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Dur´n N, Guterres SS, Alves OL (eds) (2014) Nanotoxicology: materials, methodologies, and
assessments. Springer, New York, 411 p
Elsaesser A, Howard CV (2012) Toxicology of nanoparticles. Adv Drug Deliv Rev 64:129-137
Franklin NM, Rogers NJ, Apte SC, Batley GE, Gadd GE, Casey PS (2007) Comparative toxicity of
nanoparticulate ZnO, bulk ZnO, and ZnCl 2 to a freshwater microalga ( Pseudokirchneriella
subcapitata ): the importance of particle solubility. Environ Sci Technol 41:8484-8490
Gottschalk F, Sonderer T, Scholz R, Nowack B (2009) Modeled environmental concentrations of
engineered nanomaterials (TiO 2 , ZnO, Ag, CNT, fullerenes) for different regions. Environ Sci
Technol 43:9216-9222
Gottschalk F, Sonderer T, Scholz RW, Nowack B (2010) Possibilities and limitations of modeling
environmental exposure to engineered nanomaterials by probabilistic material flow analysis.
Environ Toxicol Chem 29:1036-1048
Hagens WI, Oomen AG, Jong WH, Cassee FR, Sips AJAM (2007) What do we (need to) know
about the kinetic properties of nanoparticles in the body? Regul Toxicol Pharmacol 49:217-
229
Hagfeldt A, Gratzel M (1995) Light-induced redox reactions in nanocrystalline systems. Chem
Rev 95:49-68
Handy RD, Owen R, Valsami-Jones E (2008) The ecotoxicology of nanoparticles and
nanomaterials: current status, knowledge gaps, challenges, and future needs. Ecotoxicology
17:315-325
Hansen SF, Michelson ES, Kamper A, Borling P, Stuer-Lauridsen F, Baun A (2008) Categoriza-
tion framework to aid exposure assessment of nanomaterials in consumer products. Ecotoxi-
cology 17:438-447
Hsieh C, Grange R, Pu Y, Psaltis D (2010) Bioconjugation of barium titanate nanocrystals with
immunoglobulin G antibody for second harmonic radiation imaging probes. Biomaterials
31:2272-2277
Huang CP, Cha DK, Ismat SS (2005) Progress report: short-term chronic toxicity of photocatalytic
nanoparticles to bacteria, algae, and zooplankton. EPA Grant Number: R831721
Ji J, Long ZF, Lin DH (2011) Toxicity of oxide nanoparticles to the green algae Chlorella
sp. Chem Eng J 170:525-530
Jiang J, Chen DR, Biswas P (2007) Synthesis of nanoparticles in a flame aerosol reactor with
independent and strict control of their size, crystal phase and morphology. Nanotechnology
18:285603
Jiang W, Kim BYS, Rutka JT, Chan WCW (2008) Nanoparticle-mediated cellular response is
size-dependent. Nat Nanotechnol 3:145-150
Jiang J, Oberd¨rster G, Biswas P (2009) Characterization of size, surface charge, and agglomer-
ation state of nanoparticle dispersions for toxicological studies. J Nanopart Res 11:77-89
Kahru A, Dubourguier H (2010) From ecotoxicology to nanoecotoxicology. Toxicology 269:105-
119
Kendall RJ, Anderson TA, Baker RJ, Bens CM, Carr JA, Chiodo LA, Cobb GP III, Dickerson RL,
Dixon KR, Frame LT, Hooper MJ, Martin CF, McMurry ST, Patino R, Smith EE, Theodorakis
CW (2001) Ecotoxicology. USDA National Wildlife Research Center-Staff Publications,
Lincoln, p 516
Li LZ, Zhou DM, Peijnenburg WJ, van Gestel CA, Jin SY, Wang YJ, Wang P (2011a) Toxicity of
zinc oxide nanoparticles in the earthworm, Eisenia fetida and subcellular fractionation of
Zn. Environ Int 37:1098-1104
Li M, Zhu L, Lin D (2011b) Toxicity of ZnO nanoparticles to Escherichia coli : mechanism and the
influence of medium components. Environ Sci Technol 45:1977-1983
Lindenschmidt RC, Driscoll KE, Perkins MA, Higgins JM, Belfiore KA (1990) The comparison of
a fibrogenic and two nonfibrogenic dusts by bronchoalveolar lavage. Toxicol Appl Pharmacol
102:268-281
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