Blastomere Isolation

Blastomere isolation is the separation of individual cells, or blastomeres, from an early-stage embryo to examine their properties, potential, and contributions to development. The procedure typically involves removing or opening the surrounding zona pellucida, loosening cell-cell contacts, and gently separating blastomeres through mechanical manipulation or enzymatic dissociation while maintaining cellular viability. Isolated blastomeres can be used to study cell fate decisions, lineage allocation, cleavage-stage development, and cell-to-cell interactions. In developmental biology, this approach helps reveal how early embryonic cells retain or lose developmental potential and supports research on embryo patterning, assisted reproduction, and embryonic cell behavior.

Blastomere Isolation - Related Videos

Research

JoVE EoE - Caenorhabditis elegans (worm)

C. elegans Blastomere Dissection: A Method to Remove the Eggshell and Dissociate Embryonic Cells

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2023

This video introduces a method of isolating C. elegans blastomeres from early embryos. The resulting cells are suitable for cell culture or ex vivo experiments.

Blastomere Explants to Test for Cell Fate Commitment During Embryonic Development

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Cited by 15 •

2013

The fate of an individual embryonic cell can be influenced by inherited molecules and/or by signals from neighboring cells. Utilizing fate maps of the cleavage stage Xenopus embryo, single blastomeres can be identified for culture in isolation to assess the contributions of inherited molecules versus cell-cell interactions.

Isolating Single Cells from Xenopus Early Embryos and Sorting Them by Size

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2026

We describe a method for isolating single cells from Xenopus laevis early embryos and sorting them by cell size.

Transplantation of GFP-expressing Blastomeres for Live Imaging of Retinal and Brain Development in Chimeric Zebrafish Embryos

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Cited by 4 •

2010

We demonstrate a protocol to generate chimeric zebrafish embryos for live imaging cellular behavior during embryogenesis.

In Vitro Reconstitution of Spatial Cell Contact Patterns with Isolated Caenorhabditis elegans Embryo Blastomeres and Adhesive Polystyrene Beads

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Cited by 8 •

2019

Tissue complexities of multicellular systems confound the identification of causal relationship between extracellular cues and individual cellular behaviors. Here, we present a method to study the direct link between contact-dependent cues and division axes using C. elegans embryo blastomeres and adhesive polystyrene beads.

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