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Kenneth D. Poss

Council of Science Editors ·
Area of research
Molecular Biology · Pulmonary and Respiratory Medicine
Research interest
Research interests include Congenital heart defects research, Developmental Biology and Gene Regulation, Coronary Artery Anomalies, and Zebrafish Biomedical Research Applications.
h-index
71
citations
23,814
works
205
NIH funding
primary concept
email

Recent publications

<i>hapln1</i> Defines an Epicardial Cell Subpopulation Required for Cardiomyocyte Expansion During Heart Morphogenesis and Regeneration
Circulation 2022cited by 69position: middledoi
An enhancer-based gene-therapy strategy for spatiotemporal control of cargoes during tissue repair
Cell stem cell 2022cited by 66position: lastdoi
Enhancer selection dictates gene expression responses in remote organs during tissue regeneration
Nature Cell Biology 2022cited by 49position: lastdoi
Identification of enhancer regulatory elements that direct epicardial gene expression during zebrafish heart regeneration
Development 2022cited by 39position: middledoi
Enteroendocrine cells sense bacterial tryptophan catabolites to activate enteric and vagal neuronal pathways
Cell Host & Microbe 2020cited by 302position: middledoi
An array of 60,000 antibodies for proteome-scale antibody generation and target discovery
Science Advances 2020cited by 37position: middledoi
Single-cell analysis uncovers that metabolic reprogramming by ErbB2 signaling is essential for cardiomyocyte proliferation in the regenerating heart
eLife 2019cited by 281position: middledoi
Coronary Revascularization During Heart Regeneration Is Regulated by Epicardial and Endocardial Cues and Forms a Scaffold for Cardiomyocyte Repopulation
Developmental Cell 2019cited by 137position: middledoi
An Array of 60,000 Antibodies for Proteome-Scale Antibody Generation and Target Discovery
bioRxiv (Cold Spring Harbor Laboratory) 2019cited by 6position: middledoi
The epicardium as a hub for heart regeneration
Nature Reviews Cardiology 2018cited by 245position: lastdoi
Cyclopropane Modification of Trehalose Dimycolate Drives Granuloma Angiogenesis and Mycobacterial Growth through Vegf Signaling
Cell Host & Microbe 2018cited by 53position: middledoi
Transcription-factor-dependent enhancer transcription defines a gene regulatory network for cardiac rhythm
eLife 2017cited by 42position: middledoi
Modulation of tissue repair by regeneration enhancer elements
Nature 2016cited by 341position: lastdoi
Nrg1 is an injury-induced cardiomyocyte mitogen for the endogenous heart regeneration program in zebrafish
eLife 2015cited by 306position: lastdoi
Nerves Regulate Cardiomyocyte Proliferation and Heart Regeneration
Developmental Cell 2015cited by 260position: middledoi
Epicardial regeneration is guided by cardiac outflow tract and Hedgehog signalling
Nature 2015cited by 219position: lastdoi
Origin, Specification, and Plasticity of the Great Vessels of the Heart
Current Biology 2015cited by 46position: middledoi
Myocardium and BMP signaling are required for endocardial differentiation
Development 2015cited by 46position: middledoi
Transient laminin beta 1a Induction Defines the Wound Epidermis during Zebrafish Fin Regeneration
PLoS Genetics 2015cited by 44position: lastdoi
Back in Black
Developmental Cell 2015cited by 8position: lastdoi
Hand2 elevates cardiomyocyte production during zebrafish heart development and regeneration
Development 2014cited by 132position: middledoi
Keeping at Arm’s Length during Regeneration
Developmental Cell 2014cited by 53position: lastdoi
The zebrafish as a model for complex tissue regeneration
Trends in Genetics 2013cited by 580position: lastdoi
Fibronectin is deposited by injury-activated epicardial cells and is necessary for zebrafish heart regeneration
Developmental Biology 2013cited by 249position: lastdoi
Translational profiling of cardiomyocytes identifies an early Jak1/Stat3 injury response required for zebrafish heart regeneration
Proceedings of the National Academy of Sciences 2013cited by 207position: lastdoi
<i>In vivo</i> monitoring of cardiomyocyte proliferation to identify chemical modifiers of heart regeneration
Development 2013cited by 192position: lastdoi
An Injury-Responsive Gata4 Program Shapes the Zebrafish Cardiac Ventricle
Current Biology 2013cited by 119position: lastdoi
Transcriptional components of anteroposterior positional information during zebrafish fin regeneration
Development 2013cited by 66position: lastdoi
A novel chemical screening strategy in zebrafish identifies common pathways in embryogenesis and rhabdomyosarcoma development
Development 2013cited by 55position: middledoi
<i>zebraflash</i> transgenic lines for <i>in vivo</i> bioluminescence imaging of stem cells and regeneration in adult zebrafish
Development 2013cited by 53position: lastdoi

Grants

No grants ingested yet.

Frequent collaborators

Jinhu Wang · Emory University9 papers (2013–2022)Matthew Gemberling · Duke University6 papers (2013–2016)Ravi Karra · Duke University6 papers (2013–2016)Amy L. Dickson · Bicycle Therapeutics (United Kingdom)4 papers (2013–2016)Gregory Nachtrab · Stanford University4 papers (2012–2016)Jingli Cao · Cornell University4 papers (2015–2022)Junsu Kang · University of Wisconsin–Madison3 papers (2013–2016)Jianhong Ou · University of Massachusetts Chan Medical School3 papers (2022–2022)Didier Y. R. Stainier · Max Planck Institute for Heart and Lung Research3 papers (2015–2019)Kazu Kikuchi · National Cerebral and Cardiovascular Center3 papers (2012–2013)Vikas Gupta · Yale University3 papers (2012–2013)Jennifer E. Holdway · Southwestern Medical Center3 papers (2012–2013)Wen-Yee Choi · Duke University3 papers (2012–2015)Valerie A. Tornini · University of California, Los Angeles3 papers (2013–2016)Leonard I. Zon · Harvard University2 papers (2013–2013)Chen‐Hui Chen · Academia Sinica2 papers (2013–2015)Lingyun Song · Duke University2 papers (2022–2022) · 2 papers (2019–2022)Alexias Safi · Duke University2 papers (2022–2022)Joseph Goldman · The Ohio State University2 papers (2016–2017)