Regulation of stem cell differentiation by control of retinoic acid gradients in hydrospun 3D scaffold.
暂无分享,去创建一个
Eyal Zussman | Roey Tzezana | Shulamit Levenberg | E. Zussman | S. Reznik | S. Levenberg | Roey Tzezana | Jacob Blumenthal | Stanislav Reznik | Jacob Blumenthal
[1] E. Zussman,et al. Evolution of a compound droplet attached to a core-shell nozzle under the action of a strong electric field , 2006 .
[2] Julian Lewis,et al. From Signals to Patterns: Space, Time, and Mathematics in Developmental Biology , 2008, Science.
[3] J. Nickerson,et al. Diffusion coefficients of retinoids , 2002, Current eye research.
[4] C. Wilke,et al. Correlation of diffusion coefficients in dilute solutions , 1955 .
[5] A. Kulkarni,et al. Tau Phosphorylation by Cyclin-dependent Kinase 5/p39 during Brain Development Reduces Its Affinity for Microtubules* , 2003, The Journal of Biological Chemistry.
[6] James Briscoe,et al. The interpretation of morphogen gradients , 2006, Development.
[7] M. Ziman,et al. Nestin structure and predicted function in cellular cytoskeletal organisation. , 2005, Histology and histopathology.
[8] M. Rasenick,et al. Tau associates with actin in differentiating PC12 cells , 2006, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[9] Wayne A. Hendrickson,et al. Structure-Function Analysis of Cell Adhesion by Neural (N-) Cadherin , 1998, Neuron.
[10] M. Abramowitz,et al. Handbook of Mathematical Functions With Formulas, Graphs and Mathematical Tables (National Bureau of Standards Applied Mathematics Series No. 55) , 1965 .
[11] C. Ettensohn. The Emergence of Pattern in Embryogenesis: Regulation of β-Catenin Localization During Early Sea Urchin Development , 2006, Science's STKE.
[12] P. Lopresti,et al. Functional implications for the microtubule-associated protein tau: Localization in oligodendrocytes , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[13] Eyal Zussman,et al. Experimental investigation of the governing parameters in the electrospinning of polymer solutions , 2004 .
[14] N. Barkai,et al. Scaling of the BMP activation gradient in Xenopus embryos , 2008, Nature.
[15] Andreas Greiner,et al. Compound Core–Shell Polymer Nanofibers by Co‐Electrospinning , 2003 .
[16] Eyal Zussman,et al. A layered ultra-porous scaffold for tissue engineering, created via a hydrospinning method. , 2008, Tissue engineering. Part C, Methods.
[17] Yaron Blinder,et al. Modeling of flow‐induced shear stress applied on 3D cellular scaffolds: Implications for vascular tissue engineering , 2010, Biotechnology and bioengineering.
[18] P. Savard,et al. Molecular evolution of type VI intermediate filament proteins , 2007, BMC Evolutionary Biology.
[19] W. Bian,et al. A role of N-cadherin in neuronal differentiation of embryonic carcinoma P19 cells. , 2001, Biochemical and biophysical research communications.
[20] J. Howell,et al. Advanced Heat and Mass Transfer , 2010 .
[21] Darrell H. Reneker,et al. Electrospinning of Nanofibers from Polymer Solutions and Melts , 2007 .