Chamber Interaction Chip - Indirect chamber interconnection - Fluidic 737
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  • Chamber Interaction Chip - Indirect chamber interconnection - Fluidic 737
  • Chamber Interaction Chip - Indirect chamber interconnection - Fluidic 737
  • Chamber Interaction Chip - Indirect chamber interconnection - Fluidic 737
  • Chamber Interaction Chip - Indirect chamber interconnection - Fluidic 737
  • Chamber Interaction Chip - Indirect chamber interconnection - Fluidic 737
  • Chamber Interaction Chip - Indirect chamber interconnection - Fluidic 737
  • Chamber Interaction Chip - Indirect chamber interconnection - Fluidic 737

Description

The chamber interaction chip Fluidic 737 possesses two cell culture chambers, which can be filled individually with different cell types. Cell-cell-interaction can be nicely evaluated e.g. the metabolic response on different drug dosage. Various experimental settings can be implemented on these chips having different pathways and fluidic modules for molecules in the fluidic channel network.

Please note, if working with adherent cells, we recommend the use of hydrophilized chips as this will help your cells to adhere to the surface of the chip.

Chamber Interaction Chip Indirect chamber interconnection Fluidic 737

The chamber interaction chip Fluidic 737 with two interconnected cell culture chambers is the ideal tool to study cell-cell interaction in organ-on-a-chip experiments.

Material
Surface Treatment
€36.20 / unit
€24.30 / unit from 10 units
€16.10 / unit from 100 units
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Reference
10001059
Design element
Chamber
Application
Cell culture, Organ-on-Chip
Usage Statement
For R&D use only, Single use
Fluidic
737
Material
Topas
Material chip body
Mcs-COC 13
Material chip lid
Mcs-foil 011 (Topas, 140 µm, Tg 78°C)
Color
Transparent
Interface type
Mini luer
Surface treatment
Not treated
Membrane
No membrane
Pieces per unit
1

Description

The chamber interaction chip Fluidic 737 possesses two cell culture chambers, which can be filled individually with different cell types. Cell-cell-interaction can be nicely evaluated e.g. the metabolic response on different drug dosage. Various experimental settings can be implemented on these chips having different pathways and fluidic modules for molecules in the fluidic channel network.

Please note, if working with adherent cells, we recommend the use of hydrophilized chips as this will help your cells to adhere to the surface of the chip.

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