Resultados da pesquisa - Matteo A. Molè
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Integrin β1 coordinates survival and morphogenesis of the embryonic lineage upon implantation and pluripotency transition Por Matteo A. Molè, Antonia Weberling, Reinhard Fässler, Alison Campbell, Simon Fishel, Magdalena Zernicka‐Goetz
Publicado em 2021Artigo -
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Vangl2 disruption alters the biomechanics of late spinal neurulation leading to spina bifida in mouse embryos Por Gabriel L. Galea, Oleksandr Nychyk, Matteo A. Molè, Dale Moulding, Dawn Savery, Evanthia Nikolopoulou, Deborah J. Henderson, Nicholas D. E. Greene, Andrew J. Copp
Publicado em 2018Artigo -
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Biomechanical coupling facilitates spinal neural tube closure in mouse embryos Por Gabriel L. Galea, Young-June Cho, Gauden Galea, Matteo A. Molè, Ana Rolo, Dawn Savery, Dale Moulding, Lucy H. Culshaw, Evanthia Nikolopoulou, Nicholas D. E. Greene, Andrew J. Copp
Publicado em 2017Artigo -
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Modelling the impact of decidual senescence on embryo implantation in human endometrial assembloids Por Thomas M. Rawlings, Komal Makwana, Deborah M. Taylor, Matteo A. Molè, Katherine Fishwick, Maria Tryfonos, Joshua Odendaal, Amelia Hawkes, Magdalena Zernicka‐Goetz, Geraldine Hartshorne, Jan J. Brosens, Emma S. Lucas
Publicado em 2021Artigo -
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Integrin-Mediated Focal Anchorage Drives Epithelial Zippering during Mouse Neural Tube Closure Por Matteo A. Molè, Gabriel L. Galea, Ana Rolo, Antonia Weberling, Oleksandr Nychyk, Sandra C. de Castro, Dawn Savery, Reinhard Fässler, Patricia Ybot‐González, Nicholas D. E. Greene, Andrew J. Copp
Publicado em 2020Artigo -
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A single cell characterisation of human embryogenesis identifies pluripotency transitions and putative anterior hypoblast centre Por Matteo A. Molè, Tim H. H. Coorens, Marta N. Shahbazi, Antonia Weberling, Bailey A. T. Weatherbee, Carlos W. Gantner, Carmen Sancho‐Serra, Lucy Richardson, Abbie Drinkwater, Najma Syed, Stephanie Engley, Philip Snell, Leila Christie, Kay Elder, Alison Campbell, Simon Fishel, Sam Behjati, Roser Vento‐Tormo, Magdalena Zernicka‐Goetz
Publicado em 2021Artigo -
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Human embryo polarization requires PLC signaling to mediate trophectoderm specification Por Meng Zhu, Marta N. Shahbazi, Ángel Martín, Chuanxin Zhang, Berna Sözen, Máté Borsos, Rachel S. Mandelbaum, Richard J. Paulson, Matteo A. Molè, Marga Esbert, Shiny Titus, Richard T. W. Scott, Alison Campbell, Simon Fishel, Viviana Gradinaru, Han Zhao, Keliang Wu, Zi‐Jiang Chen, Emre Seli, María José de los Santos, Magdalena Zernicka‐Goetz
Publicado em 2021Artigo
Ferramentas de pesquisa:
Assuntos relacionados
Biology
Cell biology
Embryo
Embryogenesis
Genetics
Anatomy
Gastrulation
Gene
Ectoderm
Embryonic stem cell
Neural fold
Neural plate
Neural tube
Morphogenesis
Neural stem cell
Neuroepithelial cell
Neuroscience
Neurulation
Stem cell
Blastocyst
Epiblast
Fetus
Integrin
Internal medicine
Medicine
Mesoderm
Pregnancy
Receptor
Signal transduction
Actin