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Stiffness Regulates the Morphology, Adhesion, Proliferation, and Osteogenic Differentiation of Maxillary Schneiderian Sinus Membrane-Derived Stem Cells

机译:僵硬调节上颌施奈迪窦膜衍生干细胞的形态,粘附,增殖和成骨分化

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Recent studies, which aim to optimize maxillary sinus augmentation, have paid significant attention exploring osteogenic potential of maxillary Schneiderian sinus membrane-derived cells (MSSM-derived cells). However, it remains unclear that how MSSM-derived cells could respond to niche’s biomechanical properties. Herein, this study investigated the possible effects of substrate stiffness on rMSSM-derived stem cell fate. Initially, rMSSM-derived stem cells with multiple differentiation potential were successfully obtained. We then fabricated polyacrylamide substrates with varied stiffness ranging from 13 to 68?kPa to modulate the mechanical environment of rMSSM-derived stem cells. A larger cell spreading area and increased proliferation of rMSSM-derived stem cells were found on the stiffer substrates. Similarly, cells became more adhesive as their stiffness increased. Furthermore, the higher stiffness facilitated osteogenic differentiation of rMSSM-derived stem cells. Overall, our results indicated that increase in stiffness could mediate behaviors of rMSSM-derived stem cells, which may serve as a guide in future research to design novel biomaterials for maxillary sinus augmentation.
机译:最近的研究,目的是优化上颌窦增强,重视探索上颌施奈迪氏肿瘤膜衍生细胞(MSSM衍生细胞)的成骨潜力。然而,仍然尚不清楚MSSM衍生的细胞如何应对利基的生物力学性质。这里,本研究研究了基材刚度对RMSSM衍生的干细胞命运的可能影响。最初,成功地获得了具有多种分化电位的RMSSM衍生的干细胞。然后,我们制造具有不同刚度的聚丙烯酰胺基材,范围为13至68Ω,KPA以调节RMSSM衍生的干细胞的机械环境。在更致的底物上发现更大的细胞扩散区域和RMSSM衍生的干细胞的增加的增殖。类似地,随着它们的刚度增加,细胞变得更加粘合。此外,较高的刚度促进了RMSSM衍生的干细胞的成骨分化。总体而言,我们的结果表明,刚度的增加可以调解RMSSM衍生的干细胞的行为,这可以作为未来研究的指导,为上颌窦增强设计新的生物材料。

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