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1.
Reprod Fertil Dev ; 13(1): 15-22, 2001.
Artigo em Inglês | MEDLINE | ID: mdl-11545160

RESUMO

The controlled differentiation of pluripotent cells will be a prerequisite for many cell therapies. We have previously reported homogeneous conversion of embryonic stem (ES) cells in vitro to early primitive ectoderm-like (EPL) cells, equivalent to early primitive ectoderm, an obligatory differentiation intermediate between ES cells and somatic cell populations. Early primitive ectoderm-like cells differentiated within aggregates form mesodermal lineages at the expense of ectoderm. In this work we demonstrate that the failure of EPL cells to form ectodermal cell types does not reflect an inherent restriction in developmental potential. Early primitive ectoderm-like cells form ectodermal derivatives such as neurons in response to neural inducers such as retinoic acid, or when differentiated in the environment provided by ES cell embryoid bodies. This could be explained by signals from the extraembryonic cell type visceral endoderm which forms in differentiating ES cell but not EPL cell aggregates. Consistent with this possibility, culture of EPL cell aggregates in the presence of visceral endoderm-like signals did not prevent differentiation of the pluripotent cells, but resulted in suppression of mesoderm formation. These results suggest a role for visceral endoderm in regulation of germ layer specification from pluripotent cells, and can be integrated into a model for cell differentiation in vitro and in vivo.


Assuntos
Miocárdio/citologia , Neurônios/citologia , Células-Tronco/citologia , Northern Blotting , Diferenciação Celular/fisiologia , Linhagem da Célula/fisiologia , Ectoderma/citologia , Ectoderma/fisiologia , Regulação da Expressão Gênica no Desenvolvimento/fisiologia , Microscopia de Fluorescência , Microscopia de Interferência , Microscopia de Contraste de Fase , Neurônios/fisiologia , RNA/química , RNA/isolamento & purificação , Transdução de Sinais/fisiologia , Células-Tronco/fisiologia , Tretinoína/fisiologia
2.
J Cell Sci ; 112 ( Pt 5): 601-12, 1999 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-9973595

RESUMO

The primitive ectoderm of the mouse embryo arises from the inner cell mass between 4.75 and 5.25 days post coitum, around the time of implantation. Positioned at a pivotal time in development, just prior to formation of the three germ layers of the embryo proper, the primitive ectoderm responds directly to the signals generated during gastrulation. We have identified a conditioned medium, MEDII, which caused the homogeneous conversion of ES cells to a morphologically distinct cell population, termed early primitive ectoderm-like (EPL) cells. EPL cells expressed the pluripotent cell markers Oct4, SSEA1 and alkaline phosphatase. However, the formation of EPL cells was accompanied by alterations in Fgf5, Gbx2 and Rex1 expression, a loss in chimaera forming ability, changes in factor responsiveness and modified differentiation capabilities, all consistent with the identification of EPL cells as equivalent to the primitive ectoderm population of the 5.5 to 6.0 days post coitum embryo. EPL cell formation could be reversed in the presence of LIF and withdrawal of MEDII, which suggested that EPL cell formation was not a terminal differentiation event but reflected the ability of pluripotent cells to adopt distinct cell states in response to specific factors. Partial purification of MEDII revealed the presence of two separable biological activities, both of which were required for the induction and maintenance of EPL cells. We show here the first demonstration of uniform differentiation of ES cells in response to biological factors. The formation of primitive ectoderm, both in vivo and in vitro, appears to be an obligatory step in the differentiation of the inner cell mass or ES cells into cell lineages of the embryonic germ layers. EPL cells potentially represent a model for the development of lineage specific differentiation protocols and analysis of gastrulation at a molecular level. An understanding of the active components of MEDII may provide a route for the identification of factors which induce primitive ectoderm formation in vivo.


Assuntos
Ectoderma/citologia , Células-Tronco/citologia , Animais , Antígenos CD/metabolismo , Fatores Biológicos/isolamento & purificação , Fatores Biológicos/farmacologia , Biomarcadores , Células COS , Diferenciação Celular/efeitos dos fármacos , Quimera , Meios de Cultivo Condicionados , Receptor gp130 de Citocina , Ectoderma/efeitos dos fármacos , Ectoderma/metabolismo , Gástrula/citologia , Expressão Gênica , Humanos , Glicoproteínas de Membrana/metabolismo , Camundongos , Transdução de Sinais , Células-Tronco/efeitos dos fármacos , Células-Tronco/metabolismo , Células Tumorais Cultivadas
3.
Reprod Fertil Dev ; 10(1): 31-47, 1998.
Artigo em Inglês | MEDLINE | ID: mdl-9727591

RESUMO

Embryonic stem cells are pluripotent cells derived from the early mouse embryo that can be propagated stably in the undifferentiated state in vitro. They retain the ability to differentiate into all cell types found in an embryonic and adult mouse in vivo, and can be induced to differentiate into many cell types in vitro. Exploitation of ES cell technology for the creation of mice bearing predetermined genetic alterations has received widespread attention because of the sophistication that it brings to the study of gene function in mammals. Analysis of cell differentiation in vitro has also been of value, leading to the identification of novel bioactive factors and the elucidation of cell specification mechanisms. In this paper, we summarise the features of pluripotent cell lines and their applications, foreshadowing the impact that these systems may have on human biology. While the isolation of definitive human pluripotent cell lines has not yet been achieved, potential applications for these cells in the study of human biology, particularly cell specification, can be envisaged. Of particular interest is the possibility that human embryonic stem cells with properties similar to mouse embryonic stem cells might provide a generic system for gene therapy.


Assuntos
Embrião de Mamíferos/citologia , Terapia Genética , Células-Tronco/citologia , Animais , Diferenciação Celular , Linhagem Celular , Desenvolvimento Embrionário e Fetal , Humanos , Camundongos , Transfecção
4.
Reprod Fertil Dev ; 10(7-8): 535-49, 1998.
Artigo em Inglês | MEDLINE | ID: mdl-10612459

RESUMO

Early mammalian embryogenesis is characterised by the coordinated proliferation, differentiation, migration and apoptosis of a pluripotent cell pool that is able to give rise to extraembryonic lineages and all the cell types of the embryo proper. These cells retain pluripotent differentiation capability, defined in this paper as the ability to form all cell types of the embryo and adult, until differentiation into the three embryonic germ layers at gastrulation. Our understanding of pluripotent cell biology and molecular regulation has been hampered by the difficulties associated with experimental manipulation of these cells in vivo. However, a more detailed understanding of pluripotent cell behaviour is emerging from the application of molecular technologies to early mouse embryogenesis. The construction of mouse mutants by gene targeting, mapping of gene expression in vivo, and modelling of cell decisions in vitro are providing insight into the cellular origin, identity and action of key developmental regulators, and the nature of pluripotent cells themselves. In this review we discuss the properties of early embryonic pluripotent cells in vitro and in vivo, focusing on progression from inner cell mass (ICM) cells in the blastocyst to the onset of gastrulation.


Assuntos
Embrião de Mamíferos/citologia , Células-Tronco/citologia , Animais , Diferenciação Celular , Células Cultivadas , Ectoderma/citologia , Desenvolvimento Embrionário e Fetal/genética , Endoderma/citologia , Feminino , Regulação da Expressão Gênica no Desenvolvimento , Marcadores Genéticos , Camundongos , Modelos Biológicos , Mutação , Gravidez
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