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用于 3D 细胞导向的大孔排列水凝胶微丝

Macroporous Aligned Hydrogel Microstrands for 3D Cell Guidance.

机构信息

Tissue Engineering + Biofabrication Laboratory, Department of Health Sciences and Technology, ETH Zürich, Otto-Stern-Weg 7, Zürich 8093, Switzerland.

出版信息

ACS Biomater Sci Eng. 2022 Sep 12;8(9):3871-3882. doi: 10.1021/acsbiomaterials.2c00370. Epub 2022 Aug 17.

Abstract

Tissue engineering strongly relies on the use of hydrogels as highly hydrated 3D matrices to support the maturation of laden cells. However, because of the lack of microarchitecture and sufficient porosity, common hydrogel systems do not provide physical cell-instructive guidance cues and efficient transport of nutrients and oxygen to the inner part of the construct. A controlled, organized cellular alignment and resulting alignment of secreted ECM are hallmarks of muscle, tendons, and nerves and play an important role in determining their functional properties. Although several strategies to induce cellular alignment have been investigated in 2D systems, the generation of cell-instructive 3D hydrogels remains a challenge. Here, we report on the development of a simple and scalable method to efficiently generate highly macroporous constructs featuring aligned guidance cues. A precross-linked bulk hydrogel is pressed through a grid with variable opening sizes, thus deconstructing it into an array of aligned, high aspect ratio microgels (microstrands) with tunable diameter that are eventually stabilized by a second photoclick cross-linking step. This method has been investigated and optimized both and , thereby leading to conditions with excellent viability and organized cellular alignment. Finally, as proof of concept, the method has been shown to direct aligned muscle tissue maturation. These findings demonstrate the 3D physical guidance potential of our system, which can be used for a variety of anisotropic tissues and applications.

摘要

组织工程强烈依赖水凝胶作为高度水合的 3D 基质,以支持负载细胞的成熟。然而,由于缺乏微观结构和足够的孔隙率,常见的水凝胶系统不能提供物理的细胞指导线索,也不能有效地将营养物质和氧气输送到构建物的内部。受控制的、有组织的细胞排列以及由此产生的细胞外基质的排列是肌肉、肌腱和神经的特征,在决定它们的功能特性方面起着重要作用。尽管已经在 2D 系统中研究了几种诱导细胞排列的策略,但生成细胞指导的 3D 水凝胶仍然是一个挑战。在这里,我们报告了一种简单且可扩展的方法的开发,该方法能够有效地生成具有对齐引导线索的高度大孔结构。预交联的块状水凝胶通过具有可变开口尺寸的网格进行挤压,从而将其解构为具有可调节直径的排列整齐的、高纵横比的微凝胶(微丝)阵列,最终通过第二步光点击交联步骤稳定下来。已经对这种方法进行了研究和优化,从而得到了具有极好的活力和组织细胞排列的条件。最后,作为概念验证,该方法已被证明可以指导肌肉组织的有序成熟。这些发现证明了我们的系统在 3D 物理引导方面的潜力,该系统可用于各种各向异性组织和应用。

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