Issue 38, 2024

Controlling the size and elastic modulus of in-aqueous alginate micro-beads

Abstract

The fabrication of microgels, particularly those ranging from tens to hundreds of micrometers in size, represents a thriving area of research, particularly for biologists seeking controlled and isotropic media for cell encapsulation. In this article, we present a novel and robust method for producing structurally homogeneous alginate beads with a reduced environmental footprint, employing a co-flow focusing microfluidic device. These beads can be easily recovered in an oil-free aqueous medium, making the fabrication method highly suitable for diverse applications. We demonstrate precise control over the production of perfectly spherical beads across a wide range of diameters, from about 30 to 300 μm. We then measure Young's moduli of the beads, revealing a wide accessible range from 90 Pa to 11 kPa, contingent upon controlling the type (e.g. chain length) and concentration of alginate.

Graphical abstract: Controlling the size and elastic modulus of in-aqueous alginate micro-beads

Article information

Article type
Paper
Submitted
28 Feb 2024
Accepted
05 Sep 2024
First published
05 Sep 2024

Soft Matter, 2024,20, 7692-7702

Controlling the size and elastic modulus of in-aqueous alginate micro-beads

J. Cappello, J. Miguet, A. Dewandre, L. Ergot, S. Gabriele, J. Septavaux and B. Scheid, Soft Matter, 2024, 20, 7692 DOI: 10.1039/D4SM00260A

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