Biomedical Engineering Reference
In-Depth Information
Kaiser JP, Reinmann A, Bruinink A (2006) The effect of topographic characteristics on cell migra-
tion velocity. Biomaterials 27(30):5230-5241. doi : 10.1016/j.biomaterials.2006.06.002
Kamioka H, Kameo Y, Imai Y, Bakker AD, Bacabac RG, Yamada N, Takaoka A, Yamashiro T,
Adachi T, Klein-Nulend J (2012) Microscale fluid flow analysis in a human osteocyte canalicu-
lus using a realistic high-resolution image-based three-dimensional model. Integr Biol
4(10):1198-1206. doi : 10.1039/C2ib20092a
Kawano T, Kidoaki S (2011) Elasticity boundary conditions required for cell mechanotaxis on microelas-
tically-patterned gels. Biomaterials 32(11):2725-2733. doi : 10.1016/j.biomaterials.2011.01.009
Kim DH, Han K, Gupta K, Kwon KW, Suh KY, Levchenko A (2009a) Mechanosensitivity of
fibroblast cell shape and movement to anisotropic substratum topography gradients.
Biomaterials 30(29):5433-5444. doi: 10.1016/j.biomaterials.2009.06.042
Kim DH, Seo CH, Han K, Kwon KW, Levchenko A, Suh KY (2009b) Guided cell migration on
microtextured substrates with variable local density and anisotropy. Adv Funct Mater
19(10):1579-1586. doi: 10.1002/adfm.200801174
Kolega J (1986) Effects of mechanical tension on protrusive activity and microfilament and inter-
mediate filament organization in an epidermal epithelium moving in culture. J Cell Biol
102(4):1400-1411
Kong YP, Tu CH, Donovan PJ, Yee AF (2013) Expression of Oct4 in human embryonic stem cells
is dependent on nanotopographical configuration. Acta Biomater 9(5):6369-6380.
doi: 10.1016/j.actbio.2013.01.036
Kurpinski K, Chu J, Hashi C, Li S (2006) Anisotropic mechanosensing by mesenchymal stem
cells. Proc Natl Acad Sci U S A 103(44):16095-16100. doi: 10.1073/pnas.0604182103
Kwon KW, Choi SS, Lee SH, Kim B, Lee SN, Park MC, Kim P, Hwang SY, Suh KY (2007) Label-
free, microfluidic separation and enrichment of human breast cancer cells by adhesion
difference. Lab Chip 7(11):1461-1468. doi: 10.1039/b710054j
Liliensiek SJ, Nealey P, Murphy CJ (2009) Characterization of endothelial basement membrane
nanotopography in rhesus macaque as a guide for vessel tissue engineering. Tissue Eng Part A
15(9):2643-2651. doi : 10.1089/ten.TEA.2008.0284
Lim JY, Donahue HJ (2007) Cell sensing and response to micro- and nanostructured surfaces
produced by chemical and topographic patterning. Tissue Eng 13(8):1879-1891. doi: 10.1089/
ten.2006.0154
Lu P, Weaver VM, Werb Z (2012) The extracellular matrix: a dynamic niche in cancer progression.
J Cell Biol 196(4):395-406. doi: 10.1083/jcb.201102147
Mahmud G, Campbell CJ, Bishop KJM, Komarova YA, Chaga O, Soh S, Huda S, Kandere-
Grzybowska K, Grzybowski BA (2009) Directing cell motions on micropatterned ratchets. Nat
Phys 5(8):606-612. doi: 10.1038/Nphys1306
McMurray RJ, Gadegaard N, Tsimbouri PM, Burgess KV, McNamara LE, Tare R, Murawski K,
Kingham E, Oreffo ROC, Dalby MJ (2011) Nanoscale surfaces for the long-term maintenance
of mesenchymal stem cell phenotype and multipotency. Nat Mater 10(8):637-644. doi: 10.1038/
Nmat3058
Miyoshi H, Ju JM, Lee SM, Cho DJ, Ko JS, Yamagata Y, Adachi T (2010) Control of highly migra-
tory cells by microstructured surface based on transient change in cell behavior. Biomaterials
31(33):8539-8545. doi: 10.1016/j.biomaterials.2010.07.076
Nakaya Y, Sukowati EW, Sheng G (2013) Epiblast integrity requires CLASP and
Dystroglycan-mediated microtubule anchoring to the basal cortex. J Cell Biol 202(4):637-651.
doi: 10.1083/jcb.201302075
Nematollahi M, Hamilton DW, Jaeger NJ, Brunette DM (2009) Hexagonal micron scale pillars
influence epithelial cell adhesion, morphology, proliferation, migration, and cytoskeletal
arrangement. J Biomed Mater Res Part A 91A(1):149-157. doi: 10.1002/Jbm.A.32202
Nikkhah M, Strobl JS, Peddi B, Agah M (2009) Cytoskeletal role in differential adhesion patterns
of normal fibroblasts and breast cancer cells inside silicon microenvironments. Biomed
Microdevices 11(3):585-595. doi: 10.1007/s10544-008-9268-2
Nikkhah M, Strobl JS, De Vita R, Agah M (2010) The cytoskeletal organization of breast carci-
noma and fibroblast cells inside three dimensional (3-D) isotropic silicon microstructures.
Biomaterials 31(16):4552-4561. doi: 10.1016/j.biomaterials.2010.02.034
Search WWH ::




Custom Search