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材料官能团对细胞在无图案和微图案表面非特异性黏附和软骨诱导的影响。

Effects of Functional Groups of Materials on Nonspecific Adhesion and Chondrogenic Induction of Mesenchymal Stem Cells on Free and Micropatterned Surfaces.

机构信息

State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, Fudan University , Shanghai 200433, China.

出版信息

ACS Appl Mater Interfaces. 2017 Jul 19;9(28):23574-23585. doi: 10.1021/acsami.7b08339. Epub 2017 Jul 3.

Abstract

Functional groups of materials are known to affect cell behaviors, yet the corresponding effect on stem cell differentiation is always coupled with that of cell spreading; it is thus unclear whether the chemical groups influence cell differentiation directly or via cell spreading indirectly. Herein we used a unique surface patterning technique to decouple the corresponding effects. Mesenchymal stem cells (MSCs) derived from bone marrow were seeded on surfaces coated with alkanethiols with one of four functional end groups (-CH, -OH, -COOH, and -NH) and underwent 9 days of chondrogenic induction. The measurements of quartz crystal microbalance with dissipation confirmed less proteins adsorbed from the cell culture media on the neutral -CH and -OH surfaces than on the charged -COOH and -NH surfaces. The neutral surfaces exhibited less cell spreading and higher extents of chondrogenic differentiation than the charged surfaces, according to the characterizations of immunofluorescence staining and quantitative real-time polymerase chain reaction. We further used a transfer lithography technique to prepare patterned surfaces on nonfouling poly(ethylene glycol) hydrogels to localize single MSCs on microislands with self-assembly monolayers of different alkanethiols, under given microisland areas and thus well-defined spreading areas of cells. While small microislands were always beneficial for chondrogenic induction, we found that the type of functional groups had no significant effect on chondrogenic induction under the given cell spreading areas, implying that the chemical groups influence cell differentiation only indirectly. Our results hence illustrate that functional groups regulate stem cell differentiation via tuning protein adsorption and then nonspecific cell adhesion and thus cell spreading.

摘要

材料的官能团已知会影响细胞行为,但它们对干细胞分化的相应影响总是与细胞铺展有关;因此,不清楚化学基团是直接影响细胞分化,还是通过细胞铺展间接影响细胞分化。在此,我们使用独特的表面图案化技术来分离相应的影响。骨髓来源的间充质干细胞(MSCs)接种在涂有四种官能团(-CH、-OH、-COOH 和 -NH)之一的烷硫醇表面上,并进行了 9 天的软骨诱导。石英晶体微天平的耗散测量证实,中性 -CH 和 -OH 表面从细胞培养基中吸附的蛋白质比带电荷的 -COOH 和 -NH 表面少。根据免疫荧光染色和定量实时聚合酶链反应的特性,中性表面的细胞铺展较少,软骨分化程度较高。我们进一步使用转移光刻技术在非粘性聚(乙二醇)水凝胶上制备图案化表面,在不同烷硫醇自组装单层的微岛上定位单个 MSCs,在给定的微岛面积下,从而可以精确控制细胞的铺展面积。虽然小的微岛总是有利于软骨诱导,但我们发现,在给定的细胞铺展面积下,官能团的类型对软骨诱导没有显著影响,这意味着化学基团仅通过调节蛋白质吸附和随后的非特异性细胞黏附和细胞铺展间接影响细胞分化。我们的结果表明,官能团通过调节蛋白质吸附,进而调节非特异性细胞黏附和细胞铺展,从而调节干细胞分化。

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