Kriplani Ushma, Kay Brian K
Argonne National Laboratory, Biosciences Division, Bldg 202, 9700, South Cass Avenue, Argonne, IL 60439-4833, USA.
Curr Opin Biotechnol. 2005 Aug;16(4):470-5. doi: 10.1016/j.copbio.2005.07.001.
Materials that combine inorganic components and biological molecules provide a new paradigm for synthesizing nanoscale and larger structures with tailored physical properties. These synthesis techniques utilize the molecular recognition properties of many biological molecules to nucleate and control growth of the nanoscale structure. Phage-displayed peptide libraries are a powerful tool to identify peptides that selectively recognize and bind to a variety of inorganic surfaces that are utilized in electronic and photonic devices. These libraries have been used extensively to study the peptide-mediated nucleation and growth of some metallic and semiconducting materials, and the application to designed nanostructures has been demonstrated.
结合无机成分和生物分子的材料为合成具有定制物理性质的纳米级及更大尺寸结构提供了一种新范式。这些合成技术利用许多生物分子的分子识别特性来成核并控制纳米级结构的生长。噬菌体展示肽库是一种强大的工具,可用于识别能选择性识别并结合到电子和光子器件中使用的各种无机表面的肽。这些肽库已被广泛用于研究肽介导的一些金属和半导体材料的成核与生长,并且已证明其在设计纳米结构中的应用。