bioRxiv · 10.1101/2020.05.11.088138
Bacterial cellulose spheroids as building blocks for 2D and 3D engineered living materials
Abstract
Engineered living materials (ELMs) based on bacterial cellulose (BC) offer a promising avenue for cheap-to-produce materials that can be programmed with genetically encoded functionalities. Here we explore how ELMs can be fabricated from millimetre-scale balls of cellulose occasionally produced by Acetobacteriacea species, which we call BC spheroids. We define a reproducible protocol to produce BC spheroids and demonstrate their potential for use as building blocks to grow ELMs in 2D and 3D shapes. These BC spheroids can be genetically functionalized and used as the method to make and grow patterned BC-based ELMs to design. We further demonstrate the use of BC spheroids for the repair and regeneration of BC materials, and measure the survival of the BC-producing bacteria in the material over time. This work forwards our understanding of BC spheroid formation and showcases their potential for creating and repairing engineered living materials.
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Caro-Astorga, J., Walker, K. T., Ellis, T.. 2020-05-11. Bacterial cellulose spheroids as building blocks for 2D and 3D engineered living materials. https://doi.org/10.1101/2020.05.11.088138
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