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Multi-Site Functionalization of Protein Scaffolds for Bimetallic Nanoparticle Templating.

Adv Funct Mater.. 2014-12;  24(48):7737-7744
K N L Huggins, A P Schoen, M A Arunagirinathan, and S C Heilshorn. Materials Science & Engineering, 476 Lomita Mall Stanford University, Stanford, CA, USA.
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摘要

The use of biological scaffolds to template inorganic material offers a strategy to synthesize precise composite nanostructures of different sizes and shapes. Proteins are unique biological scaffolds that consist of multiple binding regions or epitope sites that site-specifically associate with conserved amino acid sequences within protein-binding partners. These binding regions can be exploited as synthesis sites for multiple inorganic species within the same protein scaffold, resulting in bimetallic inorganic nanostructures. This strategy is demonstrated with the scaffold protein clathrin, which self-assembles into spherical cages. Specifically, tether peptides that noncovalently associate with distinct clath... More

关键词

biomimetics; composite materials; nanoparticles