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Functional stem cell-derived heart models offer new avenues for preclinical, animal-free physiological assessment of drug cardiotoxicity. Yet, comprehensive molecular profiling in these models remains limited, leaving key metabolic drivers of cardiotoxicity unexplored.

Here, we leveraged an...

2025-12-07 | MTBLS13225 | MetaboLights
top down and bottom up proteomics files for Lactate and Immunomagnetic-purified iPSC-derived Cardiomyocytes Generate Comparable Engineered Cardiac Tissue Constructs
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2023-05-05 | MSV000091869 | MassIVE
While cell models are routinely used to study cardiac molecular biology, in vitro systems fall far short of mimicking the metabolic and sarcomere structural maturity of intact cardiac tissue. Achieving a mature cardiomyocyte (CM) phenotype is essential for creating a physiologically relevant environ...
ORGANISM(S): Homo sapiens (Human) 
2026-09-21 | PXD074288 | Pride
Mechanical overload in the heart induces pathological remodeling that typcially leads to heart failure. We sought to build an in vitro model of heart failure by applying cyclic stretch to engineered isotropic (iso) and anisotropic (aniso) NRVM tissues. We used micoarrays to determine the effects of ...
ORGANISM(S): Rattus norvegicus 
Engineered human cardiac tissues have been utilized for various biomedical applications, including drug testing, disease modeling, and regenerative medicine. However, the applications of cardiac tissues derived from human pluripotent stem cells are often limited due to their immaturity and lack of f...
ORGANISM(S): Sus scrofa domesticus (domestic pig) 
2024-02-03 | PXD042077 | Pride
Uniparental parthenotes are considered an unwanted byproduct of in vitro fertilization. In utero parthenote development is severely compromised by defective organogenesis and in particular by defective cardiogenesis. Although developmentally compromised, apparently pluripotent stem cells can be deri...
ORGANISM(S): Mus musculus 
Bulk RNA-seq of human engineered heart tissue for analyzing human myocardial fibrosis
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