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通过酶水凝胶光图案化进行原位细胞操作。

In situ cell manipulation through enzymatic hydrogel photopatterning.

机构信息

1] Institute of Bioengineering, Ecole Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland [2].

出版信息

Nat Mater. 2013 Nov;12(11):1072-8. doi: 10.1038/nmat3766. Epub 2013 Oct 13.

Abstract

The physicochemical properties of hydrogels can be manipulated in both space and time through the controlled application of a light beam. However, methods for hydrogel photopatterning either fail to maintain the bioactivity of fragile proteins and are thus limited to short peptides, or have been used in hydrogels that often do not support three-dimensional (3D) cell growth. Here, we show that the 3D invasion of primary human mesenchymal stem cells can be spatiotemporally controlled by micropatterning the hydrogel with desired extracellular matrix (ECM) proteins and growth factors. A peptide substrate of activated transglutaminase factor XIII (FXIIIa)--a key ECM crosslinking enzyme--is rendered photosensitive by masking its active site with a photolabile cage group. Covalent incorporation of the caged FXIIIa substrate into poly(ethylene glycol) hydrogels and subsequent laser-scanning lithography affords highly localized biomolecule tethering. This approach for the 3D manipulation of cells within gels should open up avenues for the study and manipulation of cell signalling.

摘要

通过光束的控制应用,可以在空间和时间上操纵水凝胶的物理化学性质。然而,水凝胶光图案化的方法要么不能保持脆弱蛋白质的生物活性,因此仅限于短肽,要么已经用于通常不支持三维(3D)细胞生长的水凝胶中。在这里,我们表明通过用所需的细胞外基质(ECM)蛋白和生长因子对水凝胶进行微图案化,可以时空控制原代人骨髓间充质干细胞的 3D 浸润。激活转谷氨酰胺酶因子 XIII(FXIIIa)的肽底物 - 一种关键的 ECM 交联酶 - 通过用光不稳定的笼状基团掩盖其活性位点而变得对光敏感。将笼状 FXIIIa 底物共价掺入聚(乙二醇)水凝胶中,然后进行激光扫描光刻,可获得高度局部化的生物分子固定。这种在凝胶中对细胞进行 3D 操作的方法应该为细胞信号转导的研究和操作开辟途径。

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