Graduate Institute of Biochemical and Biomedical Engineering, Chang Gung University, Taoyuan, 333, Taiwan.
Biomed Mater. 2017 Aug 9;12(4):045019. doi: 10.1088/1748-605X/aa766d.
Numerous methods have been developed for preparing guiding channels/tracks to promote the alignment of highly oriented cell types. However, these manufacture methods cannot fabricate interconnected guiding channels within three-dimensional (3D) scaffolds. Providing a suitable architectural scaffold for cell attachment could lead cells to more rapidly display a desired phenotype and perform their unique functions. Previously, we developed a simple device composed of a pneumatic membrane that can generate a tunable vibration frequency to apply physical stimulation for fabricating a 3D aligned collagen fibril matrix with the characteristic D-period structure in one step. In the present study, we aimed to evaluate the cellular responses of thoracic aortic smooth muscle cells (A7r5) incorporated during the fabrication of 3D-aligned collagen fibrils with D-periods and compared these cells with those incorporated in a 3D, randomly distributed collagen matrix and in a two-dimensional (2D) aligned substrate after up to 10 days of culture. The results consistently demonstrated that A7r5 cells cultured within the 3D and 2D anisotropic matrices were aligned. Cells cultured in the 3D aligned scaffolds exhibited a higher proliferation rate as well as higher F-actin and smoothelin expression levels compared with cells cultured in 3D randomly distributed scaffolds. Together, these results indicate that a 3D-reconstituted, anisotropic collagen matrix fabricated by our process provides synergistic effects of tension stimulation and matrix stiffness on encapsulated cells and can direct A7r5 cells to transform from a synthetic phenotype into a contractile state.
已经开发出许多方法来制备导向通道/轨迹,以促进高度取向细胞类型的对齐。然而,这些制造方法无法在三维(3D)支架内制造互连的导向通道。为细胞附着提供合适的建筑支架可以使细胞更快地表现出所需的表型并发挥其独特的功能。以前,我们开发了一种由气动膜组成的简单装置,该装置可以产生可调谐的振动频率,以施加物理刺激,一步制造具有特征 D 周期结构的 3D 取向胶原原纤维基质。在本研究中,我们旨在评估在制造具有 D 周期的 3D 取向胶原原纤维过程中掺入的胸主动脉平滑肌细胞(A7r5)的细胞反应,并将这些细胞与在 3D 中掺入的细胞进行比较随机分布的胶原基质和二维(2D)对齐的基质在培养长达 10 天后。结果一致表明,在 3D 和 2D 各向异性基质中培养的 A7r5 细胞呈定向排列。与在 3D 随机分布支架中培养的细胞相比,在 3D 取向支架中培养的细胞具有更高的增殖率以及更高的 F-肌动蛋白和 smoothelin 表达水平。这些结果表明,我们的工艺制备的 3D 重构各向异性胶原基质对包封细胞具有张力刺激和基质刚度的协同作用,并可以指导 A7r5 细胞从合成表型转变为收缩状态。