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Showing 1-20 of 162 results
  1. Definitive Endoderm from EpiSC Aggregates in Matrigel

    This chapter describes the protocol to derive definitive endoderm cells from epiblast stem cells (EpiSCs) via a process analogous to gastrulation in...
    Hisato Kondoh, Mai Fujii in Epiblast Stem Cells
    Protocol 2022
  2. Stability and biosafety of human epidermal stem cell for wound repair: preclinical evaluation

    Background

    Cell therapy is a key technology to prevent sacrificing normal skin. Although some studies have shown the promise of human epidermal stem...

    **aohong Zhao, Xue Li, ... Rixing Zhan in Stem Cell Research & Therapy
    Article Open access 05 January 2023
  3. Establishment of Mouse Epiblast Stem Cells

    Epiblast stem cells are made from the epiblast of mouse post-implantation embryo. They have been critical in the understanding of mammalian...
    Pierre Osteil in Epiblast Stem Cells
    Protocol 2022
  4. Grafting of Epiblast Stem Cell into the Epiblast and Whole-Embryo Imaging to Unveil Lineage Competence

    Here we describe a method to engraft epiblast stem cells (EpiSC) into the epiblast of gastrulation-stage mouse embryo to test the lineage propensity...
    Pierre Osteil, Joshua B. Studdert, Patrick P. L. Tam in Epiblast Stem Cells
    Protocol 2022
  5. Complete Transcriptome Analysis by 5′-End Single-Cell RNA-Seq with Random Priming

    Single-cell transcriptome analysis reveals heterogeneous cell types in complex tissues and leads to unexpected biological findings when compared to...
    Tsukasa Kouno, Piero Carninci, Jay W. Shin in Epiblast Stem Cells
    Protocol 2022
  6. c-Jun as a one-way valve at the naive to primed interface

    Background

    c-Jun is a proto-oncogene functioning as a transcription factor to activate gene expression under many physiological and pathological...

    Dongwei Li, Ling Luo, ... Duanqing Pei in Cell & Bioscience
    Article Open access 14 October 2023
  7. Gastrulation: Its Principles and Variations

    As epiblast cells initiate development into various somatic cells, they undergo a large-scale reorganization, called gastrulation. The gastrulation...
    Chapter 2024
  8. Different Types of Pluripotent Stem Cells Represent Different Developmental Stages

    Pluripotent stem cell lines established from early-stage embryos of mammals or other species represent the embryonic stages before the initiation of...
    Chapter 2024
  9. The Epiblast and Pluripotent Stem Cell Lines

    All somatic cells develop from the epiblast, which occupies the upper layer of two-layered embryos and in most mammals is formed after the...
    Chapter 2024
  10. Epiblast Stem Cells Methods and Protocols

    This book aims to deliver the most up-to-date protocols in using epiblast stem cells (EpiSC) to answer critical questions on mammalian development....
    Pierre Osteil in Methods in Molecular Biology
    Book 2022
  11. Differentiation of EpiLCs on Micropatterned Substrates Generated by Micro-Contact Printing

    During the last decades, signaling pathways responsible for the initiation of gastrulation in mammalian embryos have been identified. However, the...
    Gaël Simon, Jean-Louis Plouhinec, Benoit Sorre in Epiblast Stem Cells
    Protocol 2022
  12. Exploring Chromatin Accessibility in Mouse Epiblast Stem Cells with ATAC-Seq

    The assay for transposase-accessible chromatin using sequencing (ATAC-seq) is used to identify open chromatin regions in cells. This can be used to...
    Nazmus Salehin, Nicole Santucci, ... Patrick P. L. Tam in Epiblast Stem Cells
    Protocol 2022
  13. Esrrb guides naive pluripotent cells through the formative transcriptional programme

    During embryonic development, naive pluripotent epiblast cells transit to a formative state. The formative epiblast cells form a polarized...

    Elena Carbognin, Valentina Carlini, ... Graziano Martello in Nature Cell Biology
    Article 27 April 2023
  14. 3D Enhancer–promoter networks provide predictive features for gene expression and coregulation in early embryonic lineages

    Mammalian embryogenesis commences with two pivotal and binary cell fate decisions that give rise to three essential lineages: the trophectoderm, the...

    Dylan Murphy, Eralda Salataj, ... Effie Apostolou in Nature Structural & Molecular Biology
    Article 05 December 2023
  15. Transformation of Pluripotency States during Morphogenesis of Mouse and Human Epiblast

    Abstract

    The pluripotent status of a cell in vivo is spatio-temporally regulated within embryogenesis and is determined by the processes of...

    V. K. Abdyev, E. V. Alpeeva, ... A. V. Vasiliev in Russian Journal of Developmental Biology
    Article 01 October 2023
  16. NETISCE: a network-based tool for cell fate reprogramming

    The search for effective therapeutic targets in fields like regenerative medicine and cancer research has generated interest in cell fate...

    Lauren Marazzi, Milan Shah, ... Paola Vera-Licona in npj Systems Biology and Applications
    Article Open access 20 June 2022
  17. Derivation of Maternal Epiblast Stem Cells from Haploid Embryos

    Pluripotent cells in the inner cell mass (ICM) or epiblast of mammalian embryos exhibit the capacity to differentiate into all cells represented in...
    Benjamin L. Kidder in Stem Cell Transcriptional Networks
    Protocol 2020
  18. Derivation of Naïve Human Embryonic Stem Cells Using a CHK1 Inhibitor

    Embryonic development is a continuum in vivo . Transcriptional analysis can separate established human embryonic stem cells (hESC) into at least four...

    Carol B. Ware, Erica C. Jonlin, ... Julie Mathieu in Stem Cell Reviews and Reports
    Article Open access 13 September 2023
  19. Allele-specific RNA-seq expression profiling of imprinted genes in mouse isogenic pluripotent states

    Background

    Genomic imprinting, resulting in parent-of-origin specific gene expression, plays a critical role in mammalian development. Here, we apply...

    René A. M. Dirks, Guido van Mierlo, ... Hendrik Marks in Epigenetics & Chromatin
    Article Open access 15 February 2019
  20. Derivation of stable embryonic stem cell-like, but transcriptionally heterogenous, induced pluripotent stem cells from non-permissive mouse strains

    Genetic background is known to play a role in the ability to derive pluripotent, embryonic stem cells (ESC), a trait referred to as permissiveness....

    Tiffany A. Garbutt, Kranti Konganti, ... David W. Threadgill in Mammalian Genome
    Article 04 October 2020
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