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Robust and Scalable Angiogenesis Assay of Perfused 3D Human iPSC-Derived Endothelium for Anti-Angiogenic Drug Screening

Vincent van Duinen, Wendy Stam, E. Mulder, Farbod Famili, Arie Reijerkerk, Paul Vulto, Thomas Hankemeier, Anton Jan van Zonneveld

2020International Journal of Molecular Sciences39 citationsDOIOpen Access PDF

Abstract

. Such assays should combine physiological relevant culture conditions with robustness and scalability to enable drug screening. We developed a perfused 3D angiogenesis assay that includes endothelial cells (ECs) from induced pluripotent stem cells (iPSC) and assessed its performance and suitability for anti-angiogenic drug screening. Angiogenic sprouting was compared with primary ECs and showed that the microvessels from iPSC-EC exhibit similar sprouting behavior, including tip cell formation, directional sprouting and lumen formation. Inhibition with sunitinib, a clinically used vascular endothelial growth factor (VEGF) receptor type 2 inhibitor, and 3-(3-pyridinyl)-1-(4-pyridinyl)-2-propen-1-one (3PO), a transient glycolysis inhibitor, both significantly reduced the sprouting of both iPSC-ECs and primary ECs, supporting that both cell types show VEGF gradient-driven angiogenic sprouting. The assay performance was quantified for sunitinib, yielding a minimal signal window of 11 and Z-factor of at least 0.75, both meeting the criteria to be used as screening assay. In conclusion, we have developed a robust and scalable assay that includes physiological relevant culture conditions and is amenable to screening of anti-angiogenic compounds.

Topics & Concepts

AngiogenesisIn vivoSunitinibSprouting angiogenesisInduced pluripotent stem cellVascular endothelial growth factorPharmacologyCell cultureKinase insert domain receptorEndothelial stem cellDrug discoveryCancer researchNeovascularizationChemistryBiologyCell biologyIn vitroVascular endothelial growth factor AMedicineBiochemistryVEGF receptorsInternal medicineCancerBiotechnologyGeneticsGeneEmbryonic stem cell3D Printing in Biomedical ResearchAngiogenesis and VEGF in CancerPluripotent Stem Cells Research
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