CELLSTAR® ZELLABWEISENDE OBERFLÄCHE

In der Regel sind Oberflächen, die in der Zellkultur Anwendung finden, auf optimale Zelladhärenz ausgerichtet. Die zellabweisende Oberfläche von CELLSTAR® Zellkulturgefäßen verhindert zuverlässig das Anhaften von Zellen in Suspensionskulturen von semi-adhärenten und adhärenten Zelllinien, bei denen die für Suspensionskulturen normalerweise verwendeten hydrophoben Oberflächen nicht ausreichen. Das Portfolio von Produkten mit zellabweisender Oberfläche umfasst SchalenPlatten und Flaschen.

CELLSTAR® zellabweisende Produkte sind standardmäßig steril, nicht zytotoxisch, frei von nachweisbaren Endotoxinen, nachweisbarer DNase / RNase und menschlicher DNA und haben eine Haltbarkeit von 4 Jahren.

Product Overview

Cell-Repellent Surface

Cell Culture Dishes

Cell culture vessels with cell-repellent surface reliably prevent cell attachment in suspension cultures of semi adherent / adherent cell lines where standard hydrophobic surfaces generally used for suspension culture are insufficient.

Cell-Repellent Surface

Cell Culture Flasks

A cell-repellent surface reliably prevents cell attachment in suspension cultures of semiadherent and adherent cell lines where standard hydrophobic surfaces generally used for suspension culture are insufficient.

Cell repellent surface

Multiwell plates / microplates

Available as 6 / 12 / 24 and 48 well multiwell plates. Also available are the 96 and 384 well plates with various well geometries and optional µClear® film bottom.

Prevent cell attachment to support the formation of 3D cell cultures

Cell culture is an essential tool in drug discovery, tissue engineering, toxicology testing, stem cell research, as well as in basic research. Beside conventional two-dimensional (2D) monolayer cell culture, 3D cell culture models are becoming a routine tool which enables the expression of extracellular matrix (ECM) components as well as the formation of cell-cell and cell-matrix interactions. These characteristics are important for replicating in vivo cell differentiation, proliferation, and function in vitro. Cell culture vessels with cell-repellent surface are suitable for this purpose. These are also an ideal platform for long-term cultivation in hydrogels.

Applications for the ultra-low attachent surfaces:

  • Suspension culture of semi-adherent and adherent cell lines
  • Spheroid cell culture of a single spheroid per well in round-bottom, or multiple spheroids in flat-bottom microplates, flasks, and dishes
  • Aggregation of stem cells, as a key step for cultivation and differentiation in 3D
  • 3D culture in hydrogels without cell migration out of the hydrogel and formation of 2D subcultures
  • Indispensable part of the magnetic 3D cell culture technology

3D cell culture unlocks new research possibilities

We aim to present a new dimension of the potential of 3D cell culture. Visit our 3D cell culture blog and get free exclusive content.

Zugehörige Downloads

IFU_781840_781841_384 Well Bioprinting Kits
IFU Gebrauchsanweisungen / PDF, 192 KB / 781840, 781841
IFU_655840_655841_96-Well Bioprinting Kit
IFU Gebrauchsanweisungen / PDF, 9 MB / 655840, 655841
IFU_662840_24-Well Bio-Assembler Kit
IFU Gebrauchsanweisungen / PDF, 9 MB / 662840
IFU 96 Well Multi-MagPen
IFU Gebrauchsanweisungen / PDF, 1 MB / 657896
IFU_U072113_MagPen™
IFU Gebrauchsanweisungen / PDF, 1 MB / 657850
IFU 24 Well Multi-MagPen
IFU Gebrauchsanweisungen / PDF, 1 MB / 657824
m3D White Paper Biocompatibility Nanoshuttle
White Papers / PDF, 3 MB
IFU_781846_384-Well BiO Assay Kit
IFU Gebrauchsanweisungen / PDF, 205 KB / 781846
IFU_655846_96-Well BiO Assay Kit
IFU Gebrauchsanweisungen / PDF, 1 MB / 655846
3D Cell Culture
Broschüre / PDF, 817 KB
CELLSTAR® microplates with cell-repellent surface as platform for BIOMIMESYS®
Wissenschaftliche Publikationen / PDF, 318 KB
Forum No 17: CELLSTAR® Cell Culture Vessels with Cell-Repellent Surface
Wissenschaftliche Publikationen / PDF, 620 KB
Magnetic 3D-Cell Culture Transfer with Multi-MagPen
Flyer / PDF, 672 KB
Magnetic 3D Cell Culture Onepager Biomaterials
Wissenschaftliche Publikationen / PDF, 974 KB
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