Conformal Bacterial Cellulose Coatings as Lubricious Surfaces.

Rühs, Patrick A; Malollari, Katerina G; Binelli, Marco R; Crockett, Rowena; Balkenende, Diederik W R; Studart, André R; Messersmith, Phillip B · ACS Nano · 2020

basic_science · Level V

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Abstract

We report a versatile method to form bacterial cellulose coatings through simple dip-coating of 3D objects in suspensions of cellulose-producing bacteria. The adhesion of cellulose-secreting bacteria on objects was promoted through surface roughness and chemistry. Immobilized bacteria secreted highly porous hydrogels with high water content directly from the surface of a variety of materials. The out-of-plane orientation of cellulose fibers present in this coating leads to high mechanical stability and energy dissipation with minimal cellulose concentration. The conformal, biocompatible, and lubricious nature of the <i>in situ</i> grown cellulose surfaces makes the coated 3D objects attractive for biomedical applications.

Medical subject headings