结缔组织增生
细胞外基质
肿瘤微环境
癌细胞
细胞生物学
基质
间质细胞
癌症
癌相关成纤维细胞
胰腺癌
生物
癌症研究
化学
免疫学
遗传学
免疫组织化学
作者
Stephanie Nemec,Joey Lam,Jingxiao Zhong,Céline Heu,Paul Timpson,Qing Li,Janet Youkhana,George Sharbeen,Phoebe A. Phillips,K. Kilian
标识
DOI:10.1002/adbi.202000525
摘要
Abstract Interfacial cues in the tumor microenvironment direct the activity and assembly of multiple cell types. Pancreatic cancer, along with breast and prostate cancers, is enriched with cancer‐associated fibroblasts (CAFs) that activate to coordinate the deposition of the extracellular matrix, which can comprise over 90% of the tumor mass. While it is clear that matrix underlies the severity of the disease, the relationship between stromal‐tumor cell assembly and cell‐matrix dynamics remains elusive. Micropatterned hydrogels deconstruct the interplay between matrix stiffness and geometric confinement, guiding heterotypic cell populations and matrix assembly in pancreatic cancer. Interfacial cues at the perimeter of microislands guide CAF migration and direct cancer cell assembly. Computational modeling shows curvature‐stress dependent cellular localization for cancer and CAFs in coculture. Regions of convex curvature enhance edge stress that activates a myofibroblast phenotype in the CAFs with migration and increased collagen I deposition, ultimately leading to a central “corralling” of cancer cells. Inhibiting mechanotransduction pathways decreases CAF activation and the associated corralling phenotype. Together, this work reveals how interfacial biophysical cues underpin aspects of stromal desmoplasia, a hallmark of disease severity and chemoresistance in the pancreatic, breast, and prostate cancers, thereby providing a tool to expand stroma‐targeting therapeutic strategies.
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