Fragrance materials affect life history parameters and gene expression in Daphnia magna: An emerging issue for freshwater ecosystems.
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M. Picone | M. Vecchiato | R. Piazza | A. Pivato | M. Feltracco | T. Bonato | Giovanni Beggio | Matteo Feltracco
[1] Yeping Wang,et al. Transcriptome analysis of different life-history stages and screening of male-biased genes in Daphnia sinensis , 2022, BMC Genomics.
[2] Ning Ding,et al. Transcriptomic responses to cytotoxic drug cisplatin in water flea Daphnia magna. , 2022, Environmental toxicology and pharmacology.
[3] Kyunghee Ji,et al. Identification of combinations of endocrine disrupting chemicals in household chemical products that require mixture toxicity testing. , 2022, Ecotoxicology and environmental safety.
[4] H. Thompson,et al. Commentary: Assessing the endocrine disrupting effects of chemicals on invertebrates in the European Union , 2022, Environmental Sciences Europe.
[5] F. Yamamoto,et al. Acute toxicity characterization of organic UV-filters and chronic exposure revealing multigenerational effects in DAPHNIA MAGNA , 2022, Ecotoxicology.
[6] Bo Tiziano,et al. Maize plant (Zea mays) uptake of organophosphorus and novel brominated flame retardants from hydroponic cultures. , 2021, Chemosphere.
[7] C. Vulpe,et al. Effects of ultraviolet-filters on Daphnia magna development and endocrine-related gene expression. , 2021, Aquatic toxicology.
[8] C. Barbante,et al. Organic pollutants in protected plain areas: The occurrence of PAHs, musks, UV-filters, flame retardants and hydrocarbons in woodland soils. , 2021, The Science of the total environment.
[9] R. Naidu,et al. Chemical pollution: A growing peril and potential catastrophic risk to humanity. , 2021, Environment international.
[10] Gabriele Giuseppe Distefano,et al. Fragrance materials (FMs) affect the larval development of the copepod Acartia tonsa: An emerging issue for marine ecosystems. , 2021, Ecotoxicology and environmental safety.
[11] Pratima Gupta,et al. Prevalence and hazardous impact of pharmaceutical and personal care products and antibiotics in environment: A review on emerging contaminants. , 2021, Environmental research.
[12] M. L. Martín-Díaz,et al. Potential of environmental concentrations of the musks galaxolide and tonalide to induce oxidative stress and genotoxicity in the marine environment. , 2020, Marine environmental research.
[13] G. Ying,et al. Emerging contaminants in aquatic environments and coastal waters affected by urban wastewater discharge in Thailand: An ecological risk perspective. , 2020, Ecotoxicology and environmental safety.
[14] Z. Cheng,et al. Adverse effects in Daphnia magna exposed to e-waste leachate: Assessment based on life trait changes and responses of detoxification-related genes. , 2020, Environmental research.
[15] Yunlong Zhao,et al. Transcriptomic analysis of genes involved in reproduction at different ages in Daphnia pulex (Branchiopoda, Cladocera) , 2019 .
[16] Feyza İÇOĞLU AKSAKAL. Acute and chronic effects of thifluzamide on Daphniamagna , 2019, TURKISH JOURNAL OF ZOOLOGY.
[17] X. Nie,et al. Simvastatin affect the expression of detoxification-related genes and enzymes in Daphnia magna and alter its life history parameters. , 2019, Ecotoxicology and environmental safety.
[18] X. Nie,et al. Assessment of oxidative stress of paracetamol to Daphnia magna via determination of Nrf1 and genes related to antioxidant system. , 2019, Aquatic toxicology.
[19] A. Pradhan,et al. Effect of phthalates on development, reproduction, fat metabolism and lifespan in Daphnia magna. , 2019, The Science of the total environment.
[20] C. Barbante,et al. Distribution of fragrances and PAHs in the surface seawater of the Sicily Channel, Central Mediterranean. , 2018, The Science of the total environment.
[21] F. Landerer,et al. Emerging trends in global freshwater availability , 2018, Nature.
[22] Minggang Zheng,et al. Determination and environmental risk assessment of synthetic musks in the water and sediments of the Jiaozhou Bay wetland, China , 2018, Environmental Science and Pollution Research.
[23] W. S. Baldwin,et al. RNA sequencing indicates that atrazine induces multiple detoxification genes in Daphnia magna and this is a potential source of its mixture interactions with other chemicals. , 2017, Chemosphere.
[24] Daniel L Villeneuve,et al. Ecdysone Receptor Agonism Leading to Lethal Molting Disruption in Arthropods: Review and Adverse Outcome Pathway Development. , 2017, Environmental science & technology.
[25] M. Houde,et al. Transcriptomic, cellular and life-history responses of Daphnia magna chronically exposed to benzotriazoles: Endocrine-disrupting potential and molting effects , 2017, PloS one.
[26] J. Čáslavský,et al. Occurrence of synthetic musk compounds in surface, underground, waste and processed water samples in Belgrade, Serbia , 2017, Environmental Earth Sciences.
[27] X. Nie,et al. Toxic effects of diclofenac on life history parameters and the expression of detoxification-related genes in Daphnia magna. , 2017, Aquatic toxicology.
[28] Chengju Wang,et al. Effects of three diamides (chlorantraniliprole, cyantraniliprole and flubendiamide) on life history, embryonic development and oxidative stress biomarkers of Daphnia magna. , 2017, Chemosphere.
[29] G. A. Burton,et al. RIFM fragrance ingredient safety assessment, ethylene brassylate, CAS Registry Number 105-95-3. , 2016, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[30] Carlo Barbante,et al. Fragrances as new contaminants in the Venice lagoon. , 2016, The Science of the total environment.
[31] Yang-Hoon Kim,et al. Acute and chronic toxicity assessment and the gene expression of Dhb, Vtg, Arnt, CYP4, and CYP314 in Daphnia magna exposed to pharmaceuticals , 2015, Molecular & Cellular Toxicology.
[32] S. Plaistow,et al. Transcriptional changes during Daphnia pulex development indicate that the maturation decision resembles a rate more than a threshold , 2015, Journal of evolutionary biology.
[33] M. Houde,et al. Sublethal effects of the flame retardant intermediate hexachlorocyclopentadiene (HCCPD) on the gene transcription and protein activity of Daphnia magna. , 2013, Aquatic toxicology.
[34] Zhou Yang,et al. Copper/zinc superoxide dismutase from the Cladoceran Daphnia magna: molecular cloning and expression in response to different acute environmental stressors. , 2013, Environmental science & technology.
[35] Maricar Prudente,et al. Asia-Pacific mussel watch for emerging pollutants: Distribution of synthetic musks and benzotriazole UV stabilizers in Asian and US coastal waters. , 2012, Marine pollution bulletin.
[36] W. S. Baldwin,et al. Daphnia HR96 is a promiscuous xenobiotic and endobiotic nuclear receptor. , 2012, Aquatic toxicology.
[37] C Rudén,et al. Prioritising pharmaceuticals for environmental risk assessment: Towards adequate and feasible first-tier selection. , 2012, The Science of the total environment.
[38] S. Villa,et al. First evidences of the occurrence of polycyclic synthetic musk fragrances in surface water systems in Italy: spatial and temporal trends in the Molgora River (Lombardia Region, Northern Italy). , 2012, The Science of the total environment.
[39] Carlos Bustos,et al. Effect of emamectin benzoate on transcriptional expression of cytochromes P450 and the multidrug transporters (Pgp and MRP1) in rainbow trout (Oncorhynchus mykiss) and the sea lice Caligus rogercresseyi , 2011 .
[40] J. Brausch,et al. A review of personal care products in the aquatic environment: environmental concentrations and toxicity. , 2011, Chemosphere.
[41] Kurunthachalam Kannan,et al. Polycyclic Musks in Water, Sediment, and Fishes from the Upper Hudson River, New York, USA , 2011 .
[42] G. Nachman,et al. Early signs of lethal effects in Daphnia magna (Branchiopoda, Cladocera) exposed to the insecticide cypermethrin and the fungicide azoxystrobin , 2010, Environmental toxicology and chemistry.
[43] D. Mackay,et al. Integrated risk assessment of household chemicals and consumer products: Addressing concerns about triclosan , 2010, Integrated environmental assessment and management.
[44] A. Priemé,et al. Investigation of the fate and effects of acetyl cedrene on Capitella teleta and sediment bacterial community , 2010, Ecotoxicology.
[45] In-Seok Lee,et al. Occurrence and fate of synthetic musk compounds in water environment. , 2010, Water research.
[46] D. Nelson,et al. The cytochrome P450 (CYP) gene superfamily in Daphnia pulex , 2009, BMC Genomics.
[47] Christian Blaise,et al. Vitellogenin as a biomarker of exposure to estrogenic compounds in aquatic invertebrates: a review. , 2008, Environment international.
[48] B. van der Burg,et al. Endocrine effects of polycyclic musks: do we smell a rat? , 2008, International journal of andrology.
[49] W. Püttmann,et al. Organophosphates and Synthetic Musk Fragrances in Freshwater Streams in Hessen/Germany , 2008 .
[50] L. Gilbert,et al. Daphnia Halloween genes that encode cytochrome P450s mediating the synthesis of the arthropod molting hormone: Evolutionary implications , 2008, BMC Evolutionary Biology.
[51] S. Tanabe,et al. Bioaccumulation, temporal trend, and geographical distribution of synthetic musks in the marine environment. , 2007, Environmental science & technology.
[52] Aaron M. Peck,et al. Analytical methods for the determination of persistent ingredients of personal care products in environmental matrices , 2006, Analytical and bioanalytical chemistry.
[53] Z. Moldovan. Occurrences of pharmaceutical and personal care products as micropollutants in rivers from Romania. , 2006, Chemosphere.
[54] K. Bester,et al. Polycyclic musks in the Ruhr catchment area--transport, discharges of waste water, and transformations of HHCB, AHTN and HHCB-lactone. , 2005, Journal of environmental monitoring : JEM.
[55] T. Poiger,et al. Occurrence of some organic UV filters in wastewater, in surface waters, and in fish from Swiss Lakes. , 2005, Environmental science & technology.
[56] Bart van der Burg,et al. Interaction of polycyclic musks and UV filters with the estrogen receptor (ER), androgen receptor (AR), and progesterone receptor (PR) in reporter gene bioassays. , 2004, Toxicological sciences : an official journal of the Society of Toxicology.
[57] D. Epel,et al. Nitromusk and Polycyclic Musk Compounds as Long-Term Inhibitors of Cellular Xenobiotic Defense Systems Mediated by Multidrug Transporters , 2004, Environmental health perspectives.
[58] Adriano Joss,et al. A rapid method to measure the solid-water distribution coefficient (Kd) for pharmaceuticals and musk fragrances in sewage sludge. , 2004, Water research.
[59] A. Hamdoun,et al. Emerging contaminants--pesticides, PPCPs, microbial degradation products and natural substances as inhibitors of multixenobiotic defense in aquatic organisms. , 2004, Mutation research.
[60] Aaron M. Peck,et al. Synthetic musk fragrances in Lake Michigan. , 2004, Environmental science & technology.
[61] M. Breitholtz,et al. Effects of four synthetic musks on the life cycle of the harpacticoid copepod Nitocra spinipes. , 2003, Aquatic toxicology.
[62] K. Failing,et al. Estrogenic Activity of Musk Fragrances Detected by the E-Screen Assay Using Human MCF-7 Cells , 2002, Archives of environmental contamination and toxicology.
[63] Thomas D. Schmittgen,et al. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method. , 2001, Methods.
[64] T. Hanazato,et al. Pesticide effects on freshwater zooplankton: an ecological perspective. , 2001, Environmental pollution.
[65] T. Ternes,et al. Pharmaceuticals and personal care products in the environment: agents of subtle change? , 1999, Environmental health perspectives.
[66] T. Neu,et al. Fate of artificial musk fragrances associated with suspended particulate matter (SPM) from the river Elbe (Germany) in comparison to other organic contaminants , 1998 .
[67] S. Dodson,et al. Swimming behavior of Daphnia: its role in determining predation risk , 1998 .
[68] Valery E. Forbes,et al. Risk assessment on the basis of simplified life‐history scenarios , 1997 .
[69] Douglas S. Glazier,et al. Effects of Food, Genotype, and Maternal Size and Age on Offspring Investment in Daphnia Magna , 1992 .