MicroFIBERS for Hydrogel-based 3D Cell Culture

MicroFIBERS for Hydrogel-based 3D Cell Culture

Catalog Number:
CCS1401211ART
Mfr. No.:
MIF84-LR60N00
Price:
$148
  • Size:
    84 × 84 mm², Unaligned Microfibers Orientation, 60 ± 15 μm Thickness
    Quantity:
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      • Overview
        • MicroFIBERS are an effective substrate for hydrogel-based 3D cell culture because of their excellent porosity, structural stability, stiffness, and strength. With their pores larger than conventional porous membrane films and nanofibers, these materials allow the excellent cell infiltration into hydrogel/substrate. MicroFIBERS also facilitate an improved handling of hydrogels with low physical strength, thus enabling the wide application range of hydrogels on laboratories.

          Features of Microfibers
          • Innate support for cell-laden hydrogel structure
          • Excellent cohesion with hydrogel (after surface treatment)
          • Excellent infiltration of hydrogels or cell-laden hydrogels because of large pore size and porosity
          • Improved handling property for hydrogels or cell-laden hydrogels
          • Uniform thickness and fiber density over the area
          • Higher stiffness and easier handling compared with nanofibers
          • Economical product that can be cut into desired sizes and shapes for particular uses

          Please contact us at for specific academic pricing.

          More Details

      • Properties
        • Categories
          Polycaprolactone (PCL) Scaffolds
          Other Properties
          Material: Polycaprolactone (PCL)
          Dimension: About 84 x 84 mm2
          Fiber diameter: 5.7 ± 1.2 microns
          Fiber alignment: Unaligned
          Fiber type/Thickness: 60 ± 15 microns
          Sterilized with UV radiation
          Surface treatment (O2 plasma) for hydrophilicity (optional)

          * For Research Use Only

      • Applications
        • Application
          3D Cell Culture
          Application Description
          Porous support for cell-laden hydrogel (in 3D cell culture)
          3D cell culture/tests using various normal/disease/stem cells
          In-vitro experiments for tissue engineering and cell therapy

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