AI Article Synopsis

  • High-aspect-ratio nanostructures mimic cellular components, creating surfaces that interact with cells to influence their behavior and responses to external stimuli.
  • These structures can deliver materials into cells and allow researchers to study and manipulate cellular environments, making them valuable for both experimental and theoretical research.
  • The review highlights their potential use across different types of cells, expanding beyond just eukaryotic cells to include non-animal and prokaryotic cells, indicating growing interest in diverse biological applications.

Article Abstract

Materials patterned with high-aspect-ratio nanostructures have features on similar length scales to cellular components. These surfaces are an extreme topography on the cellular level and have become useful tools for perturbing and sensing the cellular environment. Motivation comes from the ability of high-aspect-ratio nanostructures to deliver cargoes into cells and tissues, access the intracellular environment, and control cell behavior. These structures directly perturb cells' ability to sense and respond to external forces, influencing cell fate, and enabling new mechanistic studies. Through careful design of their nanoscale structure, these systems act as biological metamaterials, eliciting unusual biological responses. While predominantly used to interface eukaryotic cells, there is growing interest in nonanimal and prokaryotic cell interfacing. Both experimental and theoretical studies have attempted to develop a mechanistic understanding for the observed behaviors, predominantly focusing on the cell-nanostructure interface. This review considers how high-aspect-ratio nanostructured surfaces are used to both stimulate and sense biological systems.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610849PMC
http://dx.doi.org/10.1002/adma.201903862DOI Listing

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