A simple semi-automated microseeding procedure for nanolitre crystallization experiments is described. Firstly, a microseed stock solution is made from microcrystals using a Teflon bead. A dilution series of this microseed stock is then prepared and dispensed as 100 nl droplets into 96-well crystallization plates, facilitating the incorporation of seeding into high-throughput crystallization pipelines. This basic microseeding procedure has been modified to include additive-screening and cross-seeding methods. Five examples in which these techniques have been used successfully are described
Random microseed matrix screening (rMMS) is a protein crystallization technique in which seed crysta...
Thanks to recent technological advances in X-ray and micro-electron diffraction and solid-state NMR,...
Microfluidic devices are increasingly used for the screening of crystallization conditions. Their ad...
A simple semi-automated microseeding procedure for nanolitre crystallization experiments is describe...
A protocol for setting up nanolitre sitting-drop vapour-diffusion experiments is reported. The proce...
An initial tranche of results from day-to-day use of a robotic system for setting up 100 nl-scale va...
This paper describes a microfluidic system for screening hundreds of protein crystallization conditi...
A microfluidic process for producing crystals of controlled size by confining the crystallization wi...
Recently microfluidic technologies have emerged as viable platforms for nano-volume protein crystall...
Protein crystallization is a major bottleneck in determining tertiary protein structures from genomi...
This report presents a new approach to streak-seeding based on custom-designed silicon microtools. E...
In this work, a novel multi-microfluidic crystallization platform called MMicroCryGen is presented, ...
Serial crystallography, at both synchrotron and X-ray free-electron laser light sources, is becoming...
This paper describes the fabrication of a micromachined miniaturized array of chambers in a 2-mm-thi...
International audienceDetermining optimal conditions for the production of well diffracting crystals...
Random microseed matrix screening (rMMS) is a protein crystallization technique in which seed crysta...
Thanks to recent technological advances in X-ray and micro-electron diffraction and solid-state NMR,...
Microfluidic devices are increasingly used for the screening of crystallization conditions. Their ad...
A simple semi-automated microseeding procedure for nanolitre crystallization experiments is describe...
A protocol for setting up nanolitre sitting-drop vapour-diffusion experiments is reported. The proce...
An initial tranche of results from day-to-day use of a robotic system for setting up 100 nl-scale va...
This paper describes a microfluidic system for screening hundreds of protein crystallization conditi...
A microfluidic process for producing crystals of controlled size by confining the crystallization wi...
Recently microfluidic technologies have emerged as viable platforms for nano-volume protein crystall...
Protein crystallization is a major bottleneck in determining tertiary protein structures from genomi...
This report presents a new approach to streak-seeding based on custom-designed silicon microtools. E...
In this work, a novel multi-microfluidic crystallization platform called MMicroCryGen is presented, ...
Serial crystallography, at both synchrotron and X-ray free-electron laser light sources, is becoming...
This paper describes the fabrication of a micromachined miniaturized array of chambers in a 2-mm-thi...
International audienceDetermining optimal conditions for the production of well diffracting crystals...
Random microseed matrix screening (rMMS) is a protein crystallization technique in which seed crysta...
Thanks to recent technological advances in X-ray and micro-electron diffraction and solid-state NMR,...
Microfluidic devices are increasingly used for the screening of crystallization conditions. Their ad...