BMP signaling promotes zebrafish heart regeneration via alleviation of replication stress.
Vasudevarao MD. et al, (2025), Nat Commun, 16
From pumps to pipes: A special issue on mechanisms of cardiovascular development
Mommersteeg M. and Hogan BM., (2024), Developmental Dynamics, 253, 6 - 7
Tissue-Specific Roles for the Slit-Robo Pathway During Heart, Caval Vein, and Diaphragm Development.
Zhao J. et al, (2022), J Am Heart Assoc, 11
Discordant Genome Assemblies Drastically Alter the Interpretation of Single-Cell RNA Sequencing Data Which Can Be Mitigated by a Novel Integration Method
Potts HG. et al, (2022), Cells, 11, 608 - 608
A chromosome-level genome of Astyanax mexicanus surface fish for comparing population-specific genetic differences contributing to trait evolution.
Warren WC. et al, (2021), Nat Commun, 12
Unlocking the Secrets of the Regenerating Fish Heart: Comparing Regenerative Models to Shed Light on Successful Regeneration.
Potts HG. et al, (2021), J Cardiovasc Dev Dis, 8
T-box transcription factor 3 governs a transcriptional program for the function of the mouse atrioventricular conduction system.
Mohan RA. et al, (2020), Proc Natl Acad Sci U S A
Runx1 promotes scar deposition and inhibits myocardial proliferation and survival during zebrafish heart regeneration.
Koth J. et al, (2020), Development, 147
Runx1 promotes scar deposition and inhibits myocardial proliferation and survival during zebrafish heart regeneration
MOMMERSTEEG M. et al, (2020), Development
Talkin’ ‘bout regeneration: New advances in cardiac regeneration using the zebrafish
Smith KA. and Mommersteeg MTM., (2020), Current Opinion in Physiology
Heart Regeneration in the Mexican Cavefish.
Stockdale WT. et al, (2018), Cell Rep, 25, 1997 - 2007.e7
The developmental origin of heart size and shape differences in Astyanax mexicanus populations.
Tang JLY. et al, (2018), Dev Biol, 441, 272 - 284
Embryonic Tbx3+ cardiomyocytes form the mature cardiac conduction system by progressive fate restriction.
Mohan RA. et al, (2018), Development, 145
Slit-Robo signalling in heart development.
Zhao J. and Mommersteeg MTM., (2018), Cardiovasc Res, 114, 794 - 804
Loss of function in ROBO1 is associated with tetralogy of Fallot and septal defects.
Kruszka P. et al, (2017), J Med Genet, 54, 825 - 829
Disrupted Slit-Robo signalling results in membranous ventricular septum defects and bicuspid aortic valves.
Mommersteeg MTM. et al, (2015), Cardiovasc Res, 106, 55 - 66