Issue 23, 2024

Ultrasoft silicone gels with tunable refractive index for traction force microscopy

Abstract

We formulate and characterize silicone gels near the gelation threshold with tunable refractive index, 1.4 < n < 1.49, and small viscoelastic moduli, G′∼1 Pa, for use in traction force microscopy. The near-critical gels have low-frequency storage plateau moduli between 50 Pa and 1 Pa, with loss moduli that are more than fifty times lower at low frequencies. The gels are linearly elastic up to strains of at least 50%. The refractive index of the gel is tuned to eliminate spherical aberrations during confocal imaging thereby minimizing signal loss when imaging through thick gel substrates. We also develop an index-matched colloidal particle, stabilized by a silicone brush, that can be dispersed throughout the gel. These particles can be used to determine the deformation of the gel. The combination of mechanical and optical properties of these near-critical gels extends the lower limit of stresses that can be measured with traction force microscopy to single mPa values, while minimizing optical aberrations.

Graphical abstract: Ultrasoft silicone gels with tunable refractive index for traction force microscopy

Supplementary files

Article information

Article type
Paper
Submitted
05 Jan 2024
Accepted
20 May 2024
First published
31 May 2024

Soft Matter, 2024,20, 4633-4639

Ultrasoft silicone gels with tunable refractive index for traction force microscopy

J. Z. Terdik, D. A. Weitz and F. Spaepen, Soft Matter, 2024, 20, 4633 DOI: 10.1039/D4SM00016A

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