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Updated: Aug 13, 2026

Isolation of Human Primary Valve Cells for In vitro Disease Modeling
Published on: April 16, 2021
Human heart valve-like tissues from pluripotent stem cells with enhanced maturation recapitulate inflammatory valve
Holly K Voges1, Jessica Durrant-Whyte2, Michael See2
1Murdoch Children's Research Institute, The Royal Children's Hospital, Melbourne, VIC 3052, Australia; Department of Paediatrics, School of Medicine, Dentistry, and Health Sciences, The University of Melbourne, Melbourne, VIC 3052, Australia; Novo Nordisk Foundation Center for Stem Cell Medicine, Murdoch Children's Research Institute, Melbourne, VIC 3052, Australia.
Abstract:
Therapeutic management of heart valve disease is currently hampered by a lack of mechanistic understanding of human valve development and pathobiology. Here, we develop a protocol to generate three-dimensional human heart valve-like tissues from pluripotent stem cells with enhanced maturational properties that partially recapitulate key molecular features of native valves. This includes an abundance of valve interstitial cells, resident macrophage cells, and the transcriptional profile of native heart valves. Importantly, we define a heart valve maturation signature from proteomic analysis and show that maturation of stem cell-derived valve cells is enhanced under 3D culture. We demonstrate that bioengineered valve-like microtissues can be used for modeling valve disease. Namely, treatment with inflammatory cytokines augmented tissue passive tension and induced molecular hallmarks of valve calcification, consistent with the pathological signature of clinical samples from diseased valves. Thus, bioengineered human heart valve-like tissues provide a platform to understand human heart valve development, maturation, and disease pathogenesis.

