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使用微图案技术调控人间充质干细胞的可塑性

Modulating human mesenchymal stem cell plasticity using micropatterning technique.

作者信息

Tijore Ajay, Wen Feng, Lam Chee Ren Ivan, Tay Chor Yong, Tan Lay Poh

机构信息

Division of Materials Technology, School of Materials Science and Engineering, Nanyang Technological University, Singapore, Singapore.

Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore, Singapore.

出版信息

PLoS One. 2014 Nov 17;9(11):e113043. doi: 10.1371/journal.pone.0113043. eCollection 2014.

Abstract

In our previous work, we have reported that enforced elongation of human mesenchymal stem cells (hMSCs) through micropatterning promoted their myocardial lineage commitment. However, whether this approach is robust enough to retain the commitment when subsequently subjected to different conditions remains unsolved. This de-differentiation, if any, would have significant implication on the application of these myocardial-like hMSCs either as tissue engineered product or in stem cell therapy. Herein, we investigated the robustness of micropatterning induced differentiation by evaluating the retention of myocardial differentiation in patterned hMSCs when challenged with non-myocardial differentiation cues. Altogether, we designed four groups of experiments; 1) Patterned hMSCs cultured in normal growth medium serving as a positive control; 2) Patterned hMSCs cultured in normal growth medium for 14 days followed by osteogenic and adipogenic media for next 7 days (to study the robustness of the effect of micropatterning); 3) Patterned hMSCs (initially grown in normal growth medium for 14 days) trypsinized and recultured in different induction media for next 7 days (to study the robustness of the effect of micropatterning without any shape constrain) and 4) Patterned hMSCs cultured in osteogenic and adipogenic media for 14 days (to study the effects of biochemical cues versus biophysical cues). It was found that hMSCs that were primed to commit to myocardial lineage (Groups 2 and 3) were able to maintain myocardial lineage commitment despite subsequent culturing in osteogenic and adipogenic media. However, for hMSCs that were not primed (Group 4), the biochemical cues seem to dominate over the biophysical cue in modulating hMSCs differentiation. It demonstrates that cell shape modulation is not only capable of inducing stem cell differentiation but also ensuring the permanent lineage commitment.

摘要

在我们之前的工作中,我们报道过通过微图案化强制延长人间充质干细胞(hMSCs)可促进其向心肌谱系定向分化。然而,当随后置于不同条件下时,这种方法是否强大到足以维持这种定向分化仍未得到解决。这种去分化(如果存在的话)对于这些心肌样hMSCs作为组织工程产品或用于干细胞治疗的应用将具有重大影响。在此,我们通过评估在受到非心肌分化信号挑战时图案化hMSCs中心肌分化的保留情况,来研究微图案化诱导分化的稳健性。我们总共设计了四组实验:1)在正常生长培养基中培养的图案化hMSCs作为阳性对照;2)图案化hMSCs在正常生长培养基中培养14天,随后在成骨和成脂培养基中培养接下来的7天(以研究微图案化效果的稳健性);3)图案化hMSCs(最初在正常生长培养基中生长14天)胰蛋白酶消化并在不同诱导培养基中再培养接下来的7天(以研究在没有任何形状限制的情况下微图案化效果的稳健性);4)图案化hMSCs在成骨和成脂培养基中培养14天(以研究生化信号与生物物理信号的作用)。结果发现,已被诱导向心肌谱系定向分化的hMSCs(第2组和第3组)尽管随后在成骨和成脂培养基中培养,仍能够维持心肌谱系定向分化。然而,对于未被诱导的hMSCs(第4组),在调节hMSCs分化方面,生化信号似乎比生物物理信号更具主导性。这表明细胞形状调节不仅能够诱导干细胞分化,还能确保永久的谱系定向分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c93/4234627/169fd5e1c602/pone.0113043.g001.jpg

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