A novel imaging-based high-throughput screening approach to anti-angiogenic drug discovery

Lasse Evensen1, David R Micklem, Wolfgang Link

  • 1Department of Biomedicine, University of Bergen, Bergen, Norway.

Insights

A new organotypic co-culture assay using endothelial and smooth muscle cells provides a robust, high-throughput screening system for novel anti-angiogenic cancer therapeutics. This platform effectively models vessel complexity and quantifies drug potency for improved drug discovery.

Area of Science:

  • Biotechnology
  • Cancer Research
  • Vascular Biology

Background:

  • Angiogenesis inhibitors are progressing to clinical use for cancer treatment, increasing the need for effective screening systems.
  • Existing in vitro angiogenesis assays are often cumbersome or fail to model the complexity of new vessel formation.
  • Developing high-throughput, quantitative assays is crucial for evaluating novel anti-angiogenic compounds.

Purpose of the Study:

  • To develop a novel organotypic endothelial-mural cell co-culture assay for high-throughput screening of anti-angiogenic agents.
  • To create a system that models key aspects of angiogenesis and allows quantitative evaluation of drug potency.
  • To establish a platform for identifying and classifying novel vascular normalizing and vascular disrupting agents.

Main Methods:

  • Co-culture of primary human endothelial cells (EC) and vascular smooth muscle cells (vSMC) to form tubular endothelial structures.
  • Utilizing a system that captures immature (VEGF-dependent) and mature (VEGF-independent) vascular phenotypes.
  • Implementing high-content imaging for robust screening and quantitative analysis of drug effects.
  • Conducting a pilot high-throughput screening campaign to define imaging parameters and dose-response schemes.

Main Results:

  • The EC-vSMC co-culture assay successfully recapitulates key features of blood vessel formation.
  • The assay differentiates between anti-VEGF sensitivity in immature networks and sensitivity to vascular disrupting agents in mature networks.
  • A pilot screen demonstrated the assay's suitability as a high-content, high-throughput screening system for anti-angiogenic compounds.
  • Informative imaging parameters and dose-response schemes were established for hit characterization.

Conclusions:

  • The developed EC-vSMC co-culture assay is a robust platform for high-throughput screening of novel anti-angiogenic compounds.
  • This assay system adequately models angiogenesis complexity and provides quantitative potency evaluation.
  • The platform facilitates the identification and classification of potential cancer therapeutics targeting angiogenesis.

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