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首页> 外文期刊>Materials science & engineering >The fate of mesenchymal stem cells is greatly influenced by the surface chemistry of silica nanoparticles in 3D hydrogel-based culture systems
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The fate of mesenchymal stem cells is greatly influenced by the surface chemistry of silica nanoparticles in 3D hydrogel-based culture systems

机译:在基于3D水凝胶的培养系统中,二氧化硅纳米颗粒的表面化学极大地影响了间充质干细胞的命运

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Polymeric hydrogel-based 3D scaffolds are well-known structures, being used for cultivation and differentiation of stem cells. However, scalable systems that provide a native-like microenvironment with suitable biological and physical properties are still needed. Incorporation of nanomaterials into the polymeric systems is expected to influence the physical properties of the structure but also the stem cells fate. Here, alginate/gelatin hydrogel beads incorporated with mesoporous silica nanoparticles (MSNs) (average diameter 80.9 +/- 10 nm) and various surface chemistries were prepared. Human adipose-derived mesenchymal stem cells (hASCs) were subsequently encapsulated into the alginate/gelatin/silica hydrogels. Incorporation of amine- and carboxyl-functionalized MSNs (A-MSNs and C-MSNs) significantly enhances the stability of the hydrogel beads. In addition, the expression levels of Nanog and OCT4 imply that the incorporation of A-MSNs into the alginate/gelatin beads significantly improves the proliferation and the sternness of encapsulated hASCs. Importantly, our findings show that the presence of A-MSNs slightly suppresses in vivo inflammation. In contrast, the results of marker gene expression analyses indicate that cultivation of hASCs in alginate beads incorporated with C-MSNs (10% w/w) leads to a heterogeneously differentiated population of the cells, i.e., osteocytes, chondrocytes, and adipocytes, which is not appropriate for both cell culture and differentiation applications.
机译:基于聚合物水凝胶的3D支架是众所周知的结构,用于培养和分化干细胞。然而,仍需要可伸缩的系统,其提供具有合适的生物学和物理特性的类似自然的微环境。预期将纳米材料掺入聚合物系统会影响结构的物理性质,但也会影响干细胞的命运。在此,制备了掺入有中孔二氧化硅纳米粒子(MSN)(平均直径80.9 +/- 10 nm)的藻酸盐/明胶水凝胶珠粒和各种表面化学物质。随后将人脂肪来源的间充质干细胞(hASC)封装到藻酸盐/明胶/二氧化硅水凝胶中。胺和羧基官能化的MSN(A-MSN和C-MSN)的加入显着增强了水凝胶珠的稳定性。此外,Nanog和OCT4的表达水平暗示将A-MSNs掺入藻酸盐/明胶珠中可显着改善封装的hASC的增殖和牢固性。重要的是,我们的发现表明A-MSN的存在会轻微抑制体内炎症。相反,标记物基因表达分析的结果表明,在掺入C-MSNs(10%w / w)的藻酸盐珠粒中培养hASCs会导致细胞(即骨细胞,软骨细胞和脂肪细胞)的异质分化。不适用于细胞培养和分化应用。

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