AIM CHIP DAX-1and controlled in AIM chips. Multi-Channel Design Control of Flow & Chemical Gradients...

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AIM CHIP DAX-1 AIM Biotech oers an easy-to-use, modular platform for incorporating 3D cell culture into your research. Co-culture model 2D & 3D cell culture Static or dynamic ow models Cell migration & chemotaxis New Dimension ! Novel Insights Connect with AIM #aimbiotech www.aimbiotech.com [email protected] Angiogenesis Vasculogenesis Cancer metastasis Organotypic models

Transcript of AIM CHIP DAX-1and controlled in AIM chips. Multi-Channel Design Control of Flow & Chemical Gradients...

Page 1: AIM CHIP DAX-1and controlled in AIM chips. Multi-Channel Design Control of Flow & Chemical Gradients Di!erent cell types can be cultured together in the same channel or compartmentalised

AIM CHIP

DAX-1�

AIM Biotech offers an easy-to-use, modular platform for incorporating 3D cell culture into your research. 

•  Co-culture model •  2D & 3D cell culture •  Static or dynamic flow models •  Cell migration & chemotaxis

New Dimension ! Novel Insights

Connect with AIM

#aimbiotech

www.aimbiotech.com [email protected]

•  Angiogenesis •  Vasculogenesis •  Cancer metastasis •  Organotypic models

Page 2: AIM CHIP DAX-1and controlled in AIM chips. Multi-Channel Design Control of Flow & Chemical Gradients Di!erent cell types can be cultured together in the same channel or compartmentalised

Additional features: - Microscope slide format (75mm X 25mm) - Sterile & ready-to-use - Fits into a 384-well compliant AIM holder - No additional equipment or pump is required

Key Features

Gel channels can be filled with collagen, fibrinogen & other hydrogels, or Matrigel™ & other extracellular matrixes to

suit your experimental needs.

Compatible with Polymerisable Gels

Interstitial flow & chemical gradients across the 3D hydrogel can be set up

and controlled in AIM chips.  

Control of Flow & Chemical Gradients Multi-Channel Design

Different cell types can be cultured together in the same channel or compartmentalised into different channels.

Polymers with a light transmittance rate of 92% are used in AIM chips so they are compatible with phase contrast,

epifluorescence, 2-photon & confocal microscopy. 

Optically Clear

Applications�

Angiogenesis Migration Cancer Metastasis

AIM chips are versatile platform that are suitable for accommodating various cell types & hydrogels in them. A number of applications in the fields of vascular, cancer, neuro- & stem cell biology including cell migration/invasion, angiogenesis, cancer metastasis have been developed.