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Predicting Silk Fiber Mechanical Properties through Multiscale Simulation and Protein Design.

ACS Biomater Sci Eng.. 2017-08; 
Rim NG,Roberts EG,Ebrahimi D,Dinjaski N,Jacobsen MM,Martín-Moldes Z,Buehler MJ,Kaplan DL,Wong JY.
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PCR Cloning and Subcloning ... Empty columns (Bio-Rad, Hercules, CA, USA) Vectors and bacterial strains • pET30a(+) (Novagen, San Diego, CA, USA) • pUC57(Kn)-A, pUC57(Kn)-B (GenScript, Piscataway, NJ, USA) • E. coli DH5α chemically competent cell (New England Biolabs, Ipswich, MA, USA) ... Get A Quote

摘要

Silk is a promising material for biomedical applications, and much research is focused on how application-specific, mechanical properties of silk can be designed synthetically through proper amino acid sequences and processing parameters. This protocol describes an iterative process between research disciplines that combines simulation, genetic synthesis, and fiber analysis to better design silk fibers with specific mechanical properties. Computational methods are used to assess the protein polymer structure as it forms an interconnected fiber network through shearing and how this process affects fiber mechanical properties. Model outcomes are validated experimentally with the genetic design of protein polymers... More

关键词

computational modeling; genetic synthesis; recombinant silk; spinning