Merck
CN
  • Layer-by-layer assembly of a streptavidin-fibronectin multilayer on biotinylated TiO(X).

Layer-by-layer assembly of a streptavidin-fibronectin multilayer on biotinylated TiO(X).

Langmuir : the ACS journal of surfaces and colloids (2013-01-15)
Michael Lehnert, Christopher Rosin, Wolfgang Knoll, Michael Veith
摘要

The biomodification of surfaces, especially titanium, is an important issue in current biomedical research. Regarding titanium, it is also important to ensure a specific protein modification of its surface because here protein binding that is too random can be observed. Specific nanoscale architectures can be applied to overcome this problem. As recently shown, streptavidin can be used as a coupling agent to immobilize biotinylated fibronectin (bFn) on a TiO(X) surface. Because of the conformation of adsorbed biotinylated fibronectin on a streptavidin monolayer, it is possible to adsorb more streptavidin and biotinylated fibronectin layers. On this basis, an alternating protein multilayer can be built up. In contrast to common layer-by-layer technology, in this procedure the mechanism of layer adsorption is very specific because of the interaction of biotin and streptavidin. In addition, we showed that the assembly of this multilayer system and its stability are dependent on the degree of labeling of biotinylated fibronectin. Hence we conclude that it is possible to build up well-defined nanoscale protein architectures by varying the degree of labeling of biotinylated fibronectin.

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Sigma-Aldrich
链亲和素 来源于阿维丁链霉菌, affinity purified, lyophilized from 10 mM potassium phosphate, ≥13 U/mg protein
Sigma-Aldrich
链亲和素 来源于阿维丁链霉菌, essentially salt-free, lyophilized powder, ≥13 units/mg protein
Sigma-Aldrich
链亲和素 来源于阿维丁链霉菌, recombinant, expressed in E. coli, lyophilized powder