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Self-organizing models of human trunk organogenesis recapitulate spinal cord and spine co-morphogenesis
Integrated in vitro models of human organogenesis are needed to elucidate the multi-systemic events underlying development and disease. Here we report the generation of human trunk-like structures that model the co-morphogenesis, patterning and differentiation of the human spine and spinal cord. We identified differentiation conditions for human pluripotent stem cells favoring the formation of an embryo-like extending antero-posterior (AP) axis...

Lancement du programme Cell-ID
Lancement officiel du programme de recherche 22 novembre 2024 Institut Curie Présentation Le programme…
Live-cell micromanipulation of a genomic locus reveals interphase chromatin mechanics | Science
Publication de Veer I. P. Keizer, Simon Grosse-Holz, Maxime Woringer, Laura Zambon, Koceila Aizel, Maud Bongaerts, Fanny Delille, Lorena Kolar-Znika, Vittore F. Scolari, Sebastian Hoffmann, Edward J. Banigan, Leonid A. Mirny, Maxime Dahan, Daniele Fachinetti, Antoine Coulon, dans Science