| Literature DB >> 19224560 |
Hsuan-Chen Wu1, Xiao-Wen Shi, Chen-Yu Tsao, Angela T Lewandowski, Rohan Fernandes, Chi-Wei Hung, Philip DeShong, Eiry Kobatake, James J Valdes, Gregory F Payne, William E Bentley.
Abstract
We report the assembly of seven different antibodies (and two antigens) into functional supramolecular structures that are specifically designed to facilitate integration into devices using entirely biologically based bottom-up fabrication. This is enabled by the creation of an engineered IgG-binding domain (HG3T) with an N-terminal hexahistidine tag that facilitates purification and a C-terminal enzyme-activatable pentatyrosine "pro-tag" that facilitates covalent coupling to the pH stimuli-responsive polysaccharide, chitosan. Because we confer pH-stimuli responsiveness to the IgG-binding domain, it can be electrodeposited or otherwise assembled into many configurations. Importantly, we demonstrate the loading of both HG3T and antibodies can be achieved in a linear fashion so that quantitative assessment of antibodies and antigens is feasible. Our demonstration formats include: conventional multiwell plates, micropatterned electrodes, and fiber networks. We believe biologically based fabrication (i.e., biofabrication) provides bottom-up hierarchical assembly of a variety of nanoscale components for applications that range from point-of-care diagnostics to smart fabrics. Copyright 2008 Wiley Periodicals, Inc.Entities:
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Year: 2009 PMID: 19224560 DOI: 10.1002/bit.22238
Source DB: PubMed Journal: Biotechnol Bioeng ISSN: 0006-3592 Impact factor: 4.530