Ibidi

µ-Dish 35 mm, high Bioinert

  • Superior to the standard ultra-low attachment (ULA) surfaces: stable, biologically inert surface for long-term experiments without any cell or biomolecule adhesion
  • Excellent microscopic quality without any autofluorescence: 100% surface passivation combined with the highest optical quality of the ibidi Polymer Coverslip
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Bioinert
£378.37 ex. VAT VAT
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Long-term culture and high-resolution microscopy of spheroids, organoids, and suspension cells on a non-adherent surface

  • Superior to the standard ultra-low attachment (ULA) surfaces: stable, biologically inert surface for long-term experiments without any cell or biomolecule adhesion
  • Excellent microscopic quality without any autofluorescence: 100% surface passivation combined with the highest optical quality of the ibidi Polymer Coverslip

Applications

  • Generation and long-term culture of spheroids and organoids without scaffold
  • High resolution fluorescence microscopy of organoids, spheroids, embryoid bodies (EBs), and cells in suspension
  • Background-free analysis of cell-cell interactions
  • Prevention of stem cell differentiation due to attachment
  • Culture of suspension cells in a permanently unattached state
  • Self-assembly tumor spheroid formation assays
  • 3D tumor spheroid models

Technical Features

  • µ-Dish 35 mm, high with non-adherent, passivated Bioinert surface
  • Ready-to-use without prior surface treatment or preparation
  • 200 nm hydrophilic polyol hydrogel—stable and covalently bound
  • No adsorption, coating, or binding of proteins, antibodies, enzymes, and other biomolecules
  • Compatible with all fixatives and staining solutions
  • No autofluorescence
  • Non-cytotoxic, biologically inert, and non-degradable
  • Compatible with immersion oil
Ø µ-Dish35 mm
Volume2 ml
Growth area3.5 cm2
Ø observation area21 mm
Height with / without lid14/12 mm
Bottom: ibidi Polymer Coverslip with Bioinert surface
Bioinert Surface thickness200 nm
Bioinert Surface materialPolyol-based hydrogel
Protein coatingsNot possible

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