Using matrix elasticity and cyclic stretch have been investigated for inducing mesenchymal stromal cell (MSC) differentiation towards the smooth muscle cell (SMC) lineage but not in combination. We hypothesized that combining lineage-specific stiffness with cyclic stretch would result in a significantly increased expression of SMC markers, compared to non-stretched controls. First, we generated dense collagen type I sheets by mechanically compressing collagen hydrogels. Atomic force microscopy revealed a nanoscale stiffness range known to support myogenic differentiation. Further characterization revealed viscoelasticity and stable biomechanical properties under cyclic stretch with >99% viable adherent human MSC. MSCs on collagen sheets demonstrated a significantly increased mRNA but not protein expression of SMC markers, compared to on culture flasks. However, cyclic stretch of MSCs on collagen sheets significantly increased both mRNA and protein expression of α-smooth muscle actin, transgelin, and calponin versus plastic and non-stretched sheets. Thus, lineage-specific stiffness and cyclic stretch can be applied together for inducing MSC differentiation towards SMCs without the addition of recombinant growth factors or other soluble factors. This represents a novel stimulation method for modulating the phenotype of MSCs towards SMCs that could easily be incorporated into currently available methodologies to obtain a more targeted control of MSC phenotype.
Stretching human mesenchymal stromal cells on stiffness-customized collagen type I generates a smooth muscle marker profile without growth factor addition.
在刚度定制的 I 型胶原蛋白上拉伸人类间充质干细胞,无需添加生长因子即可产生平滑肌标志物谱
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作者:Rothdiener Miriam, Hegemann Miriam, Uynuk-Ool Tatiana, Walters Brandan, Papugy Piruntha, Nguyen Phong, Claus Valentin, Seeger Tanja, Stoeckle Ulrich, Boehme Karen A, Aicher Wilhelm K, Stegemann Jan P, Hart Melanie L, Kurz Bodo, Klein Gerd, Rolauffs Bernd
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2016 | 起止号: | 2016 Oct 24; 6:35840 |
| doi: | 10.1038/srep35840 | 种属: | Human |
| 研究方向: | 发育与干细胞、细胞生物学 | ||
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