Searched for: +
(1 - 4 of 4)
document
Bohländer, P.R. (author), Filius, M. (author), van Kooten, Xander F. (author), Pomorski, A.K. (author), Schmid, S. (author), Dekker, C. (author), Eelkema, R. (author), Kim, S.H. (author), Joo, C. (author)
Single-cell profiling methods have had a profound impact on the understanding of cellular heterogeneity. While genomes and transcriptomes can be explored at the single-cell level, single-cell profiling of proteomes is not yet established. Here we describe new single-molecule protein sequencing and identification technologies alongside...
review 2021
document
Schmid, S. (author), Dekker, C. (author)
This paper provides a perspective on potential applications of a new single-molecule technique, viz., the nanopore electro-osmotic trap (NEOtrap). This solid-state nanopore-based method uses locally induced electro-osmosis to form a hydrodynamic trap for single molecules. Ionic current recordings allow one to study an unlabeled protein or...
review 2021
document
Schmid, S. (author), Dekker, C. (author)
Proteins are the active workhorses in our body. These biomolecules perform all vital cellular functions from DNA replication and general biosynthesis to metabolic signaling and environmental sensing.While static 3D structures are now readily available, observing the functional cycle of proteins-involving conformational changes and...
review 2021
document
Fragasso, A. (author), Schmid, S. (author), Dekker, C. (author)
Nanopores bear great potential as single-molecule tools for bioanalytical sensing and sequencing, due to their exceptional sensing capabilities, high-throughput, and low cost. The detection principle relies on detecting small differences in the ionic current as biomolecules traverse the nanopore. A major bottleneck for the further progress of...
review 2020
Searched for: +
(1 - 4 of 4)