Embryonic Stem Cell Differentiation to Definitive Endoderm As a Model of Heterogeneity Onset During Germ Layer Specification.

IF 2 4区 生物学 Q4 CELL BIOLOGY
M N Gordeev, A S Zinovyeva, E E Petrenko, E V Lomert, N D Aksenov, A N Tomilin, E I Bakhmet
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引用次数: 0

Abstract

Embryonic stem cells (ESCs) hold great promise for regenerative medicine thanks to their ability to self-renew and differentiate into somatic cells and the germline. ESCs correspond to pluripotent epiblast - the tissue from which the following three germ layers originate during embryonic gastrulation: the ectoderm, mesoderm, and endoderm. Importantly, ESCs can be induced to differentiate toward various cell types by varying culture conditions, which can be exploited for in vitro modeling of developmental processes such as gastrulation. The classical model of gastrulation postulates that mesoderm and endoderm specification is made possible through the FGF-, BMP-, Wnt-, and Nodal-signaling gradients. Hence, it can be expected that one of these signals should direct ESC differentiation towards specific germ layers. However, ESC specification appears to be more complicated, and the same signal can be interpreted differently depending on the readout. In this research, using chemically defined culture conditions, homogeneous naïve ESCs as a starting cell population, and the Foxa2 gene-driven EGFP reporter tool, we established a robust model of definitive endoderm (DE) specification. This in vitro model features formative pluripotency as an intermediate state acquired by the epiblast in vivo shortly after implantation. Despite the initially homogeneous state of the cells in the model and high Activin concentration during endodermal specification, there remains a cell subpopulation that does not reach the endodermal state. This simple model developed by us can be used to study the origins of cellular heterogeneity during germ layer specification.

胚胎干细胞向最终内胚层分化的异质性模型。
胚胎干细胞(ESCs)具有自我更新和分化成体细胞和生殖细胞的能力,因此在再生医学方面前景广阔。ESCs对应于多能性外胚层——在胚胎原肠胚形成过程中产生以下三个胚层的组织:外胚层、中胚层和内胚层。重要的是,ESCs可以通过不同的培养条件诱导分化为不同的细胞类型,这可以用于体外模拟发育过程,如原肠胚形成。经典的原肠胚形成模型假设通过FGF-、BMP-、Wnt-和node -信号梯度使中胚层和内胚层分化成为可能。因此,可以预期这些信号之一应该指导ESC向特定胚层分化。然而,ESC规范似乎更复杂,相同的信号可以根据读出不同的解释。在本研究中,使用化学定义的培养条件,均质naïve ESCs作为起始细胞群,以及Foxa2基因驱动的EGFP报告工具,我们建立了确定内胚层(DE)规范的稳健模型。这种体外模型的特点是形成多能性是外胚层在植入后不久在体内获得的一种中间状态。尽管模型中细胞的初始均质状态和内胚层规范期间的高激活素浓度,但仍有一个细胞亚群未达到内胚层状态。我们建立的简单模型可用于研究胚层分化过程中细胞异质性的起源。
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来源期刊
Acta Naturae
Acta Naturae 农林科学-林学
CiteScore
3.50
自引率
5.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Acta Naturae is an international journal on life sciences based in Moscow, Russia. Our goal is to present scientific work and discovery in molecular biology, biochemistry, biomedical disciplines and biotechnology. These fields represent the most important priorities for the research and engineering development both in Russia and worldwide. Acta Naturae is also a periodical for those who are curious in various aspects of biotechnological business, innovations in pharmaceutical areas, intellectual property protection and social consequences of scientific progress. The journal publishes analytical industrial surveys focused on the development of different spheres of modern life science and technology. Being a radically new and totally unique journal in Russia, Acta Naturae is useful to both representatives of fundamental research and experts in applied sciences.
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