121
Miao AJ, Zhang XY, Luo Z, Chen CS, Chin WC, Santschi PH, Quigg A (2010) Zinc oxide–engineered nanoparticles: dissolution and toxicity to marine phytoplankton. Environ Toxicol Chem
29(12):2814–2822. https://doi.org/10.1002/etc.340
Miller RJ, Lenihan HS, Muller EB, Tseng N, Hanna SK, Keller AA (2010) Impacts of metal oxide
nanoparticles on marine phytoplankton. Environ Sci Technol 44(19):7329–7334. https://doi.
org/10.1021/es100247x
Moll J, Gogos A, Bucheli TD, Widmer F, Heijden MG (2016) Effect of nanoparticles on red clover and its symbiotic microorganisms. J Nanobiotechnol 14(1):36. https://doi.org/10.1186/
s12951- 016- 0188- 7
Mudunkotuwa IA, Rupasinghe T, Wu CM, Grassian VH (2011) Dissolution of ZnO nanoparticles
at circumneutral pH: a study of size effects in the presence and absence of citric acid. Langmuir
28(1):396–403. https://doi.org/10.1021/la203542x
Nowack B, Ranville JF, Diamond S, Gallego-Urrea JA, Metcalfe C, Rose J et al (2012) Potential
scenarios for nanomaterial release and subsequent alteration in the environment. Environ
Toxicol Chem 31:50–59. https://doi.org/10.1002/etc.726
Nyberg L, Turco RF, Nies L (2008) Assessing the impact of nanomaterials on anaerobic microbial
communities. Environ Sci Technol 42(6):1938–1943. https://doi.org/10.1021/es072018g
Osmond MJ, Mccall MJ (2010) Zinc oxide nanoparticles in modern sunscreens: an
analysis of potential exposure and hazard. Nanotoxicology 4(1):15–41. https://doi.
org/10.3109/17435390903502028
Ottofuelling S, Von Der Kammer F, Hofmann T (2011) Commercial titanium dioxide nanoparticles
in both natural and synthetic water: comprehensive multidimensional testing and prediction
of aggregation behavior. Environ Sci Technol 45(23):10045–10052. https://doi.org/10.1021/
es2023225
Oyelami AO, Semple KT (2015) Impact of carbon nanomaterials on microbial activity in soil. Soil
Biol Biochem 86:172–180. https://doi.org/10.1016/j.soilbio.2015.03.029
Pan B, Xing B (2012) Applications and implications of manufactured nanoparticles in soils: a
review. Eur J Soil Sci 63(4):437–456. https://doi.org/10.1111/j.1365- 2389.2012.01475.x
Pawlett M, Ritz K, Dorey RA, Rocks S, Ramsden J, Harris JA (2013) The impact of zero-valent
iron nanoparticles upon soil microbial communities is context dependent. Environ Sci Pollut
Res 20(2):1041–1049. https://doi.org/10.1007/s11356- 012- 1196- 2
Premanathan M, Karthikeyan K, Jeyasubramanian K, Manivannan G (2011) Selective toxicity of
ZnO nanoparticles toward Gram-positive bacteria and cancer cells by apoptosis through lipid
peroxidation. Nanomedicine 7(2):184–192. https://doi.org/10.1016/j.nano.2010.10.001
Puay NQ, Qiu G, Ting YP (2015) Effect of zinc oxide nanoparticles on biological wastewater treatment in a sequencing batch reactor. J Clean Prod 88:139–145
Qiu G, Au MJ, Ting YP (2016) Impacts of nano-TiO2 on system performance and bacterial community and their removal during biological treatment of wastewater. Water Air Soil Pollut
227(10):386. https://doi.org/10.1007/s11270- 016- 3081- y
Rahmatpour S, Shirvani M, Mosaddeghi MR, Nourbakhsh F, Bazarganipour M (2017) Dose–
response effects of silver nanoparticles and silver nitrate on microbial and enzyme activities
in calcareous soils. Geoderma 285:313–322. https://doi.org/10.1016/j.geoderma.2016.10.006
Reed RB, Ladner DA, Higgins CP, Westerhoff P, Ranville JF (2012) Solubility of nano-zinc oxide
in environmentally and biologically important matrices. Environ Toxicol Chem 31(1):93–99.
https://doi.org/10.1002/etc.708
Reinsch BC, Levard C, Li Z, Ma R, Wise A, Gregory KB, Brown GE Jr, Lowry GV (2012)
Sulfidation of silver nanoparticles decreases Escherichia coli growth inhibition. Environ Sci
Technol 46(13):6992–7000. https://doi.org/10.1021/es203732x
Rousk J, Ackermann K, Curling SF, Jones DL (2012) Comparative toxicity of nanoparticulate CuO
and ZnO to soil bacterial communities. PloS one 7(3):e34197. https://doi.org/10.1371/journal.
pone.0034197
Schaumann GE, Philippe A, Bundschuh M, Metreveli G, Klitzke S, Rakcheev D, Grün A, Kumahor
SK, Kühn M, Baumann T, Lang F (2015) Understanding the fate and biological effects of
4 Nano-toxicity to Microbes: Potential Implications of Nanomaterials on Microbial…
Précédent

- 132/326

Suivant