Close

Search results


Your search returned 10 results.


Human pluripotent stem cell-derived atrioventricular node-like pacemaker cells exhibit biological conduction bridge properties in vitro and in vivo

Michelle Lohbihler, Amos A. Lim, Stéphane Massé, et al.

Selected by 27 October 2025

Theodora Stougiannou

Bioengineering

Epicardial Tcf21 facilitates cardiomyocyte dedifferentiation and heart regeneration in zebrafish

Miglė Kalvaitytė-Repečkė, Sofija Gabrilavičiūtė, Kotryna Kvederavičiūtė, et al.

Selected by 13 September 2025

Theodora Stougiannou

Cell Biology

Heart Scar-In-A-Dish: Tissue Culture Platform to Study myocardial Infarct Healing In Vitro

MJ Potter, JD Heywood, SJ Coeyman, et al.

Selected by 28 April 2025

Theodora Stougiannou

Bioengineering

Conserved Chamber-Specific Polyploidy Maintains Heart Function in Drosophila

Archan Chakraborty, Nora G. Peterson, Juliet S. King, et al.

Selected by 03 March 2023

Anastasia Moraiti

Cell Biology

Angiocrine IGFBP3 Spatially Coordinates IGF Signaling During Neonatal Cardiac Regeneration

Shah R. Ali, Waleed Elhelaly, Ngoc Uyen Nhi Nguyen, et al.

Selected by 07 January 2022

Laura Alonso-Herranz

Pathology

Tissue-resident macrophages regulate lymphatic vessel growth and patterning in the developing heart

Thomas J. Cahill, Xin Sun, Christophe Ravaud, et al.

Selected by 25 August 2020

Jonny Coates

Developmental Biology

A Transcriptional Switch Governing Fibroblast Plasticity Underlies Reversibility of Chronic Heart Disease

Michael Alexanian, Pawel F. Przytycki, Rudi Micheletti, et al.

Selected by 11 August 2020

Osvaldo Contreras, Alexander Ward

Cell Biology

BTK operates a phospho-tyrosine switch to regulate NLRP3 inflammasome activity

Zsófia A. Bittner, Xiao Liu, Sangeetha Shankar, et al.

Selected by 14 July 2020

Louise Fraser

Immunology

Cholesterol and matrisome pathways dysregulated in human APOE ε4 glia

Julia TCW, Shuang A. Liang, Lu Qian, et al.

Selected by 12 August 2019

Theresa Pohlkamp

Neuroscience

A metabolic switch from OXPHOS to glycolysis is essential for cardiomyocyte proliferation in the regenerating heart

Hessel Honkoop, Dennis de Bakker, Alla Aharonov, et al.

Selected by 30 January 2019

Andreas van Impel

Developmental Biology