Asymmetric Hapln1a drives regionalized cardiac ECM expansion and promotes heart morphogenesis in zebrafish development
Cardiovascular Research

Abstract
Vertebrate heart development requires the complex morphogenesis of a linear tube to form the mature organ, a process essential for correct cardiac form and function, requiring coordination of embryonic laterality, cardiac growth, and regionalized cellular changes. While previous studies have demonstrated broad requirements for extracellular matrix (ECM) components in cardiac morphogenesis, we hypothesized that ECM regionalization may fine tune cardiac shape during heart development.
Using live
We identify a regionalized ECM expansion in the heart tube which promotes correct heart development, and propose a novel model whereby embryonic laterality cues orient the axis of ECM asymmetry in the heart, suggesting these two pathways interact to promote robust cardiac morphogenesis.
Contributors

Christopher J Derrick
Author

Juliana Sánchez-Posada
Author

Farah Hussein
Author

Federico Tessadori
Author

Eric J G Pollitt
Author

Aaron M Savage
Author

Robert N Wilkinson
Author

Timothy J Chico
Author

Fredericus J van Eeden
Author

Jeroen Bakkers
Author

Emily S Noël
Author
University of Sheffield Sheffield , United Kingdom of Great Britain & Northern Ireland
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