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Mutations in DCHS1 cause mitral valve prolapse

Ronen Durst , Kimberly Sauls , David S. Peal , Annemarieke Devlaming , Katelynn Toomer , et al.
Nature, 2015, Equipe 3, 525 (7567), pp.109--113. ⟨10.1038/nature14670⟩
Article dans une revue hal-01830584v1
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Cardiomyopathie due à la lamine de type A mutée

Anne-Claire Guénantin , Audrey Ibre , Michel Puceat
Médecine/Sciences, 2021, 37 (10), pp.836-839. ⟨10.1051/medsci/2021098⟩
Article dans une revue hal-03379121v1

Antagonistic Activities of Vegfr3/Flt4 and Notch1b Fine-tune Mechanosensitive Signaling during Zebrafish Cardiac Valvulogenesis

Federica Fontana , Timm Haack , Maria Reichenbach , Petra Knaus , Michel Puceat , et al.
Cell Reports, 2020, 32 (2), pp.107883. ⟨10.1016/j.celrep.2020.107883⟩
Article dans une revue hal-03222522v1

A brief overview on iPSC and embryonic stem cell technology

Michel Puceat
Human Gene Therapy, 2018, 29 (12), pp.A5. ⟨10.1016/B978-0-12-398358-9.00030-6⟩
Article dans une revue hal-01991337v1
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GATA1 pathogenic variants disrupt MYH10 silencing during megakaryopoiesis

Paul Saultier , Sandrine Cabantous , Michel Puceat , Franck Peiretti , Timothée Bigot , et al.
Journal of Thrombosis and Haemostasis, 2021, 19 (9), pp.2287-2301. ⟨10.1111/jth.15412⟩
Article dans une revue hal-03374701v1
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Msx1 cre ERT 2 knock-In allele: A useful tool to target embryonic and adult cardiac valves

Tania Papoutsi , Gaelle Odelin , Thomas Moore-Morris , Michel Puceat , José Luis de La Pompa , et al.
Genesis, 2015, 53 (5), pp.337-345. ⟨10.1002/dvg.22856⟩
Article dans une revue istex hal-02545043v1
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Geometrical confinement controls the asymmetric patterning of brachyury in cultures of pluripotent cells

Guillaume Blin , Darren Wisniewski , Catherine Picart , Manuel Théry , Michel Puceat , et al.
Development (Cambridge, England), 2018, 145 (18), pp.dev166025. ⟨10.1242/dev.166025⟩
Article dans une revue hal-01984035v1
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Human pre-valvular endocardial cells derived from pluripotent stem cells recapitulate cardiac pathophysiological valvulogenesis

Tui Neri , Emilye Hiriart , Patrick P. Van Vliet , Emilie Faure , Russell A. Norris , et al.
Nature Communications, 2019, 10, pp.1929. ⟨10.1038/s41467-019-09459-5⟩
Article dans une revue hal-02461454v1
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Differentiation in vivo of cardiac committed human embryonic stem cells in postmyocardial infarcted rats.

André Tomescot , Julia Leschik , Valérie Bellamy , Gilbert Dubois , Emmanuel Messas , et al.
Stem Cells / Stem Cells (Miamisburg), 2007, 25 (9), pp.2200-5. ⟨10.1634/stemcells.2007-0133⟩
Article dans une revue inserm-00149211v1

Cardiac commitment of primate embryonic stem cells

Julia Leschik , Sonia Stefanovic , Benjamin Brinon , Michel Puceat
Nature Protocols, 2008, In press
Article dans une revue inserm-00297337v1

Atrial epicardial adipose tissue derives from epicardial progenitors

N. Suffee , Thomas Moore-Morris , G. Dilanian , P. Farahmand , Michel Puceat , et al.
Cardiovascular Research, 2016, 111 (1), pp.S112
Article dans une revue hal-01469046v1

Molecular Signature of CAID Syndrome: Noncanonical Roles of SGO1 in Regulation of TPF-beta Signaling and Epigenomics

Jessica Piche , Natacha Gosset , Lisa-Marie Legault , Alain Pacis , Andrea Oneglia , et al.
CELLULAR AND MOLECULAR GASTROENTEROLOGY AND HEPATOLOGY, 2019, 7 (2), pp.411-431. ⟨10.1016/j.jcmgh.2018.10.011⟩
Article dans une revue hal-02462186v1
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Prenatal maternal vitamin D deficiency sex‐dependently programs adipose tissue metabolism and energy homeostasis in offspring

Eva Seipelt , Franck Tourniaire , Charlène Couturier , Julien Astier , Béatrice B. Loriod , et al.
FASEB Journal, 2020, 34 (11), pp.14905-14919. ⟨10.1096/fj.201902924RR⟩
Article dans une revue hal-03156949v1

A single cell transcriptomic and clonal analysis depicts valvulogenesis

Batoul Farhat , Ignacio Bordeu , Bernd Jagla , Hugo Blanc , Jean Livet , et al.
2022
Pré-publication, Document de travail hal-03875426v1

Concise Review: Pluripotent Stem Cell-Derived Cardiac Cells, A Promisingă Cell Source for Therapy of Heart Failure: Where Do We Stand?

Elodie Gouadon , Thomas Moore-Morris , Lucienne Smit , Ruben Coronel , Sian E. Harding , et al.
STEM CELLS, 2016, 34 (1), pp.34-43. ⟨10.1002/stem.2205⟩
Article dans une revue hal-01469706v1
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SCHNAPPs -Single Cell sHiNy APPlication(s)

Bernd Jagla , Vincent Rouilly , Michel Puceat , Milena Hasan
[Research Report] Institut Pasteur, Paris. 2020
Rapport hal-02868876v1
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Endocardial Regulation of Cardiac Development

Lara Feulner , Patrick Piet Van Vliet , Michel Puceat , Gregor Andelfinger
Journal of Cardiovascular Development and Disease, 2022, 9 (5), ⟨10.3390/jcdd9050122⟩
Article dans une revue hal-03780347v1

Spontaneous cardiomyocyte differentiation from adipose tissue stroma cells

Valérie Planat-Benard , C. Menard , Mireille André , Michel Puceat , A. Perez , et al.
Circulation Research, 2004, 94 (2), pp.223-9
Article dans une revue hal-00409165v1
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Epigenetic Regulation of Cardiac Differentiation of Embryonic Stem Cells and Tissues.

Imen Jebeniani , Julia Leschik , Michel Puceat
Journal of visualized experiments : JoVE, 2016, 112, pp. e53874. ⟨10.3791/53874⟩
Article dans une revue inserm-01334550v1
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A purified population of multipotent cardiovascular progenitors derived from primate pluripotent stem cells engrafts in postmyocardial infarcted nonhuman primates.

Guillaume Blin , David Nury , Sonia Stefanovic , Tui Neri , Orianne Guillevic , et al.
Journal of Clinical Investigation, 2010, 120 (4), pp.1125-39. ⟨10.1172/JCI40120⟩
Article dans une revue inserm-00451770v1

A fluorescent reporter gene as a marker for ventricular specification in ES-derived cardiac cells

M. Meyer , Marisa Jaconi , Angela Landopoulou , Philippe Fort , Michel Puceat
FEBS Letters, 2000, 478 (1-2), pp.151-158. ⟨10.1016/s0014-5793(00)01839-1⟩
Article dans une revue hal-02267478v1
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Interplay of Oct4 with Sox2 and Sox17: a molecular switch from stem cell pluripotency to specifying a cardiac fate.

Sonia Stefanovic , Nesrine Abboud , Stéphanie Désilets , David Nu , Chad Cowan , et al.
Journal of Cell Biology, 2009, 186 (5), pp.665-73. ⟨10.1083/jcb.200901040⟩
Article dans une revue inserm-00409113v1
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Reactivation of the Epicardium at the Origin of Myocardial Fibro-Fatty Infiltration During the Atrial Cardiomyopathy

Nadine Suffee , Thomas Moore-Morris , Bernd Jagla , Nathalie Mougenot , Gilles Dilanian , et al.
Circulation Research, 2020, 126 (10), pp.1330-1342. ⟨10.1161/CIRCRESAHA.119.316251⟩
Article dans une revue inserm-02546350v1

Mesenchymal transformation of the epicardium contributes to the accumulation of epicardial adipose tissue in the atria

N. Suffee , Thomas Moore-Morris , G. Dilanian , P. Farahmand , Michel Puceat , et al.
European Heart Journal, 2016, 37 (1), pp.897
Article dans une revue hal-01469073v1

Adipose-derived cardiomyogenic cells: in vitro expansion and functional improvement in a mouse model of myocardial infarction

B. Leobon , J. Roncalli , Carine Joffre , M. Mazo , M. Boisson , et al.
Cardiovascular Research, 2009, 83 (4), pp.757-67. ⟨10.1093/cvr/cvp167⟩
Article dans une revue istex hal-00461356v1

Long-Term Functional Benefits of Epicardial Patches as Cell Carriers

Hadhami Hamdi , Valerie Planat-Benard , Alain Bel , Hany Neamatalla , Laetitia Saccenti , et al.
Cell Transplantation, 2014, 23 (1), pp.87-96. ⟨10.3727/096368912X658836⟩
Article dans une revue hal-01545447v1
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Targeting the histone demethylase LSD1 prevents cardiomyopathy in a mouse model of laminopathy

Anne-Claire Guenantin , Imen Jebeniani , Julia Leschik , Erwan Watrin , Gisèle Bonne , et al.
Journal of Clinical Investigation, 2021, 131 (1), ⟨10.1172/JCI136488⟩
Article dans une revue hal-03134235v1
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OCT4-mediated inflammation induces cell reprogramming at the origin of cardiac valve development and calcification

Emily Farrar , Emilye Hiriart , Ablajan Mahmut , Bernd Jagla , David Peal , et al.
Science Advances , 2021, 7 (45), pp.eabf7910. ⟨10.1126/sciadv.abf7910⟩
Article dans une revue hal-03662357v1

Improved Protocol for Cardiac Differentiation and Maturation of Pluripotent Stem Cells

Imen Jebeniani , Shunli Ding , Michel Puceat
Cell-Based Assays Using iPSCs for Drug Development and Testing, 1994, Springer New York, pp.71-77, 2019, Methods in Molecular Biology, ⟨10.1007/978-1-4939-9477-9_6⟩
Chapitre d'ouvrage hal-03586239v1

Progenitor cells seeded collagen patches migrate and differentiate through the failing RV myocardium: which benefit on the RV function?

V. Lambert , J. Boissadier , C. Rucker-Martin , A. Hodzic , E. Le Bret , et al.
Human Gene Therapy, 2016, 27 (11), pp.A31
Article dans une revue hal-01469061v1