Effects of micro- and nano-structured topographic material on cell transplantational behaviors
ZHANG Xian-Zuo, LIU Re-Yan, XUE Xu-Kai, DIAO Li, QIN Jian-Jiang
Chinese Journal of Clinical Anatomy ›› 2013, Vol. 31 ›› Issue (5) : 611-614.
Effects of micro- and nano-structured topographic material on cell transplantational behaviors
[1] Mrksich M, Whitesides GM. Using Self-Assembled Monolayers to Understand the Interactions of Man-made Surfaces with Proteins and Cells
[J]. Annu Rev Biophys Biomol Struct,1996,25(1):55-78.
[2] Weiss P. Experiments on cell and axon orientation in vitro; the role of colloidal exudates in tissue organization
[J]. J Exp Zool,1945,100(3):353-386.
[3] Loesberg WA, Te RJ, van Delft FC, et al. The threshold at which substrate nanogroove dimensions may influence fibroblast alignment and adhesion
[J]. Biomaterials,2007,28(27):3944-3951.
[4] Holmes DF, Gilpin CJ, Baldock C, et al. Corneal collagen fibril structure in three dimensions: Structural insights into fibril assembly, mechanical properties, and tissue organization
[J]. Proc Natl Acad Sci U S A,2001,98(13):7307-7312.
[5] Gerecht S, Bettinger CJ, Zhang Z, et al. The effect of actin disrupting agents on contact guidance of human embryonic stem cells
[J]. Biomaterials,2007,28(28):4068-4077.
[6] Dalby MJ, Riehle MO, Johnstone H, et al. In vitro reaction of endothelial cells to polymer demixed nanotopography
[J]. Biomaterials,2002,23(14):2945-2954.
[7] Hamilton DW, Oakley C, Jaeger NAF, et al. Directional change produced by perpendicularly-oriented microgrooves is microtubule-dependent for fibroblasts and epithelium
[J]. Cell Motil Cytoskeleton, 2009,66(5):260-271.
[8] Almaguer-Flores A, Olivares-Navarrete R, Wieland M, et al. Influence of topography and hydrophilicity on initial oral biofilm formation on microstructured titanium surfaces in vitro
[J]. Clin Oral Implants Res,2012,23(3):301-307.
[9] Mcnamara LE, Burchmore R, Riehle MO, et al. The role of microtopography in cellular mechanotransduction
[J]. Biomaterials,2012,33(10):2835-2847.
[10] Dalby MJ, Riehle MO, Yarwood SJ, et al. Nucleus alignment and cell signaling in fibroblasts: response to a micro-grooved topography
[J]. Exp Cell Res, 2003,284(2):272-280.
[11] Bozec L, van der Heijden G, Horton M. Collagen fibrils: nanoscale ropes
[J]. Biophys J,2007,92(1):70-75.
[12] Dalby MJ, Riehle MO, Sutherland DS, et al. Fibroblast response to a controlled nanoenvironment produced by colloidal lithography
[J]. J Biomed Mater Res A, 2004,69(2):314-322.
[13] Kunzler TP, Huwiler C, Drobek T, et al. Systematic study of osteoblast response to nanotopography by means of nanoparticle-density gradients
[J]. Biomaterials, 2007, 28(33):5000-5006.
[14] Curtis A, Casey B, Gallagher JO, et al. Substratum nanotopography and the adhesion of biological cells. Are symmetry or regularity of nanotopography important?
[J]. Biophysical chemistry, 2001, 94(3):275-283.
[15] Yim EK, Pang SW, Leong KW. Synthetic nanostructures inducing differentiation of human mesenchymal stem cells into neuronal lineage
[J]. Exp Cell Res, 2007, 313(9):1820-1829.
[16] Lee MR, Kwon KW, Jung H, et al. Direct differentiation of human embryonic stem cells into selective neurons on nanoscale ridge/groove pattern arrays
[J]. Biomaterials, 2010, 31(15):4360-4366.
[17] Powell K. Stem-cell niches: It's the ecology, stupid
[J]. Nature, 2005,435(7040):268-270.
[18] Cukierman E, Pankov R, Stevens DR, et al. Taking cell-matrix adhesions to the third dimension
[J]. Science's STKE, 2001,294(5547):1708.
[19] Norman JJ, Desai TA. Micro and nano engineered extracellular matrices
[M]// Gabriel AS, Vladimir P. Nanotechnology for Biology and Medicine. New York: Springer Science+Business Media, LLC, 2012:101-121.
[20] Sarkar S, Dadhania M, Rourke P, et al. Vascular tissue engineering: microtextured scaffold templates to control organization of vascular smooth muscle cells and extracellular matrix
[J]. Acta biomaterialia,2005,1(1):93-100.
[21] Sarkar S, Lee GY, Wong JY, et al. Development and characterization of a porous micro-patterned scaffold for vascular tissue engineering applications
[J]. Biomaterials, 2006, 27(27):4775-4782.
[22]Alhadlaq A, Mao JJ. Mesenchymal stem cells: isolation and therapeutics
[J]. Stem Cells Dev,2004,13(4):436-448.
[23]Hwang NS, Kim MS, Sampattavanich S, et al. Effects of three-dimensional culture and growth factors on the chondrogenic differentiation of murine embryonic stem cells
[J]. Stem Cells,2006,24(2):284-291.
[24]Koike N, Fukumura D, Gralla O, et al. Tissue engineering: creation of long-lasting blood vessels
[J]. Nature,2004,428(6979):138-139.
[25]Gudjonsson T, R?nnov-Jessen L, Villadsen R, et al. To create the correct microenvironment: three-dimensional heterotypic collagen assays for human breast epithelial morphogenesis and neoplasia
[J]. Methods,2003,30(3):247-255.
/
〈 |
|
〉 |