Literature DB >> 22239472

Peptide-mediated nanoengineering of inorganic particle surfaces: a general route toward surface functionalization via peptide adhesion domains.

Thorsten Schwemmer1, Jens Baumgartner, Damien Faivre, Hans G Börner.   

Abstract

The peptide-mediated functionalization of inorganic particle surfaces is demonstrated on gadolinium oxide (GdO) particles, revealing specific means to functionalize nano- or microparticles. Phage display screening is exploited to select 12mer peptides, which exhibit sequence-specific adhesion onto surfaces of GdO particles. These peptide adhesion domains are exploited to effectively decorate GdO particles with fluorescently labeled poly(ethylene oxide) (PEO), proving to result in a stable surface modification as shown by significant reduction of protein adsorption by 80%, compared to nonfunctionalized particles. Peptide adhesion and stability of the noncovalent coating are investigated by adsorption/elution experiments and Langmuir isotherms. Fluorescence microscopy, contact angle, and energy dispersive X-ray (EDX) measurements confirmed the sequence specificity of the interactions by comparing adhesion sequences with scrambled peptide sequences. Noncovalent, but specific modification of inorganic particle surfaces represents a generic strategy to modulate functionality and function of nano- or microparticle surfaces.
© 2011 American Chemical Society

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Year:  2012        PMID: 22239472     DOI: 10.1021/ja2104944

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  4 in total

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Authors:  Jana M Krüger; Hans G Börner
Journal:  Angew Chem Int Ed Engl       Date:  2021-02-12       Impact factor: 15.336

2.  Biopolymer coating for particle surface engineering and their biomedical applications.

Authors:  Qingmin Yang; Jian Zhao; Arif Muhammad; Lihua Tian; Yongchun Liu; Lixin Chen; Peng Yang
Journal:  Mater Today Bio       Date:  2022-08-24

3.  High-throughput screening and rational design of biofunctionalized surfaces with optimized biocompatibility and antimicrobial activity.

Authors:  Zhou Fang; Junjian Chen; Lin Wang; Ye Zhu; Guansong Hu; Haoqian Xin; Kunzhong Guo; Qingtao Li; Liangxu Xie; Xuetao Shi; Yingjun Wang; Chuanbin Mao
Journal:  Nat Commun       Date:  2021-06-18       Impact factor: 14.919

4.  Biomimetic magnetite formation: from biocombinatorial approaches to mineralization effects.

Authors:  Jens Baumgartner; Maria Antonietta Carillo; Kevin M Eckes; Peter Werner; Damien Faivre
Journal:  Langmuir       Date:  2014-02-14       Impact factor: 3.882

  4 in total

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