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2018

Journal Article

Evidence for minimal cardiogenic potential of stem cell sntigen 1-positive cells in the adult mouse heart

Neidig, Lauren E., Weinberger, Florian, Palpant, Nathan J., Mignone, John, Martinson, Amy M., Sorensen, Daniel W., Bender, Ingrid, Nemoto, Natsumi, Reinecke, Hans, Pabon, Lil, Molkentin, Jeffery D., Murry, Charles E. and van Berlo, Jop H. (2018). Evidence for minimal cardiogenic potential of stem cell sntigen 1-positive cells in the adult mouse heart. Circulation, 138 (25), 2960-2962. doi: 10.1161/CIRCULATIONAHA.118.035273

Evidence for minimal cardiogenic potential of stem cell sntigen 1-positive cells in the adult mouse heart

2018

Journal Article

Single-cell transcriptomic analysis of cardiac differentiation from human PSCs reveals HOPX-dependent cardiomyocyte maturation

Friedman, Clayton E., Nguyen, Quan, Lukowski, Samuel W., Helfer, Abbigail, Chiu, Han Sheng, Miklas, Jason, Levy, Shiri, Suo, Shengbao, Han, Jing-Dong Jackie, Osteil, Pierre, Peng, Guangdun, Jing, Naihe, Baillie, Greg J., Senabouth, Anne, Christ, Angelika N., Bruxner, Timothy J., Murry, Charles E., Wong, Emily S., Ding, Jun, Wang, Yuliang, Hudson, James, Ruohola-Baker, Hannele, Bar-Joseph, Ziv, Tam, Patrick P.L., Powell, Joseph E. and Palpant, Nathan J. (2018). Single-cell transcriptomic analysis of cardiac differentiation from human PSCs reveals HOPX-dependent cardiomyocyte maturation. Cell Stem Cell, 23 (4), 586-598. doi: 10.1016/j.stem.2018.09.009

Single-cell transcriptomic analysis of cardiac differentiation from human PSCs reveals HOPX-dependent cardiomyocyte maturation

2018

Journal Article

Genetic lineage tracing of Sca-1 cells reveals endothelial but not myogenic contribution to the murine heart

Vagnozzi, Ronald J., Sargent, Michelle A., Lin, Suh-Chin J., Palpant, Nathan J., Murry, Charles E. and Molkentin, Jeffery D. (2018). Genetic lineage tracing of Sca-1 cells reveals endothelial but not myogenic contribution to the murine heart. Circulation, 138 (25), CIRCULATIONAHA.118.035210-2939. doi: 10.1161/CIRCULATIONAHA.118.035210

Genetic lineage tracing of Sca-1 cells reveals endothelial but not myogenic contribution to the murine heart

2018

Journal Article

Single-cell RNA-seq of human induced pluripotent stem cells reveals cellular heterogeneity and cell state transitions between subpopulations

Nguyen, Quan H., Lukowski, Samuel W., Chiu, Han Sheng, Senabouth, Anne, Bruxner, Timothy J.C., Christ, Angelika N., Palpant, Nathan J. and Powell, Joseph E. (2018). Single-cell RNA-seq of human induced pluripotent stem cells reveals cellular heterogeneity and cell state transitions between subpopulations. Genome Research, 28 (7), 1053-1066. doi: 10.1101/gr.223925.117

Single-cell RNA-seq of human induced pluripotent stem cells reveals cellular heterogeneity and cell state transitions between subpopulations

2018

Journal Article

ALPK2 promotes cardiogenesis in zebrafish and human pluripotent stem cells

Hofsteen, Peter, Robitaille, Aaron Mark, Strash, Nicholas, Palpant, Nathan, Moon, Randall T., Pabon, Lil and Murry, Charles E. (2018). ALPK2 promotes cardiogenesis in zebrafish and human pluripotent stem cells. iScience, 2, 88-100. doi: 10.1016/j.isci.2018.03.010

ALPK2 promotes cardiogenesis in zebrafish and human pluripotent stem cells

2018

Journal Article

Inducible CRISPR genome editing platform in naive human embryonic stem cells reveals JARID2 function in self-renewal

Ferreccio, Amy, Mathieu, Julie, Detraux, Damien, Logeshwaran, Somasundaram, Cavanaugh, Christopher, Sopher, Bryce, Fischer, Karin, Bello, Thomas, Hussein, Assis M., Levy, Shiri, Cook, Savannah, Sidhu, Sonia B, Artoni, Filippo, Palpant, Nathan J., Reinecke, Hans, Wang, Yuliang, Paddison, Patrick, Murry, Charles, Jayadev, Suman, Ware, Carol and Ruohola-Baker, Hannele (2018). Inducible CRISPR genome editing platform in naive human embryonic stem cells reveals JARID2 function in self-renewal. Cell Cycle, 17 (5), 1-15. doi: 10.1080/15384101.2018.1442621

Inducible CRISPR genome editing platform in naive human embryonic stem cells reveals JARID2 function in self-renewal

2017

Journal Article

Subtle modifications to oxytocin produce ligands that retain potency and improved selectivity across species

Muttenthaler, Markus, Andersson, Asa, Vetter, Irina, Menon, Rohit, Busnelli, Marta, Ragnarsson, Lotten, Bergmayr, Christian, Arrowsmith, Sarah, Deuis, Jennifer R., Chiu, Han Sheng, Palpant, Nathan J., O'Brien, Margaret, Smith, Terry J., Wray, Susan, Neumann, Inga D., Gruber, Christian W., Lewis, Richard J. and Alewood, Paul F. (2017). Subtle modifications to oxytocin produce ligands that retain potency and improved selectivity across species. Science Signaling, 10 (508) eaan3398, 1-13. doi: 10.1126/scisignal.aan3398

Subtle modifications to oxytocin produce ligands that retain potency and improved selectivity across species

2017

Journal Article

A transcribed enhancer dictates mesendoderm specification in pluripotency

Alexanian, Michael, Maric, Daniel, Jenkinson, Stephen P., Mina, Marco, Friedman, Clayton E., Ting, Ching-Chia, Micheletti, Rudi, Plaisance, Isabelle, Nemir, Mohamed, Maison, Damien, Kernen, Jasmin, Pezzuto, Iole, Villeneuve, Dominic, Burdet, Frederic, Ibberson, Mark, Leib, Stephen L., Palpant, Nathan J., Hernandez, Nouria, Ounzain, Samir and Pedrazzini, Thierry (2017). A transcribed enhancer dictates mesendoderm specification in pluripotency. Nature Communications, 8 (1) 1806, 1-19. doi: 10.1038/s41467-017-01804-w

A transcribed enhancer dictates mesendoderm specification in pluripotency

2017

Journal Article

Chromatin and transcriptional analysis of mesoderm progenitor cells identifies HOPX as a regulator of primitive hematopoiesis

Palpant, Nathan J., Wang, Yuliang, Hadland, Brandon, Zaunbrecher, Rebecca J., Redd, Meredith, Jones, Daniel, Pabon, Lil, Jain, Rajan, Epstein, Jonathan, Ruzzo, Walter L., Zheng, Ying, Bernstein, Irwin, Margolin, Adam and Murry, Charles E. (2017). Chromatin and transcriptional analysis of mesoderm progenitor cells identifies HOPX as a regulator of primitive hematopoiesis. Cell Reports, 20 (7), 1597-1608. doi: 10.1016/j.celrep.2017.07.067

Chromatin and transcriptional analysis of mesoderm progenitor cells identifies HOPX as a regulator of primitive hematopoiesis

2017

Journal Article

Nkx2.5 marks angioblasts that contribute to hemogenic endothelium of the endocardium and dorsal aorta

Zamir, Lyad, Singh, Reena, Nathan, Elisha, Patrick, Ralph, Yifa, Oren, Yahalom-Ronen, Yfat, Arrafi, Alaa A., Schultheiss, Thomas M., Suo, Shengbao, Han, Jing-Dong Jackie, Peng, Guangdun, Jing, Naihe, Wang, Yuliang, Palpant, Nathan, Tam, Patrick P. L., Harveyz, Richard P. and Tzahor, Eldad (2017). Nkx2.5 marks angioblasts that contribute to hemogenic endothelium of the endocardium and dorsal aorta. ELife, 6 e20994. doi: 10.7554/eLife.20994

Nkx2.5 marks angioblasts that contribute to hemogenic endothelium of the endocardium and dorsal aorta

2017

Journal Article

Generating high-purity cardiac and endothelial derivatives from patterned mesoderm using human pluripotent stem cells

Palpant, Nathan J., Pabon, Lil, Friedman, Clayton E., Roberts, Meredith, Hadland, Brandon, Zaunbrecher, Rebecca J., Bernstein, Irwin, Zheng, Ying and Murry, Charles E. (2017). Generating high-purity cardiac and endothelial derivatives from patterned mesoderm using human pluripotent stem cells. Nature Protocols, 12 (1), 15-31. doi: 10.1038/nprot.2016.153

Generating high-purity cardiac and endothelial derivatives from patterned mesoderm using human pluripotent stem cells

2016

Journal Article

Erratum to: Statistically based splicing detection reveals neural enrichment and tissue-specific induction of circular RNA during human fetal development [Genome Biology, 16, (2016) (126)], DOI: 10.1186/s13059-015-0690-5

Szabo, Linda, Morey, Robert, Palpant, Nathan J., Wang, Peter L., Afari, Nastaran, Jiang, Chuan, Parast, Mana M., Murry, Charles E., Laurent, Louise C. and Salzman, Julia (2016). Erratum to: Statistically based splicing detection reveals neural enrichment and tissue-specific induction of circular RNA during human fetal development [Genome Biology, 16, (2016) (126)], DOI: 10.1186/s13059-015-0690-5. Genome Biology, 17 (1) 263. doi: 10.1186/s13059-016-1123-9

Erratum to: Statistically based splicing detection reveals neural enrichment and tissue-specific induction of circular RNA during human fetal development [Genome Biology, 16, (2016) (126)], DOI: 10.1186/s13059-015-0690-5

2016

Journal Article

The developmental origins and lineage contributions of endocardial endothelium

Nakano, Atsushi, Nakano, Haruko, Smith, Kelly A. and Palpant, Nathan J. (2016). The developmental origins and lineage contributions of endocardial endothelium. Biochimica et Biophysica Acta. Molecular Cell Research, 1863 (7), 1937-1947. doi: 10.1016/j.bbamcr.2016.01.022

The developmental origins and lineage contributions of endocardial endothelium

2015

Journal Article

Statistically based splicing detection reveals neural enrichment and tissue-specific induction of circular RNA during human fetal development

Szabo, Linda, Morey, Robert, Palpant, Nathan J., Wang, Peter L., Afari, Nastaran, Jiang, Chuan, Parast, Mana M., Murry, Charles E., Laurent, Louise C. and Salzman, Julia (2015). Statistically based splicing detection reveals neural enrichment and tissue-specific induction of circular RNA during human fetal development. Genome Biology, 16 (1) 126. doi: 10.1186/s13059-015-0690-5

Statistically based splicing detection reveals neural enrichment and tissue-specific induction of circular RNA during human fetal development

2015

Journal Article

Cardiac development in zebrafish and human embryonic stem cells is inhibited by exposure to tobacco cigarettes and ecigarettes

Palpant, Nathan J., Hofsteen, Peter, Pabon, Lil, Reinecke, Hans and Murry, Charles E. (2015). Cardiac development in zebrafish and human embryonic stem cells is inhibited by exposure to tobacco cigarettes and ecigarettes. PLoS ONE, 10 (5) 0126259, e0126259.1-e0126259. 19. doi: 10.1371/journal.pone.0126259

Cardiac development in zebrafish and human embryonic stem cells is inhibited by exposure to tobacco cigarettes and ecigarettes

2015

Journal Article

Inhibition of β-catenin signaling respecifies anterior-like endothelium into beating human cardiomyocytes

Palpant, Nathan J., Pabon, Lil, Roberts, Meredith, Hadland, Brandon, Jones, Daniel, Jones, Christina, Moon, Randall T., Ruzzo, Walter L., Bernstein, Irwin, Zheng, Ying and Murry, Charles E. (2015). Inhibition of β-catenin signaling respecifies anterior-like endothelium into beating human cardiomyocytes. Development (Cambridge), 142 (18), 3198-3209. doi: 10.1242/dev.117010

Inhibition of β-catenin signaling respecifies anterior-like endothelium into beating human cardiomyocytes

2014

Journal Article

Proliferation at the heart of preadolescence

Palpant, Nathan J. and Murry, Charles E. (2014). Proliferation at the heart of preadolescence. Cell, 157 (4), 765-767. doi: 10.1016/j.cell.2014.04.025

Proliferation at the heart of preadolescence

2014

Journal Article

Human embryonic-stem-cell-derived cardiomyocytes regenerate non-human primate hearts

Chong, James J. H., Yang, Xiulan, Don, Creighton W., Minami, Elina, Liu, Yen-Wen, Weyers, Jill J., Mahoney, William M., Van Biber, Benjamin, Cook, Savannah M., Palpant, Nathan J., Gantz, Jay A., Fugate, James A., Muskheli, Veronica, Gough, G. Michael, Vogel, Keith W., Astley, Cliff A., Hotchkiss, Charlotte E., Baldessari, Audrey, Pabon, Lil, Reinecke, Hans, Gill, Edward A., Nelson, Veronica, Kiem, Hans-Peter, Laflamme, Michael A. and Murry, Charles E. (2014). Human embryonic-stem-cell-derived cardiomyocytes regenerate non-human primate hearts. Nature, 510 (7504), 273-277. doi: 10.1038/nature13233

Human embryonic-stem-cell-derived cardiomyocytes regenerate non-human primate hearts

2013

Journal Article

Transmembrane protein 88: A Wnt regulatory protein that specifies cardiomyocyte development

Palpant, Nathan J., Pabon, Lil, Rabinowitz, Jeremy S., Hadland, Brandon K., Stoick-Cooper, Cristi L., Paige, Sharon L., Bernstein, Irwin D., Moon, Randall T. and Murry, Charles E. (2013). Transmembrane protein 88: A Wnt regulatory protein that specifies cardiomyocyte development. Development (Cambridge), 140 (18), 3799-3808. doi: 10.1242/dev.094789

Transmembrane protein 88: A Wnt regulatory protein that specifies cardiomyocyte development

2013

Journal Article

Cardiopoietry in motion

Murry, Charles E., Palpant, Nathan J. and MacLellan, W. Robb (2013). Cardiopoietry in motion. Journal of the American College of Cardiology, 61 (23), 2339-2340. doi: 10.1016/j.jacc.2013.03.028

Cardiopoietry in motion