Literature DB >> 20335662

A purified population of multipotent cardiovascular progenitors derived from primate pluripotent stem cells engrafts in postmyocardial infarcted nonhuman primates.

Guillaume Blin1, David Nury, Sonia Stefanovic, Tui Neri, Oriane Guillevic, Benjamin Brinon, Valérie Bellamy, Catherine Rücker-Martin, Pascal Barbry, Alain Bel, Patrick Bruneval, Chad Cowan, Julia Pouly, Shoukhrat Mitalipov, Elodie Gouadon, Patrice Binder, Albert Hagège, Michel Desnos, Jean-François Renaud, Philippe Menasché, Michel Pucéat.   

Abstract

Cell therapy holds promise for tissue regeneration, including in individuals with advanced heart failure. However, treatment of heart disease with bone marrow cells and skeletal muscle progenitors has had only marginal positive benefits in clinical trials, perhaps because adult stem cells have limited plasticity. The identification, among human pluripotent stem cells, of early cardiovascular cell progenitors required for the development of the first cardiac lineage would shed light on human cardiogenesis and might pave the way for cell therapy for cardiac degenerative diseases. Here, we report the isolation of an early population of cardiovascular progenitors, characterized by expression of OCT4, stage-specific embryonic antigen 1 (SSEA-1), and mesoderm posterior 1 (MESP1), derived from human pluripotent stem cells treated with the cardiogenic morphogen BMP2. This progenitor population was multipotential and able to generate cardiomyocytes as well as smooth muscle and endothelial cells. When transplanted into the infarcted myocardium of immunosuppressed nonhuman primates, an SSEA-1+ progenitor population derived from Rhesus embryonic stem cells differentiated into ventricular myocytes and reconstituted 20% of the scar tissue. Notably, primates transplanted with an unpurified population of cardiac-committed cells, which included SSEA-1- cells, developed teratomas in the scar tissue, whereas those transplanted with purified SSEA-1+ cells did not. We therefore believe that the SSEA-1+ progenitors that we have described here have the potential to be used in cardiac regenerative medicine.

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Year:  2010        PMID: 20335662      PMCID: PMC2846046          DOI: 10.1172/JCI40120

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  60 in total

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2.  Q2ChIP, a quick and quantitative chromatin immunoprecipitation assay, unravels epigenetic dynamics of developmentally regulated genes in human carcinoma cells.

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Journal:  Stem Cells       Date:  2007-02-01       Impact factor: 6.277

3.  Generation of multipotential mesendodermal progenitors from mouse embryonic stem cells via sustained Wnt pathway activation.

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Journal:  J Biol Chem       Date:  2007-08-21       Impact factor: 5.157

4.  Transplantation of human embryonic stem cell-derived cardiomyocytes improves myocardial performance in infarcted rat hearts.

Authors:  Oren Caspi; Irit Huber; Izhak Kehat; Manhal Habib; Gil Arbel; Amira Gepstein; Lior Yankelson; Doron Aronson; Rafael Beyar; Lior Gepstein
Journal:  J Am Coll Cardiol       Date:  2007-10-23       Impact factor: 24.094

5.  Retinoic acid deficiency alters second heart field formation.

Authors:  Lucile Ryckebusch; Zengxin Wang; Nicolas Bertrand; Song-Chang Lin; Xuan Chi; Robert Schwartz; Stéphane Zaffran; Karen Niederreither
Journal:  Proc Natl Acad Sci U S A       Date:  2008-02-19       Impact factor: 11.205

6.  The Myoblast Autologous Grafting in Ischemic Cardiomyopathy (MAGIC) trial: first randomized placebo-controlled study of myoblast transplantation.

Authors:  Philippe Menasché; Ottavio Alfieri; Stefan Janssens; William McKenna; Hermann Reichenspurner; Ludovic Trinquart; Jean-Thomas Vilquin; Jean-Pierre Marolleau; Barbara Seymour; Jérôme Larghero; Stephen Lake; Gilles Chatellier; Scott Solomon; Michel Desnos; Albert A Hagège
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7.  Ring1-mediated ubiquitination of H2A restrains poised RNA polymerase II at bivalent genes in mouse ES cells.

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Journal:  Nat Cell Biol       Date:  2007-11-25       Impact factor: 28.824

8.  Cardiomyocytes derived from human embryonic stem cells in pro-survival factors enhance function of infarcted rat hearts.

Authors:  Michael A Laflamme; Kent Y Chen; Anna V Naumova; Veronica Muskheli; James A Fugate; Sarah K Dupras; Hans Reinecke; Chunhui Xu; Mohammad Hassanipour; Shailaja Police; Chris O'Sullivan; Lila Collins; Yinhong Chen; Elina Minami; Edward A Gill; Shuichi Ueno; Chun Yuan; Joseph Gold; Charles E Murry
Journal:  Nat Biotechnol       Date:  2007-08-26       Impact factor: 54.908

9.  A cardiac myosin light chain kinase regulates sarcomere assembly in the vertebrate heart.

Authors:  Osamu Seguchi; Seiji Takashima; Satoru Yamazaki; Masanori Asakura; Yoshihiro Asano; Yasunori Shintani; Masakatsu Wakeno; Tetsuo Minamino; Hiroya Kondo; Hidehiko Furukawa; Kenji Nakamaru; Asuka Naito; Tomoko Takahashi; Toshiaki Ohtsuka; Koichi Kawakami; Tadashi Isomura; Soichiro Kitamura; Hitonobu Tomoike; Naoki Mochizuki; Masafumi Kitakaze
Journal:  J Clin Invest       Date:  2007-10       Impact factor: 14.808

10.  Differentiation in vivo of cardiac committed human embryonic stem cells in postmyocardial infarcted rats.

Authors:  André Tomescot; Julia Leschik; Valérie Bellamy; Gilbert Dubois; Emmanuel Messas; Patrick Bruneval; Michel Desnos; Albert A Hagège; Michal Amit; Joseph Itskovitz; Philippe Menasché; Michel Pucéat
Journal:  Stem Cells       Date:  2007-05-31       Impact factor: 6.277

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  134 in total

1.  Collagen scaffolds with or without the addition of RGD peptides support cardiomyogenesis after aggregation of mouse embryonic stem cells.

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Journal:  In Vitro Cell Dev Biol Anim       Date:  2011-09-23       Impact factor: 2.416

Review 2.  Embryonic stem cells for severe heart failure: why and how?

Authors:  Philippe Menasché
Journal:  J Cardiovasc Transl Res       Date:  2012-03-13       Impact factor: 4.132

3.  Methods of cell purification: a critical juncture for laboratory research and translational science.

Authors:  Peter J Amos; Esra Cagavi Bozkulak; Yibing Qyang
Journal:  Cells Tissues Organs       Date:  2011-10-12       Impact factor: 2.481

Review 4.  De novo myocardial regeneration: advances and pitfalls.

Authors:  Khawaja Husnain Haider; Stephanie Buccini; Rafeeq P H Ahmed; Muhammad Ashraf
Journal:  Antioxid Redox Signal       Date:  2010-10-12       Impact factor: 8.401

5.  Monkeying around with cardiac progenitors: hope for the future.

Authors:  Li Qian; Deepak Srivastava
Journal:  J Clin Invest       Date:  2010-03-24       Impact factor: 14.808

Review 6.  Maturing human pluripotent stem cell-derived cardiomyocytes in human engineered cardiac tissues.

Authors:  Nicole T Feric; Milica Radisic
Journal:  Adv Drug Deliv Rev       Date:  2015-05-05       Impact factor: 15.470

7.  Functional expression of the Ca2+ signaling machinery in human embryonic stem cells.

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Journal:  Acta Pharmacol Sin       Date:  2017-07-10       Impact factor: 6.150

8.  Reprogramming adipose tissue-derived mesenchymal stem cells into pluripotent stem cells by a mutant adeno-associated viral vector.

Authors:  Mong-Jen Chen; Yuanqing Lu; Takashi Hamazaki; Hsin-Yin Tsai; Kirsten Erger; Thomas Conlon; Ahmed S Elshikha; Hong Li; Arun Srivastava; Chunli Yao; Mark Brantly; Vince Chiodo; William Hauswirth; Naohiro Terada; Sihong Song
Journal:  Hum Gene Ther Methods       Date:  2013-12-28       Impact factor: 2.396

Review 9.  Progress and prospects for genetic modification of nonhuman primate models in biomedical research.

Authors:  Anthony W S Chan
Journal:  ILAR J       Date:  2013

10.  Embryonic stem cell-derived cardiac myocytes are not ready for human trials.

Authors:  Mark E Anderson; Joshua Goldhaber; Steven R Houser; Michel Puceat; Mark A Sussman
Journal:  Circ Res       Date:  2014-06-16       Impact factor: 17.367

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