Tube Formation Media

Tube Formation Media

Tube formation assays are widely used in vitro methods to study angiogenesis, the process of new blood vessel formation, which is essential in both physiological and pathological contexts. These assays mimic key steps of angiogenesis such as endothelial cell migration, alignment, and lumen-containing tube formation. Tube formation media play a critical role in supporting endothelial cell behavior during these assays by providing an optimized environment that promotes or modulates tube formation.

Role in Tube Formation Assays

Endothelial cells are seeded onto a reconstituted basement membrane matrix such as Matrigel or basement membrane extract, overlaid with tube formation media. This media supports the rapid organization of endothelial cells into capillary-like tubular structures, typically visible within 2 to 16 hours depending on the cell type and conditions.

Critical parameters influenced by the media include:

  • Cell Viability and Proliferation: Sufficient nutrients and growth factors are essential for maintaining cell health during the assay timeframe.
  • Angiogenic Signaling: Presence of VEGF and other factors modulates endothelial cell activation, migration, and tube alignment.
  • Experimental Modulation: Different media formulations can be used to examine stimulatory or inhibitory effects on angiogenesis by adding test compounds or recombinant proteins.

Applications

  • Screening Pro- and Anti-Angiogenic Compounds: Tube formation assays with defined media are utilized to evaluate drug candidates for cancer, cardiovascular diseases, and wound healing.
  • Mechanistic Angiogenesis Studies: Researchers use tube formation media to create controlled environments for studying molecular pathways affecting angiogenesis.
  • High-Throughput Screening: Adaptation of assays to 96-well formats enables large-scale screening of compound libraries with reproducible media conditions.

Overall, tube formation media are indispensable for in vitro angiogenesis research, offering a standardized and reproducible approach to evaluate endothelial behavior, assess angiogenic activity, and explore mechanisms regulating vascular biology.

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NB-26-02035
 500ml 
MBS556640-500mL
 500mL 
MBS556640-5x500mL
 5x500mL