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Les domaines d’applications

Ajustez les paramètres biochimiques et mécaniques du microenvironnement cellulaire in vitro avec PRIMO et générez des modèles cellulaires plus pertinents et proches du vivant.

Le système vous permet de mieux étudier le comportement et le développement des cellules vivantes dans un large éventail d’applications, telles que: dynamique du cytosquelette, adhérence cellulaire, mesure des forces de traction, confinement cellulaire, migration cellulaire, ingénierie tissulaire, sphéroïdes.


Micropatterning

Micropatterning

Workflow principle
Intra-cellular mechanisms
Tune pattern geometries to impose different cell shapes to study intracellular cytoskeleton organization
En savoir plus
Neurons and Guidance
Conduct axon guidance experiments and study neurons in conditions as close as possible to their in vivo state.
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Cell migration
Easily induce and study cell migration by quickly creating any adhesive shape. Standardize studies on collective or individual cell migration.
En savoir plus
Disease modeling
Tune complex microenvironment with 2.5D topographies and diverse cell populations in order to obtain reproducible disease models.
En savoir plus
Cell force measurements
Create more reproducible models to mimic physiological or pathological cell forces.
En savoir plus
Cell behavior on topological cues
Control micropatterning alignment on existing topographies of cell culture substrates to study cell behavior on topological environments.
En savoir plus
Cell positioning for Cryo-ET
Create perfect sample for FIB-milling and electron Cryo-tomography by directly controlling cell adhesion, localization and shape.
En savoir plus
Microfabrication

Microfabrication

Workflow principle
Organ-on-a-chip production
Prototype your whole organ-on-a-chip in a record time and with a high reproducibility.
En savoir plus
Grayscale photolithography
Microfabricate complex structures like ramps and stairs with projection of gray levels.
En savoir plus
Microstructured substrate
Create your microstructured substrates with all the geometries and topographies you can imagine, including micropillars, microwells or grooves.
En savoir plus
Combining approaches
Control the cell microenvironment from the biophysical properties of the substrate to the biochemical parameters to create complex and relevant models.
En savoir plus
Hydrogel structuration

Hydrogel structuration

Workflow principle
3D Cell Culture
Polymerize photosensitive hydrogels to create structured substrates for your 3D cell culture models.
En savoir plus
Spheroids and organoids microwells
Grow reproducible 3D cell aggregates, control their shape, and organize them in space for a precise automated data analysis.
En savoir plus
Microfluidic chips in situ photopolymerization
Structure UV sensitive hydrogels inside microchannels.
En savoir plus
Functionalization of hydrogels
Combine protein micropatterning and hydrogel polymerization to turn common hydrogels into topographically and chemically heterogeneous environments.
En savoir plus
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+33 (0) 1 84 25 51 41
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75013 Paris
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+33 (0)1 84 17 22 28

 

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Suite 440,
Fairfax, VA 22030-2239

+1 (202) 415 6445

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