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首页> 外文期刊>Acta biomaterialia >Biomimetic stochastic topography and electric fields synergistically enhance directional migration of corneal epithelial cells in a MMP-3-dependent manner
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Biomimetic stochastic topography and electric fields synergistically enhance directional migration of corneal epithelial cells in a MMP-3-dependent manner

机译:仿生随机地形和电场以依赖于MMP-3的方式协同增强角膜上皮细胞的定向迁移

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Directed migration of corneal epithelial cells (CECs) is critical for maintenance of corneal homeostasis as well as wound healing. Soluble cytoactive factors and the intrinsic chemical attributes of the underlying extracellular matrix (ECM) participate in stimulating and directing migration. The central importance of the intrinsic biophysical attributes of the microenvironment of the cell in modulating an array of fundamental epithelial behaviors including migration has been widely documented. Among the best measures of these attributes are the intrinsic topography and stiffness of the ECM and electric fields (EFs). How cells integrate these multiple simultaneous inputs is not well understood. Here, we present a method that combines the use of (i) topographically patterned substrates (mean pore diameter 800 nm) possessing features that approximate those found in the native corneal basement membrane; and (ii) EFs (0-150 mV mm(-1)) mimicking those at corneal epithelial wounds that the cells experience in vivo. We found that topographic cues and EFs synergistically regulated directional migration of human CECs and that this was associated with upregulation of matrix metalloproteinase-3 (MMP3). MMP3 expression and activity were significantly elevated with 150 mV mm(-1) applied-EF while MMP2/9 remained unaltered. MMP3 expression was elevated in cells cultured on patterned surfaces against planar surfaces. The highest single-cell migration rate was observed with 150 mV mm(-1) applied EF on patterned and planar surfaces. When cultured as a confluent sheet, EFs induced collective cell migration on stochastically patterned surfaces compared with dissociated single-cell migration on planar surfaces. These results suggest significant interaction of biophysical cues in regulating cell behaviors and will help define design parameters for corneal prosthetics and help to better understand corneal wound healing. (C) 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:角膜上皮细胞(CEC)的定向迁移对于维持角膜稳态以及伤口愈合至关重要。可溶性细胞活性因子和潜在的细胞外基质(ECM)的内在化学属性参与刺激和指导迁移。细胞微环境的固有生物物理属性在调节一系列基本上皮行为(包括迁移)中的核心重要性已得到广泛证明。这些属性的最佳度量方法是ECM和电场(EFs)的固有形貌和刚度。单元如何集成这些多个同时输入的方法尚未广为人知。在这里,我们提出了一种结合使用(i)具有局部自然角膜基底膜特征的,具有地形特征的底物(平均孔径为800 nm)的方法; (ii)模仿细胞在体内经历的EFs(0-150 mV mm(-1))。我们发现地形提示和EFs协同调节人类CECs的方向迁移,这与基质金属蛋白酶3(MMP3)的上调相关。 MMP3的表达和活性显着提高了150 mV mm(-1)-EF,而MMP2 / 9保持不变。在图案化的表面上相对于平面培养的细胞中,MMP3表达升高。在图案化和平面表面上施加150 mV mm(-1)EF时观察到最高的单细胞迁移率。当培养为融合片时,与在平面表面上解离的单细胞迁移相比,EF在随机图案化的表面上诱导集体细胞迁移。这些结果表明,生物物理线索在调节细胞行为方面具有重要的相互作用,并且将有助于定义角膜假体的设计参数,并有助于更好地理解角膜伤口愈合。 (C)2014 Acta Materialia Inc.,由Elsevier Ltd.发行。保留所有权利。

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