3D Insert With Nanomesh

3D InsertTM With Nanomesh

 


3D Insert-PS/PCL (Polystyrene/Polycaprolactone) with Nanomesh is developed by combining the benefit of nanofibers and micro-scale 3D scaffold structure to provide a unique feature for use in tumor and stem cell research applications.

 

 

Just some of the benefits of 3D InsertTM With Nanomesh

Use as simulated basement membrane in single or co-culture 3D in vitro models to better maintain cancer phenotype.

The 3D Insert with Nanomesh offers both nano- and micro-scale geometry to recreate cancer epithelium and stroma tissue-like conditions. Applications of the 3D Insert Nanomesh are suited for monoculture and co-culture in vitro models for drug screening and epithelial-stromal invasion studies.


100% cell seeding efficiency

Cell retention in applications requiring wet coating of ECM proteins such as laminin, fibronectin, growth factors, etc. Currently, the seeding efficiency of the scaffold is 88-95% under dry conditions. However, seeding efficiency drops when applying wet-protein coating prior to cell seeding.


Tissue engineering of bone-related models

Electrospun fibers have shown to cause shape-induced osteogenic differentiation of mesenchymal stem cells. The 3D Insert with nano-mesh design combines 3D environment with nano technology. This product is ideal for use in bone tissue engineering studies.




Model Item Name Price-
PCLNM305096-24

Nanomesh 96 Well Compatible, FD~300µ, SP~500µ - 24 Counts/Pack

96-well PCL scaffold with Nanomesh ·  Sterile ·  Scaffold diameter: ~5 mm   ·  Scaffold height: ~1.0 mm   ·  Fiber Diameter: ~300 microns ·  Spacing: ~500 microns   3D Insert-PCL with Nanomesh is developed by combining the benefit of nanofibers and micro-scale 3D scaffold structure to provide...
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PSNM304096-24

Nanomesh 96 Well Compatible, FD: 300µ, SP: 400µ - 24 Counts/Pack

96-well PS scaffold with Nanomesh Sterile Fiber Diameter: ~300 microns Spacing: ~400 microns  3D Insert-PS with Nanomesh is developed by combining the benefit of nanofibers and micro-scale 3D scaffold structure to provide a unique feature for use in tumor and stem cell research applications.
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