Embryonic Day 7

Embryonic Day 7 (E7) is a developmental time point marking approximately seven days after fertilization, commonly referenced in mouse embryology to study early body-plan formation. During this stage, gastrulation reorganizes epiblast cells through the primitive streak, producing the three germ layers and establishing embryonic axes that guide subsequent tissue development. In neuroscience, E7 specimens provide a window into the earliest events that position neural progenitors and establish the molecular context for nervous-system patterning. Analyses of gene expression, cell movements, and tissue organization at E7 help connect embryonic development with later neural structure, function, and disease mechanisms.

Embryonic Day 7 - Related Videos

Research

JoVE Journal - Biology

Identification of Pre-weanling 7-Day-Old Mice with Pinna Edge Biopsies

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2025

The protocol presents a novel stepwise approach to producing a pinna-edge biopsy (PEB) in post-natal day (PND) 7 mice for the purpose of identification and simultaneous genotyping.

A System for ex vivo Culturing of Embryonic Pancreas

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Cited by 23 •

2012

Here, we describe a method for isolation, culture and manipulation of mouse embryonic pancreas. This represents an excellent ex vivo system for studying various aspects of pancreatic development, including morphogenesis, differentiation and growth. Pancreatic bud explants can be cultured for several days and used in a range of different applications, including whole-mount immunofluorescence and live imaging.

Research

JoVE Journal - Developmental Biology
Free Sample

Murine Neural Plate Targeting by In Utero Nano-Injection (NEPTUNE) at Embryonic Day 7.5

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2022

In this protocol, we describe how to inject the mouse amniotic cavity at E7.5 with lentivirus, leading to uniform transduction of the entire neural plate, with minimal detrimental effects on survival or embryonic development.

Cell Dissociation from the Tongue Epithelium and Mesenchyme/Connective Tissue of Embryonic-Day 12.5 and 8-Week-Old Mice

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Cited by 2 •

2021

We have developed a generalized protocol to dissociate a large quantity of high-quality single cells from the epithelium and mesenchyme/connective tissue of embryonic and adult mouse tongues.

Cardiac Magnetic Resonance Imaging at 7 Tesla

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Cited by 10 •

2019

The sensitivity gain inherent to ultrahigh field magnetic resonance holds promise for high spatial resolution imaging of the heart. Here, we describe a protocol customized for functional cardiovascular magnetic resonance (CMR) at 7 Tesla using an advanced multi-channel radio-frequency coil, magnetic field shimming and a triggering concept.

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