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固体载体上生长因子的固定化用于调节干细胞命运。

Immobilization of growth factors on solid supports for the modulation of stem cell fate.

机构信息

Leibniz Institute of Polymer Research Dresden, Max Bergmann Center of Biomaterials, Dresden, Germany.

出版信息

Nat Protoc. 2010 Jun;5(6):1042-50. doi: 10.1038/nprot.2010.70. Epub 2010 May 13.

Abstract

Surface- and matrix-bound signals modulate stem cell fate in vivo and in vitro. This protocol enables the immobilization of a wide range of biomolecules that contain primary amino groups to different types of solid carriers, including glass substrates and standard polystyrene well plates. We describe how thin polymer coatings of poly(octadecene-alt-maleic anhydride) can be used to covalently attach growth factors directly, or through poly(ethylene glycol) spacers, to solid supports at defined concentrations. Surface-immobilized growth factors can be presented over a wide range of concentrations (5-150 ng cm(-2)), as we have previously shown for leukemia inhibitory factor and stem cell factor. Cell activation can be achieved in the presence of adhesion-promoting extracellular matrix proteins. Depending on the methods used, the overall procedure takes 1.5-3 d. In general, the approach can be used to investigate the effect of defined amounts of immobilized growth factors on stem cells and on the maintenance, growth and differentiation of other cell types.

摘要

表面和基质结合的信号在体内和体外调节干细胞命运。本方案可将含有伯氨基的多种生物分子固定到不同类型的固体载体上,包括玻璃基底和标准聚苯乙烯微孔板。我们描述了如何使用聚(十八烯-alt-马来酸酐)的薄聚合物涂层将生长因子直接或通过聚(乙二醇)间隔物以特定浓度共价连接到固体载体上。如我们之前在白血病抑制因子和干细胞因子上所展示的,表面固定的生长因子可以在很宽的浓度范围内(5-150ng/cm(-2))呈现。在促进黏附的细胞外基质蛋白存在下,可以实现细胞激活。根据所使用的方法,整个过程需要 1.5-3 天。一般来说,该方法可用于研究固定化生长因子的特定量对干细胞以及其他细胞类型的维持、生长和分化的影响。

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