CEESDEKKER CAN BE FUN FOR ANYONE

ceesdekker Can Be Fun For Anyone

ceesdekker Can Be Fun For Anyone

Blog Article

2009, discovery of a completely new phenotype for micro organism in slender nanofluidic slits; and to start with detection of local protein structures along DNA using strong-condition nanopores

Reconstitution of ultrawide DNA origami pores in liposomes for transmembrane transport of macromolecules

‘It had been basically a issue of picking up a reserve on mobile biology and starting to go through. I'd originate from a planet of extremely-significant vacuums, cryostats and quantum phenomena, and now I used to be Operating at home temperature with molecular biology kits.

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

That could be a desire of mine and we set to work having a mouth watering dose of naivety. This really is something which will most likely yield stunning brings about the lengthier expression, but that doesn't matter. You should not only want to work to the concerns of tomorrow, but in addition to the questions in the working day just after tomorrow.’

Our analysis ranges from your biophysics of DNA to synthetic cells and beyond. Please take a look down below within the spectrum of our present-day jobs.

All parameters were the identical for each panel In this particular online video, aside from the Original placement of the 6hb rod (shown in blue) around the nanopore. Simulations that terminated early on account of translocation on the rod from the pore are marked by a gray history.

2011, 1st in vitro measurements of transport across only one biomimetic nuclear pore elaborate; enhancement of multiplexed magnetic tweezers for kilo-molecule experiments; and solved the mechanism of homology recognition in DNA homologous recombination

2003, demonstrated the first biosensors built away from a carbon nanotube; settled the structure and system of DNA repair service proteins; and discovery of a whole new approach for fabricating strong-state nanopores for DNA translocation

Dekker began his research on solitary carbon nanotubes in 1993 when he create a new line of exploration to review electrical transportation by means of single organic and natural molecules in between nanoelectrodes. In 1996 a breakthrough was understood with carbon nanotubes. This was attained in a collaboration Along with the group of Nobel laureate Richard Smalley. STM and nanolithography approaches had been utilized to show that these nanotubes are quantum wires at The one-molecule degree, with superb Bodily properties.

Since 2000 he moved to solitary-molecule biophysics and nanobiology, with study from experiments of DNA loop extrusion and supercoiling to DNA translocation by way of nanopores. Much more a short while ago his analysis has centered on learning chromatin composition and cell division with micro organism on chip, whilst he is likewise attempting to in the long run Develop artificial cells from The underside up.

Cees Dekker is Distinguished University Professor at TU Delft. Educated as being a physicist, he pioneered nanotechnology with numerous discoveries on carbon nanotubes inside the 1990s. Because 2000, he moved to single-molecule biophysics and nanobiology. His current research concentrates on (i) nanopores for protein sequencing; (ii) chromosome composition, especially SMC motor protein; and (iii) creating a residing synthetic mobile from lifeless molecules. Dekker can be an elected member of the KNAW and fellow to the APS as well as IOP.

2008, initial observation of protein-coated DNA translocation via nanopores; resolved the origin from the electrophoretic force on DNA in nanopores; discovered an important velocity maximize of microtubules in electric powered fields; learned an anomalous electro-hydrodynamic orientation of microtubules; and solved the origin of sound in carbon nanotubes in liquid

Case in point (2) of bending configurations in 3D simulations of DNA rods on nanopores. A part of the membrane is shown in gray, the rim of the pore is highlighted in purple, and a 3D rendering on the movement in ceesdekker.net the DNA rod is exhibited.

Report this page