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细胞外基质纸的制备与多层 3D 组织模型的构建。

Preparation of Extracellular Matrix Paper and Construction of Multi-Layered 3D Tissue Model.

机构信息

Joint Research Laboratory (TOPPAN) for Advanced Cell Regulatory Chemistry, Graduate School of Engineering, Osaka University, Osaka, Japan.

Toppan Printing Co., Ltd., Tokyo, Japan.

出版信息

Curr Protoc Cell Biol. 2020 Sep;88(1):e112. doi: 10.1002/cpcb.112.

DOI:10.1002/cpcb.112
PMID:32776707
Abstract

Construction of organized three-dimensional (3D) tissue with extracellular matrix (ECM) and multiple types of cells is important for tissue engineering to enable tissue function and enhance cellular function. However, the concentration of ECM and the thickness of the 3D tissue have been limited in previous methods due to a lack of permeability to nutrients and oxygen. Besides, it is difficult to use matured natural ECM as a cell scaffold without chemical modification due to its insolubility. In this article, we focus on multi-layered structure, which is commonly found in living tissue such as skin, blood vessels, and other organs. Here, we describe the preparation of a paper-like scaffold (ECM paper) from micro-fibered natural ECM and the construction of 3D multi-layered tissue composed of cell layers and ECM layers by stacking cell-seeded ECM papers. The thickness and components of the ECM layers are easily controllable by changing the composition of the ECM papers, and the fibrous structure of ECM paper shows high permeability and permits cell migration. Additionally, the ECM microfiber, which is physically defiberized from natural ECM, has a high ECM concentration equal to that of living tissue and high stability under physiological conditions. Therefore, this set of protocols enables construction of multi-layered 3D tissue composed of precisely controlled ECM layers and cell layers that may contribute to the assembly of tissue models. © 2020 by John Wiley & Sons, Inc. Basic Protocol 1: Preparation of extracellular matrix paper Basic Protocol 2: Evaluation of cellular function of cells on extracellular matrix paper Basic Protocol 3: Construction of multi-layered 3D tissue.

摘要

构建具有细胞外基质 (ECM) 和多种类型细胞的有序三维 (3D) 组织对于组织工程很重要,可实现组织功能并增强细胞功能。然而,由于缺乏营养物质和氧气的通透性,以前的方法受到 ECM 浓度和 3D 组织厚度的限制。此外,由于其不溶性,成熟的天然 ECM 很难在未经化学修饰的情况下用作细胞支架。在本文中,我们重点研究多层结构,这种结构常见于皮肤、血管和其他器官等活体组织中。在这里,我们描述了一种由微纤维天然 ECM 制成的纸状支架 (ECM 纸) 的制备方法,以及通过堆叠细胞接种 ECM 纸构建由细胞层和 ECM 层组成的 3D 多层组织的方法。通过改变 ECM 纸的组成,可以轻松控制 ECM 层的厚度和成分,并且 ECM 纸的纤维结构具有高通透性并允许细胞迁移。此外,从天然 ECM 物理松解的 ECM 微纤维具有与活体组织相等的高 ECM 浓度和在生理条件下的高稳定性。因此,这组方案能够构建由精确控制的 ECM 层和细胞层组成的多层 3D 组织,这可能有助于组织模型的组装。© 2020 年 John Wiley & Sons, Inc. 基本方案 1:细胞外基质纸的制备 基本方案 2:细胞在细胞外基质纸上的细胞功能评估 基本方案 3:多层 3D 组织的构建

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