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Merck
  • Cell adhesion and sorting in embryoid bodies derived from N- or E-cadherin deficient murine embryonic stem cells.

Cell adhesion and sorting in embryoid bodies derived from N- or E-cadherin deficient murine embryonic stem cells.

Biology open (2014-01-15)
Robert Moore, Wensi Tao, Yue Meng, Elizabeth R Smith, Xiang-Xi Xu
摘要

The primitive endoderm epithelial structure in mouse blastocysts forms following cell differentiation and subsequent sorting, and this two-step process can be reproduced in vitro using an embryoid body model. We found that in the chimeric embryoid bodies consisting of paired wildtype and E-cadherin null ES cells, the wildtype sorted to the center and were enveloped by the less adhesive E-cadherin null cells, in accord with Steinberg's hypothesis. However, wildtype and N-cadherin null ES cells intermixed and did not segregate, a situation that may be explained by Albert Harris' modified principle, which incorporates the unique properties of living cells. Furthermore, in chimeric embryoid bodies composed of N-cadherin and E-cadherin null ES cells, the two weakly interacting cell types segregated but did not envelop one another. Lastly, the most consistent and striking observation was that differentiated cells sorted to the surface and formed an enveloping layer, regardless of the relative cell adhesive affinity of any cell combination, supporting the hypothesis that the ability of the differentiated cells to establish apical polarity is the determining factor in surface sorting and positioning.

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Sigma-Aldrich
CellVue®Claret 远红外荧光细胞交联剂 Midi 试剂盒,用于常规细胞膜标记, Distributed for Phanos Technologies
Sigma-Aldrich
用于常规细胞膜标记的CellVue®深红色荧光细胞连接子Midi试剂盒, Distributed for Phanos Technologies