Biomedical Engineering Reference
In-Depth Information
Lee, W., Debasitis, J.C., Lee, V.K., Lee, J.-H., Fischer, K., Edminster, K., Park, J.-K., Yoo, S.-S., 2009a. Multi-
layered culture of human skin fibroblasts and keratinocytes through three-dimensional freeform fabrication.
Biomaterials 30, 1587-1595.
Liu, Y., Wang, X., Kaufman, D.S., Shen, W., 2011. A synthetic substrate to support early mesodermal differentiation
of human embryonic stem cells. Biomaterials 32, 8058-8066.
Lund, A.W., Yener, B., Stegemann, J.P., Plopper, G.E., 2009. The natural and engineered 3D microenvironment as
a regulatory cue during stem cell fate determination. Tissue Eng. Part B: Rev 15, 371-380.
Massia, S.P., Hubbell, J.A., 1991. An RGD spacing of 440 nm is sufficient for integrin alpha V beta 3-mediated
fibroblast spreading and 140 nm for focal contact and stress fiber formation. J. Cell Biol 114, 1089-1100.
Meshel, A.S., Wei, Q., Adelstein, R.S., Sheetz, M.P., 2005. Basic mechanism of three-dimensional collagen fibre
transport by fibroblasts. Nat. Cell Biol 7, 157-164.
Odde, D.J., Renn, M.J., 2000. Laser-guided direct writing of living cells. Biotechnol. Bioeng 67, 312-318.
Orive, G., Tam, S.K., Pedraz, J.L., Hallé, J.-P., 2006. Biocompatibility of alginate-poly-L-lysine microcapsules for
cell therapy. Biomaterials 27, 3691-3700.
Othon, C.M., Wu, X., Anders, J.J., Ringeisen, B.R., 2008. Single-cell printing to form three-dimensional lines of
olfactory ensheathing cells. Biomed. Mater 3, 034101.
Ovsianikov, A., Gruene, M., Pflaum, M., Koch, L., Maiorana, F., Wilhelmi, M., Haverich, A., Chichkov B, 2010.
Laser printing of cells into 3D scaffolds. Biofabrication 2, 014104.
Pampaloni, F., Reynaud, E.G., Stelzer, E.H.K., 2007. The third dimension bridges the gap between cell culture and
live tissue. Nat. Rev. Mol. Cell Biol 8, 839-845.
Patz, T.M., Doraiswamy, A., Narayan, R.J., He, W., Zhong, Y., Bellamkonda, R., Modi, R., Chrisey, D.B., 2005.
Three-dimensional direct writing of B35 neuronal cells. Biomed. Mater. Res 78, 124-130.
Pedersen, J., Swartz, M., 2005. Mechanobiology in the third dimension. Ann Biomed. Eng 33, 1469-1490.
Peerani, R., Rao, B.M., Bauwens, C., Yin, T., Wood, G.A., Nagy, A., Kumacheva, E., Zandstra, P.W., 2007. Niche-
mediated control of human embryonic stem cell self-renewal and differentiation. EMBO J 26, 4744-4755.
Petrie, T.A., Capadona, J.R., Reyes, C.D., García, A.J., 2006. Integrin specificity and enhanced cellular activities
associated with surfaces presenting a recombinant fibronectin fragment compared to RGD supports.
Biomaterials 27, 5459-5470.
Pham, Q.P., Sharma, U., Mikos, A.G., 2006. Electrospinning of polymeric nanofibers for tissue engineering
applications: a review. Tissue Eng 12, 1197-1211.
Piner, R., Zhu, J., Xu, F., Hong, S., Mirkin C, 1999. “Dip-pen” nanolithography. Science 283, 661-663.
Pirlo, R.K., Dean, D.M.D., Knapp, D.R., Gao, B.Z., 2006. Cell deposition system based on laser guidance.
Biotechnol. J 1, 1007-1013.
Raof, N.A., Schiele, N.R., Xie, Y., Chrisey, D.B., Corr, D.T., 2011. The maintenance of pluripotency following
laser direct-write of mouse embryonic stem cells. Biomaterials 32, 1802-1808.
Ringeisen, B., Chrisey, D., Krizman, D., Kim, H., Young, P., Spargo B, 2002b. Cell-by-cell construction of
living tissue by ambient laser transfer. 2nd Annual International IEEE-EMBS Special Topic Conference on
Microtechnologies in Medicine & Biology, 120-125.
Ringeisen, B.R., Barron, J.A., Young, D., Othon, C.M., Wu, P.K., Ladoucuer, D., Spargo, B.J., 2008. Laser Printing
Cells. Virtual Prototyping & Bio Manufacturing in Medical Applications (Springer), 207-28.
Ringeisen, B.R., Kim, H., Barron, J.A., Krizman, D.B., Chrisey, D.B., Jackman, S., Auyeung, R.Y.C., Spargo, B.J.,
2004. Laser printing of pluripotent embryonal carcinoma cells. Tissue Eng 10, 483-491.
Ringeisen, B.R., Wu, P.K., Kim, H., Piqué, A., Auyeung, R.Y.C., Young, H.D., Chrisey, D.B., Krizman, D.B.,
2002a. Picoliter-scale protein microarrays by laser direct write Chem. Biotechnol. Prog 18, 1126-1129.
Roth, E.A., Xu, T., Das, M., Gregory, C., Hickman, J.J., Boland, T., 2004. Inkjet printing for high-throughput cell
patterning. Biomaterials 25, 3707-3715.
Saunders, R.E., Gough, J.E., Derby, B., 2008. Delivery of human fibroblast cells by piezoelectric drop-on-demand
inkjet printing. Biomaterials 29, 193-203.
Search WWH ::




Custom Search