Abstract:
:Human induced pluripotent stem cell (hiPSC) derived angiogenesis models present a unique opportunity for patient-specific platforms to study the complex process of angiogenesis and the endothelial cell response to biomaterial and biophysical changes in a defined microenvironment. We present a refined method for differentiating hiPSCs into a CD31 + endothelial cell population (hiPSC-ECs) using a single basal medium from pluripotency to the final stage of differentiation. This protocol produces endothelial cells that are functionally competent in assays following purification. Subsequently, an in vitro angiogenesis model was developed by encapsulating the hiPSC-ECs into a tunable, growth factor sequestering hyaluronic acid (HyA) matrix where they formed stable, capillary-like networks that responded to environmental stimuli. Perfusion of the networks was demonstrated using fluorescent beads in a microfluidic device designed to study angiogenesis. The combination of hiPSC-ECs, bioinspired hydrogel, and the microfluidic platform creates a unique testbed for rapidly assessing the performance of angiogenic biomaterials.
journal_name
Biomaterialsjournal_title
Biomaterialsauthors
Natividad-Diaz SL,Browne S,Jha AK,Ma Z,Hossainy S,Kurokawa YK,George SC,Healy KEdoi
10.1016/j.biomaterials.2018.11.032subject
Has Abstractpub_date
2019-02-01 00:00:00pages
73-83eissn
0142-9612issn
1878-5905pii
S0142-9612(18)30817-2journal_volume
194pub_type
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