Fluorescence microscopy, image analysis and quantitative PCR data underlying the publication “Engineered patterns of Notch ligands Jag1 and Dll4 elicit differential spatial control of endothelial sprouting”
doi: 10.4121/19235784
Spatial regulation of angiogenesis is important for the generation of functional engineered vasculature and the Notch ligands Jag1 and Dll4 are known to regulate endothelial sprouting. In this project, in vitro and in silico models were used to analyze the ability of micropatterned Jag1 and Dll4 to spatially control the sprouting process. Dll4 patterns, but not Jag1 patterns, were found to elicit spatial control and computational simulations suggest different timing of Notch activation by Jag1 and Dll4 to be the reason for their distinct effects. The more potent spatial control of sprouting by Dll4 in comparison to Jag1 could be exploited as a tool in vascular engineering and regenerative medicine.
This dataset contains data from in vitro experiments on endothelial sprouting with human endothelial cells and micropatterned Jag1 and Dll4 ligands.
- 2022-05-06 first online, published, posted
- MECHANOREGULATION OF JAGGED IN VASCULAR TISSUE HOMEOSTASIS (grant code 307133) [more info...] Academy of Finland
- Spatiotemporal Control of Cell Functions (grant code 316882) [more info...] Academy of Finland
- Multilayer mechanosignalling in vascular homeostasis-SIGNALSHEETS (grant code 330411) [more info...] Academy of Finland
- Investigating the crosstalk between Notch and YAP/TAZ in sprouting angiogenesis (grant code 846617) [more info...] European Commission
- The integration of cell signalling and mechanical forces in vascular morphology (grant code 771168) [more info...] European Research Council
- Doctoral Network in Molecular Biosciences at Åbo Akademi University
- Cellular Adaptive Behaviour Laboratory (grant code FC001751) [more info...] Cancer Research UK
- Materials-driven regeneration: Regenerating tissue and organ function with intelligent, life-like materials (grant code 024.003.013) [more info...] Dutch Research Council
- InFLAMES: Innovation Ecosystem based on the Immune System (grant code 337531) [more info...] Academy of Finland
- Åbo Akademi University Foundation’s Center of Excellence in Cellular Mechanostasis
Department of Biomedical Engineering, Eindhoven University of Technology, The Netherlands
Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, Eindhoven, The Netherlands
The Biological Design Center and Department of Biomedical Engineering, Boston University, Boston, USA
Turku Bioscience Centre, Åbo Akademi University and University of Turku, Finland
The Wyss Institute for Biologically Inspired Engineering, Harvard University, Boston, USA
The Francis Crick Institute, London, UK
Department of Informatics, King’s College London, UK
DATA
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README.txt - 1,807,039,644 bytesMD5:
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01072020_dll4-2.lif - 1,800,713,809 bytesMD5:
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010720_BeadFc1.lif - 475,715,119 bytesMD5:
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010720_BeadJag4.lif - 101,891,756 bytesMD5:
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100620_BeadDll4-1.lif - 126,549,657 bytesMD5:
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100620_BeadFC1.lif - 323,014,961 bytesMD5:
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190520-BeadDll4-1.lif - 503,879,464 bytesMD5:
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200520_Bead-Jag-1.lif - 184,720,201 bytesMD5:
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200520_BeadFc-1.lif - 129,399,057 bytesMD5:
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260520_beadDll4-2.lif - 286,206,091 bytesMD5:
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260520_BeadJag-2.lif - 261,852,029 bytesMD5:
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260520_BeadJag-4.lif - 21,957,318 bytesMD5:
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Figure 2 - Microscopy.zip - 6,464,116 bytesMD5:
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Figure 3 - Directionality.zip - 491,500,424 bytesMD5:
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Figure 4 - Efficiency of Sprouting.zip - 366 bytesMD5:
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Figure 5 - qPCR.zip -
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