Bivalve molluscs as a unique target group for nanoparticle toxicity
Tóm tắt
Từ khóa
Tài liệu tham khảo
Baun, 2008, Ecotoxicity of engineered nanoparticles to aquatic invertebrates: a brief review and recommendations for future toxicity testing, Ecotoxicology, 17, 387, 10.1007/s10646-008-0208-y
Blaise, 2008, Ecotoxicity of selected nano-materials to aquatic organisms, Environmental Toxicology, 223, 591, 10.1002/tox.20402
Browne, 2008, Ingested microscopic plastic translocates to the circulatory system of the mussel, Mytilus edulis (L), Environmental Science and Technology, 42, 5026, 10.1021/es800249a
Buffet, 2011, Behavioural and biochemical responses of two marine invertebrates Scrobicularia plana and Hediste diversicolor to copper oxide nanoparticles, Chemosphere, 10.1016/j.chemosphere.2011.02.003
Canesi, 2002, Bacteria–hemocyte interactions and phagocytosis in marine bivalves, Microscopy Research and Technique, 57, 469, 10.1002/jemt.10100
Canesi, 2003, Effects of PCB congeners on the immune function of Mytilus hemocytes: alterations of tyrosine kinase-mediated cell signalling, Aquatic Toxicology, 63, 293, 10.1016/S0166-445X(02)00186-8
Canesi, 2006, Immunomodulation by 17β-Estradiol in bivalve hemocytes. The American Journal of physiology, regulatory, Integrative and Comparative Physiology, 291, R664, 10.1152/ajpregu.00139.2006
Canesi, 2006, Cell signaling in the immune response of mussel hemocytes, Invertebrate Survival Journal, 3, 40
Canesi, 2007, Effects of endocrine disrupting chemicals on the immune system of the edible bivalve mollusc Mytilus, 1
Canesi, 2007, Effects of Triclosan on Mytilus galloprovincialis hemocyte function and digestive gland enzyme activities: possible modes of action on non target organisms, Comparative Biochemistry and Physiology, C145, 464
Canesi, 2007, Effects of blood lipid lowering pharmaceuticals (bezafibrate and gemfibrozil) on immune and digestive gland functions of the bivalve mollusc, Mytilus galloprovincialis, Chemosphere, 69, 994, 10.1016/j.chemosphere.2007.04.085
Canesi, 2007, Immunomodulation of Mytilus hemocytes by individual estrogenic chemicals and environmentally relevant mixtures of estrogens: in vitro and in vivo studies, Aquatic Toxicology, 81, 36, 10.1016/j.aquatox.2006.10.010
Canesi, 2008, Immunotoxicity of carbon black nanoparticles to blue mussel hemocytes, Environment International, 34, 1114, 10.1016/j.envint.2008.04.002
Canesi, 2010, In vitro effects of suspensions of selected nanoparticles (C60 fullerene, TiO2, SiO2) on Mytilus hemocytes, Aquatic Toxicology, 96, 151, 10.1016/j.aquatox.2009.10.017
Canesi, 2010, Biomarkers in Mytilus galloprovincialis exposed to suspensions of selected nanoparticles (Nano carbon black, C60 fullerene, Nano-TiO2, Nano-SiO2), Aquatic Toxicology, 100, 168, 10.1016/j.aquatox.2010.04.009
Cattaneo, 2009, Ecotoxicology of nanomaterials: the role of invertebrate testing, Invertebrate Survival Journal, 6, 78
Crane, 2008, Ecotoxicity test methods and environmental hazard assessment for engineered nanoparticles, Ecotoxicology, 17, 421, 10.1007/s10646-008-0215-z
Dagnino, 2007, Development of an expert system for the integration of biomarker responses in mussels into an animal health index, Biomarkers, 12, 155, 10.1080/13547500601037171
Falugi, et al., in this issue.
Federici, 2007, Toxicity of titanium dioxide nanoparticles to rainbow trout (Oncorhynchus mykiss): gill injury, oxidative stress, and other physiological effects, Aquatic Toxicology, 84, 415, 10.1016/j.aquatox.2007.07.009
Galloway, 2010, Sublethal toxicity of nano-titanium dioxide and carbon nanotubes in a sediment dwelling marine polychaete, Environmental Pollution, 158, 1748, 10.1016/j.envpol.2009.11.013
Gagnè, 2008, Ecotoxicity of CdTe quantum dots to freshwater mussel: impacts on immune system, oxidative stress and genotoxicity, Aquatic Toxicology, 86, 333, 10.1016/j.aquatox.2007.11.013
García-García, 2008, Immune Responses of Mussel hemocyte subpopulations are differentially regulated by enzymes of the PI 3-K, PKC, and ERK kinase families, Development and Comparative Immunology, 32, 637, 10.1016/j.dci.2007.10.004
Girón-Pérez, 2010, Relationships between innate immunity in bivalve molluscs and environmental pollution, Invertebrate Survival Journal, 7, 149
Gosling, 1992, The mussel Mytilus: ecology, physiology, genetics and culture. Developments, 589
Kádár, 2010, Uptake and biological responses to nano-Fe versus soluble FeCl3 in excised mussel gills, Analytical and Bioanalytical Chemistry, 396, 657, 10.1007/s00216-009-3191-0
Kádár, 2010, The influence of engineered Fe(2)O(3) nanoparticles and soluble (FeCl3) iron on the developmental toxicity caused by CO2-induced seawater acidification, Environmental Pollution, 158, 3490, 10.1016/j.envpol.2010.03.025
Kim, 2010, Acute toxicity of a mixture of copper and single-walled carbon nanotubes to Daphnia magna, Environmental Toxicology and Chemistry, 29, 122, 10.1002/etc.8
Klaper, 2008, Toxicity biomarker expression in daphnids exposed to manufactured nanoparticles: changes in toxicity with functionalization, Environmental Pollution, 157, 1152, 10.1016/j.envpol.2008.11.010
Koehler, 2008, Effects of nanoparticles in Mytilus edulis gills and hepatopancreas – A new threat to marine life?, Marine Environmental Research, 66, 12, 10.1016/j.marenvres.2008.02.009
Lovern, 2006, Daphnia magna mortality when exposed to titanium dioxide and fullerene (C60) nanoparticles, Environmental Toxicology and Chemistry, 25, 1132, 10.1897/05-278R.1
Lovern, 2007, Behavioral and physiological changes in Daphnia magna when exposed to nanoparticle suspensions (titanium dioxide, nano-C60, and C60HxC70Hx), Environmental Science and Technology, 41, 4465, 10.1021/es062146p
Matranga, V., Corsi, I., in this issue.
Moore, 2006, Do nanoparticles present ecotoxicological risks for the health of the aquatic environment?, Environment International, 32, 967, 10.1016/j.envint.2006.06.014
Moore, 2006, Environmental prognostics: an integrated model supporting lysosomal stress responses as predictive biomarkers of animal health status, Marine Environmental Research, 61, 278, 10.1016/j.marenvres.2005.10.005
Moore, 2009, Lysosomal cytotoxicity of carbon nanoparticles in cells of the molluscan immune system: an in vitro study, Nanotoxicology, 3, 40, 10.1080/17435390802593057
Oberdörster, 2004, Manufactured nanomaterials (fullerenes, C60) induce oxidative stress in the brain of juvenile largemouth bass, Environmental Health Perspectives, 112, 1058, 10.1289/ehp.7021
Petersen, 2011, Influence of polyethyleneimine graftings of multi-walled carbon nanotubes on their accumulation and elimination by and toxicity to Daphnia magna, Environmental Science and Technology, 45, 1133, 10.1021/es1030239
Ringwood, 2009, Fullerene exposures with oysters: embryonic, adult, and cellular responses, Environmental Science and Technology, 43, 7136, 10.1021/es900621j
Roberts, 2007, In vivo biomodification of lipid-coated carbon nanotubes by Daphnia magna, Environmental Science and Technology, 41, 3025, 10.1021/es062572a
Smith, 2007, Toxicity of single walled carbon nanotubes to rainbow trout (Oncorhynchus mykiss): respiratory toxicity, organ pathologies, and other physiological effects, Aquatic Toxicology, 82, 94, 10.1016/j.aquatox.2007.02.003
Tedesco, 2008, Gold nanoparticles and oxidative stress in Mytilus edulis, Marine Environmental Research, 66, 131, 10.1016/j.marenvres.2008.02.044
Tedesco, 2010, Oxidative stress and toxicity of gold nanoparticles in Mytilus edulis, Aquatic Toxicology, 100, 178, 10.1016/j.aquatox.2010.03.001
Tervonen, 2010, Analysis of fullerene-C60 and kinetic measurements for its accumulation and depuration in Daphnia magna, Environmental Toxicology and Chemistry, 29, 1072, 10.1002/etc.124
Tiede, 2009, Considerations for environmental fate and ecotoxicity testing to support environmental risk assessment for engineered nanoparticles, Journal of Chromatography A, 1216, 503, 10.1016/j.chroma.2008.09.008
Ward, 2009, Marine aggregates facilitate ingestion of nanoparticles by suspension feeding bivalves, Marine Environmental Research, 68, 137, 10.1016/j.marenvres.2009.05.002
Warheit, 2007, Development of a base set of toxicity tests using ultrafine TiO2 particles as a component of nanoparticle risk management, Toxicology Letters, 171, 99, 10.1016/j.toxlet.2007.04.008
Zhao, 2010, Biokinetic uptake and efflux of silver nanoparticles in Daphnia magna, Environmental Science and Technology, 44, 7699, 10.1021/es101484s
Zhu, 2006, Toxicity of an engineered nanoparticle (fullerene, C60) in two aquatic species, Daphnia and fathead minnow, Marine Environmental Research, 62