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首页> 外文期刊>Tissue engineering, Part A >Subtle changes in surface chemistry affect embryoid body cell differentiation: Lessons learnt from surface-bound amine density gradients
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Subtle changes in surface chemistry affect embryoid body cell differentiation: Lessons learnt from surface-bound amine density gradients

机译:表面化学的细微变化会影响类胚体细胞的分化:从表面结合的胺浓度梯度中吸取的教训

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Advanced approaches to direct the differentiation of embryonic stem cells are highly sought after. The surface-bound chemical gradient format is a powerful screening approach that can be deployed to study changes in stem cell behavior as a function of subtle changes in surface chemistry. Here, we investigate the spontaneous differentiation of cells derived from differentiating mouse embryoid body (mEB) cells into endoderm, mesoderm, and ectoderm following culture on surface-bound gradients of chemical functional groups in the absence of differentiation-biasing bioactive factors. Gradients were created using a diffusion-controlled plasma polymerization technique. The generated coating ranged from hydrophobic 1,7-octadiene (OD) plasma polymer at one end of the gradient to a more hydrophilic allylamine (AA) plasma polymer on the opposite end. The gradient surface was divided into seven equal regions of progressively increasing AA plasma polymer content and mEB cell response within these regions was compared. Cells adhered preferentially to the central regions of the gradient; however, cell proliferation increased toward AA-plasma-polymer-rich end of the gradient. Variation in the expression of germ layer markers was noted across the gradient surface. High AA:OD plasma polymer ratios triggered cell differentiation toward both mesoderm and ectoderm. Expression of tissue-specific markers, in particular, KRT18, AFP, and TNNT2, was strikingly responsive to subtle changes in surface chemistry, exhibiting vastly different expression levels between adjacent regions. Our results suggest that the surface-bound gradient platform is well suited to screening surface chemistries for use in the field of stem cell technologies and regenerative medicine.
机译:引导胚胎干细胞分化的先进方法受到高度追捧。表面结合化学梯度格式是一种功能强大的筛选方法,可用于研究干细胞行为随表面化学细微变化而变化的行为。在这里,我们研究了在没有分化偏向性生物活性因子的情况下,在化学功能基团的表面结合梯度上进行培养后,将分化自小鼠胚状体(mEB)细胞的细胞自发分化为内胚层,中胚层和外胚层。使用扩散控制的等离子体聚合技术创建渐变。生成的涂层的范围从梯度一端的疏水性1,7-辛二烯(OD)等离子体聚合物到另一端的亲水性更高的烯丙胺(AA)等离子体聚合物。将梯度表面划分为七个逐渐增加的AA血浆聚合物含量的相等区域,并比较这些区域内的mEB细胞反应。细胞优先粘附在梯度的中心区域;然而,细胞增殖朝着梯度的富含AA-血浆聚合物的末端增加。在整个梯度表面上注意到了胚层标记物表达的变化。高的AA:OD血浆聚合物比率触发细胞向中胚层和外胚层分化。组织特异性标志物(尤其是KRT18,AFP和TNNT2)的表达对表面化学的细微变化产生了惊人的反应,在相邻区域之间表现出截然不同的表达水平。我们的结果表明,表面结合梯度平台非常适合筛选用于干细胞技术和再生医学领域的表面化学。

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