Exact(33)
Binuclear polypyridine ruthenium compounds have been shown to slowly intercalate into DNA, following a fast initial binding on the DNA surface.
This confirmed the lack of hybridization of nc-DNA, leaving the original DNA surface undisturbed.
If we can adjust the DNA surface charge density, it is possible toactively control the DNA translocation through a nanopore.
To confirm this estimation, we also functionalized a single crystalline ZnO bulk sample and investigated the DNA surface coverage.
This also limits the potential use of this biosensor to monitor the kinetics and dynamics of the DNA surface hybridization.
(A, C) Schematic illustration showing the DNA capture probe on the DNA surface, annealed to the myc-peptide fusion, and immunocaptured by the anti-myc antibody, respectively.
Similar(27)
Minimal intramolecular nucleosome nucleosome interactions result in a fiber model resembling a flat ribbon that is compatible with a two-start helical architecture, and that exposes histone and DNA surfaces to the environment.
Fabricating multifunctionalized DNA surfaces is highly desirable for biomedical applications.
The fabrication of multifunctionalized DNA surfaces is highly desirable for some biomedical applications.
Photolithography, Dip-Pen nanolithography, and light-directed in situ DNA chemical synthesis are all used to fabricate multifunctional DNA surfaces.
With the use of this method combined with a toehold-mediated DNA strand displacement reaction, multifunctionalized DNA surfaces were fabricated and the erasable photolithography method was developed.
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