• Glass Microfluidic Chip Particle or Cell Screening
    Glass Microfluidic Chip Particle or Cell Screening Glass Microfluidic Chip Particle or Cell Screening

Deterministic lateral displacement (DLD) is an efficient approach to separate small spherical particles or cells using an array of staggered obstacles, such as rectangular or cylindrical posts. Particles or cells that are smaller than the post spacing remain in their lanes, while large particles are deflected to neighboring lanes. This glass microfluidic chips are designed for particle or cell separation in a continuous flow.  The fluidic access inlet and outlet ports can be bonded with NanoPort assemblies or can be inserted with stainless steel tubes.  

Key Features

  • Optical transparency and high visibility 
  • Excellent chemical compatibility
  • Quick and easy to connect/disconnect
  • Operating pressure  up to 100 psi
  • Etched channel surface roughness (Ra): 5-10 nm
  • Glass-glass thermal fusion bonding 
  • Flexible for chip post-processing, such as hydrophobic or fluorophilic  coating

Typical Applications

  • Separations of micrometer/sub-micrometer particles or cells, such as circulating tumor cells (CTC) or bacteria
  • Coupled with external forces to separate particles on the basis of deformability or dielectric properties of particles, such as red blood cells (RBCs) and DNAs


Obstacle Size50 µm diameter cylindrical post array 
Obstacle Distance170 µm (center-to-center)
Chip Overall Dimensions50.0 mm x 80.0 mm x 3.0 mm
Chip ThicknessTop layer: 1.5 mm; Bottom layer: 1.5 mm
Channel Surface Roughness (Ra)5-10 nm
Surface Wettability Hydrophilic  
Maximum Operating Pressure 100 psi
Material Borofloat 33

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Glass Microfluidic Chip Particle or Cell Screening

  • $250.00


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Tags: Glass, Microfluidics, Cell Screening, CTC, Cell Seperation