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首页> 外文期刊>Journal of micro and nano manufacturing >Investigation of Cellular Confinement in Three-Dimensional Microscale Fibrous Substrates: Fabrication and Metrology
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Investigation of Cellular Confinement in Three-Dimensional Microscale Fibrous Substrates: Fabrication and Metrology

机译:三维微观纤维纤维基材蜂窝隔音研究:制造与计量

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摘要

Engineered microenvironments along with robust quantitative models of cell shape metrology that can decouple the effect of various well-defined cues on a stem cell's phenotypic response would serve as an illuminating tool for testing mechanistic hypotheses on how stem cell fate is fundamentally regulated. As an experimental testbed to probe the effect of geometrical confinement on cell morphology, three-dimensional (3D) poly(e-caprolactone) (PCL) layered fibrous meshes are fabricated with an in-house melt electrospinning writing system (MEW). Gradual confinement states of fibroblasts are demonstrated by seeding primary fibroblasts on defined substrates, including a classical two-dimensional (2D) petri dish and porous 3D fibrous substrates with microarchitectures tunable within a tight cellular dimensional scale window (1-50 μm). To characterize fibroblast confinement, a quantitative 3D confocal fluorescence imaging workflow for 3D cell shape representation is presented. The methodology advanced allows the extraction of cellular and subcellular morphometric features including the number, location, and 3D distance distribution metrics of the shape-bearing focal adhesion (FA) proteins.
机译:设计的微环境以及鲁棒的细胞形状计量模型,可以将各种明确的提示对干细胞的表型反应的影响分离,这是用于测试机制假设的照明工具,用于测试干细胞命运如何从根本上调节。作为一种实验试验,以探测几何限制对细胞形态的影响,用内部熔体静电纺丝系统(MEW)制造三维(3D)聚(E-己内酯)(PCL)层状纤维网。通过在定义的基材上播种原发性成纤维细胞来证明成纤维细胞的逐渐限制状态,包括经典的二维(2D)培养皿和多孔3D纤维基板,其中微体系结构在紧的细胞尺寸鳞片窗口(1-50μm)内。为了表征成纤维细胞限制,提出了用于3D细胞形状表示的定量3D共焦荧光成像工作流程。该方法高级允许提取包括形状,位置和3D距离分布度量(FA)蛋白的数量,位置和3D距离分布度量的蜂窝和亚细胞的形态学特征。

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