Apical constriction initiates new bud formation during monopodial branching of the embryonic chicken lung
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Victor D. Varner | Victor D Varner | Celeste M Nelson | C. Nelson | H. Kim | Hye Young Kim | H. Y. Kim
[1] Donald E Ingber,et al. Control of embryonic lung branching morphogenesis by the Rho activator, cytotoxic necrotizing factor 1. , 2002, The Journal of surgical research.
[2] N. K. Wessells,et al. Mammalian lung development: the possible role of cell proliferation in the formation of supernumerary tracheal buds and in branching morphogenesis. , 1979, The Journal of experimental zoology.
[3] Y Nakanishi,et al. Cell proliferation is not required for the initiation of early cleft formation in mouse embryonic submandibular epithelium in vitro. , 1987, Development.
[4] G. Blanchard,et al. Dynamics of actomyosin contractile activity during epithelial morphogenesis. , 2011, Current opinion in cell biology.
[5] Molly J. Harding,et al. Fgfr-Ras-MAPK signaling is required for apical constriction via apical positioning of Rho-associated kinase during mechanosensory organ formation , 2012, Development.
[6] J. Wallingford,et al. Shroom Induces Apical Constriction and Is Required for Hingepoint Formation during Neural Tube Closure , 2003, Current Biology.
[7] L. Taber. Biomechanics of Growth, Remodeling, and Morphogenesis , 1995 .
[8] Jason P. Gleghorn,et al. Inhibitory morphogens and monopodial branching of the embryonic chicken lung , 2012, Developmental dynamics : an official publication of the American Association of Anatomists.
[9] J. Davies,et al. A role for microfilament-based contraction in branching morphogenesis of the ureteric bud. , 2005, Kidney international.
[10] Christopher S. Chen,et al. Mechanotransduction in development: a growing role for contractility , 2009, Nature Reviews Molecular Cell Biology.
[11] D. Ornitz,et al. Signaling networks regulating development of the lower respiratory tract. , 2012, Cold Spring Harbor perspectives in biology.
[12] D. Andrew,et al. Fork head prevents apoptosis and promotes cell shape change during formation of the Drosophila salivary glands. , 2000, Development.
[13] G. Schoenwolf,et al. Towards a cellular and molecular understanding of neurulation , 2001, Developmental dynamics : an official publication of the American Association of Anatomists.
[14] Nobuyuki Itoh,et al. Tube or not tube: remodeling epithelial tissues by branching morphogenesis. , 2003, Developmental cell.
[15] A. Cassini,et al. Induction in vitro of tracheal buds by pulmonary mesenchyme grafted on tracheal epithelium. , 1962, The Journal of experimental zoology.
[16] O. Larsell,et al. The embryology of the bird's lung. Based on observations of the domestic fowl. Part II , 1916 .
[17] J. Sellers,et al. Mechanism of Blebbistatin Inhibition of Myosin II* , 2004, Journal of Biological Chemistry.
[18] M. Llimargas,et al. Regulated Crb accumulation controls apical constriction and invagination in Drosophila tracheal cells , 2011, Journal of Cell Science.
[19] R. Moura,et al. FGF Signaling Pathway in the Developing Chick Lung: Expression and Inhibition Studies , 2011, PloS one.
[20] N. K. Wessells,et al. The role of cell proliferation and cellular shape change in branching morphogenesis of the embryonic mouse lung: analysis using aphidicolin and cytochalasins. , 1984, The Journal of experimental zoology.
[21] D. Andrew,et al. Organ shape in the Drosophila salivary gland is controlled by regulated, sequential internalization of the primordia. , 2000, Development.
[22] J. Azaïs,et al. A Role for Mesenchyme Dynamics in Mouse Lung Branching Morphogenesis , 2012, PloS one.
[23] E. Elson,et al. Effects of cytochalasin D and latrunculin B on mechanical properties of cells. , 2001, Journal of cell science.
[24] W. Cardoso,et al. FGF-10 is a chemotactic factor for distal epithelial buds during lung development. , 1998, Developmental biology.
[25] B. Spooner,et al. Embryonic salivary gland epithelial branching activity is experimentally independent of epithelial expansion activity. , 1989, Developmental biology.
[26] G I Zahalak,et al. Cell mechanics studied by a reconstituted model tissue. , 2000, Biophysical journal.
[27] Timothy J Mitchison,et al. Dissecting Temporal and Spatial Control of Cytokinesis with a Myosin II Inhibitor , 2003, Science.
[28] R. Muraoka,et al. Mesenchymal expression of nuclear factor-kappaB inhibits epithelial growth and branching in the embryonic chick lung. , 2000, Developmental biology.
[29] S. Takeuchi. Wound healing in the cornea of the chick embryo: III. The influence of pore size of millipore filters on the migration of isolated epithelial sheets in culture , 1976 .
[30] S. Takeuchi. Wound healing in the cornea of the chick embryo , 2004, Cell and Tissue Research.
[31] Jessica R. Harrell,et al. Apical constriction: a cell shape change that can drive morphogenesis. , 2010, Developmental biology.
[32] J. Wallingford,et al. Pax6-dependent Shroom3 expression regulates apical constriction during lens placode invagination , 2010, Development.
[33] Eric F. Wieschaus,et al. Pulsed contractions of an actin–myosin network drive apical constriction , 2009, Nature.
[34] Larry A. Taber,et al. Theoretical study of Beloussov’s hyper-restoration hypothesis for mechanical regulation of morphogenesis , 2008, Biomechanics and modeling in mechanobiology.
[35] Jamie A Davies,et al. Do different branching epithelia use a conserved developmental mechanism? , 2002, BioEssays : news and reviews in molecular, cellular and developmental biology.
[36] Arthur Konnerth,et al. Apoptotic Force and Tissue Dynamics During Drosophila Embryogenesis , 2008 .
[37] B. Hogan,et al. Fibroblast growth factor 10 (FGF10) and branching morphogenesis in the embryonic mouse lung. , 1997, Development.
[38] Celeste M Nelson,et al. Endogenous patterns of mechanical stress are required for branching morphogenesis. , 2010, Integrative biology : quantitative biosciences from nano to macro.
[39] Kevin W Eliceiri,et al. NIH Image to ImageJ: 25 years of image analysis , 2012, Nature Methods.
[40] Matthias Kaschube,et al. Volume conservation principle involved in cell lengthening and nucleus movement during tissue morphogenesis , 2012, Proceedings of the National Academy of Sciences.
[41] Scott E. Fraser,et al. Planar cell polarity signalling controls cell division orientation during zebrafish gastrulation , 2004, Nature.
[42] Mark Miodownik,et al. A deformation gradient decomposition method for the analysis of the mechanics of morphogenesis. , 2007, Journal of Biomechanics.
[43] A. Coulombre. The role of intraocular pressure in the development of the chick eye. II. Control of corneal size. , 1957, A.M.A. archives of ophthalmology.
[44] L. Opperman,et al. Induction of supernumerary tracheal buds and the stimulation of DNA synthesis in the embryonic chick lung and trachea by epidermal growth factor. , 1980, Journal of embryology and experimental morphology.
[45] M. Affolter,et al. Tip-Cell Migration Controls Stalk-Cell Intercalation during Drosophila Tracheal Tube Elongation , 2008, Current Biology.
[46] K. Shiota,et al. The cyst-branch difference in developing chick lung results from a different morphogen diffusion coefficient , 2009, Mechanisms of Development.
[47] W. Cardoso,et al. Bud formation precedes the appearance of differential cell proliferation during branching morphogenesis of mouse lung epithelium in vitro , 1998, Developmental dynamics : an official publication of the American Association of Anatomists.
[48] Jason P. Gleghorn,et al. Sculpting organs: mechanical regulation of tissue development. , 2012, Annual review of biomedical engineering.
[49] Lance A Davidson,et al. Actomyosin stiffens the vertebrate embryo during crucial stages of elongation and neural tube closure , 2009, Development.
[50] R. Ladher,et al. FGF Signaling Regulates Cytoskeletal Remodeling during Epithelial Morphogenesis , 2008, Current Biology.
[51] N. K. Wessells. Mammalian lung development: interactions in formation and morphogenesis of tracheal buds. , 1970, The Journal of experimental zoology.
[52] B. Hogan,et al. Preparing for the first breath: genetic and cellular mechanisms in lung development. , 2010, Developmental cell.
[53] Dagmar Iber,et al. Branch Mode Selection during Early Lung Development , 2012, PLoS Comput. Biol..
[54] Xin Sun,et al. Conditional gene inactivation reveals roles for Fgf10 and Fgfr2 in establishing a normal pattern of epithelial branching in the mouse lung , 2009, Developmental dynamics : an official publication of the American Association of Anatomists.
[55] John Tyler Bonner,et al. Morphogenesis , 1965, Cell.
[56] Victor D. Varner,et al. Mechanics of head fold formation: investigating tissue-level forces during early development , 2010, Development.
[57] A. Kuroiwa,et al. Tbx4-Fgf10 system controls lung bud formation during chicken embryonic development , 2003, Development.
[58] Antonio Baonza,et al. The Orientation of Cell Divisions Determines the Shape of Drosophila Organs , 2005, Current Biology.
[59] D. Warburton,et al. Tracheal occlusion increases the rate of epithelial branching of embryonic mouse lung via the FGF10-FGFR2b-Sprouty2 pathway , 2008, Mechanisms of Development.
[60] T. Lecuit,et al. Cell surface mechanics and the control of cell shape, tissue patterns and morphogenesis , 2007, Nature Reviews Molecular Cell Biology.
[61] Larry A Taber,et al. The role of mechanical forces in dextral rotation during cardiac looping in the chick embryo. , 2004, Developmental biology.
[62] Larry A. Taber,et al. Myosin-based contraction is not necessary for cardiac c-looping in the chick embryo , 2006, Anatomy and Embryology.
[63] A. McCulloch,et al. Stress-dependent finite growth in soft elastic tissues. , 1994, Journal of biomechanics.
[64] David Warburton,et al. The molecular basis of lung morphogenesis , 2000, Mechanisms of Development.
[65] Jamie A Davies,et al. Pattern and regulation of cell proliferation during murine ureteric bud development , 2004, Journal of anatomy.
[66] L. Niswander,et al. Multiparametric image analysis of lung‐branching morphogenesis , 2013, Developmental dynamics : an official publication of the American Association of Anatomists.
[67] Mark Miodownik,et al. Stress-dependent morphogenesis: continuum mechanics and truss systems , 2010, Biomechanics and modeling in mechanobiology.
[68] Donald E Ingber,et al. Control of basement membrane remodeling and epithelial branching morphogenesis in embryonic lung by Rho and cytoskeletal tension , 2005, Developmental dynamics : an official publication of the American Association of Anatomists.
[69] W. Marshall,et al. Control of Mitotic Spindle Angle by the RAS-Regulated ERK1/2 Pathway Determines Lung Tube Shape , 2011, Science.
[70] Victor D. Varner,et al. Not just inductive: a crucial mechanical role for the endoderm during heart tube assembly , 2012, Development.
[71] M. Krasnow,et al. Genetic control of branching morphogenesis. , 1999, Science.
[72] Ophir D. Klein,et al. The branching programme of mouse lung development , 2008, Nature.
[73] E. Munro,et al. Sequential Activation of Apical and Basolateral Contractility Drives Ascidian Endoderm Invagination , 2010, Current Biology.
[74] L. Davidson,et al. Punctuated actin contractions during convergent extension and their permissive regulation by the non-canonical Wnt-signaling pathway , 2011, Journal of Cell Science.
[75] Eric F. Wieschaus,et al. folded gastrulation, cell shape change and the control of myosin localization , 2005, Development.