AI Article Synopsis

  • Analytical platforms using impedance spectroscopy offer a non-invasive way to study single cells and their environment, vital for understanding disease-related functions.
  • The newly developed "sensor-in-a-tube" combines rolled-up platinum microelectrodes to analyze human monocytes and their extracellular medium activated by liposaccharides (LPS).
  • This innovative sensor successfully detects the relationship between cell activation states and the electrical properties of their surroundings without needing any labeling or surface modifications, making it a valuable tool for diagnosing immune-related diseases.

Article Abstract

Analytical platforms based on impedance spectroscopy are promising for non-invasive and label-free analysis of single cells as well as of their extracellular matrix, being essential to understand cell function in the presence of certain diseases. Here, an innovative rolled-up impedimetric microfulidic sensor, called sensor-in-a-tube, is introduced for the simultaneous analysis of single human monocytes CD14+ and their extracellular medium upon liposaccharides (LPS)-mediated activation. In particular, rolled-up platinum microelectrodes are integrated within for the static and dynamic (in-flow) detection of cells and their surrounding medium (containing expressed cytokines) over an excitation frequency range from 10 to 5 × 10  Hz. The correspondence between cell activation stages and the electrical properties of the cell surrounding medium have been detected by electrical impedance spectroscopy in dynamic mode without employing electrode surface functionalization or labeling. The designed sensor-in-a-tube platform is shown as a sensitive and reliable tool for precise single cell analysis toward immune-deficient diseases diagnosis.

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Source
http://dx.doi.org/10.1002/smll.202002549DOI Listing

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