No-clog microfluidics

Clog-free Microfluidics and the Creoptix WAVE system

7 Jun 2022
Rory Shadbolt
Publishing / Media

Product news

By combining the patented Grating-Coupled Interferometry (GCI) technology with no-clog microfluidics, the Creoptix® WAVEsystem deliver high quality data from even the most challenging sample types and achieve superior resolution in signal and time compared to other forms of label-free detection. No-clog microfluidics accommodates of a broad range of sample types to preserve activity and biological context, saving time from detrimental purification steps and clogging that takes other systems offline, including 100% whole blood or undiluted serum and plasma, cell supernatant, cell membrane preps, virus-like particles (VLPs), liposomes, viscous detergents, DMSO and acetonitrile.

Clog-free Microfluidics and the Creoptix WAVE system

Thanks to its clog-free microfluidics, Creoptix WAVE offers robustness of crude samples normally only achieved with plate-based assays. The innovative design of the patented microfluidic cartridge, the WAVEchips, supports crude samples, pathogenic samples, harsh solvents and large particles of up to 1000 nm, enabling reliable kinetic analysis. This is made possible by the innovative fluidics design, which integrates all the microfluidics into the disposable cartridge (not within the device core) and places large-bore standard valves downstream in the instrument instead of having microvalves near the chip. The cartridge design allows ultra-fast transition times of 150 ms for reliable determination of off-rates of 10 s-1, enabling the kinetic study of weakly binding fragments.

Creoptix WAVEchips cartridge design

The cartridges contain four flow cells in parallel. Typically, one flow cell is used as a reference to account for bulk effects with either no ligand or a reference ligand immobilized. The reference channel can be freely configured on the four-channel WAVEdelta system. While the two-channel WAVE only allows the usage of two flow cells (FC) per experiment (FC1 and FC4; FC2 and FC3), the choice for the reference channel is still free.

Compatibility

The non-clog technology renders the Creoptix WAVEchips compatible with:

  • 100% serum, plasma and cell supernatant
  • Organic solvents, including high percentages of acetonitrile and dimethyl sulfoxide (DMSO)
  • Viscous detergents and additives to solubilize membrane proteins
  • Cell membrane preps, partially solubilized, unpurified material
  • Virus-like particles (VLPs), liposomes, or nanodiscs used as solubilization structures
  • Large binding partners: nanoparticles and crude membrane preps

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Tags

Particle CharacterizationParticle characterization instruments are used to determine particle size distribution, shape, surface area, zeta potential, density and porosity of particles and materials. Multiple tecchniques are available for determining particle size, shape and count including dynamic light scattering (DLS), laser diffraction, electrozone (Coulter technique), imaging particle analysis and single particle optical sensing. Determine the density of your material with a gas pycnometer or examine its surface area and porosity with gas adsorption analyzers and mercury porosimeters. Find the best particle characterization instruments in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.MicrofluidicsMicrofluidics is the science of manipulating small volumes of fluids in micro-sized channels. It is widely used in diagnostics, drug development, and lab-on-a-chip technologies. Microfluidic devices can enable rapid, cost-effective, and high-throughput analysis of biological samples. Browse our peer-reviewed product directory to find the best microfluidic devices, compare products, check reviews, and get pricing directly from manufacturers.
No-clog microfluidics