54
Seaton A, MacNee W, Donaldson K, Godden D (1995) Particulate air pollution and acute health
effects. Lancet 345:176–178
Seaton A, Tran L, Aitken R, Donaldson K (2010) Nanoparticles, human health hazardand regulation. J R Soc Interface 7(Suppl 1):S119–S129. https://doi.org/10.1098/rsif.2009.0252.focus
Self S, Rampino MR (1981) The 1883 eruption of Krakatau. Nature 294:699–704
Shi Z, Shao L, Jones TP, Lu S (2005) J Geophys Res Atmos 110:D01303. https://doi.
org/10.1029/2004JD005073
Shiohara A, Hoshino A, Hanaki K (2004) On the cytotoxicity caused by quantum dots. Microbiol
Immunol 48:669–675
Shvedova AA, Kisin ER, Mercer R, Muray AL, John VJ, Potapovich AI, Tyurina YY, Gorelik O,
Arepalli S, Schwegler-Berry A, Hubbs AF, Antonini J, Evans DE, Ku BK, Ramsey D, Maynard
A, Kagan VE, Castranova V, Baron D (2005) Unusual inflammatory and fibrogenic pulmonary
responses to single walled carbon nanotubes in mice. Am J Physiol Lung Cell Mol Physiol
289(5):L698–L708
Simon U, Schön U, Schmid G, Angew G (1993) The application of Au55 clusters as quantum dots.
Chem Int Ed Engl 232:250–254
Smijs TG, Pavel S (2011) Titanium dioxide and zinc oxide nanoparticles in sunscreens: focus
on their safety and effectiveness. Nanotechnol Sci Appl 4:95–112. https://doi.org/10.2147/
NSA.S19419
Song Y, Xue L, Du X (2009) Exposure to nanoparticlesis related to pleural effusion, pulmonary
fibrosis and granuloma. Eur Respir J 34(3):559–567
Srivastav AK, Dhiman N, Khan H, Srivastav AK, Yadav SK, Prakash J, Arjaria N, Singh D,
Yadav S, Patnaik S, Kumar M (2019) Impact of surface-engineered ZnO nanoparticles
on protein Corona configuration and their interactions with biological system. J Pharm Sci
108(2019):1872–1889. 1873
Stern ST, McNeil SE (2008) Nanotechnology safety concerns revisited. Toxicol Sci 101(1):4–21
Stover TC, Kim YS, Lowe TL, Kester M (2008) Thermo responsive and biodegradable lineardendritic nanoparticles for targeted and sustained release of a pro-apoptotic drug. Biomaterials
29(3):359–369. Epub 2007 Oct 26
Sturm R (2015) A computer model for the simulation of nanoparticle deposition in the alveolar structures of the human lungs. Ann Transl Med 3:281. https://doi.org/10.3978/j.
issn.2305- 5839.2015.11.01
Takagi A, Hirose A, Nishimura T, Fukumori N, Ogata A, Ohashi N, Kitajima S, Kanno J (2008)
Induction of mesothelioma in p53+/−mouse by intraperitoneal application of multiwall carbon
nanotube. J Toxicol Sci 33(1):105–116
Tan MH, Commens CA, Burnett L, Snitch PJ (1996) A pilot study on the percutaneous absorption
of microfine titanium dioxide from sunscreens. Australas J Dermatol 37(4):185–187
Taylor DA (2002) Dust in the wind. Environ Health Perspect 110:A80
Teodoro JS, Simões AM, Duarte FV, Rolo AP, Murdoch RC, Hussain SM, Palmeira CM (2011)
Assessment of the toxicity of silver nanoparticles in vitro: a mitochondrial perspective. Toxicol
In Vitro 25:664–670
Tian Z, Yin M, Ma H, Zhu L, Shen H, Jia N (2011) Supramolecular assembly and antitumor
activity of multiwalled carbon nanotube–camptothecin complexes. J Nanosci Nanotechnol
11(2):953–958
Tinkle SS, Antonini JM, Rich BA, Roberts JR, Salmen R, Depree K, Adkins EJ (2003) Skin as
a route of exposure and sensitization in chronic beryllium disease. Environ Health Perspect
111(9):1202–1208
Tsuchiya T, Oguri I, Yamakoshi YN, Miyata N (1996) Novel harmful effects of [60]fullerene on
mouse embryos in vitro and in vivo. FEBS Lett 393(1):139–145
Viswanath B, Kim S (2016) Influence of nanotoxicity on human health and environment: the alternative strategies. In: de Voogt P (ed) Reviews of environmental contamination and toxicology
volume 242, Reviews of environmental contamination and toxicology (continuation of residue
reviews), vol 242. Springer, Cham
S. Tekmen and S. Öksüz
Seaton A, MacNee W, Donaldson K, Godden D (1995) Particulate air pollution and acute health
effects. Lancet 345:176–178
Seaton A, Tran L, Aitken R, Donaldson K (2010) Nanoparticles, human health hazardand regulation. J R Soc Interface 7(Suppl 1):S119–S129. https://doi.org/10.1098/rsif.2009.0252.focus
Self S, Rampino MR (1981) The 1883 eruption of Krakatau. Nature 294:699–704
Shi Z, Shao L, Jones TP, Lu S (2005) J Geophys Res Atmos 110:D01303. https://doi.
org/10.1029/2004JD005073
Shiohara A, Hoshino A, Hanaki K (2004) On the cytotoxicity caused by quantum dots. Microbiol
Immunol 48:669–675
Shvedova AA, Kisin ER, Mercer R, Muray AL, John VJ, Potapovich AI, Tyurina YY, Gorelik O,
Arepalli S, Schwegler-Berry A, Hubbs AF, Antonini J, Evans DE, Ku BK, Ramsey D, Maynard
A, Kagan VE, Castranova V, Baron D (2005) Unusual inflammatory and fibrogenic pulmonary
responses to single walled carbon nanotubes in mice. Am J Physiol Lung Cell Mol Physiol
289(5):L698–L708
Simon U, Schön U, Schmid G, Angew G (1993) The application of Au55 clusters as quantum dots.
Chem Int Ed Engl 232:250–254
Smijs TG, Pavel S (2011) Titanium dioxide and zinc oxide nanoparticles in sunscreens: focus
on their safety and effectiveness. Nanotechnol Sci Appl 4:95–112. https://doi.org/10.2147/
NSA.S19419
Song Y, Xue L, Du X (2009) Exposure to nanoparticlesis related to pleural effusion, pulmonary
fibrosis and granuloma. Eur Respir J 34(3):559–567
Srivastav AK, Dhiman N, Khan H, Srivastav AK, Yadav SK, Prakash J, Arjaria N, Singh D,
Yadav S, Patnaik S, Kumar M (2019) Impact of surface-engineered ZnO nanoparticles
on protein Corona configuration and their interactions with biological system. J Pharm Sci
108(2019):1872–1889. 1873
Stern ST, McNeil SE (2008) Nanotechnology safety concerns revisited. Toxicol Sci 101(1):4–21
Stover TC, Kim YS, Lowe TL, Kester M (2008) Thermo responsive and biodegradable lineardendritic nanoparticles for targeted and sustained release of a pro-apoptotic drug. Biomaterials
29(3):359–369. Epub 2007 Oct 26
Sturm R (2015) A computer model for the simulation of nanoparticle deposition in the alveolar structures of the human lungs. Ann Transl Med 3:281. https://doi.org/10.3978/j.
issn.2305- 5839.2015.11.01
Takagi A, Hirose A, Nishimura T, Fukumori N, Ogata A, Ohashi N, Kitajima S, Kanno J (2008)
Induction of mesothelioma in p53+/−mouse by intraperitoneal application of multiwall carbon
nanotube. J Toxicol Sci 33(1):105–116
Tan MH, Commens CA, Burnett L, Snitch PJ (1996) A pilot study on the percutaneous absorption
of microfine titanium dioxide from sunscreens. Australas J Dermatol 37(4):185–187
Taylor DA (2002) Dust in the wind. Environ Health Perspect 110:A80
Teodoro JS, Simões AM, Duarte FV, Rolo AP, Murdoch RC, Hussain SM, Palmeira CM (2011)
Assessment of the toxicity of silver nanoparticles in vitro: a mitochondrial perspective. Toxicol
In Vitro 25:664–670
Tian Z, Yin M, Ma H, Zhu L, Shen H, Jia N (2011) Supramolecular assembly and antitumor
activity of multiwalled carbon nanotube–camptothecin complexes. J Nanosci Nanotechnol
11(2):953–958
Tinkle SS, Antonini JM, Rich BA, Roberts JR, Salmen R, Depree K, Adkins EJ (2003) Skin as
a route of exposure and sensitization in chronic beryllium disease. Environ Health Perspect
111(9):1202–1208
Tsuchiya T, Oguri I, Yamakoshi YN, Miyata N (1996) Novel harmful effects of [60]fullerene on
mouse embryos in vitro and in vivo. FEBS Lett 393(1):139–145
Viswanath B, Kim S (2016) Influence of nanotoxicity on human health and environment: the alternative strategies. In: de Voogt P (ed) Reviews of environmental contamination and toxicology
volume 242, Reviews of environmental contamination and toxicology (continuation of residue
reviews), vol 242. Springer, Cham
S. Tekmen and S. Öksüz
