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    • 3D Printing
      • 3D Cell Cultures
      • Adhesion in 3D porous media
      • Fused deposition modelling
      • InkJet technology
    • Cancer theranostics
      • 3D Cell Cultures
      • Adhesion in 3D porous media
      • Antibody targeting
      • Magnetic resonance imaging
    • Chemistry on demand
      • Artificial chemotaxis
      • Biochemical reactions
      • Biologicaly triggered release
      • Liposomes
      • Magnetic nanoparticles
      • Mathematical modelling
    • Encapsulation technologies
      • Droplet microfluidics
      • Glucan microparticles
      • Liquid Marbles
      • Lipid-based nanoformulations
      • Spray drying
    • Pharmaceutical engineering
      • 3D Cell Cultures
      • Computer simulation of pharmaceutical processes
      • Crystallization
      • Granulation
      • Novel dosage forms
        • 3D Printing
        • Formulations on porous carriers
      • Tablets
        • Particle technologies
        • Dissolution Imaging
    • Structured silica particles
      • Core-shell particles
      • Diatoms
      • Sol-gel method
    • Finished projects
      • Layer-by-Layer method
      • Stimuli-responsive particles
      • Reversible aggregation
      • Stimuli-responsive adhesion
  • Publications
    • Journal articles
    • Theses
  • Equipment
  • News
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✕

Research

  • Home
  • Research

3D Printing

  • 3D cell cultures
  • Adhesion in 3D porous media
  • Fused deposition modelling
  • InkJet technology


Cancer theranostics

  • 3D cell cultures
  • Adhesion in 3D porous media
  • Antibody targetting
  • Magnetic resonance imaging


Chemistry on demand

  • Artificial chemotaxis
  • Biochemical reactions
  • Biologicaly triggered release
  • Liposomes
  • Magnetic nanoparticles
  • Mathematical modelling


Encapsulation technologies

  • Droplet microfluidics
  • Glucan microparticles
  • Liquid marbles
  • Solid lipid nanoparticles
  • Spray drying


Pharmaceutical engineering

  • 3D cell cultures
  • Computer simulation of tablet dissolution
  • Crystallization
  • Granulation
  • Novel dosage forms
    • 3D Printing
    • Fused deposition modelling
  • Tablets
    • Dissolution imaging
    • Magnetic resonance imaging
    • Particle technologies


Structured silica particles

  • Core-shell particles
  • Diatoms
  • Sol-gel method


Finished projects

  • Layer by layer
  • Reversible aggregation
  • Stimuli-responsive adhesion
  • Stimuli-responsive particles

News

  • Chobotix at Biovaria 2025
    8 May 2025
  • PhD defence of Stanislav Chvíla
    14 April 2025
  • 5th European Conference on Pharmaceutics
    26 March 2025
  • Success at The Parc Awards
    12 February 2025
  • New European patent awarded
    4 February 2025

Research topics

  • 3D Printing
  • Cancer theranostics
  • Chemistry on demand
  • Encapsulation technologies
  • Pharmaceutical engineering
  • Structured silica particles

Join us

We are always looking for motivated students at all levels (even 1st year undergraduates), postdocs and senior researchers to join our lab!

Interested candidates, please apply to Chobotix e-mail.

News

  • Chobotix at Biovaria 2025
  • PhD defence of Stanislav Chvíla
  • 5th European Conference on Pharmaceutics
  • Success at The Parc Awards
  • New European patent awarded
more news…

Contact

frantisek.stepanek@vscht.cz
+420 220 443 236
+420 220 444 320
Location

Chemical Robotics Laboratory
Department of Chemical Engineering
University of Chemistry and Technology, Prague
Technická 3, 166 28, Praha 6 – Dejvice
Czech Republic

Links

UCT Prague website

FCHI Faculty website

Department of Chemical Engineering

Chobotix SharePoint

Instrument Reservation

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