17
method and the recovery of Wilke–Chang statistical correlation. J Chem Theory Comput
14(2):479–485
Global Market Insights Inc. (2017) Silver nanoparticles market size by application, industry analysis report, regional outlook, growth potential, price trends, competitive market share & forecast, 2016–2024
Guleria P, Kumar V, Guleria S (2017) Genetic engineering: a possible strategy for protein–energy
malnutrition regulation. Mol Biotechnol 59(11–12):499–517
Holden PA, Klaessig F, Turco RF, Priester JH, Rico CM, Avila-Arias H, Mortimer M, Pacpaco
K, Gardea-Torresdey JL (2014) Evaluation of exposure concentrations used in assessing
manufactured nanomaterial environmental hazards: are they relevant? Environ Sci Technol
48(18):10541–10551
Huang S, Ye Z, Liu B (2008) Review on non-point source pollution in Miyun Reservoir. Chin J
Eco-Agric 67:1311–1316
Inshakova E, Inshakov O (2017) World market for nanomaterials: structure and trends. In: MATEC
web of conferences 2017, vol. 129, p 02013. EDP Sciences
ISO (2008) International Organization for Standardization. Technical specification: nanotechnologies – terminology and definitions for nano-objects – nanoparticle, nanofibre and nanoplate
ISO/TS 80004-2:2008
IUPAC Glossary of terms used in toxicology, 2nd Edition (2007) by National Library of Medicine
(2007) Division of Specialized Information Systems
Kaphle A, Navya PN, Umapathi A, Daima HK (2018) Nanomaterials for agriculture, food and
environment: applications, toxicity and regulation. Environ Chem Lett 16(1):43–58
Khan WS, Asmatulu R (2013) Nanotechnology emerging trends, markets, and concerns. In:
Nanotechnology safety, pp 1–16
Khorrami MB, Sadeghnia HR, Pasdar A, Ghayour-Mobarhan M, Riahi-Zanjani B, Hashemzadeh
A, Zare M, Darroudi M (2019) Antioxidant and toxicity studies of biosynthesized cerium oxide
nanoparticles in rats. Int J Nanomed 14:2915
Kumar V, Dasgupta N, Ranjan S (eds) (2018) Nanotoxicology: toxicity evaluation, risk assessment
and management. CRC Press, Boca Raton
Libralato G, Galdiero E, Falanga A, Carotenuto R, De Alteriis E, Guida M (2017) Toxicity effects
of functionalized quantum dots, gold and polystyrene nanoparticles on target aquatic biological
models: a review. Molecules 22(9):1439
Masciangioli T, Zhang WX (2003) Peer reviewed: environmental technologies at the nanoscale,
pp 102A–108A
Mehta M (2014) NSF nanotechnology commercialization study: implications for Michigan’s manufacturers Online available at https://www.michigan.gov/documents/deq/Mehta_US_NSF_
Nanotechnology_506497_7.pdf
Nair PM, Chung IM (2015) Study on the correlation between copper oxide nanoparticles induced
growth suppression and enhanced lignification in Indian mustard (Brassica juncea L.).
Ecotoxicol Environ Saf 113:302–313
Nanogloss.com (2010) Safety concerns with nanotechnology: knowing the risks and benefits.
Online available at http://nanogloss.com/nanotechnology/safety- concerns- with- nanotechnolo
gy/#ixzz5Q0fJ8vXr
National Nanotechnology Initiative (NNI) (2018) Environmental, health and safety issues. Online
available at https://www.nano.gov/you/environmental- health- safety
National Research Council (2002) Small wonders, endless frontiers: a review of the National
Nanotechnology Initiative. National Academies Press, Washington, DC
National Science Foundation and U.S. Environmental Protection Agency (2003) Nanotechnology
grand challenge in the environment research planning workshop, Session E: nanotechnology
implications in health and the environment
Nazarenko Y, Han TW, Lioy PJ, Mainelis G (2011) Potential for exposure to engineered nanoparticles from nanotechnology-based consumer spray products. J Exposure Sci Environ Epidemiol
21(5):515
1 Nanotoxicity and Nanoecotoxicity: Introduction, Principles, and Concepts
method and the recovery of Wilke–Chang statistical correlation. J Chem Theory Comput
14(2):479–485
Global Market Insights Inc. (2017) Silver nanoparticles market size by application, industry analysis report, regional outlook, growth potential, price trends, competitive market share & forecast, 2016–2024
Guleria P, Kumar V, Guleria S (2017) Genetic engineering: a possible strategy for protein–energy
malnutrition regulation. Mol Biotechnol 59(11–12):499–517
Holden PA, Klaessig F, Turco RF, Priester JH, Rico CM, Avila-Arias H, Mortimer M, Pacpaco
K, Gardea-Torresdey JL (2014) Evaluation of exposure concentrations used in assessing
manufactured nanomaterial environmental hazards: are they relevant? Environ Sci Technol
48(18):10541–10551
Huang S, Ye Z, Liu B (2008) Review on non-point source pollution in Miyun Reservoir. Chin J
Eco-Agric 67:1311–1316
Inshakova E, Inshakov O (2017) World market for nanomaterials: structure and trends. In: MATEC
web of conferences 2017, vol. 129, p 02013. EDP Sciences
ISO (2008) International Organization for Standardization. Technical specification: nanotechnologies – terminology and definitions for nano-objects – nanoparticle, nanofibre and nanoplate
ISO/TS 80004-2:2008
IUPAC Glossary of terms used in toxicology, 2nd Edition (2007) by National Library of Medicine
(2007) Division of Specialized Information Systems
Kaphle A, Navya PN, Umapathi A, Daima HK (2018) Nanomaterials for agriculture, food and
environment: applications, toxicity and regulation. Environ Chem Lett 16(1):43–58
Khan WS, Asmatulu R (2013) Nanotechnology emerging trends, markets, and concerns. In:
Nanotechnology safety, pp 1–16
Khorrami MB, Sadeghnia HR, Pasdar A, Ghayour-Mobarhan M, Riahi-Zanjani B, Hashemzadeh
A, Zare M, Darroudi M (2019) Antioxidant and toxicity studies of biosynthesized cerium oxide
nanoparticles in rats. Int J Nanomed 14:2915
Kumar V, Dasgupta N, Ranjan S (eds) (2018) Nanotoxicology: toxicity evaluation, risk assessment
and management. CRC Press, Boca Raton
Libralato G, Galdiero E, Falanga A, Carotenuto R, De Alteriis E, Guida M (2017) Toxicity effects
of functionalized quantum dots, gold and polystyrene nanoparticles on target aquatic biological
models: a review. Molecules 22(9):1439
Masciangioli T, Zhang WX (2003) Peer reviewed: environmental technologies at the nanoscale,
pp 102A–108A
Mehta M (2014) NSF nanotechnology commercialization study: implications for Michigan’s manufacturers Online available at https://www.michigan.gov/documents/deq/Mehta_US_NSF_
Nanotechnology_506497_7.pdf
Nair PM, Chung IM (2015) Study on the correlation between copper oxide nanoparticles induced
growth suppression and enhanced lignification in Indian mustard (Brassica juncea L.).
Ecotoxicol Environ Saf 113:302–313
Nanogloss.com (2010) Safety concerns with nanotechnology: knowing the risks and benefits.
Online available at http://nanogloss.com/nanotechnology/safety- concerns- with- nanotechnolo
gy/#ixzz5Q0fJ8vXr
National Nanotechnology Initiative (NNI) (2018) Environmental, health and safety issues. Online
available at https://www.nano.gov/you/environmental- health- safety
National Research Council (2002) Small wonders, endless frontiers: a review of the National
Nanotechnology Initiative. National Academies Press, Washington, DC
National Science Foundation and U.S. Environmental Protection Agency (2003) Nanotechnology
grand challenge in the environment research planning workshop, Session E: nanotechnology
implications in health and the environment
Nazarenko Y, Han TW, Lioy PJ, Mainelis G (2011) Potential for exposure to engineered nanoparticles from nanotechnology-based consumer spray products. J Exposure Sci Environ Epidemiol
21(5):515
1 Nanotoxicity and Nanoecotoxicity: Introduction, Principles, and Concepts
