The bottom-up design of smart nanodevices largely depends on the accuracy by which each of the inherent nanometric components can be functionally designed with predictive methods. Here, we present a rationally designed, self-assembled nanochip capable of capturing a target protein by means of pre-selected binding sites. The sensing elements comprise computationally evolved peptides, designed to target an arbitrarily selected binding site on the surface of beta-2-microglubulin (β2m), a globular protein that lacks well-defined pockets. The nanopatterned surface was generated by an atomic force microscopy (AFM)-based, tip force-driven nanolithography technique termed nanografting to construct laterally confined self-assembled nanopatches of si...
The development of flexible and reconfigurable sensors that can be readily tailored toward different...
This dissertation describes the development of a new method for increasing the resolution of the cur...
Current in vitro techniques cannot accurately identify small differences in concentration in samples...
8siThe bottom-up design of smart nanodevices largely depends on the accuracy by which each of the in...
DNA nanotechnology is an emerging field that provides tools to design and create programmable, spati...
Recent progress on nanotechnology including nanostructure fabrication and nanometer-scale measuremen...
The oriented immobilization of proteins, key for the development of novel responsive biomaterials, r...
A variety of techniques have been developed to site-specifically immobilize biomolecules onto surfac...
The revelation of protein protein-interactions is one of the main preoccupations in the field of pro...
Thesis (Ph.D.)--University of Washington, 2022The endeavored research involves surface modification ...
Nanopatterning of biomolecules on functionalized surfaces offers an excellent route for ultrasensiti...
Conserving the biological activity of immobilized biomolecules is an important first step when devel...
Nanopatterning of biomolecules on functionalized surfaces offers an excellent route for ultrasensiti...
The recent decade has seen a rapid expansion in the ability to create and study nanometer scale obje...
The advent of personalized medicine will require biosensors capable of reliably detecting small leve...
The development of flexible and reconfigurable sensors that can be readily tailored toward different...
This dissertation describes the development of a new method for increasing the resolution of the cur...
Current in vitro techniques cannot accurately identify small differences in concentration in samples...
8siThe bottom-up design of smart nanodevices largely depends on the accuracy by which each of the in...
DNA nanotechnology is an emerging field that provides tools to design and create programmable, spati...
Recent progress on nanotechnology including nanostructure fabrication and nanometer-scale measuremen...
The oriented immobilization of proteins, key for the development of novel responsive biomaterials, r...
A variety of techniques have been developed to site-specifically immobilize biomolecules onto surfac...
The revelation of protein protein-interactions is one of the main preoccupations in the field of pro...
Thesis (Ph.D.)--University of Washington, 2022The endeavored research involves surface modification ...
Nanopatterning of biomolecules on functionalized surfaces offers an excellent route for ultrasensiti...
Conserving the biological activity of immobilized biomolecules is an important first step when devel...
Nanopatterning of biomolecules on functionalized surfaces offers an excellent route for ultrasensiti...
The recent decade has seen a rapid expansion in the ability to create and study nanometer scale obje...
The advent of personalized medicine will require biosensors capable of reliably detecting small leve...
The development of flexible and reconfigurable sensors that can be readily tailored toward different...
This dissertation describes the development of a new method for increasing the resolution of the cur...
Current in vitro techniques cannot accurately identify small differences in concentration in samples...