Biomedical Engineering Reference
In-Depth Information
50. Mossman BT, Bignon J, Corn M, Seaton A, Gee JB. Asbestos: Scientific developments and implications
for public policy. Science (New York, NY) . 1990;247(4940):294-301.
51. Brown RC, Hoskins JA, Miller K, Mossman BT. Pathogenetic mechanisms of asbestos and other mineral
fibres. Molecular Aspects of Medicine . 1990;11(5):325-49.
52. Peters A, Veronesi B, Calderón-Garcidueñas L, Gehr P, Chen LC, Geiser M et al. Translocation and poten-
tial neurological effects of fine and ultrafine particles a critical update. Particle and Fibre Toxicology .
2006;3:13.
53. Geiser M, Rothen-Rutishauser B, Kapp N, Schürch S, Kreyling W, Schulz H et  al. Ultrafine particles
cross cellular membranes by nonphagocytic mechanisms in lungs and in cultured cells. Environmental
Health Perspectives . 2005;113(11):1555-60.
54. Hagens WI, Oomen AG, de Jong WH, Cassee FR, Sips AJ. What do we (need to) know about the kinetic
properties of nanoparticles in the body? Regulatory Toxicology and Pharmacology: RTP . 2007;49(3):217-
29. Epub 2007/09/18.
55. Oberdorster G, Oberdorster E, Oberdorster J. Nanotoxicology: An emerging discipline evolving from
studies of ultrafine particles. Environmental Health Perspectives . 2005;113(7):823-39. Epub 2005/07/09.
56. Chen Z, Meng H, Xing G, Chen C, Zhao Y, Jia G et al. Acute toxicological effects of copper nanoparticles
in vivo . Toxicology Letters . 2006;163(2):109-20.
57. Yamago S, Tokuyama H, Nakamura E, Kikuchi K, Kananishi S, Sueki K et al. In vivo biological behav-
ior of a water-miscible fullerene: 14C labeling, absorption, distribution, excretion and acute toxicity.
Chemistry & Biology . 1995;2(6):385-9.
58. Alvarez-Rom√°n R, Naik A, Kalia YN, Guy RH, Fessi H. Skin penetration and distribution of polymeric
nanoparticles. Journal of Controlled Release . 2004;99(1):53-62.
59. Tinkle SS, Antonini JM, Rich BA, Roberts JR, Salmen R, DePree K et al. Skin as a route of exposure
and sensitization in chronic beryllium disease. Environmental Health Perspectives . 2003;111(9):1202-8.
Epub 2003/07/05.
60. Monteiro-Riviere NA, Nemanich RJ, Inman AO, Wang YY, Riviere JE. Multi-walled carbon nanotube inter-
actions with human epidermal keratinocytes. Toxicology Letters . 2005;155(3):377-84. Epub 2005/01/15.
61. Rouse JG, Yang J, Ryman-Rasmussen JP, Barron AR, Monteiro-Riviere NA. Effects of mechanical
flexion on the penetration of fullerene amino acid-derivatized peptide nanoparticles through skin. Nano
Letters . 2007;7(1):155-60. Epub 2007/01/11.
62. Baroli B, Ennas MG, Loffredo F, Isola M, Pinna R, Lopez-Quintela MA. Penetration of metallic nanopar-
ticles in human full-thickness skin. The Journal of Investigative Dermatology . 2007;127(7):1701-12.
Epub 2007/03/24.
63. Larese FF, D,ÄôAgostin F, Crosera M, Adami G, Renzi N, Bovenzi M et al. Human skin penetration of
silver nanoparticles through intact and damaged skin. Toxicology . 2009;255(1Äì2):33-7.
64. Mostafalou S, Mohammadi H, Ramazani A, Abdollahi M. Different biokinetics of nanomedicines link-
ing to their toxicity; An overview. Daru: Journal of Faculty of Pharmacy, Tehran University of Medical
Sciences . 2013;21(1):14. Epub 2013/02/26.
65. Albanese A, Tang PS, Chan WC. The effect of nanoparticle size, shape, and surface chemistry on biologi-
cal systems. Annual Review of Biomedical Engineering . 2012;14:1-16. Epub 2012/04/25.
66. Gratton SE, Ropp PA, Pohlhaus PD, Luft JC, Madden VJ, Napier ME et al. The effect of particle design
on cellular internalization pathways. Proceedings of the National Academy of Sciences of the United
States of America . 2008;105(33):11613-8. Epub 2008/08/14.
67. Qiu Y, Liu Y, Wang L, Xu L, Bai R, Ji Y et al. Surface chemistry and aspect ratio mediated cellular uptake
of Au nanorods. Biomaterials . 2010;31(30):7606-19. Epub 2010/07/27.
68. Chithrani BD, Ghazani AA, Chan WC. Determining the size and shape dependence of gold nanoparticle
uptake into mammalian cells. Nano Letters . 2006;6(4):662-8. Epub 2006/04/13.
69. Chithrani BD, Chan WC. Elucidating the mechanism of cellular uptake and removal of protein-coated
gold nanoparticles of different sizes and shapes. Nano Letters . 2007;7(6):1542-50. Epub 2007/05/01.
70. Hutter E, Boridy S, Labrecque S, Lalancette-Hebert M, Kriz J, Winnik FM et al. Microglial response to
gold nanoparticles. ACS Nano . 2010;4(5):2595-606. Epub 2010/03/25.
71. Yuan H, Li J, Bao G, Zhang S. Variable nanoparticle-cell adhesion strength regulates cellular uptake.
Physical Review Letters . 2010;105(13):138101. Epub 2011/01/15.
72. Lu F, Wu SH, Hung Y, Mou CY. Size effect on cell uptake in well-suspended, uniform mesoporous silica
nanoparticles. Small . 2009;5(12):1408-13. Epub 2009/03/20.
73. Jin H, Heller DA, Sharma R, Strano MS. Size-dependent cellular uptake and expulsion of single-walled
carbon nanotubes: Single particle tracking and a generic uptake model for nanoparticles. ACS Nano .
2009;3(1):149-58. Epub 2009/02/12.
Search WWH ::




Custom Search