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      Optical sensing of mechanical pressure based on diffusion measurement in polyacrylamide cell-like barometers.

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          Abstract

          Diffusion and transport of small molecules within hydrogel networks are of high interest for biomedical and pharmaceutical research. Herein, using fluorescence correlation spectroscopy (FCS), we experimentally showed that the diffusion time in the hydrogel was directly related to the mechanical state (compression or swelling) and thus to the volume fraction of the gel. Following this observation, we developed cell-like barometers in the form of PAA microbeads, which when incorporated between cells and combined with a diffusion-based optical readout could serve as the first biosensors to measure the local pressure inside the growing biological tissues. To illustrate the potential of the present method, we used multicellular spheroids (MCS) as a tissue model, and it was observed that the growth-associated tissue stress was lower than 1 kPa, but significantly increased when an external compressive stress was applied.

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          Author and article information

          Journal
          Soft Matter
          Soft matter
          Royal Society of Chemistry (RSC)
          1744-6848
          1744-683X
          Jun 14 2017
          : 13
          : 23
          Affiliations
          [1 ] LIPhy, UGA/CNRS, 140 rue de la Physique, 38402 Saint Martin D'Hères, 38058 Grenoble Cedex 9, France. antoine.delon@univ-grenoble-alpes.fr.
          Article
          10.1039/c6sm02887j
          28580466
          716770a9-1262-47a9-9b25-195c00b00c78
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