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Updated: Jun 19, 2026

A Flow Cytometry-Based High-Throughput Technique for Screening Integrin-Inhibitory Drugs
Published on: February 2, 2024
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.
Abstract:
The successful progression to the clinic of angiogenesis inhibitors for cancer treatment has spurred interest in developing new classes of anti-angiogenic compounds. The resulting surge in available candidate therapeutics highlights the need for robust, high-throughput angiogenesis screening systems that adequately capture the complexity of new vessel formation while providing quantitative evaluation of the potency of these agents. Available in vitro angiogenesis assays are either cumbersome, impeding adaptation to high-throughput screening formats, or inadequately model the complex multistep process of new vessel formation. We therefore developed an organotypic endothelial-mural cell co-culture assay system that reflects several facets of angiogenesis while remaining compatible with high-throughput/high-content image screening. Co-culture of primary human endothelial cells (EC) and vascular smooth muscle cells (vSMC) results in assembly of a network of tubular endothelial structures enveloped with vascular basement membrane proteins, thus, comprising the three main components of blood vessels. Initially, EC are dependent on vSMC-derived VEGF and sensitive to clinical anti-angiogenic therapeutics. A subsequent phenotypic VEGF-switch renders EC networks resistant to anti-VEGF therapeutics, demarcating a mature vascular phenotype. Conversely, mature EC networks remain sensitive to vascular disrupting agents. Therefore, candidate anti-angiogenic compounds can be interrogated for their relative potency on immature and mature networks and classified as either vascular normalizing or vascular disrupting agents. Here, we demonstrate that the EC-vSMC co-culture assay represents a robust high-content imaging high-throughput screening system for identification of novel anti-angiogenic agents. A pilot high-throughput screening campaign was used to define informative imaging parameters and develop a follow-up dose-response scheme for hit characterization. High-throughput screening using the EC-vSMC co-culture assay establishes a new platform to screen for novel anti-angiogenic compounds for cancer therapy.
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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