50
Glaza P (2010) Industry should take lead with media when an event like a recall occurs. http://
www.electroiq.com/articles/stm/print/volume- 6/issue- 3/opinion/guest- olumn/industry- shouldtake- leadwith- media- when- an- event- like- a- recall- occurs.html
Godbey WT, Wu KK, Mikos AG (1999) Tracking the intracellular path of poly(ethylenimine)/
DNA complexes for gene delivery. Proc Natl Acad Sci 96(9):5177–5181
Griffitt R, Luo J, Gao J, Bonzongo JC, Barber D (2008) Effects of particle composition and
species on toxicity of metallic nanomaterials in aquatic organisms. Environ Toxicol Chem
27(9):1972–1978
Gurr JR, Wang AS, Chen CH, Jan KY (2005a) Ultrafine titanium dioxide particles in the absence
of photoactivation can induce oxidative damage to human bronchial epithelial cells. Toxicology
213:66–73
Gurr JR, Wang ASS, Chen CH, Jan KY (2005b) Ultrafine titanium dioxide particles in the absence
of photoactivation can induce oxidative damage to human bronchial epithelial cells. Toxicology
213(1–2):66–73
Hagens WI, Oomen AG, de Jong WH (2007) What do we (need to) know about the kinetic properties of nanoparticles in the body? Regul Toxicol Pharmacol 49:217–219
Hansen SF (2012) Exposure pathways of nanomaterials. WHO Workshop on nanotechnology and
human health: scientific evidence and risk governance. Bonn, Germany, 10–11 December 2012
He H, Pham-Huy L, Dramou P, Xiao D, Zuo P, Pham-Huy C (2013) Carbon nanotubes: applications in pharmacy and medicine. Biomed Res Int:578290
Heiden TC, Dengler E, Kao WJ, Heideman W, Peterson RE (2007) Develop mental toxicity of low
generation PAMAM dendrimers in zebrafish. Toxicol Appl Pharmacol 225(1):70–79
Heo DN, Min KH, Choi GH, Kwon IK, Park K, Lee SC (2014) Chapter 24 – scale-up production
of Theranostic. Nanoparticles Cancer Theranostics:457–470
Hillyer JF, Albrecht RM (2001) Gastrointestinal persorption and tissue distribution of differently
sized colloidal gold nanoparticles. J Pharm Sci 90(12):1927–1936
Hoet PH, Bruske-Hohlfeld I, Salata OV (2004) Nanoparticles – known and unknown health risks.
J Nanobiotechnol 2(1):12
Hou W, Westerhoff P, Posner JD (2013) Biological accumulation of engineered nanomaterials: a
review of current knowledge. Environ Sci Processes Impacts 15(1):103–122
Hougaard KS, Jackson P, Jensen KA, Sloth JJ, Loschner K, Larsen EH, Birkedal RK, Vibenholt A,
Boisen AM, Wallin H, Vogel U (2010) Effects of prenatal exposure to surface-coated nanosized
titanium dioxide (UVTitan). A study in mice. Part Fibre Toxicol 7(1):16
Howard V (2012) General toxicity of NM. WHO workshop on nanotechnology and human health:
scientific evidence and risk governance. Bonn, Germany, 10–11 December 2012
Hsiao I, Huang Y (2011) Effects of various physicochemical characteristics on the toxicities of ZnO and TiO2 nanoparticles toward human lung epithelial cells. Sci Total Environ
409(7):1219–1228
http://www.nano.gov/nanotech- 101/what/definition
http://www.understandingnano.com/nanomaterials.html
https://scitechdaily.com/nanotechnology- dramatically- improves- electronic- device- performance/
https://www.azom.com/article.aspx?ArticleID=1066
https://www.livescience.com/28186- krakatoa.html
Hunter DD, Dey RD (1998) Identification and neuropeptide content of trigeminal neurons innervating the rat nasalepithelium. Neuroscience 83:591–599
Hussain SM, Hess KL, Gearhart JM, Geiss KT, Schlager JJ (2005) In vitro toxicity of nanoparticlesin BRL 3A rat liver cells. Toxicol In Vitro 19(7):975–983
Ishii D, Kinbara K, Ishida Y, Ishii N, Okochi M, Yohda M, Aida T (2003) Chaperonin-mediated
stabilization and ATP-triggered release of semiconductor nanoparticles. Nature 423:628–632
Jackson P, Hougaard KS, Boisen AM, Jacobsen NR, Jensen KA, Moller P, Brunborg G, Gutzkow
KB, Andersen O (2012) Pulmonary exposure to carbon black by inhalation or instillation in
pregnant mice: effects on liver DNA strand breaks in dams and offspring. Nanotoxicology
6(5):486–500
S. Tekmen and S. Öksüz
Glaza P (2010) Industry should take lead with media when an event like a recall occurs. http://
www.electroiq.com/articles/stm/print/volume- 6/issue- 3/opinion/guest- olumn/industry- shouldtake- leadwith- media- when- an- event- like- a- recall- occurs.html
Godbey WT, Wu KK, Mikos AG (1999) Tracking the intracellular path of poly(ethylenimine)/
DNA complexes for gene delivery. Proc Natl Acad Sci 96(9):5177–5181
Griffitt R, Luo J, Gao J, Bonzongo JC, Barber D (2008) Effects of particle composition and
species on toxicity of metallic nanomaterials in aquatic organisms. Environ Toxicol Chem
27(9):1972–1978
Gurr JR, Wang AS, Chen CH, Jan KY (2005a) Ultrafine titanium dioxide particles in the absence
of photoactivation can induce oxidative damage to human bronchial epithelial cells. Toxicology
213:66–73
Gurr JR, Wang ASS, Chen CH, Jan KY (2005b) Ultrafine titanium dioxide particles in the absence
of photoactivation can induce oxidative damage to human bronchial epithelial cells. Toxicology
213(1–2):66–73
Hagens WI, Oomen AG, de Jong WH (2007) What do we (need to) know about the kinetic properties of nanoparticles in the body? Regul Toxicol Pharmacol 49:217–219
Hansen SF (2012) Exposure pathways of nanomaterials. WHO Workshop on nanotechnology and
human health: scientific evidence and risk governance. Bonn, Germany, 10–11 December 2012
He H, Pham-Huy L, Dramou P, Xiao D, Zuo P, Pham-Huy C (2013) Carbon nanotubes: applications in pharmacy and medicine. Biomed Res Int:578290
Heiden TC, Dengler E, Kao WJ, Heideman W, Peterson RE (2007) Develop mental toxicity of low
generation PAMAM dendrimers in zebrafish. Toxicol Appl Pharmacol 225(1):70–79
Heo DN, Min KH, Choi GH, Kwon IK, Park K, Lee SC (2014) Chapter 24 – scale-up production
of Theranostic. Nanoparticles Cancer Theranostics:457–470
Hillyer JF, Albrecht RM (2001) Gastrointestinal persorption and tissue distribution of differently
sized colloidal gold nanoparticles. J Pharm Sci 90(12):1927–1936
Hoet PH, Bruske-Hohlfeld I, Salata OV (2004) Nanoparticles – known and unknown health risks.
J Nanobiotechnol 2(1):12
Hou W, Westerhoff P, Posner JD (2013) Biological accumulation of engineered nanomaterials: a
review of current knowledge. Environ Sci Processes Impacts 15(1):103–122
Hougaard KS, Jackson P, Jensen KA, Sloth JJ, Loschner K, Larsen EH, Birkedal RK, Vibenholt A,
Boisen AM, Wallin H, Vogel U (2010) Effects of prenatal exposure to surface-coated nanosized
titanium dioxide (UVTitan). A study in mice. Part Fibre Toxicol 7(1):16
Howard V (2012) General toxicity of NM. WHO workshop on nanotechnology and human health:
scientific evidence and risk governance. Bonn, Germany, 10–11 December 2012
Hsiao I, Huang Y (2011) Effects of various physicochemical characteristics on the toxicities of ZnO and TiO2 nanoparticles toward human lung epithelial cells. Sci Total Environ
409(7):1219–1228
http://www.nano.gov/nanotech- 101/what/definition
http://www.understandingnano.com/nanomaterials.html
https://scitechdaily.com/nanotechnology- dramatically- improves- electronic- device- performance/
https://www.azom.com/article.aspx?ArticleID=1066
https://www.livescience.com/28186- krakatoa.html
Hunter DD, Dey RD (1998) Identification and neuropeptide content of trigeminal neurons innervating the rat nasalepithelium. Neuroscience 83:591–599
Hussain SM, Hess KL, Gearhart JM, Geiss KT, Schlager JJ (2005) In vitro toxicity of nanoparticlesin BRL 3A rat liver cells. Toxicol In Vitro 19(7):975–983
Ishii D, Kinbara K, Ishida Y, Ishii N, Okochi M, Yohda M, Aida T (2003) Chaperonin-mediated
stabilization and ATP-triggered release of semiconductor nanoparticles. Nature 423:628–632
Jackson P, Hougaard KS, Boisen AM, Jacobsen NR, Jensen KA, Moller P, Brunborg G, Gutzkow
KB, Andersen O (2012) Pulmonary exposure to carbon black by inhalation or instillation in
pregnant mice: effects on liver DNA strand breaks in dams and offspring. Nanotoxicology
6(5):486–500
S. Tekmen and S. Öksüz
