Literature DB >> 31742293

Colloidal crystals of compliant microgel beads to study cell migration and mechanosensitivity in 3D.

Katrin Wagner1, Salvatore Girardo, Ruchi Goswami, Gonzalo Rosso, Elke Ulbricht, Paul Müller, Despina Soteriou, Nicole Träber, Jochen Guck.   

Abstract

Tissues are defined not only by their biochemical composition, but also by their distinct mechanical properties. It is now widely accepted that cells sense their mechanical environment and respond to it. However, studying the effects of mechanics in in vitro 3D environments is challenging since current 3D hydrogel assays convolve mechanics with gel porosity and adhesion. Here, we present novel colloidal crystals as modular 3D scaffolds where these parameters are principally decoupled by using monodisperse, protein-coated PAAm microgel beads as building blocks, so that variable stiffness regions can be achieved within one 3D colloidal crystal. Characterization of the colloidal crystal and oxygen diffusion simulations suggested the suitability of the scaffold to support cell survival and growth. This was confirmed by live-cell imaging and fibroblast culture over a period of four days. Moreover, we demonstrate unambiguous durotactic fibroblast migration and mechanosensitive neurite outgrowth of dorsal root ganglion neurons in 3D. This modular approach of assembling 3D scaffolds from mechanically and biochemically well-defined building blocks allows the spatial patterning of stiffness decoupled from porosity and adhesion sites in principle and provides a platform to investigate mechanosensitivity in 3D environments approximating tissues in vitro.

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Year:  2019        PMID: 31742293     DOI: 10.1039/c9sm01226e

Source DB:  PubMed          Journal:  Soft Matter        ISSN: 1744-683X            Impact factor:   3.679


  3 in total

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Authors:  Duy T Nguyen; Elizabeth Ogando-Rivas; Ruixuan Liu; Theodore Wang; Jacob Rubin; Linchun Jin; Haipeng Tao; William W Sawyer; Hector R Mendez-Gomez; Matthew Cascio; Duane A Mitchell; Jianping Huang; W Gregory Sawyer; Elias J Sayour; Paul Castillo
Journal:  Cells       Date:  2022-06-20       Impact factor: 7.666

2.  Controlled Fabrication of Bioactive Microtubes for Screening Anti-Tongue Squamous Cell Migration Drugs.

Authors:  Rongbing Tang; Lu Yang; Liheng Shen; Xuan Ma; Yinfeng Gao; Yuan Liu; Zhen Bai; Xuemei Wang
Journal:  Front Chem       Date:  2022-01-21       Impact factor: 5.221

3.  Processing of fast-gelling hydrogel precursors in microfluidics by electrocoalescence of reactive species.

Authors:  Nicolas Hauck; Talika A Neuendorf; Max J Männel; Lucas Vogel; Ping Liu; Enno Stündel; Yixin Zhang; Julian Thiele
Journal:  Soft Matter       Date:  2021-11-24       Impact factor: 3.679

  3 in total

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