AbstractThe bioelectrical signatures associated with regeneration, wound healing, development, and cancer are changes in the polarization state of the cell that persist over long durations, and are mediated by ion channel activity. To identify physiologically relevant bioelectrical changes that occur during normal development of the sea urchin Lytechinus variegatus, we tested a range of ion channel inhibitors, and thereby identified SCH28080, a chemical inhibitor of the H+/K+ ATPase (HKA), as an inhibitor of skeletogenesis. In sea urchin embryos, the primary mesodermal lineage, the PMCs, produce biomineral in response to signals from the ectoderm. However, in SCH28080-treated embryos, aside from randomization of the left-right axis, the ect...
Sea urchin embryos construct their skeleton following a precise gene-regulated time- and space-depen...
Otopetrins comprise a family of proton-selective channels that are critically important for the mine...
SummaryBiophysical signaling is required for both embryonic polarity and regenerative outgrowth. Exp...
AbstractThe bioelectrical signatures associated with regeneration, wound healing, development, and c...
Bioelectricity refers to differential membrane voltage and cytoplasmic ion concentrations in tissues...
The sea urchin embryo develops a calcitic endoskeleton through intracellular formation of amorphous ...
Echinoderms have an extensive endoskeleton composed of magnesian calcite, a form of calcium carbonat...
Studies aiming to predict the impact on marine life of ocean acidification and of altered salinity h...
Studies aiming to predict the impact on marine life of ocean acidification and of altered salinity h...
Previous studies have shown fertilization and development of marine species can be significantly inh...
Echinoderms have an extensive endoskeleton composed of magnesian calcite and occluded matrix protein...
Skeletogenesis is a key morphogenetic event in the life of marine invertebrates. Marine calcifiers ...
Biomineralization is the process by which organisms use minerals to harden their tissues and provide...
Different non-excitable cells have been found to have different resting membrane potentials. Changes...
Carbonic anhydrases (CANs) are conserved metalloenzymes catalysing the reversible hydration of carbo...
Sea urchin embryos construct their skeleton following a precise gene-regulated time- and space-depen...
Otopetrins comprise a family of proton-selective channels that are critically important for the mine...
SummaryBiophysical signaling is required for both embryonic polarity and regenerative outgrowth. Exp...
AbstractThe bioelectrical signatures associated with regeneration, wound healing, development, and c...
Bioelectricity refers to differential membrane voltage and cytoplasmic ion concentrations in tissues...
The sea urchin embryo develops a calcitic endoskeleton through intracellular formation of amorphous ...
Echinoderms have an extensive endoskeleton composed of magnesian calcite, a form of calcium carbonat...
Studies aiming to predict the impact on marine life of ocean acidification and of altered salinity h...
Studies aiming to predict the impact on marine life of ocean acidification and of altered salinity h...
Previous studies have shown fertilization and development of marine species can be significantly inh...
Echinoderms have an extensive endoskeleton composed of magnesian calcite and occluded matrix protein...
Skeletogenesis is a key morphogenetic event in the life of marine invertebrates. Marine calcifiers ...
Biomineralization is the process by which organisms use minerals to harden their tissues and provide...
Different non-excitable cells have been found to have different resting membrane potentials. Changes...
Carbonic anhydrases (CANs) are conserved metalloenzymes catalysing the reversible hydration of carbo...
Sea urchin embryos construct their skeleton following a precise gene-regulated time- and space-depen...
Otopetrins comprise a family of proton-selective channels that are critically important for the mine...
SummaryBiophysical signaling is required for both embryonic polarity and regenerative outgrowth. Exp...