作者
Jamie Auxillos, Roxane Crouigneau, Yan-Fang Li, Yifan Dai, Arnaud Stigliani, Isabella Tavernaro, Ute Resch-Genger, Albin Sandelin, Rodolphe Marie, Stine F Pedersen
发表日期
2024/5/3
期刊
Science Advances
卷号
10
期号
18
页码范围
eadn3448
出版商
American Association for the Advancement of Science
简介
Despite the physiological and pathophysiological significance of microenvironmental gradients, e.g., for diseases such as cancer, tools for generating such gradients and analyzing their impact are lacking. Here, we present an integrated microfluidic-based workflow that mimics extracellular pH gradients characteristic of solid tumors while enabling high-resolution live imaging of, e.g., cell motility and chemotaxis, and preserving the capacity to capture the spatial transcriptome. Our microfluidic device generates a pH gradient that can be rapidly controlled to mimic spatiotemporal microenvironmental changes over cancer cells embedded in a 3D matrix. The device can be reopened allowing immunofluorescence analysis of selected phenotypes, as well as the transfer of cells and matrix to a Visium slide for spatially resolved analysis of transcriptional changes across the pH gradient. This workflow is easily adaptable to …
学术搜索中的文章
J Auxillos, R Crouigneau, YF Li, Y Dai, A Stigliani… - Science Advances, 2024