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维度很重要:利用紫外光图案化的二维和双光子打印的2.5维接触引导线索来控制角膜成纤维细胞行为和胶原蛋白沉积。

Dimensionality Matters: Exploiting UV-Photopatterned 2D and Two-Photon-Printed 2.5D Contact Guidance Cues to Control Corneal Fibroblast Behavior and Collagen Deposition.

作者信息

van der Putten Cas, Sahin Gozde, Grant Rhiannon, D'Urso Mirko, Giselbrecht Stefan, Bouten Carlijn V C, Kurniawan Nicholas A

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

Institute for Complex Molecular Systems, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

Bioengineering (Basel). 2024 Apr 19;11(4):402. doi: 10.3390/bioengineering11040402.

Abstract

In the event of disease or injury, restoration of the native organization of cells and extracellular matrix is crucial for regaining tissue functionality. In the cornea, a highly organized collagenous tissue, keratocytes can align along the anisotropy of the physical microenvironment, providing a blueprint for guiding the organization of the collagenous matrix. Inspired by this physiological process, anisotropic contact guidance cues have been employed to steer the alignment of keratocytes as a first step to engineer in vitro cornea-like tissues. Despite promising results, two major hurdles must still be overcome to advance the field. First, there is an enormous design space to be explored in optimizing cellular contact guidance in three dimensions. Second, the role of contact guidance cues in directing the long-term deposition and organization of extracellular matrix proteins remains unknown. To address these challenges, here we combined two microengineering strategies-UV-based protein patterning (2D) and two-photon polymerization of topographies (2.5D)-to create a library of anisotropic contact guidance cues with systematically varying height (H, 0 µm ≤ H ≤ 20 µm) and width (W, 5 µm ≤ W ≤ 100 µm). With this unique approach, we found that, in the short term (24 h), the orientation and morphology of primary human fibroblastic keratocytes were critically determined not only by the pattern width, but also by the height of the contact guidance cues. Upon extended 7-day cultures, keratocytes were shown to produce a dense, fibrous collagen network along the direction of the contact guidance cues. Moreover, increasing the heights also increased the aligned fraction of deposited collagen and the contact guidance response of cells, all whilst the cells maintained the fibroblastic keratocyte phenotype. Our study thus reveals the importance of dimensionality of the physical microenvironment in steering both cellular organization and the formation of aligned, collagenous tissues.

摘要

在疾病或损伤发生时,恢复细胞和细胞外基质的天然组织结构对于恢复组织功能至关重要。在角膜这个高度有序的胶原组织中,角膜细胞可以沿着物理微环境的各向异性排列,为引导胶原基质的组织提供蓝图。受这一生理过程的启发,各向异性接触引导线索已被用于引导角膜细胞的排列,作为构建体外类角膜组织的第一步。尽管取得了令人鼓舞的结果,但要推动该领域的发展仍需克服两个主要障碍。首先,在优化三维细胞接触引导方面,有一个巨大的设计空间有待探索。其次,接触引导线索在指导细胞外基质蛋白的长期沉积和组织方面的作用仍然未知。为了应对这些挑战,我们在此结合了两种微工程策略——基于紫外线的蛋白质图案化(二维)和地形的双光子聚合(2.5维)——以创建一个具有系统变化高度(H,0 µm≤H≤20 µm)和宽度(W,5 µm≤W≤100 µm)的各向异性接触引导线索库。通过这种独特的方法,我们发现,在短期内(24小时),原代人成纤维角膜细胞的取向和形态不仅由图案宽度,而且由接触引导线索的高度严格决定。在延长的7天培养后,角膜细胞显示出沿接触引导线索的方向产生密集的纤维状胶原网络。此外,增加高度也增加了沉积胶原的排列比例和细胞的接触引导反应,同时细胞保持成纤维角膜细胞表型。因此,我们的研究揭示了物理微环境的维度在引导细胞组织和形成排列的胶原组织方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df3a/11048187/0a4816020a60/bioengineering-11-00402-g001.jpg

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