Mouse RNA-seq time-series of the development of seven major organs
Ontology highlight
ABSTRACT: This dataset covers the development of 7 organs (brain, cerebellum, heart, kidney, liver, ovary and testis) from embryonic day 10.5 to adulthood.
Project description:This dataset covers the development of 7 organs (brain, cerebellum, heart, kidney, liver, ovary and testis) from embryonic day 13.5 to adulthood.
Project description:This dataset covers the development of 7 organs (brain, cerebellum, heart, kidney, liver, ovary and testis) from embryonic day 11 to adulthood.
Project description:This dataset covers the development of 7 organs (brain, cerebellum, heart, kidney, liver, ovary and testis) from embryonic day 12 to adulthood.
Project description:This dataset covers the development of 7 organs (brain, cerebellum, heart, kidney, liver, ovary and testis) from 4 weeks post conception to adulthood (including ageing).
Project description:This dataset covers the development of 7 organs (brain, cerebellum, heart, kidney, liver, ovary and testis) from day 10 post-conception to day 155 post-hatch.
Project description:This dataset covers the development of 6 organs (brain, cerebellum, heart, kidney, liver and testis) from embryonic day 93 to adulthood.
Project description:Using RNA sequencing to map differentially expressed genes in human brain microvascular endothelial cells challenged with Neisseria meningitidis or its ligand MafA .
Project description:Using RNA sequencing to map differentially expressed genes in the 3D model of the blood-brain barrier ( composed of human brain endothelial cells, human astrocytes, and human pericytes) challenged with WNV.
Project description:Using RNA sequencing to map differentially expressed genes in the 3D model of the blood-brain barrier ( composed of human brain endothelial cells, human astrocytes, and human pericytes) challenged with TBEV.
Project description:Using RNA sequencing to map differentially expressed genes in the 3D model of the blood-brain barrier ( composed of human brain endothelial cells, human astrocytes, and human pericytes) challenged with Borrelia garini .