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#morula

2 public questions tagged with this topic.

Initial embryonic stage resulting in 16-cell structure:

Initial cleavages increase blastomere number without concomitant growth, as total volume remains constrained by zona pellucida. After three divisions eight-cell stage compacts, fourth cleavage produces sixteen blastomeres forming mulberry-like morula. During morula stage E-cadherin mediated adhesion maximizes cell contact, apicobasal polarity established in outer cells and tight junctions begin forming. Internal cells remain apolar and become ICM progenitors. Morula represents transitional organization between uniform blastomeres and differentiated blastocyst with distinct trophectoderm and inner cell mass lineages preparing for cavitation, hatching and implantation processes.

Ref: Gilbert, Developmental Biology, 12th ed., Chapter 12: Morula stage, compaction and 16-cell formation in mammals.

Successful compaction from morula to blastula involves:

Compaction to form morula requires establishment of strong cell-cell adhesion mediated by E-cadherin, a calcium-dependent adhesion molecule. Extracellular calcium rigidifies cadherin repeats enabling trans-homophilic binding between blastomeres, intracellularly binding beta-catenin which links to alpha-catenin and actin cytoskeleton. Activation and clustering of this cadherin-catenin complex drives blastomere flattening, polarization, tighter apposition and induction of tight junction formation. Blockage of cadherin or removal of calcium prevents compaction, while calcium ionophores alone without cadherin function insufficient. Successful compaction therefore depends on coordinated calcium influx and functional cadherin-beta-catenin assembly orchestrating Hippo pathway mediated lineage segregation.

Ref: Maître JL et al., Nature Cell Biology 2015: E-cadherin beta-catenin regulation of compaction and Hippo mediated cell fate.