ceesdekker.net Secrets

‘The next is nanopores, which can be our oldest line of investigation and which has now resulted in DNA sequencers depending on nanopores. We pull specific DNA strands by way of a nanopore and may then study from the nucleotide sequence. Pretty recently, we even managed to read out only one protein for The 1st time employing This method. But this line of study is not just about developing applications, and also about true biological issues.

You often get involved in conversations about science and religion. You've also penned many books on the subject. Don’t you feel that at some point We'll know everything and that God’s role will probably be above?

Multicolor imaging of your bacterial nucleoid and mobile division proteins with blue, orange, and around-infrared fluorescent proteins

A rhythmically pulsing leaf-spring DNA-origami nanoengine that drives a passive follower Mathias Centola

2012, discovery that nucleoid occlusion underlies the precision of bacterial cell division; and to start with ever analyze on the dynamics DNA supercoils and the discovery of supercoil hopping

Electrical transportation in monolayers of phthalocyanine molecular wires and AFM imaging of just one wire bridging two electrodes

‘In the beginning we checked out Organic methods by using a Actual physical view and acted on the basis on the applications we knew. It took a couple of years in advance of we begun Operating extra on the big biological concerns. I then began to connect with it nanobiology, a term that did not exist at the time.

2011, very first in vitro measurements of transport across just one biomimetic nuclear pore sophisticated; advancement of multiplexed magnetic tweezers for kilo-molecule experiments; and resolved the mechanism of homology recognition in DNA homologous recombination

2003, shown the 1st biosensors designed away from a carbon nanotube; settled the structure and system of DNA repair service proteins; and discovery of a different strategy for fabricating reliable-state nanopores for DNA translocation

‘The fantastically refined way in which elements in nature operate by no means ceases to amaze me. If we resolve the puzzle of how everyday living arrived into getting, I assume that my amazement at the complexity of generation could have elevated and with it my awe to the greatness on the Creator.’

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Cees Dekker is Distinguished College Professor at TU Delft. Properly trained to be a physicist, he pioneered nanotechnology with many discoveries on carbon nanotubes in the 1990s. Since 2000, he moved to one-molecule biophysics and nanobiology. His current research concentrates on (i) nanopores for protein sequencing; (ii) chromosome composition, specifically SMC motor protein; and (iii) creating a living synthetic mobile from lifeless molecules. Dekker can be an elected member of your KNAW and fellow towards the APS and also the IOP.

2008, very first observation of protein-coated DNA translocation by way of nanopores; settled the origin in the electrophoretic power on DNA in nanopores; identified a substantial velocity improve of microtubules in electric fields; discovered an anomalous electro-hydrodynamic orientation of microtubules; and resolved the origin of sounds in carbon nanotubes in liquid

2013, managed shaping of Dwell bacterial cells into arbitrary shapes; and discovery of spontaneous fluctuations from the handedness of histone tetrasomes

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