Suppr超能文献

用于解析化学、机械和几何调节对细胞集体迁移的相互作用的光活化水凝胶界面。

Photoactivatable Hydrogel Interfaces for Resolving the Interplay of Chemical, Mechanical, and Geometrical Regulation of Collective Cell Migration.

机构信息

International Center for Materials Nanoarchitectonics (WPI-MANA) , National Institute for Materials Science (NIMS) , 1-1 Namiki , Tsukuba , Ibaraki 305-0044 , Japan.

Department of Applied Chemistry, Faculty of Science and Engineering , Toyo University , 2100 Kujirai , Kawagoe , Saitama 350-8585 , Japan.

出版信息

Langmuir. 2019 Jun 11;35(23):7459-7468. doi: 10.1021/acs.langmuir.8b02371. Epub 2018 Nov 9.

Abstract

Collective migration is the mechanobiological interplay within migrating cell clusters and against extracellular matrixes (ECMs) underneath, mediating various physiological and pathological processes. Therefore, it is crucial to develop a robust platform on which collective migration can be studied under standardized conditions to understand how cells migrate differently between normal and disease states. We herein demonstrated phtotoactivatable hydrogel interfaces as suitable candidates for such applications. The substrate was composed of a poly(acrylamide) (PAAm) hydrogel whose surface was sequentially functionalized with poly-d-lysine (PDL) and photocleavable poly(ethylene glycol) (PEG). On the surface of the gel substrates, cell clusters with any given geometries can be prepared by controlling the irradiation patterns (geometrical cue), and their collective migration can be induced by the subsequent irradiation of the surrounding regions. Moreover, the substrate mechanical properties can be controlled by changing the composition of the PAAm hydrogel (mechanical cue), and the chemical properties were controlled by changing the amount of immobilized PDL, thereby altering the adsorbed amount of ECM proteins (chemical cue). The photoactivatable gel substrates were characterized by fluorescence microscopy, ζ-potential measurements, and the protein adsorption test. Through the study of the interplay of chemical, mechanical, and geometrical cues in the regulation of collective characteristics, we found additive effects of chemical and mechanical cues on the suppression of circular expansion by up-regulating the epithelial morphology. Also, the impact of geometrical cues became more significant by decreasing the chemical cue. We believe the present platform will be a useful research tool for the comprehensive mechanobiological analysis of collective cell migration.

摘要

群体迁移是迁移细胞簇内部和下方细胞外基质(ECM)之间的力学生物学相互作用,介导各种生理和病理过程。因此,开发一个强大的平台,在标准化条件下研究群体迁移,以了解正常和疾病状态下细胞如何不同地迁移,这一点至关重要。我们在此展示了光可激活水凝胶界面作为此类应用的合适候选材料。该基质由聚(丙烯酰胺)(PAAm)水凝胶组成,其表面依次用聚-d-赖氨酸(PDL)和光可裂解的聚(乙二醇)(PEG)功能化。在凝胶基底的表面,可以通过控制照射图案(几何线索)来制备具有任何给定几何形状的细胞簇,并且可以通过随后照射周围区域来诱导它们的集体迁移。此外,通过改变 PAAm 水凝胶的组成(力学线索)可以控制基底的机械性能,并且通过改变固定化 PDL 的量来控制化学性质,从而改变 ECM 蛋白的吸附量(化学线索)。用光可激活的凝胶基底通过荧光显微镜、ζ-电势测量和蛋白质吸附试验进行了表征。通过研究化学、力学和几何线索在调节群体特征中的相互作用,我们发现化学和力学线索的附加效应通过上调上皮形态来抑制圆形扩张。此外,通过降低化学线索,几何线索的影响变得更加显著。我们相信,该平台将成为全面研究细胞群体迁移的力学生物学分析的有用研究工具。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验