16
approach will be shown on the pitfalls and mechanical complications of nanoecotoxicology and nanotoxicology. This has important implications for the test design
for nanoecotoxicology and nanotoxicology tests and test conditions, which will lead
to educated results.
References
Allied Market Research (2016) Europe nanomaterials market by type of material, by end user –
opportunity analysis and industry forecast, 2014–2022:8
Asmatulu E, Twomey J, Overcash M (2012) Life cycle and nano-products: end-of-life assessment.
J Nanopart Res 14(3):720
Asmatulu E, Plummer F, Miller G (2014) Nanomaterials safety. Wichita State UniversityDepartment of Environmental Health and Safety Training Material
Asmatulu R, Foster B, Sayes C, Hirt EH, Asmatulu E, Aquino GV, Khan WS, Newberry D, Hanks
EK, Hernandez RA (2017) Nano-safety: what we need to know to protect workers. Walter de
Gruyter, Berlin
Baysal A, Saygin H, Ustabasi GS (2018) Interaction of PM2.5 airborne particulates with ZnO and
TiO2 nanoparticles and their effect on bacteria. Environ Monit Assess 190:1–15
Benn T, Cavanagh B, Hristovski K, Posner JD, Westerhoff P (2010) The release of nanosilver from
consumer products used in the home. J Environ Qual 39(6):1875–1882
BéruBé K, Prytherch Z, Job C, Hughes T (2010 Dec 30) Human primary bronchial lung cell
constructs: the new respiratory models. Toxicology 278(3):311–8. https://doi.org/10.1016/j.
tox.2010.04.004
Bhuvaneshwari M, Iswarya V, Archanaa S, Madhu GM, Kumar GKS, Nagarajan R, Chandrasekaran
N, Mukherjee A (2015) Cytotoxicity of ZnO NPs towards fresh water algae Scenedesmus
obliquus at low exposure concentrations in UV-C, visible and dark conditions. Aquat Toxicol
162:29–38
Business Press Release (2018) Global nanotechnology market outlook 2018-2024. 4536705, 160p
Buzea C, Pacheco II, Robbie K (2007) Nanomaterials and nanoparticles: sources and toxicity.
Biointerphases 2(4):MR17–MR71
Colvin VL (2003) The potential environmental impact of engineered nanomaterials. Nat Biotechnol
21(10):1166
Consumer Product Safety Commission Fiscal Year (CPSC) (2016) Performance budget request.
Online available at http://www.cpsc.gov/Global/About- CPSC/Budget- and- Performance/
FY2016BudgettoCongress.pdf
Coradeghini R, Gioria S, García CP, Nativo P, Franchini F, Gilliland D, Ponti J, Rossi F (2013)
Size-dependent toxicity and cell interaction mechanisms of gold nanoparticles on mouse fibroblasts. Toxicol Lett 217(3):205–216
Da Costa MV, Sharma PK (2016) Effect of copper oxide nanoparticles on growth, morphology,
photosynthesis, and antioxidant response in Oryza sativa. Photosynthetica 54(1):110–119
Dagani R (2003) Nanomaterials: safe or unsafe? Chem Eng News, 30–33. Online available at
http://www.cen- online.org or http://pubs.acs.org
Dev A, Srivastava AK, Karmakar S (2018) Nanomaterial toxicity for plants. Environ Chem Lett
16(1):85–100
Dreher KL (2004) Health and environmental impact of nanotechnology: toxicological assessment
of manufactured nanoparticles. Toxicol Sci 77(1):3–5
Forest V, Leclerc L, Hochepied JF, Trouvé A, Sarry G, Pourchez J (2017) Impact of cerium oxide
nanoparticles shape on their in vitro cellular toxicity. Toxicol In Vitro 38:136–141
Fraaije JG, van Male J, Becherer P, Serral Gracià R (2018) Calculation of diffusion coefficients
through coarse-grained simulations using the automated-fragmentation-parametrization
S. Hughes and E. Asmatulu
approach will be shown on the pitfalls and mechanical complications of nanoecotoxicology and nanotoxicology. This has important implications for the test design
for nanoecotoxicology and nanotoxicology tests and test conditions, which will lead
to educated results.
References
Allied Market Research (2016) Europe nanomaterials market by type of material, by end user –
opportunity analysis and industry forecast, 2014–2022:8
Asmatulu E, Twomey J, Overcash M (2012) Life cycle and nano-products: end-of-life assessment.
J Nanopart Res 14(3):720
Asmatulu E, Plummer F, Miller G (2014) Nanomaterials safety. Wichita State UniversityDepartment of Environmental Health and Safety Training Material
Asmatulu R, Foster B, Sayes C, Hirt EH, Asmatulu E, Aquino GV, Khan WS, Newberry D, Hanks
EK, Hernandez RA (2017) Nano-safety: what we need to know to protect workers. Walter de
Gruyter, Berlin
Baysal A, Saygin H, Ustabasi GS (2018) Interaction of PM2.5 airborne particulates with ZnO and
TiO2 nanoparticles and their effect on bacteria. Environ Monit Assess 190:1–15
Benn T, Cavanagh B, Hristovski K, Posner JD, Westerhoff P (2010) The release of nanosilver from
consumer products used in the home. J Environ Qual 39(6):1875–1882
BéruBé K, Prytherch Z, Job C, Hughes T (2010 Dec 30) Human primary bronchial lung cell
constructs: the new respiratory models. Toxicology 278(3):311–8. https://doi.org/10.1016/j.
tox.2010.04.004
Bhuvaneshwari M, Iswarya V, Archanaa S, Madhu GM, Kumar GKS, Nagarajan R, Chandrasekaran
N, Mukherjee A (2015) Cytotoxicity of ZnO NPs towards fresh water algae Scenedesmus
obliquus at low exposure concentrations in UV-C, visible and dark conditions. Aquat Toxicol
162:29–38
Business Press Release (2018) Global nanotechnology market outlook 2018-2024. 4536705, 160p
Buzea C, Pacheco II, Robbie K (2007) Nanomaterials and nanoparticles: sources and toxicity.
Biointerphases 2(4):MR17–MR71
Colvin VL (2003) The potential environmental impact of engineered nanomaterials. Nat Biotechnol
21(10):1166
Consumer Product Safety Commission Fiscal Year (CPSC) (2016) Performance budget request.
Online available at http://www.cpsc.gov/Global/About- CPSC/Budget- and- Performance/
FY2016BudgettoCongress.pdf
Coradeghini R, Gioria S, García CP, Nativo P, Franchini F, Gilliland D, Ponti J, Rossi F (2013)
Size-dependent toxicity and cell interaction mechanisms of gold nanoparticles on mouse fibroblasts. Toxicol Lett 217(3):205–216
Da Costa MV, Sharma PK (2016) Effect of copper oxide nanoparticles on growth, morphology,
photosynthesis, and antioxidant response in Oryza sativa. Photosynthetica 54(1):110–119
Dagani R (2003) Nanomaterials: safe or unsafe? Chem Eng News, 30–33. Online available at
http://www.cen- online.org or http://pubs.acs.org
Dev A, Srivastava AK, Karmakar S (2018) Nanomaterial toxicity for plants. Environ Chem Lett
16(1):85–100
Dreher KL (2004) Health and environmental impact of nanotechnology: toxicological assessment
of manufactured nanoparticles. Toxicol Sci 77(1):3–5
Forest V, Leclerc L, Hochepied JF, Trouvé A, Sarry G, Pourchez J (2017) Impact of cerium oxide
nanoparticles shape on their in vitro cellular toxicity. Toxicol In Vitro 38:136–141
Fraaije JG, van Male J, Becherer P, Serral Gracià R (2018) Calculation of diffusion coefficients
through coarse-grained simulations using the automated-fragmentation-parametrization
S. Hughes and E. Asmatulu
