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Profile Publications (11)
XB-PERS-2172

Publications By Mungo Marsden

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From genes to neural tube defects (NTDs): insights from multiscale computational modeling., Brodland GW, Chen X, Lee P, Marsden M., HFSP J. June 1, 2010; 4 (3-4): 142-52.


Integrin alpha5beta1 function is regulated by XGIPC/kermit2 mediated endocytosis during Xenopus laevis gastrulation., Spicer E, Suckert C, Al-Attar H, Marsden M., PLoS One. May 17, 2010; 5 (5): e10665.   


Mechanism of Xenopus cranial neural crest cell migration., Alfandari D, Cousin H, Marsden M., Cell Adh Migr. January 1, 2010; 4 (4): 553-60.


Cadherin adhesion, tissue tension, and noncanonical Wnt signaling regulate fibronectin matrix organization., Dzamba BJ, Jakab KR, Marsden M, Schwartz MA, DeSimone DW., Dev Cell. March 1, 2009; 16 (3): 421-32.


Integrin alpha5beta1 and fibronectin regulate polarized cell protrusions required for Xenopus convergence and extension., Davidson LA, Marsden M, Keller R, Desimone DW., Curr Biol. May 9, 2006; 16 (9): 833-44.   


The Xenopus embryo as a model system for studies of cell migration., DeSimone DW, Davidson L, Marsden M, Alfandari D., Methods Mol Biol. January 1, 2005; 294 235-45.


Multicellular computer simulation of morphogenesis: blastocoel roof thinning and matrix assembly in Xenopus laevis., Longo D, Peirce SM, Skalak TC, Davidson L, Marsden M, Dzamba B, DeSimone DW., Dev Biol. July 1, 2004; 271 (1): 210-22.   


Integrin-ECM interactions regulate cadherin-dependent cell adhesion and are required for convergent extension in Xenopus., Marsden M, DeSimone DW., Curr Biol. July 15, 2003; 13 (14): 1182-91.   


Differential regulation of cell adhesive functions by integrin alpha subunit cytoplasmic tails in vivo., Na J, Marsden M, DeSimone DW., J Cell Sci. June 1, 2003; 116 (Pt 11): 2333-43.


Regulation of cell polarity, radial intercalation and epiboly in Xenopus: novel roles for integrin and fibronectin., Marsden M, DeSimone DW., Development. September 1, 2001; 128 (18): 3635-47.   


The induction of pyruvate kinase synthesis by heat shock in Xenopus laevis embryos., Marsden M, Nickells RW, Kapoor M, Browder LW., Dev Genet. January 1, 1993; 14 (1): 51-7.

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