Mytilus galloprovincialis
resolves10.1016/j.aquatox.2016.09.008Hemocyte responses of the thick shell mussel Mytilus coruscus exposed to nano-TiO 2 and seawater acidification
resolves10.1016/j.envpol.2019.113852Waterborne and dietary accumulation of well-dispersible hematite nanoparticles by zebrafish at different life stages
resolves10.1021/es901971aBioavailability of Nanoscale Metal Oxides TiO<sub>2</sub>, CeO<sub>2</sub>, and ZnO to Fish
resolves10.1016/j.scitotenv.2013.08.059Chemical interaction of atmospheric mineral dust-derived nanoparticles with natural seawater — EPS and sunlight-mediated changes
resolves10.1016/j.aquatox.2014.02.003Cytotoxicity and cellular mechanisms involved in the toxicity of CdS quantum dots in hemocytes and gill cells of the mussel Mytilus galloprovincialis
resolves10.1021/es902987dStability and Aggregation of Metal Oxide Nanoparticles in Natural Aqueous Matrices
resolves10.1897/08-090.1Nanomaterials in the environment: Behavior, fate, bioavailability, and effects
resolves10.1016/j.niox.2018.12.010Antioxidant activity of endogenously produced nitric oxide against the zinc oxide nanoparticle-induced oxidative stress in primary hepatocytes of air-breathing catfish, Clarias magur
resolves10.1016/j.cbpc.2019.108678Synergistic effect of zinc nanoparticles and temperature on acute toxicity with response to biochemical markers and histopathological attributes in fish
resolves10.1007/s11356-019-04856-1Endocytosis, intracellular fate, accumulation, and agglomeration of titanium dioxide (TiO2) nanoparticles in the rainbow trout liver cell line RTL-W1
resolves10.1016/j.jes.2018.01.015Toxicity assessment and histopathological analysis of nano-ZnO against marine fish (Mugilogobius chulae) embryos
resolves10.1007/s10646-018-1901-0Early ecotoxic effects of ZnO nanoparticle chronic exposure in Mytilus galloprovincialis revealed by transcription of apoptosis and antioxidant-related genes
resolves10.1016/j.jhazmat.2012.01.013Effect of natural organic matter on the aggregation kinetics of CeO2 nanoparticles in KCl and CaCl2 solutions: Measurements and modeling
resolves10.1021/nn507216fUnderstanding the Transformation, Speciation, and Hazard Potential of Copper Particles in a Model Septic Tank System Using Zebrafish to Monitor the Effluent
resolves10.3390/ijms18112285Zinc in Cellular Regulation: The Nature and Significance of “Zinc Signals”
resolves10.1016/j.marenvres.2014.11.002In vitro exposure of haemocytes of the clam Ruditapes philippinarum to titanium dioxide (TiO2) nanoparticles: Nanoparticle characterisation, effects on phagocytic activity and internalisation of nanoparticles into haemocytes
resolves10.1007/s11356-016-6690-5In vivo exposure of the marine clam Ruditapes philippinarum to zinc oxide nanoparticles: responses in gills, digestive gland and haemolymph
resolves10.1038/s41598-017-10813-0Brain damage and behavioural disorders in fish induced by plastic nanoparticles delivered through the food chain
resolves10.1038/s41598-020-58526-1Accumulation and trafficking of zinc oxide nanoparticles in an invertebrate model, Bombyx mori, with insights on their effects on immuno-competent cells
resolves10.1016/j.marenvres.2005.10.005Environmental prognostics: An integrated model supporting lysosomal stress responses as predictive biomarkers of animal health status
resolves10.1016/j.jprot.2015.09.005Secreted protein eco-corona mediates uptake and impacts of polystyrene nanoparticles on Daphnia magna
resolves10.1242/jeb.196352Reactive oxygen species or reactive sulfur species: why we should consider the latter
resolves10.1016/j.envpol.2012.03.051Size dependent bioaccumulation and ecotoxicity of gold nanoparticles in an endobenthic invertebrate: The Tellinid clam Scrobicularia plana
resolves10.1093/toxsci/kfw010Zinc-Oxide Nanoparticles Exhibit Genotoxic, Clastogenic, Cytotoxic and Actin Depolymerization Effects by Inducing Oxidative Stress Responses in Macrophages and Adult Mice
resolves10.1007/s11051-012-1109-9Industrial production quantities and uses of ten engineered nanomaterials in Europe and the world
resolves10.1016/j.dci.2015.11.010Haematopoiesis in molluscs: A review of haemocyte development and function in gastropods, cephalopods and bivalves
resolves10.1039/C8EN00755AEnhanced toxicity of environmentally transformed ZnO nanoparticles relative to Zn ions in the epibenthic amphipod
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resolves10.1021/es501655vHeteroaggregation of Titanium Dioxide Nanoparticles with Model Natural Colloids under Environmentally Relevant Conditions
resolves10.1038/nnano.2012.237Transferrin-functionalized nanoparticles lose their targeting capabilities when a biomolecule corona adsorbs on the surface
resolves10.3390/ma10121427Molecular Mechanisms of Zinc Oxide Nanoparticle-Induced Genotoxicity
resolves10.1002/etc.4561State of the Science on Metal Bioavailability Modeling: Introduction to the Outcome of a Society of Environmental Toxicology and Chemistry Technical Workshop
resolves10.1002/etc.3385Nanomaterials in the aquatic environment: A European Union–United States perspective on the status of ecotoxicity testing, research priorities, and challenges ahead
resolves10.3389/fphys.2018.00757Synergistic Effects of Nano-ZnO and Low pH of Sea Water on the Physiological Energetics of the Thick Shell Mussel Mytilus coruscus
resolves10.1038/s41598-019-40047-1Ocean acidification increases the accumulation of titanium dioxide nanoparticles (nTiO2) in edible bivalve mollusks and poses a potential threat to seafood safety
resolves10.1002/anie.201604964Aquatic Ecotoxicity Testing of Nanoparticles—The Quest To Disclose Nanoparticle Effects
resolves10.1016/j.mito.2018.02.002Compatible osmolytes modulate mitochondrial function in a marine osmoconformer Crassostrea gigas (Thunberg, 1793)
resolves10.1016/j.etap.2018.12.011Haemato-immunological studies in ZnO and TiO2 nanoparticles exposed euryhaline fish, Oreochromis mossambicus
resolves10.1016/j.aquatox.2016.05.015Assessment of gold nanoparticle effects in a marine teleost (Sparus aurata) using molecular and biochemical biomarkers
resolves10.1016/j.scitotenv.2019.135332Sublethal effects of waterborne copper and copper nanoparticles on the freshwater Neotropical teleost Prochilodus lineatus: A comparative approach
resolves10.1016/j.chroma.2008.09.008Considerations for environmental fate and ecotoxicity testing to support environmental risk assessments for engineered nanoparticles
resolves10.1002/etc.1880Metal-based nanoparticles in soil: Fate, behavior, and effects on soil invertebrates
resolves10.1016/j.aquatox.2014.03.018Gills are an initial target of zinc oxide nanoparticles in oysters Crassostrea gigas, leading to mitochondrial disruption and oxidative stress
resolves10.3762/bjnano.6.181Nanotechnology in the real world: Redeveloping the nanomaterial consumer products inventory
resolves10.1021/es405721vStrong Sorption of PCBs to Nanoplastics, Microplastics, Carbon Nanotubes, and Fullerenes
resolves10.1007/s11356-015-4718-xCitrate gold nanoparticle exposure in the marine bivalve Ruditapes philippinarum: uptake, elimination and oxidative stress response
resolves10.1021/nn404871pHigh-Throughput Screening Platform for Engineered Nanoparticle-Mediated Genotoxicity Using CometChip Technology
resolves10.1007/s00216-009-3249-zToxicities of nano zinc oxide to five marine organisms: influences of aggregate size and ion solubility
resolves10.5694/mja15.01128Potential risks and benefits of nanotechnology: perceptions of risk in sunscreens
resolves10.1021/acs.est.5b00345Copper Oxide and Zinc Oxide Nanomaterials Act as Inhibitors of Multidrug Resistance Transport in Sea Urchin Embryos: Their Role as Chemosensitizers
resolves10.1016/j.scitotenv.2019.136473Interactive effects of salinity variation and exposure to ZnO nanoparticles on the innate immune system of a sentinel marine bivalve, Mytilus edulis
resolves10.1002/etc.4349Comparative dissolution, uptake, and toxicity of zinc oxide particles in individual aquatic species and mixed populations
resolves10.1021/nn800511kComparison of the Mechanism of Toxicity of Zinc Oxide and Cerium Oxide Nanoparticles Based on Dissolution and Oxidative Stress Properties
resolves10.1016/j.envpol.2020.114043Accumulation of metal-based nanoparticles in marine bivalve mollusks from offshore aquaculture as detected by single particle ICP-MS
resolves10.1016/j.aquatox.2013.03.019Acute ZnO nanoparticles exposure induces developmental toxicity, oxidative stress and DNA damage in embryo-larval zebrafish
resolves10.1016/j.aquatox.2016.09.013Zinc oxide nanoparticles induce oxidative DNA damage and ROS-triggered mitochondria-mediated apoptosis in zebrafish embryos
resolves10.1080/10934520701792779Comparative toxicity of several metal oxide nanoparticle aqueous suspensions to Zebrafish (<i>Danio rerio</i>) early developmental stage
The 10 references without a DOI — listed, not checked
no DOI — not checkedBoxall, A. B. A., Chaudhry, Q., Sinclair, C., Jones, A. D., Aitken, R., Jefferson, B., & Watts, C. (2007). Current and future predicted environmental exposure to engineered nanoparticles. Central Science Laboratory.
no DOI — not checkedFalfushynska, H., Gnatyshyna, L., Myhalska, V., Romanchuk, L., & Stoliar, O. (2016b). Reductive and endocrine effects of zinc oxide nanoparticles in marsh frog Pelophylax ridibundus and their modulation in combine exposures. Visnyk of L’viv Univ Biology Series, 73, 213–216.
no DOI — not checkedFalfushynska, H., Gnatyshyna, L., Turta, O., Stoliar, O., Mitinа, N., Zaichenko, A., & Stoika, R. (2014). Responses of hepatic metallothioneins and apoptotic activity in Carassius auratus gibelio witness a release of cobalt and zinc from waterborne nanoscale composites. Comparative Biochemistry and Physiology, 160C, 66–74.
no DOI — not checkedGagnon, C., Pilote, M., Turcotte, P., André, C., & Gagné, F. (2016). Effects of exposure to zinc oxide nanoparticles in freshwater mussels in the presence of municipal effluents. Invertebrate Survival Journal, 13(1), 140–152.
no DOI — not checkedMaurer, L. L., & Meyer, J. N. (2016). A systematic review of evidence for silver nanoparticle-induced mitochondrial toxicity. Environmental Science: Nano, 3, 311.
no DOI — not checkedOehlmann, J., & Schulte-Oehlmann, U. (2003). Molluscs as bioindicators. In Trace metals and other contaminants in the environment (Vol. 6, pp. 577–635). Elsevier.
no DOI — not checkedOh, N., & Park, J.-H. (2014). Endocytosis and exocytosis of nanoparticles in mammalian cells. International Journal of Nanomedicine, 9, 51.
no DOI — not checkedRoco, M. C. (2018). Overview: Affirmation of nanotechnology between 2000 and 2030. In T. O. Mensah, B. Wang, G. Bothun, J. Winter, & V. Davis (Eds.), Nanotechnology commercialization: Manufacturing processes and products. Wiley.
no DOI — not checkedSokolova, I. M. (2009). Apoptosis in molluscan immune defense. Invertebrate Survival Journal, 6(1), 49–58.
no DOI — not checkedSubashkumar, S., & Selvanayagam, M. (2014). Zinc oxide (ZnO) nanoparticles induced histopathological changes in the liver of freshwater fish (Cyprinus carpio). Cibtech Journal of Zoology, 3(3), 74–77.
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