Team:StanfordBrownSpelman/Cellulose Acetate

From 2014.igem.org

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The body of the UAV is designed to consist a styrofoam-like filler consisting of fungal mycelia, coated with a cellulose acetate covering. This skin will be the material sensors can be linked to (see
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The body of the UAV is designed to consist a styrofoam-like filler consisting of fungal mycelia, coated with a cellulose acetate covering. The skin will be biologically waterproofed.
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<a href="https://2014.igem.org/Team:StanfordBrownSpelman/Amberless_Hell_Cell" target="_blank">Amberless Hell Cell, </a>
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<a href="https://2014.igem.org/Team:StanfordBrownSpelman/Material_Waterproofing" target="_blank">Material Waterproofing, </a>
<a href="https://2014.igem.org/Team:StanfordBrownSpelman/Material_Waterproofing" target="_blank">Material Waterproofing, </a>
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Sensors can be linked to the cellulose acetate skin (see
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<a href="https://2014.igem.org/Team:StanfordBrownSpelman/Amberless_Hell_Cell" target="_blank">Amberless Hell Cell, </a>
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and
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<a href="https://2014.igem.org/Team:StanfordBrownSpelman/Amberless_Hell_Cell" target="_blank">Amberless Hell Cell, </a>

Revision as of 11:24, 14 October 2014

Stanford–Brown–Spelman iGEM 2014 — Cellulose Acetate

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Results
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Methods & Safety
Fusce venenatis, justo id luctus dictum, turpis libero tincidunt mauris, sit amet tempor lectus tortor ut ante. Pellentesque egestas felis et est venenatis, eget lobortis dui adipiscing. Suspendisse volutpat sem eu ornare tincidunt. Mauris pharetra sed justo vitae sodales. Nulla in sodales tortor, placerat tempor dui.
References
● 1. Fischer, et al. Properties and Applications of Cellulose Acetate. Macromol. Symp., 262, 89-96. 2008.
● 2. Ross, P., Mayer, R., & Benziman, M. Cellulose Biosynthesis and Function in Bacteria. Microbiological Reviews, 55, 35-58. 1991.

● 3. Spiers, A. J., Bohannon, J., Gehrig, S. M., & Rainey, P. B. Biofilm formation at the air–liquid interface by the Pseudomonas fluorescens SBW25 wrinkly spreader requires an acetylated form of cellulose. 2003. Molecular Microbiology, 50, 15-27.
● 4. The United States Pharmacopeial Convention. Cellulose Acetate. USP-NF. 2013.

● 5. Hall, P. E., Anderson, S. M., Johnston, D. M., Cannon, R. E. Transformation of Acetobacter xylinum with Plasmid DNA by Electroporation. Plasmid, 28, 194-200. 1992.

● 6. Close, T. J., Zaitlin, D., & Kado, C. I. Design and Development of Amplifiable Broad-Host-Range Cloning Vectors: Analysis of the wir Region of Agrobacterium tumefaciens Plasmid pTiC58. Plasmid, 12, 111-118. 1984.
Additional Information
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