Biomedical Engineering Reference
In-Depth Information
[41]
Ostlund C, ES Folker, JC Choi, ER Gomes, GG Gundersen and HJ Worman (2009). Dynamics
and molecular interactions of linker of nucleoskeleton and cytoskeleton (LINC) complex pro-
teins. Journal of Cell Science 122: 4099-4108.
[42]
Andres V and JM Gonzalez (2009). Role of A-type lamins in signaling, transcription, and
chromatin organization. Journal of Cell Biology 187: 945-957.
[43]
Dahl KN, SM Kahn, KL Wilson and DE Discher (2004). The nuclear envelope lamina network
has elasticity and a compressibility limit suggestive of a molecular shock absorber. Journal of
Cell Science 117: 4779-4786.
[44]
Lammerding J, LG Fong, JY Ji, K Reue, CL Stewart, SG Young and RT Lee (2006). Lamins A
and C but Not Lamin B1 Regulate Nuclear Mechanics. Journal of Biology and Chemistry 281:
25768-25780.
[45]
Pajerowski JD, KN Dahl, FL Zhong, PJ Sammak and DE Discher (2007). Physical plasticity of
the nucleus in stem cell differentiation. Proceedings of the National Academy of Sciences USA
104: 15619-24.
[46]
Huang S and DE Ingber (1999). The structural and mechanical complexity of cell-growth con-
trol. Nature Cell Biology 1: E131-E138.
[47]
He L and D Montell (2012). A cellular sense of touch. Nature Cell Biology 14: 902-903.
[48]
Harris MA, PA Cripton and K Teschke (2012). Retrospective assessment of occupational
exposure to whole-body vibration for a case-control study. Journal of Occupational and
Environmental Hygiene 9: 371-380.
[49]
Pedrinelli R, P Ballo, C Fiorentini, S Denti, M Galderisi, A Ganau, G Germano, P Innelli, A
Paini, S Perlini, et al . (2012). Hypertension and acute myocardial infarction: an overview.
Journal of Cardiovascular Medicine (Hagerstown) 13: 194-202.
[50]
Kamkin A and I Kiseleva (eds) (2008). Mechanosensitivity in Cells and Tissues . Academia
Publishing House: Moscow.
[51]
Kshitiz, J Park, P Kim, W Helen, AJ Engler, A Levchenko and DH Kim (2012). Control of stem cell
fate and function by engineering physical microenvironments. Integrative Biology 4: 1008-1018.
[52]
Tay CY, CG Koh, NS Tan, DT Leong and LP Tan (2013). Mechanoregulation of stem cell fate
via micro-/nano-scale manipulation for regenerative medicine. Nanomedicine 8: 623-638.
[53]
Discher DE, DJ Mooney and PW Zandstra (2009). Growth factors, matrices, and forces com-
bine and control stem cells. Science 324: 1673-7.
[54]
Guilak F, DM Cohen, BT Estes, JM Gimble, W Liedtke and CS Chen (2009). Control of stem
cell fate by physical interactions with the extracellular matrix. Cell Stem Cell 5: 17-26.
[55]
Marklein RA and JA Burdick (2009). Controlling stem cell fate with material design. Advanced
Materials 22: 175-189.
[56]
Clause KC, LJ Liu and K Tobita (2010). Directed stem cell differentiation: the role of physical
forces. Cell Communication and Adhesion 17: 48-54.
[57]
Steward RL, Jr., CM Cheng, DL Wang and PR LeDuc (2010). Probing cell structure responses
through a shear and stretching mechanical stimulation technique. Cell Biochemistry and
Biophysics 56: 115-124.
[58]
Maul TM, DW Hamilton, A Nieponice, L Soletti and DA Vorp (2007). A new experimental
system for the extended application of cyclic hydrostatic pressure to cell culture. Journal of
Biomechanical Engineering - Transactions of the ASME 129: 110-116.
[59]
Stolberg S and KE McCloskey (2009). Can shear stress direct stem cell fate? Biotechnology
Progress 25: 10-19.
[60]
Gaston J, BQ Rios, R Bartlett, C Berchtold and SL Thibeault (2012). The response of vocal fold
fibroblasts and mesenchymal stromal cells to vibration. PLoS One 7.
[61]
Nikukar H, S Reid, PM Tsimbouri, MO Riehle, AS Curtis and MJ Dalby (2013). Osteogenesis
of mesenchymal stem cells by nanoscale mechanotransduction. ACS Nano 7: 2758-2767.
[62]
Patwari P and RT Lee (2008). Mechanical control of tissue morphogenesis. Circulation Research
103: 234-243.
[63]
Rehfeldt F, AJ Engler, A Eckhardt, F Ahmed and DE Discher (2007). Cell responses to the
mechanochemical microenvironment - implications for regenerative medicine and drug delivery.
Advanced Drug Delivery Reviews 59: 1329-1339.
[64]
Bukoreshtliev NV, K Haase and AE Pelling (2013). Mechanical cues in cellular signalling and
communication. Cell Tissue Research 352: 77-94.
Search WWH ::




Custom Search