48
Bergin IL, Witzmann FA (2013) Nanoparticle toxicity by the gastrointestinal route: evidence and
knowledge gaps. Int J Biomed Nanosci Nanotechnol 3:1–2
Billsten P, Freskgård PO, Carlsson U, Jonsson BH, Elwing H (1997) Adsorption to silica nanoparticles of human carbonic anhydrase II and truncated forms induce a molten-globule-like structure. FEBS Lett 402:67–72
Bollen C (2017) Zirconia: the material of choice in implant dentistry? An update. J Dent Health
Oral Disord Ther 6(6):00219
Bolz A, Schaldach M (1990) Artificial heart valves: improved blood compatibility by PECVD
a-SiC:H coating. Artif Organs 14(4):260–269
Bouallegui Y, Younes RB, Turki F, Oueslati R (2017) Impact of exposure time, particle size and
uptake pathway on silver nanoparticle effects on circulating immune cells in mytilus galloprovincialis. J Immunotoxicol 14(1)
Braakhuis H, Gosens I, Krystek P, Boere J, Cassee F, Fokkens P, Post J, Loveren H, Park M (2014)
Particle size dependent deposition and pulmonary inflammation after short term inhalation of
silver nanoparticles. Part Fibre Toxicol 11(1):49
Brain JD, Kreyling W, Gehr P (2010) To the editors. Eur Respir J 35(1):226–227
Brouwer DH (2012) Control banding approaches for nanomaterials. Ann Occup Hyg 56:506–514
Caracciolo G, Palchetti S, Colapicchioni V, Digiacomo L, Pozzi D, Capriotti A, Barbera GL,
Laganà A (2015) Stealth effect of biomolecular corona on nanoparticle uptake by immune
cells. Langmuir 31:10764–11077
Carnovale C, Bryant G, Shukla R, Bansal V (2019) Identifying trends in gold nanoparticle toxicity
and uptake: size, shape, capping ligand, and biological Corona. ACS Omega 2019(4):242–256
Champion JA, Mitragotri S (2006) Role of target geometry in phagocytosis. Proc Natl Acad Sci
USA 103(13):4930–4934
Chaudhry Q (2012) Current and projected applications of nanomaterials. WHO workshop on
nanotechnology and human health: scientific evidence and risk governance. Bonn, Germany,
10–11 December 2012
Chaudhuri A, Kennedy P (2002) Diagnosis and treatment of viral encephalitis. Postgrad Med J
78(924):575–583
Chen Z, Meng H, Zing G (2006) Acute toxicological effects of copper nanoparticles in vivo.
Toxicol Lett 163:109–120
Chithrani BD, Ghazani AA, Chan WCW (2006) Determining the size and shape dependence of
gold nanoparticles uptake into mammalian cells. Nano Lett 6(4):662–668
Coelho MC, Torrão G, Emami N, Grácio J (2012) Nanotechnology in automotive industry: research
strategy and trends for the future – small objects, big impacts. J Nanosci Nanotechnol 12:1–10
Connor EE, Mwamuka J, Gole A, Murphy CJ, Wyatt MD (2005) Gold nanoparticles are taken up
by human cells but donot cause acute cytotoxicity. Small 1(3):325–327
Cottingham MG, Hollinshead MS, Vaux DJ (2002) Amyloid fibril formation by a synthetic peptide
from a region of human acetylcholinesterase that is homologous to the Alzheimer’s amyloidbeta peptide. Biochemistry 41(46):13539–13547
Dahotre NB, Nayak S (2005) Nanocoatings for engine application. Surf Coat Technol 194:58–67
de Lorenzo AJ (1970) The olfactory neuron and the blood brain barrier. In: Wolstenholme G,
Knight J (eds) Taste and smell in vertebrates. Churchill, London, pp 151–176
Debamitra D, Shanmugavelayutham KS, Justin GT, Brian JR, Leonard SF, Jon MJ, Shane RA,
George AK, Brij MM, Thomas JW (2007) Adsorbed proteins influence the biological activity
and molecular targeting of nanomaterials. Toxicol Sci 100(1):303–315
Derfus AM, Chan WCW, Bhatia SN (2004) Probing the cytotoxicity of semiconductor quantum
dots. Nano Lett 4(1):11–18
Ding L, Stilwell J, Zhang T, Elboudwarej O, Jiang H, Selegue JP, Cooke PA, Gray JW, Chen FF
(2005) Molecular characterization of the cytotoxic mechanism of multiwall carbon nanotubes
and Nano-onions on human skin fibroblast. Nano Lett 5(12):2448–2464
Dobrovoiskaia MA, Clogston JD, Neun BW, Hall JB, Patri AK, McNeil SE (2008) Method for
analysis of nanoparticle hemolytic properties in vitro. Nano Lett 8(8):2180–2187
S. Tekmen and S. Öksüz
Bergin IL, Witzmann FA (2013) Nanoparticle toxicity by the gastrointestinal route: evidence and
knowledge gaps. Int J Biomed Nanosci Nanotechnol 3:1–2
Billsten P, Freskgård PO, Carlsson U, Jonsson BH, Elwing H (1997) Adsorption to silica nanoparticles of human carbonic anhydrase II and truncated forms induce a molten-globule-like structure. FEBS Lett 402:67–72
Bollen C (2017) Zirconia: the material of choice in implant dentistry? An update. J Dent Health
Oral Disord Ther 6(6):00219
Bolz A, Schaldach M (1990) Artificial heart valves: improved blood compatibility by PECVD
a-SiC:H coating. Artif Organs 14(4):260–269
Bouallegui Y, Younes RB, Turki F, Oueslati R (2017) Impact of exposure time, particle size and
uptake pathway on silver nanoparticle effects on circulating immune cells in mytilus galloprovincialis. J Immunotoxicol 14(1)
Braakhuis H, Gosens I, Krystek P, Boere J, Cassee F, Fokkens P, Post J, Loveren H, Park M (2014)
Particle size dependent deposition and pulmonary inflammation after short term inhalation of
silver nanoparticles. Part Fibre Toxicol 11(1):49
Brain JD, Kreyling W, Gehr P (2010) To the editors. Eur Respir J 35(1):226–227
Brouwer DH (2012) Control banding approaches for nanomaterials. Ann Occup Hyg 56:506–514
Caracciolo G, Palchetti S, Colapicchioni V, Digiacomo L, Pozzi D, Capriotti A, Barbera GL,
Laganà A (2015) Stealth effect of biomolecular corona on nanoparticle uptake by immune
cells. Langmuir 31:10764–11077
Carnovale C, Bryant G, Shukla R, Bansal V (2019) Identifying trends in gold nanoparticle toxicity
and uptake: size, shape, capping ligand, and biological Corona. ACS Omega 2019(4):242–256
Champion JA, Mitragotri S (2006) Role of target geometry in phagocytosis. Proc Natl Acad Sci
USA 103(13):4930–4934
Chaudhry Q (2012) Current and projected applications of nanomaterials. WHO workshop on
nanotechnology and human health: scientific evidence and risk governance. Bonn, Germany,
10–11 December 2012
Chaudhuri A, Kennedy P (2002) Diagnosis and treatment of viral encephalitis. Postgrad Med J
78(924):575–583
Chen Z, Meng H, Zing G (2006) Acute toxicological effects of copper nanoparticles in vivo.
Toxicol Lett 163:109–120
Chithrani BD, Ghazani AA, Chan WCW (2006) Determining the size and shape dependence of
gold nanoparticles uptake into mammalian cells. Nano Lett 6(4):662–668
Coelho MC, Torrão G, Emami N, Grácio J (2012) Nanotechnology in automotive industry: research
strategy and trends for the future – small objects, big impacts. J Nanosci Nanotechnol 12:1–10
Connor EE, Mwamuka J, Gole A, Murphy CJ, Wyatt MD (2005) Gold nanoparticles are taken up
by human cells but donot cause acute cytotoxicity. Small 1(3):325–327
Cottingham MG, Hollinshead MS, Vaux DJ (2002) Amyloid fibril formation by a synthetic peptide
from a region of human acetylcholinesterase that is homologous to the Alzheimer’s amyloidbeta peptide. Biochemistry 41(46):13539–13547
Dahotre NB, Nayak S (2005) Nanocoatings for engine application. Surf Coat Technol 194:58–67
de Lorenzo AJ (1970) The olfactory neuron and the blood brain barrier. In: Wolstenholme G,
Knight J (eds) Taste and smell in vertebrates. Churchill, London, pp 151–176
Debamitra D, Shanmugavelayutham KS, Justin GT, Brian JR, Leonard SF, Jon MJ, Shane RA,
George AK, Brij MM, Thomas JW (2007) Adsorbed proteins influence the biological activity
and molecular targeting of nanomaterials. Toxicol Sci 100(1):303–315
Derfus AM, Chan WCW, Bhatia SN (2004) Probing the cytotoxicity of semiconductor quantum
dots. Nano Lett 4(1):11–18
Ding L, Stilwell J, Zhang T, Elboudwarej O, Jiang H, Selegue JP, Cooke PA, Gray JW, Chen FF
(2005) Molecular characterization of the cytotoxic mechanism of multiwall carbon nanotubes
and Nano-onions on human skin fibroblast. Nano Lett 5(12):2448–2464
Dobrovoiskaia MA, Clogston JD, Neun BW, Hall JB, Patri AK, McNeil SE (2008) Method for
analysis of nanoparticle hemolytic properties in vitro. Nano Lett 8(8):2180–2187
S. Tekmen and S. Öksüz
