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本文引用的文献

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Crucial function of histone deacetylase 1 for differentiation of teratomas in mice and humans.组蛋白去乙酰化酶 1 在小鼠和人类畸胎瘤分化中的关键功能。
EMBO J. 2010 Dec 1;29(23):3992-4007. doi: 10.1038/emboj.2010.264. Epub 2010 Oct 22.
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A conserved mechanism for vertebrate mesoderm specification in urodele amphibians and mammals.在有尾两栖类和哺乳动物中,脊椎动物中胚层特化的保守机制。
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Spatial and temporal expression pattern of germ layer markers during human embryonic stem cell differentiation in embryoid bodies.在胚胎体中人类胚胎干细胞分化过程中胚层标记物的时空表达模式。
Histochem Cell Biol. 2010 May;133(5):595-606. doi: 10.1007/s00418-010-0689-7. Epub 2010 Apr 6.
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Epithelial-mesenchymal transition in rhesus monkey embryonic stem cell colonies: the role of culturing conditions.恒河猴胚胎干细胞集落中的上皮-间充质转化:培养条件的作用。
In Vitro Cell Dev Biol Anim. 2010 Jun;46(6):516-28. doi: 10.1007/s11626-010-9272-8. Epub 2010 Feb 5.
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Characterization of gastrulation-stage progenitor cells and their inhibitory crosstalk in human embryoid bodies.人胚状体中胚层诱导前体细胞的特征及其抑制性串扰
Stem Cells. 2010 Jan;28(1):75-83. doi: 10.1002/stem.260.
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Activin/Nodal signalling maintains pluripotency by controlling Nanog expression.激活素/节点信号通路通过控制Nanog表达来维持多能性。
Development. 2009 Apr;136(8):1339-49. doi: 10.1242/dev.033951. Epub 2009 Mar 11.
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Wnt signaling mediates self-organization and axis formation in embryoid bodies.Wnt信号传导介导胚胎体中的自我组织和轴形成。
Cell Stem Cell. 2008 Nov 6;3(5):508-18. doi: 10.1016/j.stem.2008.09.013.
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Regulatory expression of Brachyury and Goosecoid in P19 embryonal carcinoma cells.短尾(Brachyury)和鹅膏蕈氨酸(Goosecoid)在P19胚胎癌细胞中的调控表达。
J Cell Biochem. 2008 Oct 15;105(3):801-13. doi: 10.1002/jcb.21883.
9
Human embryonic stem cells in culture possess primary cilia with hedgehog signaling machinery.培养中的人类胚胎干细胞拥有带有刺猬信号通路机制的初级纤毛。
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10
Establishment of cell polarity by afadin during the formation of embryoid bodies.在胚状体形成过程中afadin介导细胞极性的建立。
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胚胎干细胞来源的胚状体中的自组织现象:心肌发生过程中的轴形成和对称破缺。

Self-organization phenomena in embryonic stem cell-derived embryoid bodies: axis formation and breaking of symmetry during cardiomyogenesis.

机构信息

Max F. Perutz Laboratories, Department of Medical Biochemistry, Division of Molecular Biology, Medical University of Vienna, Vienna, Austria.

出版信息

Cells Tissues Organs. 2012;195(5):377-91. doi: 10.1159/000328712. Epub 2011 Aug 19.

DOI:10.1159/000328712
PMID:21860211
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7615842/
Abstract

Aggregation of embryonic stem cells gives rise to embryoid bodies (EBs) which undergo developmental processes reminiscent of early eutherian embryonic development. Development of the three germ layers suggests that gastrulation takes place. In vivo, gastrulation is a highly ordered process but in EBs only few data support the hypothesis that self-organization of differentiating cells leads to morphology, reminiscent of the early gastrula. Here we demonstrate that a timely implantation-like process is a prerequisite for the breaking of the radial symmetry of suspended EBs. Attached to a surface, EBs develop a bilateral symmetry and presumptive mesodermal cells emerge between the center of the EBs and a horseshoe-shaped ridge of cells. The development of an epithelial sheet of cells on one side of the EBs allows us to define an 'anterior' and a 'posterior' end of the EBs. In the mesodermal area, first cardiomyocytes (CMCs) develop mainly next to this epithelial sheet of cells. Development of twice as many CMCs at the 'left' side of the EBs breaks the bilateral symmetry and suggests that cardiomyogenesis reflects a local or temporal asymmetry in EBs. The asymmetric appearance of CMCs but not the development of mesoderm can be disturbed by ectopic expression of the muscle-specific protein Desmin. Later, the bilateral morphology becomes blurred by an apparently chaotic differentiation of many cell types. The absence of comparable structures in aggregates of cardiovascular progenitor cells isolated from the heart demonstrates that the self-organization of cells during a gastrulation-like process is a unique feature of embryonic stem cells.

摘要

胚胎干细胞的聚集产生胚状体 (EBs),这些胚状体经历类似于早期真兽类胚胎发育的发育过程。三个胚层的发育表明发生了原肠胚形成。在体内,原肠胚形成是一个高度有序的过程,但在 EBs 中,只有很少的数据支持分化细胞的自我组织导致形态类似于早期原肠胚的假说。在这里,我们证明类似于植入的及时过程是打破悬浮 EBs 放射状对称的前提条件。附着在表面上,EBs 发展出双侧对称性,并且假定中胚层细胞出现在 EBs 的中心和马蹄形细胞嵴之间。EBs 一侧上皮细胞层的发育使我们能够定义 EBs 的“前”和“后”端。在中胚层区域,首先主要在这个上皮细胞层旁边发育出心肌细胞 (CMCs)。EBs 左侧两倍数量的 CMCs 的发育打破了双侧对称性,并表明心肌发生反映了 EBs 中的局部或时间不对称性。CMCs 的不对称出现而不是中胚层的发育可以被异位表达肌特异性蛋白 Desmin 所干扰。后来,许多细胞类型的明显混乱分化使双侧形态变得模糊。从心脏中分离的心血管祖细胞的聚集中没有类似的结构,这表明类似于原肠胚形成的过程中的细胞自我组织是胚胎干细胞的独特特征。