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February 28, 2026Materials Horizons2 citations

Functional microarray biochips promote micropatterned adhesion-cytoskeleton-nuclear coupling to guide endothelial force-sensing mechanotransduction

YHYan HouWWWenlong WangSXShihui Xu

Key Points

  • The aim is to explore how microarray biochips influence endothelial cell behaviors through spatial control.
  • Utilized microarray biochips to create controlled microenvironments for endothelial cells.
  • Examined cell adhesion, morphology, and mechanosensitive signaling under varied geometric constraints.
  • Analyzed the effects of geometric variations on cytoskeleton-Nuclear coupling.
  • Enhanced cell adhesion was observed on micropatterned surfaces compared to non-patterned.
  • Significant changes in cytoskeleton organization were linked to shapes defined by biochips.
  • Mechanotransduction signaling pathways were activated differently based on geometric constraints, indicating guided force-sensing.

Abstract

Microarray biochips offer an advanced platform for the precise spatial control of cell behaviors, enabling the investigation of how geometric constraints influence cell adhesion, morphology, and mechanosensitive signaling. Herein, a...

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Cite This Study

Hou et al. (2026) studied this question.

synapsesocial.com/papers/69a287a00a974eb0d3c03762https://doi.org/10.1039/d5mh01781e
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