This article provides a comprehensive analysis of the strategies developed to minimize dark activity in optoNodal reagents, a critical challenge in optogenetic applications.
This article explores the transformative role of light-patterning technologies in controlling synthetic signaling patterns within live embryos.
This article provides a detailed resource for researchers and drug development professionals on the next-generation optoNodal2 reagents for precise control of Nodal signaling.
This article explores the transformative application of optogenetics to control cell internalization processes during gastrulation, a pivotal stage in embryonic development.
This article explores the transformative potential of ultra-widefield microscopy for high-throughput optogenetic light patterning in embryonic research.
This article provides a comprehensive guide to an advanced optogenetic pipeline for precise spatiotemporal control of Nodal signaling in zebrafish embryos.
This article provides a comprehensive exploration of how cells interpret positional cues to form complex tissues and organs during embryonic development.
Gastrulation is a pivotal developmental stage where a uniform cell sheet transforms into the structured embryonic germ layers, a process long thought to be directed solely by biochemical signals.
This article synthesizes current research on how the spatial and temporal dynamics of cellular signaling govern cell fate decisions.
This article provides a comprehensive guide to in situ hybridization (ISH) and immunohistochemistry (IHC) co-localization studies, a cornerstone of spatial biology.