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1-14 of 14
Keywords: Cardiomyocyte proliferation
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Journal Articles
Bryana N. Harris, Laura A. Woo, R. Noah Perry, Alexia M. Wallace, Mete Civelek, Matthew J. Wolf, Jeffrey J. Saucerman
Journal:
Development
Series: REVIEW COMMONS TRANSFER
Development (2025) 152 (4): DEV204397.
Published: 17 February 2025
... Competing interests The authors declare no competing or financial interests. 16 9 2024 17 1 2025 © 2025. Published by The Company of Biologists 2025 https://www.biologists.com/user-licence-1-1/ Summary: A computational model of cardiomyocyte proliferation is developed...
Includes: Supplementary data
Journal Articles
In collection:
Focus on the cardiovascular system
Renee G. C. Maas, Floor W. van den Dolder, Qianliang Yuan, Jolanda van der Velden, Sean M. Wu, Joost P. G. Sluijter, Jan W. Buikema
Journal:
Development
Development (2023) 150 (15): dev201483.
Published: 10 August 2023
... Summary: Untangling the drivers of human cardiomyocyte proliferation can stimulate cardiac regenerative approaches. This Review compares in vivo heart growth pathways with the molecular targets promoting in vitro cardiomyocyte proliferation. Cardiomyocyte proliferation Cardiomyocyte production...
Journal Articles
Daniel A. Zuppo, Maria A. Missinato, Lucas Santana-Santos, Guang Li, Panayiotis V. Benos, Michael Tsang
Journal:
Development
Development (2023) 150 (6): dev201163.
Published: 14 March 2023
... cardiac regeneration. Here, we report that the forkhead transcription factor Foxm1 is required for cardiomyocyte proliferation after injury through transcriptional regulation of cell cycle genes. Transcriptomic analysis of injured zebrafish hearts revealed that foxm1 expression is increased in border zone...
Includes: Supplementary data
Journal Articles
Paige DeBenedittis, Anish Karpurapu, Albert Henry, Michael C. Thomas, Timothy J. McCord, Kyla Brezitski, Anil Prasad, Caroline E. Baker, Yoshihiko Kobayashi, Svati H. Shah, Christopher D. Kontos, Purushothama Rao Tata, R. Thomas Lumbers, Ravi Karra
Journal:
Development
Development (2022) 149 (18): dev200654.
Published: 22 September 2022
... , M. J. , Lagor , W. R. , Wehrens , X. H. T. , Martin , J. F. , Pi , X. and Xie , L. ( 2019 ). Depletion of endothelial prolyl hydroxylase domain protein 2 and 3 promotes cardiomyocyte proliferation and prevents ventricular failure induced by myocardial infarction...
Includes: Supplementary data
Journal Articles
Gregory A. Quaife-Ryan, Richard J. Mills, George Lavers, Holly K. Voges, Celine J. Vivien, David A. Elliott, Mirana Ramialison, James E. Hudson, Enzo R. Porrello
Journal:
Development
Development (2020) 147 (22): dev193417.
Published: 30 November 2020
... proliferation. Here, we show that Wnt/β-catenin signalling potentiates neonatal mouse cardiomyocyte proliferation in vivo and immature human pluripotent stem cell-derived cardiomyocyte (hPSC-CM) proliferation in vitro . By contrast, Wnt/β-catenin signalling in adult mice is cardioprotective but fails to induce...
Includes: Supplementary data
Journal Articles
Peilu She, Huifang Zhang, Xiangwen Peng, Jianjian Sun, Bangjun Gao, Yating Zhou, Xuejiao Zhu, Xueli Hu, Kaa Seng Lai, Jiemin Wong, Bin Zhou, Linhui Wang, Tao P. Zhong
Journal:
Development
Development (2020) 147 (18): dev190678.
Published: 28 September 2020
... strategies for regeneration interventions in humans. Grl Hey2 Heart regeneration Cardiomyocyte proliferation Lysine methyltransferase Zebrafish The human heart has limited capacity to regenerate new cardiac muscle after myocardial injury. Instead, impaired myocardium is replaced...
Includes: Supplementary data
Journal Articles
Veronica Uribe, Radhan Ramadass, Deepika Dogra, S. Javad Rasouli, Felix Gunawan, Hiroyuki Nakajima, Ayano Chiba, Sven Reischauer, Naoki Mochizuki, Didier Y. R. Stainier
Journal:
Development
Development (2018) 145 (14): dev164194.
Published: 30 July 2018
...Veronica Uribe; Radhan Ramadass; Deepika Dogra; S. Javad Rasouli; Felix Gunawan; Hiroyuki Nakajima; Ayano Chiba; Sven Reischauer; Naoki Mochizuki; Didier Y. R. Stainier ABSTRACT Cardiomyocyte proliferation is crucial for cardiac growth, patterning and regeneration; however, few studies have...
Includes: Supplementary data
Journal Articles
Maria A. Missinato, Manush Saydmohammed, Daniel A. Zuppo, Krithika S. Rao, Graham W. Opie, Bernhard Kühn, Michael Tsang
Journal:
Development
Development (2018) 145 (5): dev157206.
Published: 6 March 2018
... and Neuregulin play essential roles in stimulating cardiomyocyte proliferation. These factors activate the Ras/MAPK pathway, which is tightly controlled by the feedback attenuator Dual specificity phosphatase 6 (Dusp6), an ERK phosphatase. Here, we show that suppressing Dusp6 function enhances cardiac...
Includes: Supplementary data
Journal Articles
Wei Yu, Xiuzhen Huang, Xueying Tian, Hui Zhang, Lingjuan He, Yue Wang, Yu Nie, Shengshou Hu, Zhiqiang Lin, Bin Zhou, William Pu, Kathy O. Lui, Bin Zhou
Journal:
Development
Development (2016) 143 (6): 936–949.
Published: 15 March 2016
... proliferation and hypertrophy during neonatal heart repair following cryoinjury and apex resection. Heart repair Heart regeneration Cardiomyocyte proliferation GATA4 FGF16 Myocardial infarction is becoming the leading cause of death worldwide. During myocardial infarction, a substantial number...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2015) 142 (23): 4026–4037.
Published: 1 December 2015
....116.304377 Huang , Y. , Harrison , M. R. , Osorio , A. , Kim , J. , Baugh , A. , Duan , C. , Sucov , H. M. and Lien , C.-L. ( 2013 ). Igf signaling is required for cardiomyocyte proliferation during zebrafish heart development and regeneration . PLoS ONE 8...
Includes: Supplementary data
Journal Articles
Jason R. Becker, Sneha Chatterjee, Tamara Y. Robinson, Jeffrey S. Bennett, Daniela Panáková, Cristi L. Galindo, Lin Zhong, Jordan T. Shin, Shannon M. Coy, Amy E. Kelly, Dan M. Roden, Chee Chew Lim, Calum A. MacRae
Journal:
Development
Development (2014) 141 (2): 335–345.
Published: 15 January 2014
... proliferation through inhibition of adenylate cyclase. Conversely, high concentrations of natriuretic peptides reduce cardiomyocyte proliferation through activation of the particulate guanylate cyclase-linked natriuretic peptide receptors Npr1 and Npr2, and activation of protein kinase G. These data link...
Includes: Supplementary data
Journal Articles
Jan Willem Buikema, Ahmed S. Mady, Nikhil V. Mittal, Ayhan Atmanli, Leslie Caron, Pieter A. Doevendans, Joost P. G. Sluijter, Ibrahim J. Domian
Journal:
Development
Development (2013) 140 (20): 4165–4176.
Published: 15 October 2013
... in mass to provide the oxygen delivery demands of embryonic growth. The developing heart must orchestrate regional differences in cardiomyocyte proliferation to control cardiac morphogenesis. During ventricular wall formation, the compact myocardium proliferates more vigorously than the trabecular...
Includes: Supplementary data
Journal Articles
Peng Li, Susana Cavallero, Ying Gu, Tim H. P. Chen, Jennifer Hughes, A. Bassim Hassan, Jens C. Brüning, Mohammad Pashmforoush, Henry M. Sucov
Journal:
Development
Development (2011) 138 (9): 1795–1805.
Published: 1 May 2011
...Peng Li; Susana Cavallero; Ying Gu; Tim H. P. Chen; Jennifer Hughes; A. Bassim Hassan; Jens C. Brüning; Mohammad Pashmforoush; Henry M. Sucov Secreted factors from the epicardium are believed to be important in directing heart ventricular cardiomyocyte proliferation and morphogenesis, although...
Includes: Supplementary data
Journal Articles
Lei Wei, Kyoko Imanaka-Yoshida, Lu Wang, Song Zhan, Michael D. Schneider, Francesco J. DeMayo, Robert J. Schwartz
Journal:
Development
Development (2002) 129 (7): 1705–1714.
Published: 1 April 2002
... factors such as Raldh2, dHAND, GATA4 and MLC2v, by either direct and/or indirect mechanisms through its effect on cardiomyocyte proliferation. To explore the mechanisms by which cell proliferation was affected in the transgenic hearts, semi-quantitative RT-PCR analysis of cell cycle regulators...