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Microfluidic systems for single DNA dynamics

Mai Danielle J; Brockman Christopher; Schroeder Charles M*
Engineering Village
United States

摘要

Recent advances in microfluidics have enabled the molecular-level study of polymer dynamics using single DNA chains. Single polymer studies based on fluorescence microscopy allow for the direct observation of non-equilibrium polymer conformations and dynamical phenomena such as diffusion, relaxation, and molecular stretching pathways in flow. Microfluidic devices have enabled the precise control of model flow fields to study the non-equilibrium dynamics of soft materials, with device geometries including curved channels, cross slots, and microfabricated obstacles and structures. This review explores recent microfluidic systems that have advanced the study of single polymer dynamics, while identifying new directions in the field that will further elucidate the relationship between polymer microstructure and bulk rheological properties.

关键词

Curved channels Device geometries DNA chains DNA dynamics Dynamical phenomena Micro fluidic system Micro-fluidic devices Microfabricated Molecular levels Non equilibrium Non-equilibrium dynamics Polymer conformation Polymer dynamics Polymer microstructures Precise control Rheological property Single polymer dynamics Single polymers Soft material