Bacteria embedded at 0.4-2% volume fraction in actin-microtubule networks are entrained by passive or active crosslinking without changing the network's microscopic mesh size.
With an eye towards this design goal, our study takes an important first step by creating a composite material comprising a biopolymer scaffold embedded with bacteria cells
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Active and passive crosslinking of cytoskeleton scaffolds tune the effects of cell inclusions on composite structure
Bacteria embedded at 0.4-2% volume fraction in actin-microtubule networks are entrained by passive or active crosslinking without changing the network's microscopic mesh size.