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RAW264.7细胞在三维聚乙二醇水凝胶微环境中的细胞行为

Cellular Behavior of RAW264.7 Cells in 3D Poly(ethylene glycol) Hydrogel Niches.

作者信息

Kim Minchae, Lee Sora, Ki Chang Seok

出版信息

ACS Biomater Sci Eng. 2019 Feb 11;5(2):922-932. doi: 10.1021/acsbiomaterials.8b01150. Epub 2019 Jan 16.

Abstract

Although macrophages undergo dynamic cellular responses in diverse extracellular environments, macrophage research has mostly relied on conventional culture methodologies such as two-dimensional and suspension cultures. In contrast, recent efforts have revealed evidence of the characteristic cellular behaviors of macrophages in actual tissues using a three-dimensional (3D) culture matrix. In this work, we exploited a poly(ethylene glycol)-based hydrogel as a macrophage culture matrix and observed cellular behaviors in 3D by manipulating the matrix properties. In the 3D microenvironment, macrophage-like RAW264.7 cells proliferated and formed spherical clusters by degrading the surrounding hydrogel network. Interestingly, we observed the significant upregulation of matrix metalloproteinases (MMPs) (i.e., MMP9 and MMP14) as well as M1 polarization markers (i.e., iNOS, COX2, TNF-α) in 3D, whereas M2 polarization markers (i.e., CD206, Arg1, TGF-β) were downregulated. Specifically, the expressions of both M1 and M2 markers were simultaneously increased in a stiff matrix compared to those of a soft matrix. In addition, matrix degradability significantly influenced the TNF-α secretion of encapsulated RAW264.7 cells. The MMP sensitivity of the hydrogel decreased TNF-α expression in a soft matrix, whereas it upregulated TNF-α in a stiff matrix compared to those of MMP-insensitive hydrogel. These findings suggest that the highly tunable poly(ethylene glycol) hydrogels can dictate macrophage behavior by altering the surrounding 3D microenvironment.

摘要

尽管巨噬细胞在不同的细胞外环境中会经历动态的细胞反应,但巨噬细胞研究大多依赖于传统的培养方法,如二维培养和悬浮培养。相比之下,最近的研究通过使用三维(3D)培养基质揭示了巨噬细胞在实际组织中的特征性细胞行为的证据。在这项工作中,我们利用基于聚乙二醇的水凝胶作为巨噬细胞培养基质,并通过操纵基质特性观察三维环境中的细胞行为。在3D微环境中,巨噬细胞样RAW264.7细胞通过降解周围的水凝胶网络进行增殖并形成球形簇。有趣的是,我们观察到三维环境中基质金属蛋白酶(MMPs)(即MMP9和MMP14)以及M1极化标志物(即iNOS、COX2、TNF-α)显著上调,而M2极化标志物(即CD206、Arg1、TGF-β)则下调。具体而言,与软基质相比,硬基质中M1和M2标志物的表达同时增加。此外,基质可降解性显著影响封装的RAW264.7细胞的TNF-α分泌。水凝胶的MMP敏感性在软基质中降低了TNF-α的表达,而与MMP不敏感的水凝胶相比,在硬基质中上调了TNF-α。这些发现表明,高度可调的聚乙二醇水凝胶可以通过改变周围的三维微环境来决定巨噬细胞的行为。

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