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- W4386001271 abstract "ABSTRACT While synthetic biology has advanced complex capabilities like sensing and molecule synthesis in aqueous solutions, important applications may also be pursued for biological systems in solid materials. Harsh processing conditions used to produce many synthetic materials such as plastics makes incorporation of biological functionality challenging. One technology that shows promise in circumventing these issues is cell-free protein synthesis (CFPS), where core cellular functionality is reconstituted outside the cell. CFPS enables genetic functions to be implemented without the complications of membrane transport or concerns over cellular viability or release of genetically modified organisms. Here we demonstrate that dried CFPS reactions have remarkable tolerance to heat and organic solvent exposure during the casting processes for polymer materials. We demonstrate the utility of this observation by creating plastics that have spatially patterned genetic functionality, produce antimicrobials in situ , and perform sensing reactions. The resulting materials unlock the potential to deliver DNA-programmable bio-functionality in a ubiquitous class of synthetic materials." @default.
- W4386001271 created "2023-08-20" @default.
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- W4386001271 date "2023-08-18" @default.
- W4386001271 modified "2023-10-07" @default.
- W4386001271 title "Cell-Free Protein Expression in Polymer Materials" @default.
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- W4386001271 doi "https://doi.org/10.1101/2023.08.18.553881" @default.
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