Latest Product Info

CellHesion® 200 First Presentation

The single cell force testing solution for cell adhesion and elasticity studies

NanoTracker™ First Presentation

Ultimate optical tweezers and 3D particle tracking platform

NanoTracker™ - Optical trapping and bead manipulation, Photonic Force Microscope for living cell studies (nanotracker, optical trapping, optical trap, bead manipulation, photonic force microscope, photonic force microscopes, living cell studies, photonic force microscopy)

nanotracker, optical trapping, optical trap, bead manipulation, photonic force microscope, photonic force microscopes, living cell studies, photonic force microscopyNanoTracker™ - Optical trapping and bead manipulation, Photonic Force Microscope for living cell studies

NanoTracker™ - Optical trapping and bead manipulation, Photonic Force Microscope for living cell studies

With the NanoTracker™, the user can trap and track particles from several µm down to 30nm with the ability to control, manipulate and observe samples from vesicles to whole cells in real time with nanometer precision.

NanoTracker™ technology provides precisely quantifiable and reproducible measurements of particle/ cell interactions. The system delivers precise information about single molecule mechanics and may also be used to determine mechanical characteristics such as adhesion, elasticity or stiffness on single molecules.

NanoTracker™ setup on Zeiss

NanoTracker™ setup with syringe pumps
on Zeiss Axio Observer base

Key features

  • Real-time data - essential for living cell studies
  • Optical Tweezers meets 3D particle tracking
  • 3D real space tracking information with nanometer precision
  • Use of biochemically modified nanoparticles
  • No perturbation of the biological system
  • Reproducible and calibrated data
  • Quantitative results from mechanical properties to diffusion