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Disruption of Cell-Cell Contact-mediated Notch Signaling via Hydrogel Encapsulation Reduces Mesenchymal Stem Cell Chondrogenic Potential

机译:通过水凝胶封装的细胞间接触介导的Notch信号的破坏减少间充质干细胞软骨形成电位。

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Herein we showed that hydrogel encapsulation and failure to form cell-cell interactions and activate Notch signaling significantly reduces MSC chondrogenesis (Fig. 1D). With an improved understanding of cell-cell interactions and cell function, more effective biomaterials-based tissue regenerative strategies can be realized through synergistic application of biophysical and biochemical signals that emulate both the cell microenvironment and cell-cell interactions.
机译:在本文中,我们表明水凝胶封装和未能形成细胞间相互作用并激活Notch信号传导显着降低了MSC软骨形成(图1D)。通过对细胞间相互作用和细胞功能的更好理解,可以通过协同应用模拟细胞微环境和细胞间相互作用的生物物理和生化信号来实现更有效的基于生物材料的组织再生策略。

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