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Discovery of Metastatic Regulators using a Rapid and Quantitative Intravital Chick Chorioallantoic Membrane Model
Published on: February 3, 2021
Development of a cancer metastasis-on-chip assay for high throughput drug screening
Lutfiye Yildiz Ozer1, Hend Salah Fayed1, Johan Ericsson1
1College of Health and Life Sciences, Hamad bin Khalifa University, Doha, Qatar.
Abstract:
Metastasis is the cause of most triple-negative breast cancer deaths, yet anti-metastatic therapeutics remain limited. To develop new therapeutics to prevent metastasis, pathophysiologically relevant assays that recapitulate tumor microenvironment is essential for disease modeling and drug discovery. Here, we have developed a microfluidic metastasis-on-chip assay of the early stages of cancer metastasis integrated with the triple-negative breast cancer cell line (MDA-MB-231), stromal fibroblasts and a perfused microvessel. High-content imaging with automated quantification methods was optimized to assess the tumor cell invasion and intravasation within the model. Cell invasion and intravasation were enhanced when fibroblasts co-cultured with a breast cancer cell line (MDA-MB-231). However, the non-invasive breast cancer cell line, MCF7, remained non-invasive in our model, even in the presence of fibroblasts. High-content screening of a targeted anti-cancer therapy drug library was conducted to evaluate the drug response sensitivity of the optimized model. Through this screening, we identified 30 compounds that reduced the tumor intravasation by 60% compared to controls. Multi-parametric phenotypic analysis was applied by combining the data from the metastasis-on-chip, cell proliferation and 2D cell migration screens, revealing that the drug library was clustered into eight distinct groups with similar drug responses. Notably, MEK inhibitors were enriched in cluster cell invasion and intravasation. In contrast, drugs with molecular targets: ABL, KIT, PDGF, SRC, and VEGFR were enriched in the drug clusters showing a strong effect on tumor cell intravasation with less impact on cell invasion or cell proliferation, of which, Imatinib, a multi-kinase inhibitor targeting BCR-ABL/PDGFR/KIT. Further experimental analysis showed that Imatinib enhanced endothelial barrier stability as measured by trans-endothelial electrical resistance and significantly reduced the trans-endothelial invasion activity of tumor cells. Our findings demonstrate the potential of our metastasis-on-chip assay as a powerful tool for studying cancer metastasis biology, drug discovery aims, and assessing drug responses, offering prospects for personalized anti-metastatic therapies for triple-negative breast cancer patients.
Insights
Researchers developed a metastasis-on-chip assay to study triple-negative breast cancer spread. This model identified 30 compounds that reduce cancer cell intravasation, offering new anti-metastatic therapeutic strategies.
Area of Science:
- Oncology
- Biotechnology
- Microfluidics
Background:
- Metastasis is a primary cause of death in triple-negative breast cancer (TNBC).
- Effective anti-metastatic therapeutics are limited, necessitating advanced disease models for drug discovery.
- Pathophysiologically relevant assays that recapitulate the tumor microenvironment are crucial for studying metastasis.
Purpose of the Study:
- To develop and validate a microfluidic metastasis-on-chip assay for early-stage cancer metastasis.
- To assess the utility of this assay in disease modeling and drug discovery for TNBC.
- To identify potential anti-metastatic compounds using high-content screening.
Main Methods:
- Development of a microfluidic chip integrating MDA-MB-231 TNBC cells, stromal fibroblasts, and a perfused microvessel.
- Optimization of high-content imaging and automated quantification for tumor cell invasion and intravasation.
- High-content screening of a targeted anti-cancer therapy drug library and multi-parametric phenotypic analysis.
Main Results:
- The metastasis-on-chip assay successfully modeled cancer cell invasion and intravasation, enhanced by fibroblasts.
- 30 compounds were identified that reduced tumor cell intravasation by over 60%.
- Multi-parametric analysis clustered drugs, highlighting MEK inhibitors for invasion/intravasation and kinase inhibitors (e.g., Imatinib) for intravasation.
Conclusions:
- The developed metastasis-on-chip assay is a powerful tool for studying cancer metastasis and facilitating drug discovery.
- The assay demonstrated sensitivity in identifying compounds targeting metastasis, such as Imatinib, which stabilized the endothelial barrier.
- This platform offers prospects for developing personalized anti-metastatic therapies for TNBC patients.
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